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Plant Growth Promoting Endophytes and their Interaction with Plants to Alleviate Abiotic Stress

机译:植物生长促进Endophytes及其与植物的相互作用,以缓解非生物应激

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Background: There is a growing interest in utilizing endophytes as biofertilizers or biological controls. Beneficial effects may be obtained by synthesizing phytohormones, enzymes and antagonistic substances, fixing nitrogen and carbon dioxide, inducing defence mechanisms and competing colonizing sites and nutrients. Endophytes enhance plant growth and health through plant growth promoting rhizobacte- ria. Endophytes enter plant tissues through root zone or aerial portions, via germinating radicles, secondary roots, stomata,or foliar route. Endophyte-plant-polymer degrading enzymes such as cellulases and pectinases play a role for their internal colonization and can be detected by immunological or in situ hybridization or tagging with reporter genes. Endophytes interact biochemically and genetically with their host plant and synthesize osmolytes, osmoprotectants, antioxidants, allowing the plants to mitigate the impacts of abiotic stress. Plant genes are modulated by endophyte, and the genes so expressed provide clues as to the effects of endophytes in plants. Objective: The present review describes bioprospecting of endophyte-plant interactions and discusses the way forward to understand their molecular mechanisms. Conclusion: Endophytes are useful models to study the genetic expression of microbe inside the plants, which are well-regulated and flexible. This helps in developing effective endophyte bioinoculants for abiotic stress and crop disease management.
机译:背景:利用Endophyes作为生物元经济体或生物控制,存在越来越兴趣。可以通过合成植物激素,酶和拮抗物质,固定氮气和二氧化碳,诱导防御机制和竞争殖民地点和营养素来获得有益效果。 Endophytes通过促进Rhizobacte-RIA的植物生长增强植物生长和健康。 Endophytes通过根部区域或空中部分进入植物组织,通过发芽碱,二次根,气孔或叶面途径。 Endophyte-植物 - 聚合物降解酶如纤维素酶和果胶酶在其内部定植起作用,并且可以通过免疫或原位杂交或用报告基因标记来检测。 EndoCophytes与其宿主植物进行生物化学和遗传,合成渗透渗透剂,渗透剂,抗氧化剂,允许植物减轻非生物胁迫的影响。通过内体调节植物基因,如此表达的基因提供了关于植物中间体的影响的线索。目的:目前综述描述了Endophyte植物相互作用的生物掩模,并讨论了了解其分子机制的前进方向。结论:Endophytes是研究植物内微生物遗传表达的有用模型,这是良好调节和柔性的。这有助于开发生物胁迫和作物疾病管理的有效内皮内生物遗传学性。

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