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首页> 外文期刊>Vegetos: an international journal of plant research >Mitigation of drought stress in wheat crop by drought tolerant endophytic bacterial isolates
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Mitigation of drought stress in wheat crop by drought tolerant endophytic bacterial isolates

机译:缓解小麦作物的干旱胁迫耐旱植物内生细菌的分离

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Bacteria with potential to alleviate abiotic stresses in combination with plant growth promotion are extremely useful in sustainable agriculture. The present study involves the isolation and evaluation of 14 bacterial isolates obtained from four upland rice roots in varying concentrations of PEG-6000. Three potential isolates MKA2, MKA3 and MKA4 were selected for further experiments. A pot experiment was conducted with four treatments under well watered and drought conditions. Water deficit treatmentwas imposed by reducing the amount of water added to 25% of the field capacity. Twenty days post stress results showed that drought stress affected the physiological and biochemical parameters of uninoculated wheat seedlings. Inoculation with the threebacterial isolates diluted the adverse effects of drought on relative water content and membrane stability index, and thus improved the water use efficiency over the uninoculated control. Inoculation also improved the shoot and root biomass of wheat plants in comparison to uninoculated control treatment under drought stress. Increased levels of super oxide dismutase and catalase activities were observed in treated plants as compared to control plants thus protecting the plants from oxidative damage. Thus, these potent bacterial isolates could be used effectively to ameliorate plant water intake efficiency and improve sustainability in wheat crop under drought conditions.
机译:细菌与潜在的缓解非生物强调结合植物生长在可持续推广是非常有用的农业。隔离和评估14细菌隔离从四个旱稻根在不同浓度的peg - 6000。隔离MKA2, MKA3 MKA4被选中进一步的实验。进行四个治疗下浇水和干旱条件。treatmentwas由减少的数量水添加到田间持水量的25%。几天后应力结果表明干旱压力的生理生化的影响未经变质处理的小麦幼苗的参数。接种threebacterial隔离稀释干旱的不利影响相对含水量和膜的稳定性指数,从而提高了水分利用效率在未经变质处理的控制。提高了射击和根生物量的小麦植物相比,未经变质处理的控制在干旱胁迫下治疗。超氧化物歧化酶和过氧化氢酶的活动观察在治疗植物相比控制植物从而保护植物氧化损伤。隔离可以有效地改善植物水分摄入效率和改善可持续性在小麦干旱条件。

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