Data Mining of Sediment Microbiomes of the Tibetan Plateau Revealed a Genomic Repository of Ancient Lineages and Adaptive Evolution of Asgardarchaeota

高原(数学) 适应性进化 生物 微生物群 生态学 适应(眼睛) 沉积物 系统发育学 进化生物学 生物多样性 古生物学 谱系(遗传) 生物进化 适应性辐射 地理 特征(语言学) 地质学 分类单元 气候变化 共同进化 系统发育树
作者
Xiaoke Chen,Nan Wang,Chuanqi Jiang,Shuai Luo,Mingyue Cheng,Dongliang Chu,Che Hu,Peng Zhang,Kai Chen,Fangdian Yang,Jie Xiong,Kang Ning,Wei Miao
出处
期刊:Research [American Association for the Advancement of Science]
卷期号:9: 1213-1213
标识
DOI:10.34133/research.1213
摘要

The extreme climatic conditions of the Tibetan Plateau foster unique microbial communities, especially in the sediment ecosystem. A thorough understanding of these communities could facilitate revealing their microbial diversity, biological resources, and response to climate change. Here, we have constructed the Tibetan Plateau Microbial Catalog of Sediment (TPMC-S) based on 248 metagenomic sediment samples from the Tibetan Plateau. We identified 511,056,752 nonredundant genes and recovered 13,696 metagenome-assembled genomes with enormous phylogenetic novelty (over 90% novel species), far exceeding other contemporary Tibetan microbial catalogs and expanding the microbial functional diversity. We also revealed that similarities of sediment microbial communities followed the distance-decay relationship. Furthermore, sediments contained a high proportion of evolutionarily "possible ancient species (PAS)" compared with paired aquatic samples, especially ancient archaeal lineages, suggesting a microbial "sedimentary archive" in sediment. Finally and most importantly, Asgardarchaeota, including 2 potentially novel genera, were identified from the sediments, and their latest divergence predated the uplift of the Tibetan Plateau, while they still gained functions to adapt to extreme environments. Our findings positioned the Tibetan Plateau as both a genomic repository of microbial antiquity, especially Asgardarchaeota, and an active arena for modern extremophile innovation, providing insights for deciphering microbial resilience strategies in climate-sensitive ecosystems and informing novel bioprospecting efforts.
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