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暴露的鸟粪:有氧条件对蝙蝠粪便微生物群的影响。

Guano exposed: Impact of aerobic conditions on bat fecal microbiota.

作者信息

Fofanov Viacheslav Y, Furstenau Tara N, Sanchez Daniel, Hepp Crystal M, Cocking Jill, Sobek Colin, Pagel Nicole, Walker Faith, Chambers Carol L

机构信息

School of Informatics, Computing, and Cyber Systems Northern Arizona University Flagstaff Arizona.

Pathogen and Microbiome Institute Northern Arizona University Flagstaff Arizona.

出版信息

Ecol Evol. 2018 Apr 27;8(11):5563-5574. doi: 10.1002/ece3.4084. eCollection 2018 Jun.

Abstract

Bats and their associated guano microbiota provide important terrestrial and subterranean ecosystem services and serve as a reservoir for a wide range of epizootic and zoonotic diseases. Unfortunately, large-scale studies of bats and their guano microbiotas are limited by the time and cost of sample collection, which requires specially trained individuals to work at night to capture bats when they are most active. Indirectly surveying bat gut microbiota through guano deposits could be a more cost-effective alternative, but it must first be established whether the postdefecation exposure to an aerobic environment has a large impact on the guano microbial community. A number of recent studies on mammalian feces have shown that the impact of aerobic exposure is highly species specific; therefore, it is difficult to predict how exposure will affect the bat guano microbiota without empirical data. In our study, we collected fresh guano samples from 24 individuals of 10 bat species that are common throughout the arid environments of the American southwest and subjected the samples to 0, 1, and 12 hr of exposure. The biodiversity decreased rapidly after the shift from an anaerobic to an aerobic environment-much faster than previously reported in mammalian species. However, the relative composition of the core guano microbiota remained stable and, using highly sensitive targeted PCR methods, we found that pathogens present in the original, non-exposed samples could still be recovered after 12 hr of exposure. These results suggest that with careful sample analysis protocols, a more efficient passive collection strategy is feasible; for example, guano could be collected on tarps placed near the roost entrance. Such passive collection methods would greatly reduce the cost of sample collection by allowing more sites or roosts to be surveyed with a fraction of trained personnel, time, and effort investments needed.

摘要

蝙蝠及其相关的粪便微生物群为陆地和地下生态系统提供重要服务,并充当多种动物流行病和人畜共患病的宿主。不幸的是,对蝙蝠及其粪便微生物群的大规模研究受到样本采集时间和成本的限制,这需要经过专门训练的人员在夜间工作,以便在蝙蝠最活跃时捕获它们。通过粪便沉积物间接调查蝙蝠肠道微生物群可能是一种更具成本效益的替代方法,但首先必须确定排便后暴露于有氧环境是否会对粪便微生物群落产生重大影响。最近一些关于哺乳动物粪便的研究表明,有氧暴露的影响具有高度的物种特异性;因此,在没有经验数据的情况下,很难预测暴露将如何影响蝙蝠粪便微生物群。在我们的研究中,我们从美国西南部干旱环境中常见的10种蝙蝠的24个个体中收集了新鲜粪便样本,并将样本暴露0、1和12小时。从厌氧环境转变为有氧环境后,生物多样性迅速下降,比之前在哺乳动物物种中报道的速度要快得多。然而,核心粪便微生物群的相对组成保持稳定,并且使用高度敏感的靶向PCR方法,我们发现原始未暴露样本中存在的病原体在暴露12小时后仍可被检测到。这些结果表明,通过仔细的样本分析方案,一种更有效的被动收集策略是可行的;例如,可以在栖息入口附近放置的防水布上收集粪便。这种被动收集方法将大大降低样本收集成本,因为只需投入一小部分训练有素的人员、时间和精力,就可以对更多的地点或栖息地进行调查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09c2/6010783/595d6e5f3e7d/ECE3-8-5563-g001.jpg

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