Enhancing Agricultural Sustainability Through Rhizomicrobiome: A Review

根际 农业 持续性 可持续农业 生物技术 业务 基因组 可持续发展 自然资源经济学 自然资源 可持续农业创新网络 环境资源管理 环境规划 生物 地理 生态学 经济 生物化学 遗传学 细菌 基因
作者
Prateek Ranjan Behera,Kumaresh Behera,Gautam Sethi,B. Jeberlin Prabina,A. Thoyajakshi Bai,B. S. Sipra,Varanasi Adarsh,Sasmita Das,Kanhu Charan Behera,Lakshmi Singh,Mihir Kumar Mishra,M. S. Behera
出处
期刊:Journal of Basic Microbiology [Wiley]
标识
DOI:10.1002/jobm.202400100
摘要

ABSTRACT Sustainable agriculture represents the responsible utilization of natural resources while safeguarding the well‐being of the natural environment. It encompasses the objectives of preserving the environment, fostering economic growth, and promoting socioeconomic equality. To achieve sustainable development for humanity, it is imperative to prioritize sustainable agriculture. One significant approach to achieving this transition is the extensive utilization of microbes, which play a crucial role due to the genetic reliance of plants on the beneficial functions provided by symbiotic microbes. This review focuses on the significance of rhizospheric microbial communities, also known as the rhizomicrobiome (RM). It is a complex community of microorganisms that live in the rhizosphere and influence the plant's growth and health. It provides its host plant with various benefits related to plant growth, including biocontrol, biofertilization, phytostimulation, rhizoremediation, stress resistance, and other advantageous properties. Yet, the mechanisms by which the RM contributes to sustainable agriculture remain largely unknown. Investigating this microbial population presents a significant opportunity to advance toward sustainable agriculture. Hence, this study aims to provide an overview of the diversity and applications of RM in sustainable agriculture practices. Lately, there has been growing momentum in various areas related to rhizobiome research and its application in agriculture. This includes rhizosphere engineering, synthetic microbiome application, agent‐based modeling of the rhizobiome, and metagenomic studies. So, developing bioformulations of these beneficial microorganisms that support plant growth could serve as a promising solution for future strategies aimed at achieving a new green revolution.
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