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PeCHYR1, a ubiquitin E3 ligase from Populus euphratica, enhances drought tolerance via ABA‐induced stomatal closure by ROS production in Populus

机译:来自Populus Euphratica的泛素E3连接酶Pechyr1,通过ABA诱导的杨树产生的气孔闭合来增强耐旱性

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Drought, a primary abiotic stress, seriously affects plant growth and productivity. Stomata play a vital role in regulating gas exchange and drought adaptation. However, limited knowledge exists of the molecular mechanisms underlying stomatal movement in trees. Here, PeCHYR1, a ubiquitin E3 ligase, was isolated from Populus euphratica, a model of stress adaptation in forest trees. PeCHYR1 was preferentially expressed in young leaves and was significantly induced by ABA (abscisic acid) and dehydration treatments. To study the potential biological functions of PeCHYR1, transgenic poplar 84K (Populus alba?×?Populus glandulosa) plants overexpressing PeCHYR1 were generated. PeCHYR1 overexpression significantly enhanced Hsub2/subOsub2/sub production and reduced stomatal aperture. Transgenic lines exhibited increased sensitivity to exogenous ABA and greater drought tolerance than that of WT (wild‐type) controls. Moreover, up‐regulation of PeCHYR1 promoted stomatal closure and decreased transpiration, resulting in strongly elevated WUE (water use efficiency). When exposed to drought stress, transgenic poplar maintained higher photosynthetic activity and biomass accumulation. Taken together, these results suggest that PeCHYR1 plays a crucial role in enhancing drought tolerance via ABA‐induced stomatal closure caused by hydrogen peroxide (Hsub2/subOsub2/sub) production in transgenic poplar plants.
机译:干旱,初级非生物应激,严重影响植物生长和生产力。气孔在调节气体交换和干旱适应方面发挥着至关重要的作用。然而,存在有限的知识存在于树木中气孔运动的分子机制。这里,泛素e3连接酶Pechyr1从杨树euphratica中分离,林木中的应力适应模型。 PechyR1优先于幼叶中表达,并且由ABA(脱盐)和脱水处理显着诱导。为了研究PechyR1的潜在生物学功能,产生转基因杨树84K(杨树α×β-杨甲杨甘蓝叶)植物过表达Pechyr1。 PechyR1过表达显着增强H 2 O 2 生产和降低的气孔孔。转基因系表现出对外源性ABA和更大的干旱耐受性的敏感性比WT(野生型)对照增加。此外,PechyR1的上调促进了气孔闭合并降低了蒸腾,导致了强烈的WUE(水使用效率)。当暴露于干旱胁迫时,转基因杨树保持较高的光合活性和生物质积累。这些结果表明,PechyR1在通过过氧化氢(H 2 O 2 2 2 2 )生产中,在转基因杨树中产生的强化耐受性耐受性起到至关重要的作用植物。

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