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绝灭的古生伴生肠道细菌共生体在无刺蜜蜂的一个分支中。

Extinction of anciently associated gut bacterial symbionts in a clade of stingless bees.

机构信息

Department of Microbiology, Federal University of Viçosa, Viçosa, MG, Brazil.

Department of Integrative Biology, University of Texas at Austin, Austin, TX, USA.

出版信息

ISME J. 2021 Sep;15(9):2813-2816. doi: 10.1038/s41396-021-01000-1. Epub 2021 May 18.

Abstract

Animal-microbe symbioses are often stable for millions of years. An example is the clade consisting of social corbiculate bees-honeybees, bumblebees, and stingless bees-in which a shared ancestor acquired specialized gut bacteria that subsequently diversified with hosts. This model may be incomplete, however, as few microbiomes have been characterized for stingless bees, which are diverse and ecologically dominant pollinators in the tropics. We surveyed gut microbiomes of Brazilian stingless bees, focusing on the genus Melipona, for which we sampled multiple species and biomes. Strikingly, Melipona lacks Snodgrassella and Gilliamella, bacterial symbionts ubiquitous in other social corbiculate bees. Instead, Melipona species harbor more environmental bacteria and bee-specific Starmerella yeasts. Loss of Snodgrassella and Gilliamella may stem from ecological shifts in Melipona or the acquisition of new symbionts as functional replacements. Our findings demonstrate the value of broadly sampling microbiome biodiversity and show that even ancient symbioses can be lost.

摘要

动物-微生物共生关系通常可以稳定存在数百万年。一个例子是由社会性的切叶蜂——蜜蜂、熊蜂和无刺蜂组成的进化枝,在这个进化枝中,一个共同的祖先获得了专门的肠道细菌,随后这些细菌随着宿主的多样化而多样化。然而,这个模型可能并不完整,因为很少有微生物组被描述为无刺蜂的微生物组,无刺蜂是热带地区多样化且具有生态优势的传粉媒介。我们调查了巴西无刺蜂的肠道微生物组,重点是研究 Melipona 属,我们对该属的多个物种和生物群落进行了采样。引人注目的是,Melipona 缺乏普遍存在于其他社会性切叶蜂中的共生细菌 Snodgrassella 和 Gilliamella。相反,Melipona 物种拥有更多的环境细菌和特定于蜜蜂的 Starmerella 酵母。Snodgrassella 和 Gilliamella 的缺失可能源于 Melipona 的生态转变,或者是作为功能替代物获得了新的共生体。我们的研究结果表明了广泛采样微生物组多样性的价值,并表明即使是古老的共生关系也可能会消失。

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