School of Karst Science, Guizhou Normal University, Guiyang, 550001, China.
State Engineering Technology Institute for Karst Desertification Control, Guiyang, 550001, China.
BMC Microbiol. 2024 Nov 23;24(1):492. doi: 10.1186/s12866-024-03658-x.
Soil microorganisms that are closely related to plants are important factors affecting plant health. Therefore, elucidating the abundant and rare bacterial species in soil associated with plant diseases is crucial for understanding ecological processes, maintaining the stability of microecological environments, and formulating microbial strategies that are consistent with modern agricultural development.
Tea leaf blight leads to an increase in bacterial diversity in the rhizosphere. Random processes dominate the assembly of abundant and rare taxa, while abundant taxa are also influenced by deterministic processes. In the co-occurrence network, the increase in bacterial community diversity mediated by tea cloud leaf blight enhances the stability of the network. Meanwhile, the proportion of positive correlation between rare taxa is relatively high, and the relationship between rare taxa and intermediate taxa is closer. This highly diverse bacteria community maintained the structure and stability of the community to a certain extent.
The rare taxa in the rhizosphere and the rhizosphere bacterial community mediated by tea leaf blight have high diversity, which is of great significance for maintaining the stability of the rhizosphere bacterial ecological network. In the future, we will further explore the dynamic changes and interaction patterns of the species in the rhizosphere soil affected by tea tree diseases, and their ecological functions and importance in areas of habitat fragmentation. Overall, there are many microbial resources in the rhizosphere microbiota under the influence of plant diseases that can be used for agricultural practice. The results of this study will enrich the insights into ecodynamics of bacteria in karst areas, especially in karst tea gardens.
与植物密切相关的土壤微生物是影响植物健康的重要因素。因此,阐明与植物病害相关的土壤中丰富和稀有细菌的种类,对于理解生态过程、维持微生态环境的稳定性以及制定与现代农业发展相一致的微生物策略至关重要。
茶云纹叶枯病导致根际细菌多样性增加。丰富和稀有分类群的组装主要受随机过程的控制,而丰富分类群也受到确定性过程的影响。在共生网络中,茶云纹叶枯病介导的细菌群落多样性增加增强了网络的稳定性。同时,稀有分类群之间正相关的比例相对较高,稀有分类群与中间分类群之间的关系更为密切。这种高度多样化的细菌群落在一定程度上维持了群落的结构和稳定性。
根际和茶云纹叶枯病介导的根际细菌群落中的稀有分类群具有很高的多样性,这对于维持根际细菌生态网络的稳定性具有重要意义。未来,我们将进一步探索茶树病害影响下根际土壤中物种的动态变化和相互作用模式,以及它们在生境破碎化区域的生态功能和重要性。总的来说,受植物病害影响的根际微生物群中有许多微生物资源可用于农业实践。本研究的结果将丰富对喀斯特地区细菌生态动力学的认识,特别是对喀斯特茶园的认识。