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Evaluation of ACC-deaminase-producing rhizobacteria to alleviate water-stress impacts in wheat (Triticum aestivum L.) plants

机译:评价ACC-DEADINASE-产生的relizobacteria以缓解小麦(Triticum Aestivum L.)植物的水分压力影响

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Application of plant-growth-promoting rhizobacteria (PGPR) is an environmentally sustainable option to reduce the effects of abiotic and biotic stresses on plant growth and productivity. Bacteria isolated from rain-fed agriculture field soils in the Central Himalaya Kumaun region, India, were evaluated for the production of 1-aminocyclopropane-1-carboxylic acid (ACC) deaminase. Those producing ACC deaminase in high amounts were evaluated for their potential to improve wheat (Triticum aestivum L.) plant growth under irrigated and water-stress conditions in two glasshouse experiments. Some of the isolates also showed other plant-growth-promoting (PGP) traits, e.g., N-2 fixation, siderophore production, and phosphate solubilization; however, strains with higher ACC deaminase activity showed the greatest effects. These were Variovorax paradoxus RAA3; Pseudomonas spp. DPC12, DPB13, DPB15, DPB16; Achromobacter spp. PSA7, PSB8; and Ochrobactrum anthropi DPC9. In both simulated irrigated and water-stress conditions, a single inoculation of RAA3 and a consortium of DPC9 + DPB13 + DPB15 + DPB16 significantly improved wheat plant growth and foliar nutrient concentrations and caused significant positive changes in antioxidant properties compared with noninoculated plants especially under water stress. These findings imply that PGPB having ACC deaminase activity together with other PGP traits could potentially be effective inoculants to improve the growth of wheat plants in water-stressed rain-fed environments.
机译:植物生长促进的流虫(PGPR)的应用是一种环境可持续选择,可降低非生物和生物胁迫对植物生长和生产率的影响。评估了印度中部喜马拉雅·库旺地区的雨美农业田地土壤中孤立的细菌,用于生产1-氨基环丙烷-1-羧酸(ACC)脱氨酶。评估生产高量的ACC脱氨酶的那些,以改善小麦(Triticum Aestivum L.)植物生长在两个玻璃室实验中的灌溉和水胁迫条件下的潜力。一些分离物还显示出其他植物生长促进(PGP)特征,例如N-2固化,磷咯脉和磷酸盐溶解;然而,具有较高的ACC脱氨酶活性的菌株显示出最大的效果。这些是variovorax paradoxus raa3;假单胞菌SPP。 DPC12,DPB13,DPB15,DPB16; achromobacter spp。 PSA7,PSB8;和ochrobactrum anthropi dpc9。在模拟灌溉和水应激条件下,RAA3的单一接种和DPC9 + DPB13 + DPB15 + DPB16的联盟显着提高了小麦植物生长和叶状营养浓度,并与特别是在水下的非常规植物相比,抗氧化性能显着变化压力。这些发现暗示PGPB与其他PGP特征一起具有ACC脱氨酶活性,可能是有效的孕育剂,以改善水胁迫雨水环境中的小麦植物的生长。

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