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设计合成微生物群落以重塑植物微生物组,促进植物健康和提高生产力。

Engineering synthetic microbial communities to restructure the phytobiome for plant health and productivity.

作者信息

Sharma Anwesha, Bora Popy

机构信息

Department of Plant Pathology, AAU, Jorhat, 785013, India.

ARRI-Assam Agricultural University, Titabor, Jorhat, 785630, India.

出版信息

World J Microbiol Biotechnol. 2025 Jun 25;41(7):228. doi: 10.1007/s11274-025-04460-1.

Abstract

Global agriculture stands at a critical juncture, facing the dual challenge of sustaining food production for a rapidly growing population while mitigating the environmental consequences of intensive farming. The overuse of chemical fertilizers and pesticides has accelerated soil degradation, biodiversity loss, and ecological imbalances, threatening long-term viability. Synthetic microbial communities (SynComs) have emerged as a promising approach to reshape plant-microbe interactions, offering a precise, scalable, and ecologically sustainable alternative to conventional agrochemicals. Unlike native microbial communities, which form naturally and vary with environmental conditions, SynComs are deliberately assembled consortium of multiple microbial strains selected for their complementary functions, ecological compatibility, and ability to perform targeted roles within a host or environment. By engineering microbes with targeted functional traits, SynComs enhance nutrient assimilation, bolster plant defence, and fortify resilience against biotic and abiotic stresses. The understanding of SynCom design, exploring their composition, functional dynamics, and mechanisms for optimizing plant health is crucial for effective synthesis and application, alongside cutting-edge computational tools and genomic databases that enable precision engineering of microbial communities. Despite their transformative potential, large-scale application of SynComs remains constrained by challenges related to field efficacy, regulatory frameworks, and long-term microbial persistence. Addressing these barriers through interdisciplinary research and policy innovation is imperative. As environmental microbiome moves towards sustainability-driven solutions, SynComs hold the key to revolutionizing farming practices, reducing chemical dependence, and ensuring global food security in an era of mounting environmental stressors.

摘要

全球农业正处于关键节点,面临着双重挑战:既要为快速增长的人口维持粮食生产,又要减轻集约化农业对环境的影响。化肥和农药的过度使用加速了土壤退化、生物多样性丧失和生态失衡,威胁到长期的可持续性。合成微生物群落(SynComs)已成为重塑植物-微生物相互作用的一种有前景的方法,为传统农用化学品提供了一种精确、可扩展且生态可持续的替代方案。与自然形成且随环境条件变化的原生微生物群落不同,SynComs是经过精心组装的多种微生物菌株的联合体,这些菌株因其互补功能、生态兼容性以及在宿主或环境中发挥特定作用的能力而被挑选出来。通过对具有特定功能特性的微生物进行工程改造,SynComs可增强养分吸收、加强植物防御,并增强对生物和非生物胁迫的抵御能力。了解SynCom的设计,探索其组成、功能动态以及优化植物健康的机制,对于有效合成和应用至关重要,同时还需要前沿的计算工具和基因组数据库来实现微生物群落的精准工程设计。尽管SynComs具有变革潜力,但其大规模应用仍受到田间效果、监管框架以及微生物长期持久性等相关挑战的限制。通过跨学科研究和政策创新来克服这些障碍势在必行。随着环境微生物组朝着可持续发展驱动的解决方案迈进,SynComs是在环境压力不断增加的时代革新农业实践、减少化学依赖并确保全球粮食安全的关键。

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