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花蜜资源影响城市和农村花园中鸟类传播的微生物复合群。

Nectar resources affect bird-dispersed microbial metacommunities in suburban and rural gardens.

机构信息

Department of Biosciences, Rice University, Houston, Texas, USA.

Biocontrol & Molecular Ecology, Manaaki Whenua Landcare Research, Lincoln, New Zealand.

出版信息

Environ Microbiol. 2022 Dec;24(12):5654-5665. doi: 10.1111/1462-2920.16159. Epub 2022 Sep 14.

Abstract

As cities expand, understanding how urbanization affects biodiversity is a key ecological goal. Yet, little is known about how host-associated microbial diversity responds to urbanization. We asked whether communities of microbial (bacterial and fungal) in floral nectar and sugar-water feeders and vectored by nectar-feeding birds-thus forming a metacommunity-differed in composition and diversity between suburban and rural gardens. Compared to rural birds, we found that suburban birds vectored different and more diverse bacterial communities. These differences were not detected in the nectar of common plant species, suggesting that nectar filters microbial taxa and results in metacommunity convergence. However, when considering all the nectar sources present, suburban beta diversity was elevated compared to rural beta diversity due to turnover of bacterial taxa across a plant species and sugar-water feeders. While fungal metacommunity composition and beta diversity in nectar were similar between suburban and rural sites, alpha diversity was elevated in suburban sites, which mirrored the trend of increased fungal alpha diversity on birds. These results emphasize the interdependence of host, vector, and microbial diversity and demonstrate that human decisions can shape nectar microbial diversity in contrasting ways for bacteria and fungi.

摘要

随着城市的扩张,了解城市化如何影响生物多样性是一个关键的生态目标。然而,人们对于宿主相关微生物多样性如何对城市化做出响应知之甚少。我们想知道,在郊区和农村花园中,花的蜜腺和糖水喂食器中由食蜜鸟传播的微生物(细菌和真菌)群落,是否在组成和多样性上存在差异,这些群落形成了一个集合群落。与农村鸟类相比,我们发现郊区鸟类传播的细菌群落种类不同,多样性也更高。在常见植物物种的花蜜中并未检测到这些差异,这表明花蜜过滤了微生物类群,导致了集合群落的收敛。然而,当考虑所有存在的花蜜来源时,郊区的β多样性由于植物物种和糖水喂食器上细菌类群的转移而高于农村的β多样性。虽然郊区和农村地区的花蜜中真菌集合群落的组成和β多样性相似,但郊区的α多样性更高,这与鸟类上真菌α多样性增加的趋势相吻合。这些结果强调了宿主、媒介和微生物多样性的相互依存关系,并表明人类的决策可以以不同的方式塑造花蜜微生物多样性,细菌和真菌受到的影响方式也不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d25/10087401/c37fcf1a7465/EMI-24-5654-g003.jpg

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