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ug99 Scientists warn of wheat disease

AlaskaDenise

In Memoriam
Scientists say poorer populations in vulnerable countries could starve if a disease called Ug-99 hits yields hard enough to push up wheat prices.


There is already a global wheat shortage and UN agencies are concerned about the impact of high food prices.

Ug-99 is a form of black stem rust that prevents wheat taking up nutrients and can wipe out whole harvests.

Scientists at the John Innes Centre, in England, are trying to find wheat with a natural resistance to the disease. Most wheat grown in Africa, Asia and China, has little resistance to Ug-99.

The BBC's Anna Hill says scientists at the John Innes Centre are testing a wide variety of native wheats from Asia and Africa to see if they can find natural resistance to the disease and breed new varieties from them.

But this could take more than five years, by which time Ug-99 could already be causing wide spread harvest failure.

The UN World Food Programme has warned that the rise in basic food costs could continue until 2010 because of rising energy and grain prices.
Some food prices rose 40% last year, and the WFP fears the world's poorest will buy less food, less nutritious food or be forced to rely on aid.<!-- E BO -->

http://news.bbc.co.uk/2/hi/science/nature/7293326.stm
 
Re: Scientists warn of wheat disease

Re: Scientists warn of wheat disease

Week of Sept. 24, 2005;

Wheat Warning—New Rust Could Spread Like Wildfire

Janet Raloff

As the world's population continues to grow, so does its appetite for cereal grains, which include such dietary staples as wheat. This growing demand has driven agricultural scientists to develop higher yielding grain varieties. However, wheat growers face a challenging threat to bountiful yields with the emergence of a new and virulent fungal pathogen. It stands poised to hammer wheat yields globally, according to data released this month in Nairobi, Kenya, at an international symposium convened to address the blight.
<TABLE cellSpacing=1 cellPadding=1 width=1 align=right border=0><TBODY><TR><TD>
f6580_1431.jpg
</TD></TR><TR><TD>SEEDY INFECTION. This photo, taken Sept. 6 at the Njoro Agricultural Research Station in Kenya, shows a seed head of wheat heavily infected with Ug99.
CIMMYT

</TD></TR></TBODY></TABLE>

The new pathogen goes by the name of Ug99, for the nation—Uganda—and the year in which its emergence was formally recognized. This variant of the Puccinia graminis fungus, a type of black-stem rust, has been popping up in fields throughout East Africa. Rusts take their common name from the fact that the pathogens tend to have a vivid red or orange hue. At the end of a growing season, black-stem rusts sprout dark spores that can survive over winter.

At the Nairobi meeting, officials with the International Center for Agricultural Research in Dry Areas and the International Maize and Wheat Improvement Center—an organization best known by its Spanish acronym, CIMMYT—summed up much of what they know about the Ug99 rust. For instance, the centers' scientists noted that most wheat currently being grown around the world has either established susceptibility to the new pathogen or unknown susceptibility. At present, CIMMYT officials reported, "only 0.3 percent of the more than 44 million hectares planted to known varieties [of wheat] is moderately resistant to Ug99."

In monitored test plots of wheat, Ug99 reduced grain yields by as much as 71 percent. Its virulence indicates Ug99 "has broken down the sources of resistance that have provided effective protection [for wheat against black-stem rusts] for over 30 years," the CIMMYT researchers said.

If not quashed soon, Ug99 infections might bloom into global crop epidemics within the next 15 years. In Africa alone, CIMMYT projected, grain-yield losses from such blights could approach $1 billion in value. Such events would increase the price of wheat on global markets and contribute to regional food shortages. These risks are especially grave for developing nations where reliance on wheat is high and budgets for fungicides are almost nonexistent, CIMMYT noted.

At the meeting, CIMMYT officials circulated a new report on Ug99's threat. They also announced plans to upgrade or develop new research centers in the heart of East Africa. These facilities will be screening local wheat cultivars for newly mutated genes that might confer resistance to Ug99 and then launching efforts to breed new lines of wheat carrying those genes.

Although wheat growers around the world had recently come to view stem rust as a thing of the past, the new CIMMYT report says, "new data show that such an assumption is no longer—and probably never was—warranted."

Pesticides are not the answer

East Africa has long been a breeding ground for new and virulent stem rusts—probably because the area has a mild climate and farmers plant wheat year-round.
<TABLE cellSpacing=1 cellPadding=1 width=1 align=right border=0><TBODY><TR><TD>
f6580_2865.jpg
</TD></TR><TR><TD>SPOTTED. These wheat stems are infected with spores of the fungal blight Ug99.
CIMMYT

</TD></TR></TBODY></TABLE>

Ordinarily, stem-rust spores move only short distances, one stem infecting another as they brush against each other. However, Ug99 makes five distinct types of spores. Of these, the one known as the urediniospore is especially infectious and unique in its ability to ride air currents. Winds can carry these spores for hundreds or even thousands of miles.

Until recently, the threat of such long-range rust spread was largely discounted because scientists believed that ultraviolet light from the sun would kill spores that got swept into high-altitude wind currents and then hitchhiked there for days. To the contrary, recent studies have shown that fungal spores have survived wind transport from Africa to at least as far as the Caribbean (SN: 10/06/01, p. 218).

