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More support for Earth’s massive microbiome

机译:对地球大量微生物组的更多支持

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Until recently, our planet was thought to be home to ~?107 species, largely belonging to plants and animals. Despite being the most abundant organisms on Earth, the contribution of microbial life to global biodiversity has been greatly underestimated and, in some cases, completely overlooked. Using a compilation of data known as the Global Prokaryotic Census (GPC), it was recently claimed that there are ~?106 extant bacterial and archaeal taxa [1], an estimate that is orders of magnitude lower than predictions for global microbial biodiversity based on the lognormal model of biodiversity and diversity-abundance scaling laws [2]. Here, we resolve this discrepancy by 1) identifying violations of sampling theory, 2) correcting for the misuse of biodiversity theory, and 3) conducting a reanalysis of the GPC. By doing so, we uncovered greater support for diversity-abundance scaling laws and the lognormal model of biodiversity, which together predict that Earth is home to 1012 or more microbial taxa. This article was reviewed by Alvaro Sanchez and Sean M. Gibbons.
机译:直到最近,我们的星球被认为是回家〜?107种物种,很大程度上属于植物和动物。尽管是地球上最丰富的生物,但微生物生命对全球生物多样性的贡献得到了极大的低估了,并且在某些情况下完全被忽视了。利用称为全球原核人口普查(GPC)的数据汇编,最近声称存在〜?106个现存的细菌和古出分类群[1],估计是基于的全球微生物生物多样性的预测生物多样性和多样性 - 丰富缩放法的逻辑正式模型[2]。在这里,我们通过1)判断出违反抽样理论的违规,2)纠正生物多样性理论的误用,3)进行GPC的再分析。通过这样做,我们发现对多样性 - 丰富的缩放法律和生物多样性的逻辑模型进行了更大的支持,其共同预测地球是1012或更多的微生物分类群。这篇文章由Alvaro Sanchez和Sean M. Gibbons审核。

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