School of Life Sciences, University of KwaZulu-Natal, Durban, South Africa.
Unit for Environmental Sciences and Management, North-West University, Potchefstroom, South Africa.
PLoS One. 2021 Mar 3;16(3):e0247475. doi: 10.1371/journal.pone.0247475. eCollection 2021.
Mammals, born with a near-sterile intestinal tract, are inoculated with their mothers' microbiome during birth. Thereafter, extrinsic and intrinsic factors shape their intestinal microbe assemblage. Wastewater treatment works (WWTW), sites synonymous with pollutants and pathogens, receive influent from domestic, agricultural and industrial sources. The high nutrient content of wastewater supports abundant populations of chironomid midges (Diptera), which transfer these toxicants and potential pathogens to their predators, such as the banana bat Neoromicia nana (Vespertilionidae), thereby influencing their intestinal microbial assemblages. We used next generation sequencing and 16S rRNA gene profiling to identify and compare intestinal bacteria of N. nana at two reference sites and two WWTW sites. We describe the shared intestinal microbiome of the insectivorous bat, N. nana, consisting of seven phyla and eleven classes. Further, multivariate analyses revealed that location was the most significant driver (sex, body size and condition were not significant) of intestinal microbiome diversity. Bats at WWTW sites exhibited greater intestinal microbiota diversity than those at reference sites, likely due to wastewater exposure, stress and/or altered diet. Changes in their intestinal microbiota assemblages may allow these bats to cope with concomitant stressors.
哺乳动物在出生时从母亲那里获得了近乎无菌的肠道微生物群。此后,外在和内在因素会影响其肠道微生物群落的形成。污水处理厂(WWTW)是污染物和病原体的代名词,接收来自家庭、农业和工业的污水。废水中丰富的营养物质支持着大量摇蚊(双翅目)的繁殖,这些摇蚊会将这些有毒物质和潜在的病原体转移给它们的捕食者,如香蕉蝙蝠 Neoromicia nana(蝙蝠科),从而影响它们的肠道微生物群落。我们使用下一代测序和 16S rRNA 基因谱来识别和比较了两个参考点和两个 WWTW 点的 N. nana 肠道细菌。我们描述了食虫蝙蝠 N. nana 的共享肠道微生物群,由七个门和十一个纲组成。此外,多元分析表明,位置是肠道微生物多样性的最主要驱动因素(性别、体型和状况没有显著影响)。WWTW 点的蝙蝠比参考点的蝙蝠表现出更大的肠道微生物多样性,这可能是由于接触废水、压力和/或改变饮食所致。它们肠道微生物群落的变化可能使这些蝙蝠能够应对伴随的压力源。