Although large-scale commercial growers typically use fungicides to deal with rusts, these chemicals are costly.

Spraying can run to more than $100 per hectare (0.4 acre), CIMMYT notes. That's well outside the budget of farmers in developing countries.

Therefore, the new report argues, ignoring these small growers' needs for Ug99-resistant cultivars risks launching frequent and potentially uncontrollable black-stem rust epidemics from untreated fields.

Epidemic pending?

Until a half-century ago, many popular wheat varieties were vulnerable to many variants of P. graminis. Mention of their sighting would trigger terror in the hearts of farmers, since an infection could rapidly render a healthy field of wheat into "a black tangle of broken stems and shriveled grain," the CIMMYT report says.

These fungal blights periodically triggered disastrous epidemics until breeders began intense efforts to select and breed wheat lines with genes resistant to black-stem disease. Indeed, CIMMYT and its predecessor organization, created in 1943, owe their origins to global campaigns aimed at countering this wheat rust.

The success of those breeding efforts "has led to complacency throughout the wheat community," observes Norman E. Borlaug, the 91-year-old Nobel prize winner credited with launching the "green revolution." It harnessed intensive plant-breeding programs to improve the yields of wheat, maize, and other plants that serve as dietary staples in developing countries.

Although Ug99 appears confined to Africa at this time, CIMMYT reports that epidemics of less-virulent wheat-stem rusts have occurred in Turkey, Australia, Paraguay, and the U.S. Midwest. These outbreaks indicate that commonly planted wheat cultivars are vulnerable to Ug99 and other P. graminis variants, according to CIMMYT.

In his preface to the new CIMMYT report, Borlaug observes that breeders around the world have acknowledged that "resistance to stem rust was no longer a leading breeding objective." And that's what makes the recent outbreak of Ug99 in East Africa so troubling, he says.

Borlaug pointed out that, like wildfires, the spread of stem rust relies on favorable climate conditions, air movement, fuel (in this case, susceptible wheat), ignition points, and complacency. "Once started, both [wildfires and rust epidemics] are difficult to stop," he says.

That's why Borlaug argues that mobilization against this blight is imperative. "The prospect of a stem-rust epidemic in wheat in Africa, Asia, and the Americas is real and must be stopped before it causes untold damage and human suffering," he warns.

At the meeting in Nairobi, CIMMYT thanked Borlaug for "bringing this problem to the attention of the international community" and vowed it would indeed be launching a new Global Rust Initiative.

references_sources2.gif

References:
Bold, H.C., C. Alexopoulos, and T. Delavoryas. 1986. Morphology of Plants and Fungi. New York: Harper & Row.
Expert Panel on the Stem Rust Outbreak in Eastern Africa. 2005. Sounding the Alarm on Global Stem Rust: An assessment of race Ug99 in Kenya and Ethiopia and the potential for impact in neighboring regions and beyond. Mexico City: International Maize and Wheat Improvement Center (CIMMYT). (Sept. 8). Available at http://www.cimmyt.org/english/wps/news/2005/aug/pdf/
Expert_Panel_Report.pdf
.
Reeves, T.G., et al. 1999. New Wheats for a Secure, Sustainable Future. Mexico, D.F.: CIMMYT. Available at http://www.cimmyt.org/whatiscimmyt/pdf/New%20Wheats.pdf.

Further Readings:
Raloff, J. 2003. Global food trends. Science News Online (May 31). Available at http://www.sciencenews.org/articles/20030531/food.asp.
______. 2001. Ill winds. Science News 160(Oct. 6):218-220. Available at http://www.sciencenews.org/articles/20011006/bob13.asp.

Sources:
Yue Jin
Research Plant Pathologist
USDA-ARS
Cereal Disease Laboratory
University of Minnesota
St. Paul, MN 55108

Ravi Singh
CIMMYT Wheat Program
International Maize and Wheat Improvement Center (CIMMYT)
Apartado Postal 6-641
06600 México, D.F.
México
Web site: http://www.cimmyt.org/
 
Re: Scientists warn of wheat disease

Re: Scientists warn of wheat disease

Billions at risk from wheat super-blight


Debora Mackenzie (2007)
Possible migration routes of wheat rust Ug99

<NOSCRIPT></NOSCRIPT>
"This thing has immense potential for social and human destruction." Startling words - but spoken by the father of the Green Revolution, Nobel laureate Norman Borlaug, they are not easily dismissed.

An infection is coming, and almost no one has heard about it. This infection isn't going to give you flu, or TB. In fact, it isn't interested in you at all. It is after the wheat plants that feed more people than any other single food source on the planet. And because of cutbacks in international research, we aren't prepared. The famines that were banished by the advent of disease-resistant crops in the Green Revolution of the 1960s could return, Borlaug told New Scientist.

The disease is Ug99, a virulent strain of black stem rust fungus (Puccinia graminis), discovered in Uganda in 1999. Since the Green Revolution, farmers everywhere have grown wheat varieties that resist stem rust, but Ug99 has evolved to take advantage of those varieties, and almost no wheat crops anywhere are resistant to it.

