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Overexpression of AtEDT1/HDG11 in Chinese Kale (Brassica oleracea var. alboglabra) Enhances Drought and Osmotic Stress Tolerance

机译:芥蓝中AtEDT1 / HDG11的过表达增强了干旱和渗透胁迫的耐受性

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摘要

Plants are constantly challenged by environmental stresses, including drought and high salinity. Improvement of drought and osmotic stress tolerance without yield decrease has been a great challenge in crop improvement. The Arabidopsis ENHANCED DROUGHT TOLERANCE1/HOMEODOMAIN GLABROUS11 (AtEDT1/HDG11), a protein of the class IV HD-Zip family, has been demonstrated to significantly improve drought tolerance in Arabidopsis, rice, and pepper. Here, we report that AtEDT1/HDG11 confers drought and osmotic stress tolerance in the Chinese kale. AtEDT1/HDG11-overexpression lines exhibit auxin-overproduction phenotypes, such as long hypocotyls, tall stems, more root hairs, and a larger root system architecture. Compared with the untransformed control, transgenic lines have significantly reduced stomatal density. In the leaves of transgenic Chinese kale plants, proline (Pro) content and reactive oxygen species-scavenging enzyme activity was significantly increased after drought and osmotic stress, particularly compared to wild kale. More importantly, AtEDT1/HDG11-overexpression leads to abscisic acid (ABA) hypersensitivity, resulting in ABA inhibitor germination and induced stomatal closure. Consistent with observed phenotypes, the expression levels of auxin, ABA, and stress-related genes were also altered under both normal and/or stress conditions. Further analysis showed that AtEDT1/HDG11, as a transcription factor, can target the auxin biosynthesis gene YUCC6 and ABA response genes ABI3 and ABI5. Collectively, our results provide a new insight into the role of AtEDT1/HDG11 in enhancing abiotic stress resistance through auxin- and ABA-mediated signaling response in Chinese kale.
机译:植物不断受到环境压力的挑战,包括干旱和高盐度。在不降低产量的情况下改善干旱和渗透胁迫耐受性一直是作物改良中的巨大挑战。拟南芥增强的干旱耐受性1 /同源内生GLABROUS11(AtEDT1 / HDG11)是一种IV-HD-Zip家族蛋白,已被证明可以显着提高拟南芥,水稻和辣椒的耐旱性。在这里,我们报道AtEDT1 / HDG11赋予了芥蓝干旱和渗透胁迫耐受性。 AtEDT1 / HDG11过表达系表现出生长素过表达的表型,例如长的下胚轴,高大的茎,更多的根毛和更大的根系结构。与未转化的对照相比,转基因品系显着降低了气孔密度。在转基因羽衣甘蓝植物的叶片中,干旱和渗透胁迫后脯氨酸(Pro)含量和活性氧清除酶活性显着增加,特别是与野生羽衣甘蓝相比。更重要的是,AtEDT1 / HDG11过表达导致脱落酸(ABA)过敏,导致ABA抑制剂发芽并诱导气孔关闭。与观察到的表型一致,在正常和/或应激条件下,生长素,ABA和应激相关基因的表达水平也发生了变化。进一步的分析表明,作为转录因子的AtEDT1 / HDG11可以靶向生长素生物合成基因YUCC6和ABA反应基因ABI3和ABI5。总的来说,我们的结果为AtEDT1 / HDG11通过生长素和ABA介导的芥蓝在增强非生物胁迫抗性中的作用提供了新的见解。

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