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PLoS Comput Biol. The Role of Environmental Transmission in Recurrent Avian Influenza Epidemics.

Giuseppe

Emeritus
Abstract. The Role of Environmental Transmission in Recurrent Avian Influenza Epidemics.

The Role of Environmental Transmission in Recurrent Avian Influenza Epidemics

Romulus Breban1 *, John M. Drake1, David E. Stallknecht 2, Pejman Rohani 1,3,4
1 Odum School of Ecology, University of Georgia, Athens, Georgia, United States of America,
2 Southeastern Cooperative Wildlife Disease Study, University of Georgia, Athens, Georgia, United States of America,
3 Center for Tropical and Emerging Global Diseases, University of Georgia, Athens, Georgia, United States of America,
4 Fogarty International Center, National Institutes of Health, Bethesda, Maryland, United States of America


Abstract

Avian influenza virus (AIV) persists in North American wild waterfowl, exhibiting major outbreaks every 2?4 years. Attempts to explain the patterns of periodicity and persistence using simple direct transmission models are unsuccessful.
Motivated by empirical evidence, we examine the contribution of an overlooked AIV transmission mode: environmental transmission.
It is known that infectious birds shed large concentrations of virions in the environment, where virions may persist for a long time. We thus propose that, in addition to direct fecal/oral transmission, birds may become infected by ingesting virions that have long persisted in the environment.
We design a new host?pathogen model that combines within-season transmission dynamics, between-season migration and reproduction, and environmental variation.
Analysis of the model yields three major results.
First, environmental transmission provides a persistence mechanism within small communities where epidemics cannot be sustained by direct transmission only (i.e., communities smaller than the critical community size).
Second, environmental transmission offers a parsimonious explanation of the 2?4 year periodicity of avian influenza epidemics.
Third, very low levels of environmental transmission (i.e., few cases per year) are sufficient for avian influenza to persist in populations where it would otherwise vanish.

Citation: Breban R, Drake JM, Stallknecht DE, Rohani P (2009) The Role of Environmental Transmission in Recurrent Avian Influenza Epidemics. PLoS Comput Biol 5(4): e1000346. doi:10.1371/journal.pcbi.1000346

Editor: Christophe Fraser, Imperial College London, United Kingdom

Received: November 3, 2008; Accepted: March 2, 2009; Published: April 10, 2009

Copyright: ? 2009 Breban et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

Funding: RB, DES, and PR were supported by a grant from the Centers for Disease Control and Prevention (5U19Cl000401). JMD was supported by the National Science Foundation (EF-0723601) and the James S. McDonnell Foundation. The authors declare that they do not have any financial interest. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.

Competing interests: The authors have declared that no competing interests exist.

* E-mail: breban@gmail.com
-
<cite cite="http://www.ploscompbiol.org/article/info:doi/10.1371/journal.pcbi.1000346#abstract0">PLoS Computational Biology: The Role of Environmental Transmission in Recurrent Avian Influenza Epidemics</cite>
 
Re: PLoS Comput Biol. The Role of Environmental Transmission in Recurrent Avian Influenza Epidemics.

Excerpts from above full free PDF article on PLOS:

(...)
''Further work is also needed to explore our modeling assumption
that host populations form (nearly) closed systems. Empirical
evidence suggests that the interaction between the Eurasian and
American clades of migratory birds is so small (despite overlap in
their Alaskan migratory routes) that their exchange of full genome
influenza viruses has yet to be documented [54]. While this
observation supports our modeling assumption, the data on the
smaller scale interaction between flocks of migratory birds within
the American continent is insufficient for validation. Alternate
modeling assumptions could be explored theoretically.
Using mathematical modeling, we have investigated the role of
environmental transmission for the pattern and persistence of
avian influenza in wild waterfowl and demonstrated that indeed
environmental transmission is a fundamental ingredient for the
modeling of this epidemic. The persistence mechanism induced by
enviromental transmission raises novel problems of epidemic
control since traditional strategies may prove ineffective in the
presence of an environmental viral reservoir [55]. Thus,
environmental transmission remains a topic of increasing interest
in theoretical epidemiology.''

(...)
 
Re: PLoS Comput Biol. The Role of Environmental Transmission in Recurrent Avian Influenza Epidemics.

