Key Laboratory of Environment Remediation and Ecological Health of Ministry of Education, College of Environmental and Resource Sciences, Zhejiang University, Hangzhou 310058, China.
IDEO Play Lab, CA 91006, United States of America.
Sci Total Environ. 2024 Jun 1;927:172231. doi: 10.1016/j.scitotenv.2024.172231. Epub 2024 Apr 10.
Endophytic microorganisms are indispensable symbionts during plant growth and development and often serve functions such as growth promotion and stress resistance in plants. Therefore, an increasing number of researchers have applied endophytes for multifaceted phytoremediation (e.g., organic pollutants and heavy metals) in recent years. With the availability of next-generation sequencing technologies, an increasing number of studies have shifted the focus from culturable bacteria to total communities. However, information on the composition, structure, and function of bacterial endophytic communities is still not widely synthesized. To explore the general patterns of variation in bacterial communities between plant niches, we reanalyzed data from 1499 samples in 30 individual studies from different continents and provided comprehensive insights. A group of bacterial genera were commonly found in most plant roots and shoots. Our analysis revealed distinct variations in the diversity, composition, structure, and function of endophytic bacterial communities between plant roots and shoots. These variations underscore the sophisticated mechanisms by which plants engage with their endophytic microbiota, optimizing these interactions to bolster growth, health, and resilience against stress. Highlighting the strategic role of endophytic bacteria in promoting sustainable agricultural practices and environmental stewardship, our study not only offers global insights into the endophytic bacterial communities of terrestrial plants but also underscores the untapped potential of these communities as invaluable resources for future research.
植物内生微生物是植物生长发育过程中不可或缺的共生体,常常在植物中发挥促进生长和抗逆等功能。因此,近年来越来越多的研究人员将内生菌应用于多方面的植物修复(例如有机污染物和重金属)中。随着下一代测序技术的出现,越来越多的研究将重点从可培养细菌转移到总群落。然而,关于内生细菌群落的组成、结构和功能的信息仍然没有得到广泛的综合。为了探索不同植物生境中细菌群落变化的一般模式,我们重新分析了来自不同大陆 30 项独立研究的 1499 个样本的数据,并提供了全面的见解。有一组细菌属普遍存在于大多数植物的根和茎中。我们的分析揭示了内生细菌群落在多样性、组成、结构和功能方面在植物根和茎之间的明显差异。这些变化强调了植物与其内生微生物群之间复杂的相互作用机制,这些机制优化了这些相互作用,以促进生长、健康和对胁迫的恢复力。本研究强调了内生细菌在促进可持续农业实践和环境管理中的战略作用,不仅为陆地植物的内生细菌群落提供了全球视角,还强调了这些群落作为未来研究中宝贵资源的巨大潜力。