首页> 外文期刊>Functional Plant Biology >Exogenous abscisic acid reduces water loss and improves antioxidant defence, desiccation tolerance and transpiration efficiency in two spring wheat cultivars subjected to a soil water deficit.
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Exogenous abscisic acid reduces water loss and improves antioxidant defence, desiccation tolerance and transpiration efficiency in two spring wheat cultivars subjected to a soil water deficit.

机译:外源脱落酸减少了两个水分不足的春小麦品种的水分流失,并提高了其抗氧化防御能力,干燥耐性和蒸腾效率。

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摘要

The effect of soil drenching with 10 micro M abscisic acid (ABA) on the physiological responses of two spring wheat (Triticum aestivum L.) cultivars released in different decades was evaluated when subjected to a water deficit at jointing or at booting. Exogenous ABA application increased the ABA concentration in the leaves, reduced the stomatal conductance (gs), slowed the rate of water use, decreased the lethal leaf water potential ( psi ) used to measure desiccation tolerance and lowered the soil water content (SWC) at which leaf relative water content (RWC) began to decrease and wilting was observed. Exogenous ABA application also reduced reactive oxygen species (ROS) formation and increased antioxidant enzyme activity, leading to a reduction in the oxidative damage to lipid membranes in both cultivars exposed to water stress at jointing and booting. The decrease in leaf RWC and wilting occurred at lower values of SWC in the recently-released cultivar than in the earlier-released cultivar. The recently-released cultivar also had higher grain yield than the earlier-released cultivar at moderate water stress, but the grain yield in both cultivars was reduced by water stress and by the exogenous ABA treatment. However, exogenous ABA treatment increased transpiration efficiency for grain (TEG) of both cultivars under moderate water stress. These results indicate that ABA played an important role in slowing water use and enhancing the antioxidant defence during soil drying, but this did not result in increased yields under drought stress.
机译:当在拔节或孕穗期出现水分亏缺时,评估了用10微M脱落酸(ABA)淋湿土壤对两个不同年代释放的两个春小麦(Triticum aestivum L.)品种的生理响应的影响。外源ABA的施用增加了叶片中ABA的浓度,降低了气孔导度(gs),减缓了水分利用速度,降低了用于测量耐旱性的致命叶片水势(psi),并降低了土壤水分(SWC)。叶片的相对含水量(RWC)开始下降并出现萎。外源ABA的施用还减少了活性氧(ROS)的形成并增加了抗氧化酶的活性,从而降低了在拔节和孕穗期暴露于水分胁迫下的两个品种对脂质膜的氧化损伤。与早期释放的品种相比,最近释放的品种在较低的SWC值下叶片RWC减少和枯萎。在适度的水分胁迫下,新近释放的品种也比早先释放的品种具有更高的籽粒产量,但是两个品种的水分吸收和外源ABA处理均降低了其籽粒产量。然而,外源ABA处理提高了适度水分胁迫下两个品种籽粒(TE sub )的蒸腾效率。这些结果表明,ABA在减缓土壤干燥过程中的水分利用和增强抗氧化防御方面起着重要作用,但这并没有导致干旱胁迫下单产的增加。

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