The strain has spread slowly across east Africa, but in January this year spores blew across to Yemen, and north into Sudan <FIGREF REFID="mg25983701.jpg">(see Map)</FIGREF>. Scientists who have tracked similar airborne spores in this part of the world say it will now blow into Egypt, Turkey and the Middle East, and on to India, lands where a billion people depend on wheat.

There is hope: this week scientists are assessing the first Ug99-resistant varieties of wheat that might be used for crops. However, it will take another five to eight years to breed up enough seed to plant all our wheat fields.

The threat couldn't have come at a worse time. Consumption has outstripped production in six of the last seven years, and stocks are at their lowest since 1972. Wheat prices jumped 14 per cent last year.

Black stem rust itself is nothing new. It has been a major blight on wheat production since the rise of agriculture, and the Romans even prayed to a stem rust god, Robigus. It can reduce a field of ripening grain to a dead, tangled mass, and vast outbreaks regularly used to rip through wheat regions. The last to hit the North American breadbasket, in 1954, wiped out 40 per cent of the crop. In the cold war both the US and the Soviet Union stockpiled stem rust spores as a biological weapon.

After the 1954 epidemic, Borlaug began work in Mexico on developing wheat that resisted stem rust. The project grew into the International Maize and Wheat Improvement Center, known by its Spanish acronym CIMMYT. The rust-resistant, high-yielding wheat it developed banished chronic hunger in much of the world, ended stem rust outbreaks, and won Borlaug the Nobel peace prize in 1970.

Yet once again Borlaug - now 93 and fighting cancer - is leading the charge against his old enemy. When Ug99 turned up in Kenya in 2002, he sounded the alarm. "Too many years had gone by and no one was taking Ug99 seriously," he says. He blames complacency, and the dismantling of training and wheat testing programmes, after 40 years without outbreaks.

Now a Global Rust Initiative (GRI) is under way at CIMMYT. It's head, Rick Ward, blames the delay on cuts, starting in the 1980s, in CIMMYT's funding for routine monitoring and maintenance of crops and pests.

"CIMMYT was slow to detect the extent of susceptibility to Ug99 [because] it didn't have the scientific eyes and ears on the ground any more," says Chris Dowswell of CIMMYT. "Once it did, it had to start a laborious fund-raising campaign to respond."

Ward is now being promised adequate support as fears grow in rich wheat-growing countries, but meanwhile Ug99 has got worse. It was first noticed because it started appearing on wheat previously protected by a gene complex called Sr31, the backbone of stem rust resistance in most wheat farmed worldwide. Then last year it acquired the ability to defeat another widely used complex, Sr24. "Of the 50 genes we know for resistance to stem rust, only 10 work even partially against Ug99," says Ward. Those are present in less than 1 per cent of the crop.

The first line of defence is fungicide, but the poor farmers who stand to lose most from the blight generally cannot afford it, or don't have the equipment or know-how to apply it. CIMMYT is considering "fire brigade" spray teams armed with cheap, generic fungicides in poor areas. However, they will be competing with the rich for fungicide, and depending on where Ug99 strikes, stocks could be limited.

Even rich countries face problems. The US has been fighting soybean rust with fungicide ever since spores blew in on hurricane Ivan in 2004. If Ug99 arrives as well, the US could be in trouble because it doesn't make enough fungicide for both crops. Kitty Cardwell of the US Department of Agriculture says there might be enough if the US fights Ug99 the same way as it is tackling soya rust: spotting outbreaks with a fast DNA-based field test and posting the results on an interactive website (www.sbrusa.net), so farmers spray only when danger looms. Ultimately, says Ward, the only real answer "is to get new, resistant varieties out there".

CIMMYT has been working on this by taking countries' top-yielding varieties and crossing them with wheat from its seed collections that does resist Ug99. For two years now the crosses have been tested for resistance at field stations in Njoro, Kenya, and in Ethiopia, where it is safe to release Ug99 as it is already there. Resistant strains are sent back to CIMMYT in Mexico and assessed for yield and other qualities, then sent out again for further tests. Resistant lines are now being grown on 27 plots in Nepal, India, Afghanistan and Pakistan.

So far so good, but the real challenge is multiplying up enough resistant seed so that if Ug99 hits, there will be enough to plant the next crop. This takes time - and it will only happen if the new resistant varieties match or exceed existing yields. Nor is it an exact science. No one knows why wheat that looks good in Mexico might grow as well in Egypt, say, but fail in China unless it is crossed with a local variety.

There is nothing for it but to do the tests, says Ravi Singh, the GRI's chief wheat pathologist. The resistant lines must be just as good as the ones people are growing now, he says, or farmers won't use them, and government-owned seed companies that dominate the wheat industry in developing countries won't sell them, no matter what new disease the scientists say is coming.

Singh calculates that if he can get countries to devote 3 to 5 per cent of their wheat-growing area to resistant varieties, the seed harvest will be enough to plant the whole country with resistant wheat if Ug99 hits.

So it's a race, and who wins depends on what Ug99 does now. Stem rust can arrive in a new area and lurk for years before it gets the right conditions for an outbreak. "It won't suddenly explode everywhere. It will be like a moving storm," says Dowswell.

However, Ug99 has another ace up its sleeve. The spores blowing in the wind now are from the asexual stage that grows on wheat. If any blow onto the leaves of its other host, the barberry bush (Berberis vulgaris), they will change into the sexual form and swap genes with whatever other stem rusts they find. Barberry is native to west Asia. "As if it wasn't challenging enough breeding varieties that resist this thing," laments Ward.

