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真核生物进化的分子时标及其对红藻衍生质体起源的影响。

A molecular timescale for eukaryote evolution with implications for the origin of red algal-derived plastids.

机构信息

Department of Organismal Biology, Program in Systematic Biology, Uppsala University, Uppsala, Sweden.

Department of Ecosystem Research, Leibniz Institute of Freshwater Ecology and Inland Fisheries, Berlin, Germany.

出版信息

Nat Commun. 2021 Mar 25;12(1):1879. doi: 10.1038/s41467-021-22044-z.

Abstract

In modern oceans, eukaryotic phytoplankton is dominated by lineages with red algal-derived plastids such as diatoms, dinoflagellates, and coccolithophores. Despite the ecological importance of these groups and many others representing a huge diversity of forms and lifestyles, we still lack a comprehensive understanding of their evolution and how they obtained their plastids. New hypotheses have emerged to explain the acquisition of red algal-derived plastids by serial endosymbiosis, but the chronology of these putative independent plastid acquisitions remains untested. Here, we establish a timeframe for the origin of red algal-derived plastids under scenarios of serial endosymbiosis, using Bayesian molecular clock analyses applied on a phylogenomic dataset with broad sampling of eukaryote diversity. We find that the hypotheses of serial endosymbiosis are chronologically possible, as the stem lineages of all red plastid-containing groups overlap in time. This period in the Meso- and Neoproterozoic Eras set the stage for the later expansion to dominance of red algal-derived primary production in the contemporary oceans, which profoundly altered the global geochemical and ecological conditions of the Earth.

摘要

在现代海洋中,真核浮游植物主要由具有红藻衍生质体的谱系组成,如硅藻、甲藻和颗石藻。尽管这些群体以及其他许多代表着巨大形态和生活方式多样性的群体具有重要的生态意义,但我们仍然缺乏对它们进化以及它们如何获得质体的全面理解。新的假说已经出现,以解释通过连续内共生获得红藻衍生的质体,但这些所谓的独立质体获得的时间顺序仍未得到检验。在这里,我们使用广泛采样真核生物多样性的系统基因组数据集,通过贝叶斯分子钟分析,在连续内共生的情景下,为红藻衍生质体的起源建立了一个时间框架。我们发现,连续内共生假说在时间上是可能的,因为所有含红质体的群体的主干谱系在时间上重叠。这个时期在中-新元古代,为后来红藻衍生的初级生产在当代海洋中的主导地位扩张奠定了基础,这深刻地改变了地球的全球地球化学和生态条件。

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