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连作驱动下土壤微生物群落结构的演变与调控

Evolutions and Managements of Soil Microbial Community Structure Drove by Continuous Cropping.

作者信息

Chen Yudong, Du Jianfeng, Li Yang, Tang Heng, Yin Ziyi, Yang Long, Ding Xinhua

机构信息

State Key Laboratory of Crop Biology, Shandong Provincial Key Laboratory for Biology of Vegetable Diseases and Insect Pests, College of Plant Protection, Shandong Agricultural University, Tai'an, China.

出版信息

Front Microbiol. 2022 Feb 28;13:839494. doi: 10.3389/fmicb.2022.839494. eCollection 2022.

Abstract

Continuous cropping obstacles have increasingly become an important phenomenon affecting crop yield and quality. Its harm includes the deterioration of soil basic physical and chemical properties, changes of soil microbial community structure, accumulation of autotoxins, weakness of plant growth, and aggravation of diseases and pests. In this review, the evolutionary trend of soil microbial structure driven by continuous cropping was generalized, while drivers of these changes summed up as destruction of soil microbial living environment and competition within the community. We introduced a microorganism proliferation and working model with three basics and a vector, and four corresponding effective measures to reshape the structure were comprehensively expounded. According to the model, we also put forward three optimization strategies of the existing measures. In which, synthetic microbiology provides a new solution for improving soil community structure. Meanwhile, to ensure the survival and reproduction of soil microorganisms, it is necessary to consider their living space and carbon sources in soil fully. This review provided a comprehensive perspective for understanding the evolutionary trend of the soil microbial community under continuous cropping conditions and a summary of reshaping measures and their optimization direction.

摘要

连作障碍日益成为影响作物产量和品质的重要现象。其危害包括土壤基本理化性质恶化、土壤微生物群落结构改变、自毒物质积累、植株生长衰弱以及病虫害加剧。本综述归纳了连作驱动下土壤微生物结构的演变趋势,总结了这些变化的驱动因素为土壤微生物生存环境破坏和群落内部竞争。我们介绍了一个具有三个基础和一个载体的微生物增殖与作用模型,并全面阐述了重塑该结构的四项相应有效措施。根据该模型,我们还提出了现有措施的三项优化策略。其中,合成微生物学为改善土壤群落结构提供了新的解决方案。同时,为确保土壤微生物的生存和繁殖,有必要充分考虑它们在土壤中的生存空间和碳源。本综述为理解连作条件下土壤微生物群落的演变趋势以及重塑措施及其优化方向提供了全面视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b9f/8920486/65644ccc0ced/fmicb-13-839494-g001.jpg

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