Effect of Climatic Change on Soil Microbial Community

Kumаr Сhirаnjeeb
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Abstract

Climate change is the most severe problem that adversely affects crop productivity and negatively impacts soil microbial biodiversity, which is considered the key component of soil fertility indicators. Microbial biodiversity regulates all necessary functions to strengthen and maintain the stability of the ecosystem. Climate change primarily affects the crop microclimate, which in turn destroys the ecological balance and disrupts the ideal growth conditions for the crops and hampers the proliferation of microorganisms in the environment, thus decreasing crop production over a particular region. Climate change conditions such as higher temperature, rainfall and other abrupt conditions destroy the equilibrium between microbes, plants and the environment to a large extent, altering the plant-microbe interactions. Higher Carbon dioxide concentration favours the crop in photosynthesis and helps achieve higher productivity. Microbial respiration also enhances the carbon dioxide concentration in the atmosphere, leading to global warming and other potentially hazardous conditions. Mitigation strategies on crop, soil and land management measures are important to counteract the negative impact of climate change.
气候变化对土壤微生物群落的影响
气候变化是影响作物生产力和土壤微生物多样性的最严重问题,土壤微生物多样性被认为是土壤肥力指标的关键组成部分。微生物的生物多样性调节了所有必要的功能,以加强和维持生态系统的稳定性。气候变化主要影响作物小气候,进而破坏生态平衡,破坏作物的理想生长条件,阻碍环境中微生物的增殖,从而减少特定地区的作物产量。气候变化条件,如高温、降雨等突发性条件,在很大程度上破坏了微生物、植物和环境之间的平衡,改变了植物与微生物的相互作用。较高的二氧化碳浓度有利于作物进行光合作用,有助于提高产量。微生物呼吸也会增加大气中的二氧化碳浓度,导致全球变暖和其他潜在的危险情况。关于作物、土壤和土地管理措施的缓解战略对于抵消气候变化的负面影响非常重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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