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首页> 外文期刊>Scientific reports. >Grafting cucumber onto luffa improves drought tolerance by increasing ABA biosynthesis and sensitivity
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Grafting cucumber onto luffa improves drought tolerance by increasing ABA biosynthesis and sensitivity

机译:通过增加ABA的生物合成和敏感性,将黄瓜嫁接到丝瓜上提高了抗旱性

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Balancing stomata-dependent CO2 assimilation and transpiration is a key challenge for increasing crop productivity and water use efficiency under drought stress for sustainable crop production worldwide. Here, we show that cucumber and luffa plants with luffa as rootstock have intrinsically increased water use efficiency, decreased transpiration rate and less affected CO2 assimilation capacity following drought stress over those with cucumber as rootstock. Drought accelerated abscisic acid (ABA) accumulation in roots, xylem sap and leaves, and induced the transcript of ABA signaling genes, leading to a decreased stomatal aperture and transpiration in the plants grafted onto luffa roots as compared to plants grafted onto cucumber roots. Furthermore, stomatal movement in the plants grafted onto luffa roots had an increased sensitivity to ABA. Inhibition of ABA biosynthesis in luffa roots decreased the drought tolerance in cucumber and luffa plants. Our study demonstrates that the roots of luffa have developed an enhanced ability to sense the changes in root-zone moisture and could eventually deliver modest level of ABA from roots to shoots that enhances water use efficiency under drought stress. Such a mechanism could be greatly exploited to benefit the agricultural production especially in arid and semi-arid areas.
机译:平衡气孔依赖的CO 2 同化和蒸腾作用是干旱胁迫下提高作物生产力和水分利用效率以实现全球可持续作物生产的关键挑战。在这里,我们表明,以矮牵牛为砧木的黄瓜和矮牵牛植物在干旱胁迫下比以黄瓜为砧木的植物具有更高的水分利用效率,降低的蒸腾速率和对CO 2 同化能力的影响。干旱促进脱落酸(ABA)在根,木质部汁液和叶片中的积累,并诱导ABA信号基因的转录,与嫁接到黄瓜根的植物相比,导致丝瓜根嫁接的植物的气孔孔径和蒸腾作用降低。此外,嫁接到丝瓜根上的植物的气孔运动对ABA的敏感性增加。丝瓜根中ABA生物合成的抑制作用降低了黄瓜和丝瓜植物的抗旱性。我们的研究表明,丝瓜的根已增强了感知根区水分变化的能力,并最终可以将适量的ABA从根传递到新梢,从而提高了干旱胁迫下的水分利用效率。这种机制可以被极大地利用以使农业生产受益,特别是在干旱和半干旱地区。

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