"All I know is that what blows into Iran will not be the same as what blows out."

What's more, Ug99 will find agriculture has changed to its liking in the decades stem rust has been away. "Forty years ago most wheat wasn't irrigated and heavily fertilised," says Borlaug. Now, thanks to the Green Revolution he helped bring about, it is. That means modern wheat fields are a damper, denser thicket of stems, where dew can linger till noon - just right for fungus.

Another worry is that travel has exploded in the past 40 years. There have now been several documented cases of travellers carrying rust spores on their clothing. Some fear Ug99 will hitchhike as much as it flies - and its spread need not be innocent. New Scientist has learned that the US Department of Homeland Security met in March to discuss the possibility that someone could transport Ug99 deliberately.

Even at 93, Borlaug is looking to the long term. Eventually, scientists will have to create wheat with a wide spectrum of resistances. The genes may be hiding in other grains and grasses. "Why has rice had no rusts for millions of years?" he asks.

For now, Borlaug says, we have to rely on fungicides, wheat breeding and luck. "We're moving as fast as we can now, but we started three years too late," he says. "We'd better have some good luck. Governments think this is still small and local, but these things build up."


From issue 2598 of New Scientist magazine, 03 April 2007, page 6-7
 
Re: Scientists warn of wheat disease

Re: Scientists warn of wheat disease

Wasting precious water supplies to irrigate wheat is among the stupidest of a number of really malconceived 'technological innovations' in modern agriculture that have cost us dearly. Simple, known remedies can allow dryland farming without resort to irrigation and heavy use of fertilizers. That is the first step to correcting wheat cultivar susceptibility to blight and smut pathogens.

You cannot clone your way out of this problem - it is only going to get worse over time if changes are not effected in the next decade; this is a larger issue of purely stubborn blindness to cause and effect.

There is no use pointing to solutions, if the assorted causes aren't addressed in aggregate.
 
Re: ug99 Scientists warn of wheat disease

#2:
""Why has rice had no rusts for millions of years?" he asks."


Because apart the last 50(100) years, previously there were not any lab tampering experiments with any species ...

:yinyang:
 
Re: ug99 Scientists warn of wheat disease

Ug99 is continuing to spread and is being discussed at present in a Mexico conference. The link is to a Guardian article with updates and fairly dire quote from Norman Borlaug.

http://www.guardian.co.uk/environment/2009/mar/19/rust-fungus-global-wheat-crops

The world's leading crop scientists issued a stark warning that a deadly airborne fungus could devastate wheat harvests in poor countries and lead to famines and civil unrest over significant regions of central Asia and Africa.

Ug99 ? so called because it was first seen in Uganda in 1999 ? is a new variety of an old crop disease called "stem rust", which has already spread on the wind from Africa to Iran. It is particularly alarming because it can infect crops in just a few hours and vast clouds of invisible spores can be carried by the wind for hundreds of miles.

Scientists meeting in Mexico this week at a summit on Ug99 worry it will continue travelling east and infect major wheat growing centres in Pakistan, India and Bangladesh, which produce nearly 15% of the world's wheat and feed more than a billion of the world's poorest people. Plant breeders are now racing against time to develop new resistant wheat strains and distribute the seeds around the world.

The fungus was thought to have largely disappeared since the 1960s when original disease-resistant varieties were developed and planted.
But Ug99 has evolved to take advantage of those varieties, and it is now believed that 80-90% of all wheat varieties grown in developing countries are susceptible to the new fungus.

The Nobel prize-winner Norman Borlaug, who is credited with helping India and other countries avoid famines in the 1960s by developing high yielding crop strains, said: "This thing has immense potential for social and human destruction. It is capable of severely damaging virtually all of the world's commercial bread wheat. It is a problem that goes far beyond wheat production in developing countries. Sooner or later it will be found throughout the world, including North America, Europe, Australia and South America."

The new version of what scientists believe was one of the Biblical plagues has spread from Uganda to Kenya, and then to Ethiopia and southern Sudan. Where the spores attack, a wheat crop can be turned into a tangle of blackened and broken stems in a few days. Up to 80% yield losses were recently recorded in Kenya and Uganda, though fortunately neither of these countries wholly depends on wheat as a staple crop .

But in 2007, it jumped the Red Sea, possibly as a result of Cyclone Gonu, and is now widespread in Yemen and Iran. Wheat is a major crop in Iran, but its progress has been slowed by a long-term drought that has inhibited its growth.

"Kenya is having recurring epidemics, the situation is getting worse in southern Sudan and it is now widespread in Ethiopia," said Rick Ward, co-ordinator of the Durable Rust Resistance in Wheat project, based at Cornell university. "The likelihood is that it has already spread beyond Iran. We would be foolish to believe that other countries in central Asia, such as Afghanistan and Pakistan, are not already at risk. Places like Kazakhstan, Turkey, Ukraine are all susceptible."

