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Review: Plant growth promoting rhizobacteria mediated amelioration of drought in crop plants

机译:评论:植物生长促进根际细菌介导的农作物干旱减轻

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Water scarcity is one of the major global issues brought about by climate change. Besides creating socio-economic challenges, drought and osmotic stress generated by these abnormal weather conditions results in decreased agricultural productivity and deterioration of cultivable land resources. Different agronomic practices and strategies such as genetic approaches, and the use of beneficial microbes have been adopted to tackle the effects of these severe conditions. In the rhizosphere, plant-microbe interactions benefit plants through nitrogen fixation, phosphorus solubilization, microbial biofilm association with plant roots, production of antioxidants, siderophores and phytohormones, induced systemic resistance against plant pathogens and 1-aminocyclopropane 1-carboxylic acid (ACC)-deaminase activities. Inoculation of plant growth promoting rhizobacteria (PGPR) is a low cost and environment friendly biotechnology with a high probability of success in the field, and the potential to increase crop (wheat) yield by up to 18%. PGPR has the capability to survive drought and osmotic stress conditions and could be more effective at mitigating the negative impacts of drought on agricultural crops. This review highlights rhizobacteria survival, their interactions with plants under drought stress, and the ability of the PGPR’s potential mechanisms to alleviate drought stress impacts by improving physiology, growth and yield of crop plants. However, multi character bacteria, or genetic manipulation used to develop strains of bacteria with multiple characteristics, could be a more effective future approach.
机译:缺水是气候变化带来的主要全球性问题之一。除了造成社会经济挑战外,由这些异常天气条件产生的干旱和渗透胁迫还会导致农业生产力下降和耕地资源退化。已经采用了不同的农艺方法和策略,例如遗传方法以及有益微生物的使用来应对这些严峻条件的影响。在根际,植物与微生物的相互作用通过固氮,磷增溶,微生物与植物根部的生物膜缔合,抗氧化剂,铁载体和植物激素的产生,诱导的对植物病原体和1-氨基环丙烷1-羧酸(ACC)的系统抗性而使植物受益脱氨酶活动。接种促进植物生长的根际细菌(PGPR)是一种低成本,环境友好的生物技术,在田间获得成功的可能性很高,并且有可能使作物(小麦)的产量提高18%。 PGPR具有抵抗干旱和渗透胁迫条件的能力,并且在减轻干旱对农作物的负面影响方面可能更有效。这篇综述重点介绍了根瘤菌的存活,它们在干旱胁迫下与植物的相互作用以及PGPR潜在机制通过改善农作物的生理状况,生长和产量来减轻干旱胁迫影响的能力。但是,多特征细菌或用于开发具有多种特征的细菌菌株的遗传操作可能是一种更有效的未来方法。

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