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本文引用的文献

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Worldwide occurrence of haemoplasmas in wildlife: Insights into the patterns of infection, transmission, pathology and zoonotic potential.野生动物中血巴尔通体属的全球流行情况:对感染、传播、病理学和人畜共患病潜力模式的了解。
Transbound Emerg Dis. 2021 Nov;68(6):3236-3256. doi: 10.1111/tbed.13932. Epub 2020 Dec 14.
2
Mercury bioaccumulation in tropical bats from a region of active artisanal and small-scale gold mining.热带地区活跃的手工和小规模采金区的蝙蝠体内汞的生物累积。
Ecotoxicology. 2020 Sep;29(7):1032-1042. doi: 10.1007/s10646-020-02195-3. Epub 2020 Apr 22.
3
Ecological and evolutionary drivers of haemoplasma infection and bacterial genotype sharing in a Neotropical bat community.生态和进化驱动因素对新热带蝙蝠群落中血巴尔通体感染和细菌基因型共享的影响。
Mol Ecol. 2020 Apr;29(8):1534-1549. doi: 10.1111/mec.15422. Epub 2020 Apr 21.
4
Macroimmunology: The drivers and consequences of spatial patterns in wildlife immune defence.宏观免疫学:野生动物免疫防御空间模式的驱动因素和后果。
J Anim Ecol. 2020 Apr;89(4):972-995. doi: 10.1111/1365-2656.13166. Epub 2020 Jan 26.
5
Relationship Between Methylmercury Contamination and Proportion of Aquatic and Terrestrial Prey in Diets of Shoreline Spiders.沿海蜘蛛的食物中水生和陆生猎物的比例与甲基汞污染之间的关系。
Environ Toxicol Chem. 2019 Nov;38(11):2503-2508. doi: 10.1002/etc.4579. Epub 2019 Oct 3.
6
Cross-species pathogen spillover across ecosystem boundaries: mechanisms and theory.跨物种病原体溢出跨越生态系统边界:机制和理论。
Philos Trans R Soc Lond B Biol Sci. 2019 Sep 30;374(1782):20180344. doi: 10.1098/rstb.2018.0344. Epub 2019 Aug 12.
7
Genetic diversity, infection prevalence, and possible transmission routes of Bartonella spp. in vampire bats.吸血蝙蝠中巴尔通体属的遗传多样性、感染率和可能的传播途径。
PLoS Negl Trop Dis. 2018 Sep 27;12(9):e0006786. doi: 10.1371/journal.pntd.0006786. eCollection 2018 Sep.
8
Using noninvasive metagenomics to characterize viral communities from wildlife.利用非侵入性宏基因组学来描述野生动物中的病毒群落。
Mol Ecol Resour. 2019 Jan;19(1):128-143. doi: 10.1111/1755-0998.12946. Epub 2018 Oct 19.
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Chronic lead intoxication decreases intestinal helminth species richness and infection intensity in mallards (Anas platyrhynchos).慢性铅中毒会降低野鸭(Anas platyrhynchos)肠道寄生虫的物种丰富度和感染强度。
Sci Total Environ. 2018 Dec 10;644:151-160. doi: 10.1016/j.scitotenv.2018.06.297. Epub 2018 Jul 4.
10
2016 Guidelines of the American Society of Mammalogists for the use of wild mammals in research and education.美国哺乳动物学会2016年关于在研究和教育中使用野生哺乳动物的指南。
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解析新热带蝙蝠群落中汞、免疫与感染之间的相互作用。

Disentangling interactions among mercury, immunity and infection in a Neotropical bat community.

作者信息

Becker Daniel J, Speer Kelly A, Korstian Jennifer M, Volokhov Dmitriy V, Droke Hannah F, Brown Alexis M, Baijnauth Catherene L, Padgett-Stewart Ticha, Broders Hugh G, Plowright Raina K, Rainwater Thomas R, Fenton M Brock, Simmons Nancy B, Chumchal Matthew M

机构信息

Department of Biology, University of Oklahoma, Norman, OK, USA.

Richard Gilder Graduate School, American Museum of Natural History, New York, NY, USA.

出版信息

J Appl Ecol. 2021 Apr;58(4):879-889. doi: 10.1111/1365-2664.13809. Epub 2020 Dec 7.