Ward predicted that Ug99 would inevitably spread much further, potentially into regions where wheat is a staple crop for hundreds of millions of people. "It is a certainty that it will expand its area," he said. "It will continue to move and wherever it is present and the crops are susceptible it will potentially lead to a disaster of catastrophic proportions, which will translate into widespread food insecurity and civil unrest." Global wind models suggest the crop disease may next spread into Pakistan, Afghanistan and India.

Large wheat farmers in developed countries can buy expensive fungicides, which they must apply several times to protect their crops, but very few of the small farmers in Asia can afford the chemicals.

However, scientists at the meeting reported rapid progress in developing newly disease-resistant wheat varieties. According to plant geneticist Ravi Singh, a project leader at the International Wheat and Maize Improvement Centre in Mexico, 60 disease-resistant varieties have been developed via conventional breeding, some of which are thought to be not only resistant to Ug99, but higher-yielding than today's most popular varieties. Countries such as Bangladesh and Pakistan are already being helped to multiply resistant seeds for future harvests, he said.

But it usually takes at least five years to cross disease-resistant lines with wheat varieties adapted to local conditions and then grow enough seed to plant fields. "We are making rapid progress but it will take years to distribute enough new varieties" said Ward.


Ug99 "stem-rust" fungus

? Ug99 is resistant to the three major anti-rust genes used to protect nearly all the world's wheat.
? The fungus reproduces to release billions of identical spores, which can blow hundreds of miles in the wind
? It attacks the above-ground part of plants and unlike other strains, can cause 100% crop loss
? The US army produced wheat rust as part of its biological weapons programme in the 1960s
 
Re: ug99 Scientists warn of wheat disease

Any info on how many years after an infestation before the field can be planted and be safe from the disease?

Does it disappear when it has no wheat the attack?

.
 
Re: ug99 Scientists warn of wheat disease

Presumably it remains until all that is left are resistant strains, which are unaffected
 
Re: ug99 Scientists warn of wheat disease

Any info on how many years after an infestation before the field can be planted and be safe from the disease?

Does it disappear when it has no wheat the attack?

.

I think I would be inclined to go with Vibrant62 in that this is not going away anymore than H5N1 in birds. Now it exists nature - with or without our help- will need to find resistant strains. My concern is that when we do engineer resistance we find one solution to the problem. When nature does it she tries many options from her gene pool. This is combination therapy on the grand scale, while messy and inefficient, it is a less risky approach than monoculture.
The link below is to another Guardian article - this time from 2004. It is to do with wind borne fungal spores, I link to it as I think it helps explain why crop rotation and other attempts at disinfection would fail.
http://www.guardian.co.uk/science/2004/dec/02/science.research

"The dust blowing off Africa contributes most of some 2bn tonnes' worth shunted around the atmosphere each year "

"But Shinn was on to something. In 1996, Garriet Smith, a biologist at the University of South Carolina, was investigating the rapid deaths of Caribbean sea fans. The creatures had died of a disease called aspergillosis, but Smith was stumped because the fungus responsible for the disease, though common in African soils, couldn't thrive in seawater. It wasn't long before an explanation was found. Tests on airborne dust samples collected in the Caribbean were found to contain infectious spores of the fungus. Scientists suspect the spores had been carried on the wind from Africa, before landing on the ocean surface, sinking and infecting the sea fans. Enough had built up on the ocean floor for the disease to spread."
 
Last edited:
Re: ug99 Scientists warn of wheat disease

The world's leading crop scientists issued a stark warning that a deadly airborne fungus could devastate wheat harvests in poor countries and lead to famines and civil unrest over significant regions of central Asia and Africa.

... it can infect crops in just a few hours and vast clouds of invisible spores can be carried by the wind for hundreds of miles.

... Plant breeders are now racing against time to develop new resistant wheat strains and distribute the seeds around the world.

The fungus was thought to have largely disappeared since the 1960s when original disease-resistant varieties were developed and planted.
But Ug99 has evolved to take advantage of those varieties, and it is now believed that 80-90% of all wheat varieties grown in developing countries are susceptible to the new fungus.

The Nobel prize-winner Norman Borlaug, who is credited with helping India and other countries avoid famines in the 1960s by developing high yielding crop strains, said:

"This thing has immense potential for social and human destruction.

It is capable of severely damaging virtually all of the world's commercial bread wheat.

... Sooner or later it will be found throughout the world, including North America, Europe, Australia and South America."

The new version of what scientists believe was one of the Biblical plagues ...
...
"It is a certainty that it will expand its area," he said. "It will continue to move and wherever it is present and the crops are susceptible it will potentially lead to a disaster of catastrophic proportions, which will translate into widespread food insecurity and civil unrest."
...​
expensive fungicides, which they must apply several times to protect their crops
...
According to plant geneticist Ravi Singh, a project leader at the International Wheat and Maize Improvement Centre in Mexico, 60 disease-resistant varieties have been developed ...

But it usually takes at least five years to cross disease-resistant lines with wheat varieties adapted to local conditions and then grow enough seed to plant fields.
"We are making rapid progress but it will take years to distribute enough new varieties" said Ward.


Ug99 "stem-rust" fungus

? Ug99 is resistant to the three major anti-rust genes used to protect nearly all the world's wheat.
? The fungus reproduces to release billions of identical spores, which can blow hundreds of miles in the wind
? It attacks the above-ground part of plants and unlike other strains, can cause 100% crop loss
? The US army produced wheat rust as part of its biological weapons programme in the 1960s


Catch22, or you buy new resistant (patented) crops/pesticides, or you loose all of it.

