The effects of atrazine on the microbiome of the eastern oyster: Crassostrea virginica

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作者
Adrian Britt
Megan Bernini
Benjamin McSweeney
Sony Dalapati
Sophia Duchin
Kathryn Cavanna
Nicolette Santos
Grace Donovan
Katherine O’Byrne
Sarah Noyes
Manuela Romero
Kavery Nivana Theethira Poonacha
Tara Scully
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[1] The George Washington University,
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Scientific Reports | / 10卷
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摘要
Long-standing evidence supports the importance of maintaining healthy populations of microbiota for the survival, homeostasis, and complete development of marine mollusks. However, the long-term ecological effects of agricultural runoff on these populations remains largely unknown. Atrazine (6-Chloro-n-ethyl-n′-(1-methylethyl)-triazine-2,4-diamine), a prevalent herbicide in the United States, is often used along tributaries of the Chesapeake Bay where oyster breeding programs are concentrated. To investigate any potential effects atrazine maybe having on mollusk-prokaryote interactions, we used 16S rRNA gene amplicons to evaluate how microbial compositions shift in response to exposure of environmentally relevant concentrations of atrazine previously found within the Chesapeake Bay. The dominant bacterial genera found within all groups included those belonging to Pseudoalteromonas, Burkholderia, Bacteroides, Lactobacillis, Acetobacter, Allobaculum, Ruminococcus, and Nocardia. Our results support previously published findings of a possible core microbial community in Crassostrea virginica. We also report a novel finding: oysters exposed to atrazine concentrations as low as 3 µg/L saw a significant loss of a key mutualistic microbial species and a subsequent colonization of a pathogenic bacteria Nocardia. We conclude that exposure to atrazine in the Chesapeake Bay may be contributing to a significant shift in the microbiomes of juvenile oysters that reduces fitness and impedes natural and artificial repopulation of the oyster species within the Bay.
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[41]  
Booth W(2003) gen. nov. and transfer of seven species of the genus Pseudomonas homology group II to the new genus, with the type species Annu. Rev. Ecol. Evol. Syst. 34 517-622
[42]  
Shimmon R(1960) (Palleroni and Holmes 1981) comb. Nov. Appl. Microbiol. 8 104-1143
[43]  
Gibson LF(2002)The first engagement of partners in the Microb. Ecol. 44 365-806
[44]  
Brown C(2016)– Environ. Microbiol. 18 970-569
[45]  
Lim HJ(2012) symbiosis is a two-step process initiated by a few environmental symbiont cells PLoS ONE 7 e51475-16
[46]  
Kapareiko D(2012)Eutrophication of Chesapeake Bay: Historical trends and ecological interactions Anaerobe 18 200-43
[47]  
Schott EJ(2010)Evidence for the involvement of pathogenic bacteria in summer mortalities of the Pacific oyster Nature 464 59-1854
[48]  
Hanif A(2010)Burkholderia, a genus rich in plant-associated nitrogen fixers with wide environmental and geographic distribution Curr. Microbiol. 61 69-47
[49]  
Wikfors GH(1999)Changes in the composition and diversity of the bacterial microbiota associated with oysters ( Int. Microbiol. 2 259-1152
[50]  
Karim M(2006), J. Appl. Microbiol. 100 664-undefined