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用于可持续农业的植物微生物组技术

Plant microbiome technology for sustainable agriculture.

作者信息

Hanif Muhammad Sajid, Tayyab Muhammad, Baillo Elamin Hafiz, Islam M Mominul, Islam Waqar, Li Xiaofang

机构信息

Centre for Agricultural Resources Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Shijiazhuang, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

Front Microbiol. 2024 Nov 13;15:1500260. doi: 10.3389/fmicb.2024.1500260. eCollection 2024.

Abstract

Plants establish specific interactions with microorganisms, which are vital for promoting growth and resilience. Although advancements in microbiome modulation technologies show great potential for sustainable agriculture, several challenges have hindered the wider application of plant microbiomes in the field. These challenges may include inconsistent microbial colonization, competition with native microbiota, and environmental variability. Current strategies, while promising, often yield inconsistent results in real-world agricultural settings, highlighting the need for more refined approaches. Agricultural practices and plant genotypes significantly influence the composition and function of plant-associated microbiota. A data-driven strategy that incorporates genomic profiling, environmental assessments, and optimized delivery systems is essential for selecting effective microbial strains. Additionally, refining farming practices, such as crop rotation, intercropping, and reduced tillage, along with robust plant breeding programs, can greatly enhance crop health and productivity.

摘要

植物与微生物建立特定的相互作用,这对于促进生长和恢复力至关重要。尽管微生物群落调控技术的进步在可持续农业方面显示出巨大潜力,但一些挑战阻碍了植物微生物群落在该领域的更广泛应用。这些挑战可能包括微生物定殖不一致、与原生微生物群的竞争以及环境变异性。当前的策略虽然很有前景,但在实际农业环境中往往产生不一致的结果,这凸显了需要更精细方法的必要性。农业实践和植物基因型显著影响与植物相关的微生物群的组成和功能。一种结合基因组分析、环境评估和优化递送系统的数据驱动策略对于选择有效的微生物菌株至关重要。此外,改进耕作实践,如轮作、间作和减少耕作,以及强大的植物育种计划,可以极大地提高作物健康和生产力。

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