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对中国土壤生物多样性的多维度洞察:一项初步研究。

Multidimensional insights into the biodiversity of in soils of China: a pilot study.

作者信息

Deng Ziguang, Yang Wei, Lin Tongtong, Wang Yaohai, Hua Xiaojing, Jiang Xiaoyu, Chen Junhao, Liu Dan, Ye Zhiqiang, Zhang Yu, Lynch Michael, Long Hongan, Pan Jiao

机构信息

Key Laboratory of Evolution & Marine Biodiversity (Ministry of Education) and Institute of Evolution & Marine Biodiversity, Ocean University of China, Qingdao, Shandong Province, China.

Laboratory for Marine Biology and Biotechnology, Qingdao Marine Science and Technology Center, Qingdao, Shandong Province, China.

出版信息

Microbiol Spectr. 2025 Apr 2;13(5):e0169224. doi: 10.1128/spectrum.01692-24.

Abstract

UNLABELLED

a diverse group of filamentous bacteria found predominantly in soil, play a crucial role in nutrient cycling and produce many valuable secondary metabolites for the pharmaceutical industry. In this pilot study, we collected 19 soil samples from 14 provinces in China to preliminarily investigate the biodiversity and genetic structure of in soils of China from different dimensions, using recently developed cost-efficient amplicon and whole-genome library preparation methods. Amplicon analysis showed that Actinobacteria were among the most abundant bacteria, with 0.3% of amplicon sequence variants (ASVs) belonging to . Meanwhile, we successfully isolated 136 natural strains and assembled their genomes, including 26 previously unreported species, underscoring the need for further exploration of soil in China. Population genetics analysis revealed that homologous recombination may primarily drive the extensive genetic diversity observed in , as well as a complex population structure. Complementing this, pan-genome analysis shed light on gene diversity within and led to the discovery of rare genes, further emphasizing the vast genetic diversity of this genus. Additionally, multiple metabolic gene clusters were found in these strains, as well as some potentially unique or uncommon ones were found. These findings not only highlight the biological and metabolic diversity of but also provide a technical framework for future studies on the global biodiversity and evolution of this genus.

IMPORTANCE

, a prominent group of Actinobacteria, holds significant importance in ecosystems and biotechnology due to their diverse array of metabolic products. However, research on the biodiversity of soil across extensive geographical scales in China has been limited, and their genetic diversity has rarely been evaluated using modern population genetics principles. This pilot study successfully addresses these gaps by conducting a preliminary exploration on the biodiversity of in Chinese soils from multiple perspectives, providing valuable insights for a deeper understanding of their biodiversity and a novel technical framework for future large-scale explorations of its diversity.

摘要

未标记

一类主要存在于土壤中的丝状细菌,在养分循环中起关键作用,并为制药行业产生许多有价值的次生代谢产物。在这项初步研究中,我们从中国14个省份收集了19份土壤样本,采用最近开发的具有成本效益的扩增子和全基因组文库制备方法,从不同维度初步研究中国土壤中[细菌名称]的生物多样性和遗传结构。扩增子分析表明,放线菌是最丰富的细菌之一,0.3%的扩增子序列变体(ASVs)属于[细菌名称]。同时,我们成功分离出136株[细菌名称]天然菌株并组装了它们的基因组,其中包括26个以前未报道的物种,这突出表明需要对中国土壤中的[细菌名称]进行进一步探索。群体遗传学分析表明,同源重组可能是导致[细菌名称]中观察到的广泛遗传多样性以及复杂群体结构的主要原因。与此相辅相成的是,泛基因组分析揭示了[细菌名称]内的基因多样性,并发现了稀有基因,进一步强调了该属的巨大遗传多样性。此外,在这些[细菌名称]菌株中发现了多个代谢基因簇,以及一些潜在独特或不常见的基因簇。这些发现不仅突出了[细菌名称]的生物学和代谢多样性,还为该属未来的全球生物多样性和进化研究提供了技术框架。

重要性

[细菌名称]作为放线菌的一个重要类群,由于其多样的代谢产物,在生态系统和生物技术中具有重要意义。然而,在中国广泛地理尺度上对土壤[细菌名称]生物多样性的研究一直有限,并且很少使用现代群体遗传学原理评估其遗传多样性。这项初步研究通过从多个角度对中国土壤中[细菌名称]的生物多样性进行初步探索,成功填补了这些空白,为更深入了解其生物多样性提供了有价值的见解,并为未来大规模探索其多样性提供了新的技术框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9faf/12054067/b7c03884bc69/spectrum.01692-24.f001.jpg

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