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植物促生菌在植物耐盐性方面的作用——最新进展与展望:综述。

Plant growth promoting bacteria for combating salinity stress in plants - Recent developments and prospects: A review.

机构信息

Department of Environmental Science, School of Earth and Environmental Sciences, Babasaheb Bhimrao Ambedkar University, Lucknow, UP, 226025, India.

出版信息

Microbiol Res. 2021 Nov;252:126861. doi: 10.1016/j.micres.2021.126861. Epub 2021 Sep 11.

Abstract

Soil salinity has emerged as a great threat to the agricultural ecosystems throughout the globe. Many continents of the globe are affected by salinity and crop productivity is severely affected. Anthropogenic activities leading to the degradation of agricultural land have also accelerated the rate of salinization in arid and semi-arid regions. Several approaches are being evaluated for remediating saline soil and restoring their productivity. Amongst these, utilization of plant growth promoting bacteria (PGPB) has been marked as a promising tool. This greener approach is suitable for simultaneous reclamation of saline soil and improving the productivity. Salt-tolerant PGPB utilize numerous mechanisms that affect physiological, biochemical, and molecular responses in plants to cope with salt stress. These mechanisms include osmotic adjustment by ion homeostasis and osmolyte accumulation, protection from free radicals by the formation of free radicals scavenging enzymes, oxidative stress responses and maintenance of growth parameters by the synthesis of phytohormones and other metabolites. As salt-tolerant PGPB elicit better plant survival under salinity, they are the potential candidates for enhancing agricultural productivity. The present review focuses on the various mechanisms used by PGPB to improve plant health under salinity. Recent developments and prospects to facilitate better understanding on the functioning of PGPB for ameliorating salt stress in plants are emphasized.

摘要

土壤盐度已成为全球农业生态系统的重大威胁。全球许多大陆都受到盐度的影响,作物生产力受到严重影响。导致农业土地退化的人为活动也加速了干旱和半干旱地区的盐渍化速度。目前正在评估几种方法来修复盐渍土并恢复其生产力。其中,利用植物促生菌(PGPB)已被标记为一种很有前途的工具。这种绿色方法适合同时开垦盐渍土并提高生产力。耐盐 PGPB 利用多种机制来影响植物的生理、生化和分子反应,以应对盐胁迫。这些机制包括通过离子稳态和渗透调节剂积累来进行渗透调节,通过形成自由基清除酶来防止自由基的侵害,通过合成植物激素和其他代谢物来应对氧化应激反应和维持生长参数。由于耐盐 PGPB 在盐胁迫下能更好地促进植物的生存,因此它们是提高农业生产力的潜在候选者。本综述重点介绍了 PGPB 用于改善盐胁迫下植物健康的各种机制。强调了最近的发展和前景,以促进更好地理解 PGPB 在缓解植物盐胁迫方面的作用。

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