Trubl Gareth
Physical and Life Sciences Directorate, Lawrence Livermore National Laboratory, Livermore, California, USA.
Microbiol Spectr. 2025 Jul;13(7):e0045825. doi: 10.1128/spectrum.00458-25. Epub 2025 May 23.
Understanding the spatiotemporal dynamics of microbial communities is essential for predicting their ecological roles and interactions with host plants. In a recent study, Wei and colleagues (Microbiol Spectr 13:e02097-24, 2024) investigated fungal diversity across multiple plant and soil compartments in rubber trees over two seasons and two geographically distinct regions in China. Their findings revealed that alpha diversity was primarily influenced by seasonal changes and physicochemical factors, while beta diversity exhibited a strong geographical pattern, shaped by leaf phosphorus and soil available potassium. These results highlight the role of environmental drivers in shaping within-community diversity, while other factors contribute to the differences between fungal communities across the soil-plant continuum. By distinguishing the effects of temporal and spatial factors, this study provides detailed insights into plant-associated microbiomes and emphasizes the need for further research on the functional implications of microbial diversity in the context of changing environmental and agricultural conditions.
了解微生物群落的时空动态对于预测其生态作用以及与宿主植物的相互作用至关重要。在最近的一项研究中,魏及其同事(《微生物学光谱》13:e02097 - 24, 2024)调查了中国两个季节和两个地理上不同区域的橡胶树多个植物和土壤区室中的真菌多样性。他们的研究结果表明,α多样性主要受季节变化和理化因素影响,而β多样性呈现出强烈的地理格局,受叶片磷和土壤有效钾的影响。这些结果突出了环境驱动因素在塑造群落内多样性方面的作用,而其他因素则导致了土壤 - 植物连续体中真菌群落之间的差异。通过区分时间和空间因素的影响,本研究提供了对植物相关微生物群的详细见解,并强调了在不断变化的环境和农业条件背景下,需要进一步研究微生物多样性的功能意义。