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解析植物全生物细菌的分子机制与多样性:微生境、群落生态学与养分获取

Deciphering Molecular Mechanisms and Diversity of Plant Holobiont Bacteria: Microhabitats, Community Ecology, and Nutrient Acquisition.

作者信息

Grzyb Tomasz, Szulc Justyna

机构信息

Department of Environmental Biotechnology, Faculty of Biotechnology and Food Sciences, Lodz University of Technology, Wolczanska 171/173, 90-924 Lodz, Poland.

出版信息

Int J Mol Sci. 2024 Dec 19;25(24):13601. doi: 10.3390/ijms252413601.

Abstract

While gaining increasing attention, plant-microbiome-environment interactions remain insufficiently understood, with many aspects still underexplored. This article explores bacterial biodiversity across plant compartments, including underexplored niches such as seeds and flowers. Furthermore, this study provides a systematic dataset on the taxonomic structure of the anthosphere microbiome, one of the most underexplored plant niches. This review examines ecological processes driving microbial community assembly and interactions, along with the discussion on mechanisms and diversity aspects of processes concerning the acquisition of nitrogen, phosphorus, potassium, and iron-elements essential in both molecular and ecological contexts. These insights are crucial for advancing molecular biology, microbial ecology, environmental studies, biogeochemistry, and applied studies. Moreover, the authors present the compilation of molecular markers for discussed processes, which will find application in (phylo)genetics, various (meta)omic approaches, strain screening, and monitoring. Such a review can be a valuable source of information for specialists in the fields concerned and for applied researchers, contributing to developments in sustainable agriculture, environmental protection, and conservation biology.

摘要

尽管植物 - 微生物组 - 环境相互作用越来越受到关注,但人们对其了解仍不充分,许多方面仍未得到充分探索。本文探讨了植物不同部位的细菌生物多样性,包括种子和花朵等未被充分研究的生态位。此外,本研究提供了一个关于花圈微生物组分类结构的系统数据集,花圈微生物组是研究最少的植物生态位之一。这篇综述研究了驱动微生物群落组装和相互作用的生态过程,并讨论了在分子和生态环境中获取氮、磷、钾和铁等必需元素过程的机制和多样性方面。这些见解对于推进分子生物学、微生物生态学、环境研究、生物地球化学和应用研究至关重要。此外,作者还介绍了所讨论过程的分子标记汇编,这些标记将应用于(系统)遗传学、各种(宏)组学方法、菌株筛选和监测。这样的综述对于相关领域的专家和应用研究人员来说可能是有价值的信息来源,有助于可持续农业、环境保护和保护生物学的发展。

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