AVIAN INFLUENZA, POULTRY VS MIGRATORY BIRDS (02): ENVIRONMENTAL TRANSMISSION
****************************************************************************
A ProMED-mail post
<http://www.promedmail.org>
ProMED-mail is a program of the
International Society for Infectious Diseases
<http://www.isid.org>

Date: 14 Apr 2009
Source: PLoS Computational Biology [edited]
<http://www.ploscompbiol.org/article/info:doi/10.1371/journal.pcbi.1000346>


The Role of Environmental Transmission in Recurrent Avian Influenza Epidemics
-----------------------------------------------------------------------------
Abstract
--------
Avian influenza virus (AIV) persists in North American wild
waterfowl, exhibiting major outbreaks every 2-4 years. Attempts to
explain the patterns of periodicity and persistence using simple
direct transmission models are unsuccessful. Motivated by empirical
evidence, we examine the contribution of an overlooked AIV
transmission mode: environmental transmission. It is known that
infectious birds shed large concentrations of virions in the
environment, where virions may persist for a long time. We thus
propose that, in addition to direct fecal/oral transmission, birds
may become infected by ingesting virions that have long persisted in
the environment. We design a new host-pathogen model that combines
within-season transmission dynamics, between-season migration and
reproduction, and environmental variation. Analysis of the model
yields 3 major results. 1st, environmental transmission provides a
persistence mechanism within small communities where epidemics cannot
be sustained by direct transmission only (i.e., communities smaller
than the critical community size). 2nd, environmental transmission
offers a parsimonious explanation of the 2-4 year periodicity of
avian influenza epidemics. 3rd, very low levels of environmental
transmission (i.e., few cases per year) are sufficient for avian
influenza to persist in populations where it would otherwise vanish.

Citation: Breban R, Drake JM, Stallknecht DE, Rohani P (2009) The
Role of Environmental Transmission in Recurrent Avian Influenza
Epidemics. PLoS Comput Biol 5(4): e1000346.
doi:10.1371/journal.pcbi.1000346

--
Communicated by:
ProMEDmail Rapporteur Mary Marshall

[It is nice to see a past LSU graduate student, David Stallknecht,
returning to the topic of his dissertation (1989) which was on the
shedding of LPAI wild viruses by migrating ducks. After presenting an
analysis of the very large number of isolates he had obtained by
cloacal swabbing of ducks shot by hunters, he was asked how long did
the virus survive in the fresh and brackish waters where these birds
fed and slept. To cut a long story short, at the right water salinity
and temperature they were immortal. The moral of this story is beware
of simple questions posed by your professors. The above paper is
worth reading in its entirety. - Mod.MHJ]

[see also:
Avian influenza, poultry vs migratory birds: China (HK) 20090308.0958
2008
-----
Avian influenza, poultry vs migratory birds (12): LPAI shedding 20081203.3802
Avian influenza, poultry vs migratory birds (11): India (Assam) 20081130.3765
Avian influenza, poultry vs migratory birds (10): Pakistan 20081117.3629
Avian influenza, poultry vs migratory birds (09): northern pintails
20081028.3406
Avian influenza, poultry vs migratory birds (08): swans 20080814.2517
Avian influenza, poultry vs migratory birds (07): Canada 20080613.1876
Avian influenza, poultry vs migratory birds (06): UK 20080611.1840
Avian influenza, poultry vs migratory birds (05): Chinese origin 20080319.1063
Avian influenza, poultry vs migratory birds (04) 20080217.0635
Avian influenza, poultry vs migratory birds (03) 20080212.0557
Avian influenza, poultry vs migratory birds (02): Turkey, India 20080205.0462
Avian influenza, poultry vs migratory birds: Turkey (Zonguldak) 20080126.0325
and 69 more.]
....................mm/lm/mhj/ejp/lm

</pre>
 
Re: PLoS Comput Biol. The Role of Environmental Transmission in Recurrent Avian Influenza Epidemics.

influenza viruses mutate while replicating.
They developed a rather constant rate of getting new
mutations per time.

When they survive for longer times in the environment,
then they don't replicate, don't acquire new mutations
during this period and this can be detected.

It doesn't seem to play a big role in influenza evolution,
most flu-viruses still have the calculated mutation rate.
 
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