As Vibrant wroted in #9, and JJ in #10, airborne fungal spores are an nasty thing.

The bac. anthrax? spores released exper. episodes on an island decades later freely published to be at c.w. times (beg. sixties?), seems to describe the impossibility of achieve an sterilization of the island from the spores, no matter the heavy means used.

All this seems to remember an already once cited book scenario with a nasty plant virus (grasses death).

The subject was an superesistant strain, manifesting with rusty colors and devastating the graminaces in a season.

After few years of downplaying, it brokes up everywhere, and lead to martial laws, barbarism, ...

The alternative at the begining was planting potatoes, because it can be switched to them instead of bread.

Generaly, the taste, the local grow resistance, and the renewable seeding of old plant genetic varieties were superior to the after chimerized ones, but they are mainly all vanished and replaced with corp. selled one season/year seeds. Now this fungus will forced further such events.
 
Re: ug99 Scientists warn of wheat disease

One way to stop it's spread might be to let wheat fields lie fallow (from wheat) for a couple of years. If the fungus couldn't replicate, there would be nothing to spread on the winds, etc., Any country not planting wheat would need to import all it's wheat. There would be an incentive for the other wheat-growing nations to cooperate...to protect their own future crops. The concept is similar to culling all poultry for 2 km around a HPAI infected flock.

.
 
Re: ug99 Scientists warn of wheat disease

One way to stop it's spread might be to let wheat fields lie fallow (from wheat) for a couple of years. If the fungus couldn't replicate, there would be nothing to spread on the winds, etc., Any country not planting wheat would need to import all it's wheat. There would be an incentive for the other wheat-growing nations to cooperate...to protect their own future crops. The concept is similar to culling all poultry for 2 km around a HPAI infected flock.

.

Even if this can be achieved and funded, the previously already existant spores can be dusted elsewhere.

Also, if another fungus as JJ wrote previously, can be transported from Africa to the Carib., than this one could remains and be transported in the dust streams everywhere also.

The main point are the strong survival and shielding characteristic of the spores, which could not be easy distroyed, and so the fungal illness could be disseminated further in time on after healthy plants.
 
Re: ug99 Scientists warn of wheat disease

Letting fields lie fallow for a specified number of years to thwart other diseases is already practiced.

Utilizing this strategy would at least buy time to develop and grow sufficient seed stock of resistant strains. It can years to grow enough resistant seeds to meet the demand.

.
 
Re: ug99 Scientists warn of wheat disease

Letting fields lie fallow for a specified number of years to thwart other diseases is already practiced.

Utilizing this strategy would at least buy time to develop and grow sufficient seed stock of resistant strains. It can years to grow enough resistant seeds to meet the demand.

.

Maybe, but probably as for the banana illness things will go inertialy, until it would became an unmissed treat, and than it would switch to gmo.

Or, they can switch now on "potato" plantations ...

If the afected fields is the population main source of food, it can't be let unplanted.
 
A 'time bomb' for world wheat crop

A 'time bomb' for world wheat crop

Source: http://www.latimes.com/news/nationworld/nation/la-sci-wheat-rust14-2009jun14,0,365785,full.story


A 'time bomb' for world wheat crop
The Ug99 fungus, called stem rust, could wipe out more than 80% of the world's wheat as it spreads from Africa, scientists fear. The race is on to breed resistant plants before it reaches the U.S.

By Karen Kaplan
June 14, 2009
The spores arrived from Kenya on dried, infected leaves ensconced in layers of envelopes.

Working inside a bio-secure greenhouse outfitted with motion detectors and surveillance cameras, government scientists at the Cereal Disease Laboratory in St. Paul, Minn., suspended the fungal spores in a light mineral oil and sprayed them onto thousands of healthy wheat plants. After two weeks, the stalks were covered with deadly reddish blisters characteristic of the scourge known as Ug99.

Nearly all the plants were goners.

Crop scientists fear the Ug99 fungus could wipe out more than 80% of worldwide wheat crops as it spreads from eastern Africa. It has already jumped the Red Sea and traveled as far as Iran. Experts say it is poised to enter the breadbasket of northern India and Pakistan, and the wind will inevitably carry it to Russia, China and even North America -- if it doesn't hitch a ride with people first.

"It's a time bomb," said Jim Peterson, a professor of wheat breeding and genetics at Oregon State University in Corvallis. "It moves in the air, it can move in clothing on an airplane. We know it's going to be here. It's a matter of how long it's going to take."

Though most Americans have never heard of it, Ug99 -- a type of fungus called stem rust because it produces reddish-brown flakes on plant stalks -- is the No. 1 threat to the world's most widely grown crop.

The International Maize and Wheat Improvement Center in Mexico estimates that 19% of the world's wheat, which provides food for 1 billion people in Asia and Africa, is in imminent danger. American plant breeders say $10 billion worth of wheat would be destroyed if the fungus suddenly made its way to U.S. fields.

Fear that the fungus will cause widespread damage has caused short-term price spikes on world wheat markets. Famine has been averted thus far, but experts say it's only a matter of time.