DOI:10.1111/1365-2664.13809
PMID:33911313
原文链接:
https://pmc.ncbi.nlm.nih.gov/articles/PMC8078557/
Abstract
  1. Contaminants such as mercury are pervasive and can have immunosuppressive effects on wildlife. Impaired immunity could be important for forecasting pathogen spillover, as many land-use changes that generate mercury contamination also bring wildlife into close contact with humans and domestic animals. However, the interactions among contaminants, immunity and infection are difficult to study in natural systems, and empirical tests of possible directional relationships remain rare. 2. We capitalized on extreme mercury variation in a diverse bat community in Belize to test association among contaminants, immunity and infection. By comparing a previous dataset of bats sampled in 2014 with new data from 2017, representing a period of rapid agricultural land conversion, we first confirmed bat species more reliant on aquatic prey had higher fur mercury. Bats in the agricultural habitat also had higher mercury in recent years. We then tested covariation between mercury and cellular immunity and determined if such relationships mediated associations between mercury and bacterial pathogens. As bat ecology can dictate exposure to mercury and pathogens, we also assessed species-specific patterns in mercury-infection relationships. 3. Across the bat community, individuals with higher mercury had fewer neutrophils but not lymphocytes, suggesting stronger associations with innate immunity. However, the odds of infection for haemoplasmas and spp. were generally lowest in bats with high mercury, and relationships between mercury and immunity did not mediate infection patterns. Mercury also showed species- and clade-specific relationships with infection, being associated with especially low odds for haemoplasmas in and For spp., mercury was associated with particularly low odds of infection in the genus but high odds in the subfamily Stenodermatinae. 4. Lower general infection risk in bats with high mercury despite weaker innate defense suggests contaminant-driven loss of pathogen habitat (i.e. anemia) or vector mortality as possible causes. Greater attention to these potential pathways could help disentangle relationships among contaminants, immunity and infection in anthropogenic habitats and help forecast disease risks. Our results also suggest that contaminants may increase infection risk in some taxa but not others, emphasizing the importance of considering surveillance and management at different phylogenetic scales.
摘要
  1. 汞等污染物广泛存在,会对野生动物产生免疫抑制作用。免疫功能受损对于预测病原体溢出可能很重要,因为许多导致汞污染的土地利用变化也使野生动物与人类和家畜密切接触。然而,在自然系统中研究污染物、免疫和感染之间的相互作用很困难,关于可能的方向性关联的实证测试仍然很少。2. 我们利用伯利兹一个多样化蝙蝠群落中汞含量的极端差异,来测试污染物、免疫和感染之间的关联。通过将2014年采样的蝙蝠先前数据集与2017年的新数据进行比较,这两个时期代表了农业用地快速转变的阶段,我们首先证实,更依赖水生猎物的蝙蝠物种其皮毛汞含量更高。近年来,农业栖息地中的蝙蝠汞含量也更高。然后,我们测试了汞与细胞免疫之间的协变关系,并确定这种关系是否介导了汞与细菌病原体之间的关联。由于蝙蝠生态学可以决定对汞和病原体的接触,我们还评估了汞-感染关系中的物种特异性模式。3. 在整个蝙蝠群落中,汞含量较高的个体中性粒细胞较少,但淋巴细胞数量没有减少,这表明与先天免疫的关联更强。然而,血巴尔通体属和其他物种的感染几率在汞含量高的蝙蝠中通常最低,并且汞与免疫之间的关系并没有介导感染模式。汞还显示出与感染的物种和分支特异性关系,在叶鼻蝠属和食果蝠属中,汞与血巴尔通体属的感染几率特别低有关。对于其他物种,汞与叶口蝠属的感染几率特别低有关,但在狭叶蝠亚科中感染几率很高。4. 尽管先天防御较弱,但汞含量高的蝙蝠总体感染风险较低,这表明污染物导致病原体栖息地丧失(即贫血)或媒介死亡可能是原因。更多地关注这些潜在途径有助于理清人为栖息地中污染物、免疫和感染之间的关系,并有助于预测疾病风险。我们的结果还表明,污染物可能会增加某些分类群的感染风险,但不会增加其他分类群的感染风险,这强调了在不同系统发育尺度上考虑监测和管理的重要性。