Plant-soil-microbe interactions in maintaining ecosystem stability and coordinated turnover under changing environmental conditions

生态系统 生态学 环境科学 气候变化 生物地球化学循环 陆地生态系统 环境变化 有机体 植物群落 全球变化 生物 生态演替 古生物学
作者
Muhammad Aqeel,Jinzhi Ran,Weigang Hu,Muhammad Irshad,Longwei Dong,Muhammad Adnan Akram,Gaber E. Eldesoky,Ahmed Muteb Aljuwayid,Lai Fatt Chuah,Jianming Deng
出处
期刊:Chemosphere [Elsevier]
卷期号:318: 137924-137924 被引量:37
标识
DOI:10.1016/j.chemosphere.2023.137924
摘要

Ecosystem functions directly depend upon biophysical as well as biogeochemical reactions occurring at the soil-microbe-plant interface. Environment is considered as a major driver of any ecosystem and for the distributions of living organisms. Any changes in climate may potentially alter the composition of communities i.e., plants, soil microbes and the interactions between them. Since the impacts of global climate change are not short-term, it is indispensable to appraise its effects on different life forms including soil-microbe-plant interactions. This article highlights the crucial role that microbial communities play in interacting with plants under environmental disturbances, especially thermal and water stress. We reviewed that in response to the environmental changes, actions and reactions of plants and microbes vary markedly within an ecosystem. Changes in environment and climate like warming, CO2 elevation, and moisture deficiency impact plant and microbial performance, their diversity and ultimately community structure. Plant and soil feedbacks also affect interacting species and modify community composition. The interactive relationship between plants and soil microbes is critically important for structuring terrestrial ecosystems. The anticipated climate change is aggravating the living conditions for soil microbes and plants. The environmental insecurity and complications are not short-term and limited to any particular type of organism. We have appraised effects of climate change on the soil inhabiting microbes and plants in a broader prospect. This article highlights the unique qualities of tripartite interaction between plant-soil-microbe under climate change.
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