"A significant humanitarian crisis is inevitable," said Rick Ward, the coordinator of the Durable Rust Resistance in Wheat project at Cornell University in Ithaca, N.Y.

The solution is to develop new wheat varieties that are immune to Ug99. That's much easier said than done.

After several years of feverish work, scientists have identified a mere half-dozen genes that are immediately useful for protecting wheat from Ug99. Incorporating them into crops using conventional breeding techniques is a nine- to 12-year process that has only just begun. And that process will have to be repeated for each of the thousands of wheat varieties that is specially adapted to a particular region and climate.

"All the seed needs to change in the next few years," said Ronnie Coffman, a plant breeder who heads the Durable Rust Resistance in Wheat project. "It's really an enormous undertaking."



Ancient adversary

Farmers have been battling stem rust for as long as they have grown wheat. The fungus' ancestors infected wild grasses for millions of years before people began cultivating them for food, said Jorge Dubcovsky, professor of genetics and plant breeding at UC Davis.

"The pathogen keeps mutating and evolving," he said. "It's one of our biblical pests. This is not a small enemy."

When a spore lands on a green wheat plant, it forms a pustule that invades the outer layers of the stalk. The pustule hijacks the plant's water and nutrients and diverts them to produce new rust spores instead of grain. Within two weeks of an initial attack, there can be millions of pustules in a 2.5-acre patch of land.

Wheat plants that can recognize a specific chemical produced by stem rust can mount a defense against the fungus. But the rust is able to mutate, evade the plant's immune system and resume its spread.

Stem rust destroyed more than 20% of U.S. wheat crops several times between 1917 and 1935, and losses reached nearly 9% twice in the 1950s. The last major outbreak, in 1962, destroyed 5.2% of the U.S. crop, according to Peterson, who chairs the National Wheat Improvement Committee.

The fungus was kept at bay for years by breeders who slowly and methodically incorporated different combinations of six major stem rust resistance genes into various varieties of wheat. The breeders thought it unlikely that the rust could overcome clusters of those genes at the same time.

After several outbreak-free decades, it seemed that stem rust had been defeated for good. Scientists switched to other topics, and the hunt for new resistance genes practically slowed to a crawl.

A new strain of stem rust was identified on a wheat farm in Uganda in 1999.

"It didn't draw a lot of attention, frankly," said Marty Carson, research leader at the Cereal Disease Laboratory, part of the U.S. Department of Agriculture. "There's very little wheat grown in Uganda."

East Africa is a natural hot spot for stem rust. Weather conditions allow farmers to grow wheat year-round, so rust spores can always find a susceptible host. Some of the wheat is grown as high as 7,000 feet above sea level, where intense solar radiation helps the fungus mutate.

The highlands are also home to barberry bushes, the only plant on which stem rust is known to reproduce through sexual recombination. That genetic shuffling provides a golden opportunity for the fungus to evolve into a deadly strain.

Within a few years, Ug99 -- named for the country and year it was identified -- had devastated farms in neighboring Kenya, where much of the wheat is grown on large-scale farms that have so far been able to absorb the blow. Then it moved north to Ethiopia, Sudan and Yemen, putting more small farms at risk. Those that can afford it are trying to make do with fungicides, but that's too cumbersome and expensive to be a long-term solution, Ward said.

To make matters worse, the fungus is becoming more virulent as it spreads. Scientists discovered a Ug99 variant in 2006 that can defeat Sr24, a resistance gene that protects Great Plains wheat.

Last year, another variant was found with immunity to Sr36, a gene that safeguards Eastern wheat.

Should those variants make their way to U.S. fields any time soon, scientists would be hard-pressed to protect American wheat crops.



A laborious task

Now the pressure is on to develop new wheat varieties that are impervious to Ug99. Hundreds of varieties will need to be upgraded in the U.S. alone.

"You can't just breed it into one or two major varieties and expect to solve the problem," Peterson said. "You have to reinvent this wheel at almost a local level."

The first step is to identify Ug99 resistance genes by finding wheat plants that can withstand the deadly fungus.

Roughly 16,000 wheat varieties and other plants have been tested in the cereal disease lab over the last four years. The tests were conducted between Dec. 1 and the end of February, when the Minnesota weather is so frigid that escaping spores would quickly perish, Carson said.

These and similar efforts at a research station in Kenya have turned up only a handful of promising resistance genes, which crop breeders such as Brett Carver at Oklahoma State University in Stillwater are trying to import into vulnerable strains of wheat.

Each year, Carver crosses hundreds of plants in a greenhouse to produce as many as 50,000 candidate strains. Over the next four years, those are winnowed down, and the most promising 2,000 are planted in the field.

Only the hardiest strains are replanted each year, until the 12-year process results in a single new variety with dozens of valuable traits, such as the ability to withstand drought and make fluffy bread.

The oldest of the plants Carver bred for Ug99 resistance are only 3 years old, but one of the strains has been planted in the field already in case the fungus hitches a quick ride to the U.S. on an airplane or in a shipping container.

