首页> 外文期刊>Journal of Plant Growth Regulation >Inhibition of Abscisic Acid 8 '-Hydroxylase Affects Dehydration Tolerance and Root Formation in Cuttings of Grapes (Vitis labruscaL. x Vitis viniferaL. cv. Kyoho) Under Drought Stress Conditions
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Inhibition of Abscisic Acid 8 '-Hydroxylase Affects Dehydration Tolerance and Root Formation in Cuttings of Grapes (Vitis labruscaL. x Vitis viniferaL. cv. Kyoho) Under Drought Stress Conditions

机译:脱离酸8'-羟基化酶的抑制会影响葡萄葡萄扦插中的脱水耐受性和根部形成(血管瘤。X vitis viniferal.CV。kyoho)在干旱胁迫条件下

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摘要

The effects of an inhibitor (Abz-E3M) of abscisic acid (ABA) 8 '-hydroxylase, which is a primary enzyme of ABA catabolism, on dehydration tolerance and root formation in grape cuttings under drought conditions were investigated. Cuttings of 'Kyoho' grape (Vitis labruscaL. x Vitis viniferaL.) were sprayed with 100 mu M of Abz-E3M and subjected to water deficit conditions at the stage when their first leaves fully expanded. The physiological and morphological changes in the leaves and basal portions of the cuttings were determined. In Abz-E3M-treated leaves, lower ABA metabolite and higher ABA and indole-3-acetic acid (IAA) concentrations were observed. Compared to the untreated control leaves, higher water potential was significantly maintained in Abz-E3M-treated leaves. Abz-E3M applications resulted in lower proline accumulation and 2,2-diphenyl-2-picrylhydrazyl radical scavenging activity in the leaves and led to enhanced dehydration tolerance. In addition, the percentage of rooted cuttings was significantly increased by Abz-E3M application. In the basal portion of Abz-E3M-treated cuttings, endogenous IAA concentrations and the gene expressions ofVvARF6andVvARF8, which are positive regulators of adventitious root formation, were significantly increased. Moreover, the expression levels of the negative regulator,VvARF17,were significantly lower. These results suggested that the inhibition of ABA 8 '-hydroxylase enhanced dehydration tolerance and adventitious rooting and may be an effective strategy for achieving drought stress tolerance in grape cuttings.
机译:研究了脱落酸(ABA)8'-羟化酶抑制剂(Abz-E3M)对干旱条件下葡萄插条脱水耐性和根系形成的影响。巨峰葡萄(Vitis labruscaL.x Vitis viniferaL.)的插条喷施100亩Abz-E3M,在第一片叶片完全展开时进行水分亏缺处理。测定了插条叶片和基部的生理和形态变化。在Abz-E3M处理的叶片中,观察到较低的ABA代谢产物和较高的ABA和吲哚-3-乙酸(IAA)浓度。与未经处理的对照叶片相比,Abz-E3M处理的叶片显著保持了较高的水势。Abz-E3M的施用降低了叶片中脯氨酸的积累和2,2-二苯基-2-吡啶酰肼自由基的清除活性,并增强了叶片的脱水耐性。此外,Abz-E3M的施用显著提高了插穗生根率。在Abz-E3M处理的插条的基部,内源IAA浓度和VVARF6和VVARF8的基因表达显著增加,它们是不定根形成的正调控因子。此外,负性调节因子VvARF17的表达水平显著降低。这些结果表明,ABA 8'-羟化酶的抑制增强了葡萄扦插的脱水耐性和不定根性,可能是实现葡萄扦插抗旱性的有效策略。

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