首页> 外文期刊>Planta >Overexpression of HARDY, an AP2/ERF gene from Arabidopsis, improves drought and salt tolerance by reducing transpiration and sodium uptake in transgenic Trifolium alexandrinum L.
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Overexpression of HARDY, an AP2/ERF gene from Arabidopsis, improves drought and salt tolerance by reducing transpiration and sodium uptake in transgenic Trifolium alexandrinum L.

机译:拟南芥的AP2 / ERF基因HARDY的过表达通过减少转基因三叶草(Trifolium alexandrinum L)的蒸腾作用和钠吸收来提高干旱和耐盐性。

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摘要

Trifolium alexandrinum L. was transformed with the Arabidopsis HARDY gene that belongs to the stress-related AP2/ERF (APETALA2/ethylene responsive element binding factors) superfamily of transcription factors. The fresh weights of the transgenic lines L2 and L3 were improved by 42 and 55% under drought stress and by 38 and 95% under salt stress compared to the wild type, respectively. The dry weights were similarly improved. Overexpression of HARDY improved the instantaneous water use efficiency (WUE) under drought stress by reducing transpiration (E) and under salt stress by improving photosynthesis (A), through reducing Na+ accumulation in leaves, and reducing E. However, HARDY improved the growth of drought-stressed transgenic plants as compared to the wild type by delaying water depletion from soil and preventing rapid decline in A. L2 and L3 had thicker stems and in case of L3, more xylem rows per vascular bundle, which may have made L3 more resistant to lodging in the field. Field performance of L2 and L3 under combined drought and salt stress was significantly better than that of the wild type in terms of fresh and dry weights (40%, 46% and 31%, 40%, respectively). The results provide further evidence for the efficiency of overexpression of a single gene in improving tolerance to abiotic stress under field conditions.
机译:用叶拟南芥HARDY基因转化三叶草(Afrandalexum L.),该基因属于与压力相关的转录因子AP2 / ERF(APETALA2 /乙烯反应元件结合因子)超家族。与野生型相比,在干旱胁迫下转基因品系L2和L3的鲜重分别提高了42%和55%,在盐胁迫下分别提高了38%和95%。干重同样得到改善。在干旱胁迫下,HARDY的过量表达通过减少蒸腾作用(E)来提高瞬时水分利用效率(WUE),在盐胁迫下通过改善光合作用(A)来提高瞬时水分利用效率(WUE),方法是减少叶片中Na +的积累并降低E。与野生型相比,通过延迟从土壤中耗水并防止A的快速下降,改善了干旱胁迫的转基因植物的生长。L2和L3的茎较厚,在L3的情况下,每个维管束的木质部排更多,这可能使得L3在野外抵抗力更强L2和L3在干旱和盐胁迫下的野外表现在鲜重和干重方面均明显优于野生型(分别为40%,46%和31%,40%)。该结果为田间条件下单个基因过表达提高对非生物胁迫耐受性的效率提供了进一步的证据。

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