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首页> 外文期刊>HortTechnology >Bio-inoculation of Plant Growth-promoting Rhizobacterium Enterobacter cloacae ZNP-3 Increased Resistance Against Salt and Temperature Stresses in Wheat Plant (Triticum aestivum L.)
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Bio-inoculation of Plant Growth-promoting Rhizobacterium Enterobacter cloacae ZNP-3 Increased Resistance Against Salt and Temperature Stresses in Wheat Plant (Triticum aestivum L.)

机译:生物接种植物生长促进肠杆菌肝癌ZnP-3对小麦植物中盐和温度胁迫的增加(Triticum Aestivum L.)

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摘要

Bacteria residing in the rhizosphere and capable of host plant growth stimulation (PGPR) through ACC-deaminase activity can ameliorate various biotic- and abiotic-stress conditions by decreasing the level of 'stress ethylene' in plants. The present study aimed to evaluate the effect of a PGPR strain Enterobacter cloacae ZNP-3 in augmenting wheat plant growth under salinity- and temperature-stress conditions. Among the plant growth-promoting (PGP) traits, the test organism produced ACC deaminase along with several other properties namely indole-3-acetic acid (IAA) production, mineral phosphate solubilization, hydrogen cyanide (HCN) and ammonia production. The test isolate illustrated its ability to function as a biocontrol agent as it displayed antagonistic activity against a wide range of bacterial and fungal pathogens. Its inoculation to wheat plant resulted in a considerable increase in growth parameters, biomass, and chlorophyll content under salinity stress. The inoculation also decreased the accumulation of Na+ and increased K+ uptake in shoots and roots, leading to maintenance of favorable K+/Na+ ratios in bacterial-treated plants for alleviating the toxic effect of salt stress. Moreover, application of ZNP-3 also stimulated the growth of wheat plants in terms of higher biomass and other growth parameters under temperature-stress conditions. Elevated levels of various compatible solutes following inoculation significantly alleviated the negative effect of salinity stress. The inoculation of isolate ZNP-3 also minimized salinity-induced oxidative damage by lowering H2O2 and O-2 (-) contents. Moreover, the colonization behavior of the isolate illustrates its endophytic nature. The observed results indicate that the isolate Enterobacter cloacae ZNP-3 mitigates the detrimental effects of salinity and temperature stressors, and can be used as a promising bioinoculant to decrease the deleterious effects caused by salinity and other stressors.
机译:驻留在根际的细菌和能够通过Acc-deminase活性的宿主植物生长刺激(PGPR)可以通过降低植物中的“应力乙烯”水平来改善各种生物和非生物胁迫条件。本研究旨在评估PGPR菌株肠杆菌锌-3在盐度和温度胁迫条件下增强小麦植物生长的影响。在植物生长促进(PGP)性状中,测试生物与其他几种其他特性一起产生ACC脱氨酸(IAA)生产,矿物磷酸盐溶解,氰化氢(HCN)和氨生产。试验分离物示出了其作为生物防治代理的能力,因为它针对各种细菌和真菌病原体显示拮抗活性。其接种对小麦植物导致盐度胁迫下的生长参数,生物质和叶绿素含量相当大的增加。接种还会降低Na +的积累并增加芽和根部的K +摄取,导致细菌处理植物中的有利K + / Na +比的维持,以减轻盐胁迫的毒性作用。此外,在温度胁迫条件下,ZnP-3的应用还刺激了小麦植物的生长和更高的生物量和其他生长参数。接种后各种相容溶质的升高显着减轻了盐度应力的负面影响。通过降低H 2 O 2和O-2( - 2)含量,接种分离物ZnP-3也最小化了盐度诱导的氧化损伤。此外,分离物的定植行为说明了其内生性质。所观察到的结果表明,分离肠杆菌锌-3缓解盐度和温度胁迫源的不利影响,可用作有希望的生物纳米物质,以降低由盐度和其他压力源引起的有害效果。

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