"In the absence of stem rust, it would not be the highest-yielding wheat," he said. "In the presence of stem rust, it would be the only thing that would survive."

karen.kaplan@latimes.com
 
Re: ug99 Scientists warn of wheat disease

Bayer: fungicides proven control of Ug99 in wheat

Aug 15, 2008 12:00 PM

Ug99, an aggressive race of the black stem rust fungus (Puccinia graminis) that has been spreading across Africa and the Middle East, has the potential to devastate wheat crops. Field trials conducted in Kenya by Bayer CropScience have successfully demonstrated that Ug99 can be effectively controlled by the cereal fungicide Folicur, the company said.

Folicur is already available to farmers in Kenya and Iran to combat stem rust. Bayer CropScience plans to register further fungicides based on Folicur in those two countries to control the disease.

That means growers in the United States also have the means to protect their fields, should the disease find its way across the ocean, says Randy Myers, fungicide portfolio manager for Bayer CropScience in the United States.

?There are a number of fungicides in our portfolio that are proven to control Ug99 in multi-year field trials,? says Myers. ?Although it can be devastating to an untreated wheat field, U.S. wheat growers would be amply prepared for Ug99 with the fungicides available.?

Field trials conducted by Bayer CropScience have successfully demonstrated this unique race of rust can be effectively controlled by several of the company's established cereal-specific fungicides including Folicur, Stratego and the recently registered fungicide Prosaro.?

In 1999, African scientists made a discovery in Uganda that had serious consequences. Many wheat stocks were infested by a parasitic fungus that permanently weakened the plants, leading to a total loss of the harvest. The causative agent was a new, extremely aggressive variant of the black rust fungus (Puccinia graminis).

Scientists named this new race of stem rust ?Ug99? after the country and year in which it was first observed. ?It can be recognized from the dark orange to dark brown lateral pustules it forms on the stalks and leaf sheaths of the plants,? said Stefan Dutzmann, product development manager cereal fungicides at Bayer CropScience, describing the disease symptoms.

Since then, the pathogen has continued to spread. It has been reported in Kenya, Ethiopia, Yemen and Iran. No end to its proliferation is in sight. Fears that fungal spores may already have reached Pakistan have not been confirmed to date. From there, it is not far to the fields of India, the world's largest producer of wheat after Europe and China.

In the long-term, warmer regions such as Mexico and North America may also be at risk if fungal spores are introduced there, for example, by travelers.

The last large-scale outbreak of black stem rust in 1954 destroyed approximately 40 percent of the U.S. wheat harvest. It was not until many years later that resistant varieties of wheat were developed that cannot be harmed by black rust.
 
Re: ug99 Scientists warn of wheat disease

Which farmers can afford to use the fungicide? Will governments fund application to stop the rust from spreading? Below is an excerpt from a presentation on fungicides:

When do fungicides pay?
&#56256;&#56452; Commodity price?
&#56256;&#56452; Fungicide application $12/acre
&#56256;&#56452; Wheat $3.00 bu need 4 bu/A increase in yield
to break even
&#56256;&#56452; Durum $6.00 bu need 2 bu/A increase in yield
to break even​

http://www.ag.ndsu.edu/smgrains/Fungicides when do they pay Kent.pdf

another page in the same source, quotes Folicur price at $4 to $7/acre and others (sometimes used in combination) at $12 to $15/acre.

Can farmers in underdeveloped countries afford this? However, if wheat supplies decrease dramatically, I suppose prices would increase and that would help offset the fungicide cost.

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Re: ug99 Scientists warn of wheat disease

There are only 5 articles related to ug99 in pubmed.

Other than Bayer, I haven't found a company looking into this problem.

Scarry !
 
Re: ug99 Scientists warn of wheat disease

Ug99 reseach:

USDA - ARS (Ag research):

Research Project: Identifying Resistance to Ug99 in Wheat and Barley, and Phenotyping Mapping Populations
Location: Cereal Disease Laboratory

Project Number: 3640-21220-020-14
Project Type: Specific Cooperative Agreement


Start Date: Sep 26, 2008
End Date: Sep 30, 2011


Objective:
Identifying sources of resistance to stem rust in barley and wheat, investigating genetics of resistance, and helping breeding programs to incorporate resistance into breeding germplasm.
http://www.ars.usda.gov/research/projects/projects.htm?ACCN_NO=414420


Research Project: Combining Yellow Dwarf Virus, Fusarium Head Blight, Ug99 Stem and Stripe Rust Resistance Genes in Soft Winter Wheat Adapted to Eastern Usa
Location: New Crops and Processing Technology Research

Project Number: 3620-43000-006-04
Project Type: Specific Cooperative Agreement


Start Date: Jul 28, 2008
End Date: Jul 14, 2010


Objective:
1) Move Bdv2 from wheat chromosome 7D to chromosome 7A or 7B. 2) Combine Bdv3 and Qfhs.pur-7E. 3) Characterize F2:3 families from the cross PI410996(resistant) x P9762(susceptible) to determine the inheritance of resistance to stem rust and map the resistance. 4) Characterize F2:3 families from the cross PI163050(resistant) x P9762(susceptible) to characterize and map resistance to stripe rust, and 5) Develop soft winter wheat cultivars that have Bdv2, Bdv3, Qfhs.pur-7EL, and resistance to stem rust and stripe rust.
http://www.ars.usda.gov/research/projects/projects.htm?ACCN_NO=414250

I found several interesting articles when I googled "Ug99 research projects"

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