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首页> 外文期刊>Plant Physiology and Biochemistry >MhNCED3, a gene encoding 9-cis-epoxycarotenoid dioxygenase in Malus hupehensis Rehd., enhances plant tolerance to Cl- stress by reducing Cl- accumulation
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MhNCED3, a gene encoding 9-cis-epoxycarotenoid dioxygenase in Malus hupehensis Rehd., enhances plant tolerance to Cl- stress by reducing Cl- accumulation

机译:平邑甜茶中编码9-顺式-环氧类胡萝卜素双加氧酶的基因MhNCED3通过减少Cl-积累来增强植物对Cl-胁迫的耐受性

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High Cl- concentrations in tissues can be toxic to crop plants and may lead to reduced growth rates and yields. 9-cis-epoxycarotenoid dioxygenase (NCED) is thought to be involved in the biosynthesis of abscisic acid (ABA), which is an important regulator of plant adaptive responses to stress. Here, the expression of MhNCED3 in Malus hupehensis Rehd. and the effects of MhNCED3 on plant tolerance to Cl- stress were explored. The results showed that MhNCED3 expression and ABA biosynthesis in M. hupehensis Rehd. were induced by Cl- stress. Ectopic expression of MhNCED3 in Arabidopsis complemented the phenotypic defects of the 129B08ced3 mutant and enhanced WT tolerance to Cl- stress. The transgenic Arabidopsis showed improved growth and developmental status, increased ABA contents, and reduced transpiration rates and relative water content. Furthermore, ectopic expression of MhNCED3 decreased Cl- accumulation and oxidative damage, and up-regulated the expression levels of AtCLCc (chloride channel protein) and AtSLAH3 (slow anion channel 1 homolog 3) genes in Arabidopsis. These observations suggest that MhNCED3 has critical role in enhancing plant tolerance to Cl- stress by reducing Cl- accumulation. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:组织中的高Cl-浓度可能对农作物有毒,并可能导致生长速率和产量下降。 9-顺式环氧类胡萝卜素双加氧酶(NCED)被认为与脱落酸(ABA)的生物合成有关,脱落酸是植物对逆境的适应性反应的重要调节剂。在这里,MhNCED3在平邑甜茶中的表达。并研究了MhNCED3对植物耐Cl-胁迫的影响。结果表明,hupehensis Rehd中MhNCED3的表达和ABA的生物合成。是由Cl胁迫诱导的。 MhNCED3在拟南芥中的异位表达补充了129B08 / nced3突变体的表型缺陷,增强了野生型对Cl胁迫的耐受性。转基因拟南芥显示出改善的生长和发育状态,增加了ABA含量,并减少了蒸腾速率和相对含水量。此外,异位表达的MhNCED3减少了拟南芥中Cl-的积累和氧化损伤,并上调了AtCLCc(氯化物通道蛋白)和AtSLAH3(慢阴离子通道1同源物3)基因的表达水平。这些观察结果表明,MhNCED3通过减少Cl-的积累在增强植物对Cl-胁迫的耐受性中起关键作用。 (C)2015 Elsevier Masson SAS。版权所有。

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