首页> 外文期刊>Plant Physiology and Biochemistry >Transcriptional regulation of abscisic acid signal core components during cucumber seed germination and under Cu~(2+), Zn~(2+), NaCl and simulated acid rain stresses*
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Transcriptional regulation of abscisic acid signal core components during cucumber seed germination and under Cu~(2+), Zn~(2+), NaCl and simulated acid rain stresses*

机译:Cu〜(2 +),Zn〜(2 +),NaCl和模拟酸雨胁迫下黄瓜种子萌发过程中脱落酸信号核心成分的转录调控*

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摘要

Abscisic acid (ABA) is an important phytohormone that regulates lots of physiological and biochemical processes in plant life cycle, especially in seed germination and stress responses. For exploring the transcriptional regulation of ABA signal transduction during cucumber (Cucumis sativus L.) seed germination and under Cu~(2+), Zn~(2+), NaCl and simulated acid rain stresses, nine CsPYLs, three group A CsPP2Cs and two subclass III CsSnRK2s were identified from cucumber genome, which respectively showed high sequence similarities and highly conserved domains with homologous genes in Arabidopsis. Based on Real-time PCR analysis, most of the tested genes' expression decreased during cucumber seed germination, which was in accordance with the ABA level variation. In addition, according to the absolute expression, CsPYL1, CsPYL3, CsPP2C5, CsABI1, CsSnRK2.3 and CsSnRK2.4 were highly expressed, indicating that they may play more important roles in ABA signaling during cucumber seed germination. Moreover, most of these highly expressed genes, except CsPYL3, were up-regulated by ABA treatment. Meanwhile, most of the tested genes' expression dramatically changed at the initial water uptake phase, indicating that this period may be critical in the regulation of ABA on seed germination. Under Cu~(2+), Zn~(2+), NaCl and simulated acid rain stresses, cucumber seed germination percentage decreased and ABA content increased. Meanwhile, the expression of ABA signal transduction core components genes showed specific response to a particular stress and was not always consist with ABA variation. Generally, the expression of CsPYL1, CsPYL3, CsABI1, CsSnRK2.3 and CsSnRK2.4 was sensitive to 120 mM NaCl and 0.5 mM Cu~(2+) treatments.
机译:脱落酸(ABA)是重要的植物激素,可调节植物生命周期中的许多生理和生化过程,尤其是在种子发芽和胁迫响应中。为了探索黄瓜(Cucumis sativus L.)种子发芽期间以及Cu〜(2 +),Zn〜(2 +),NaCl和模拟酸雨胁迫,9个CsPYL,3个A组CsPP2C和从黄瓜基因组中鉴定出两个亚类CsSnRK2,它们分别在拟南芥中具有高度的序列相似性和与同源基因高度保守的结构域。根据实时PCR分析,在黄瓜种子萌发过程中,大多数测试基因的表达下降,这与ABA水平的变化一致。另外,根据绝对表达,CsPYL1,CsPYL3,CsPP2C5,CsABI1,CsSnRK2.3和CsSnRK2.4被高表达,表明它们在黄瓜种子萌发过程中可能在ABA信号传导中起更重要的作用。此外,除CsPYL3外,大多数这些高表达基因均通过ABA处理上调。同时,大多数测试基因的表达在初始吸水阶段发生了显着变化,这表明这一时期对于调节ABA对种子发芽的作用至关重要。在Cu〜(2 +),Zn〜(2 +),NaCl和模拟酸雨胁迫下,黄瓜种子发芽率降低,ABA含量增加。同时,ABA信号转导核心成分基因的表达表现出对特定压力的特异性反应,并不总是与ABA变异有关。通常,CsPYL1,CsPYL3,CsABI1,CsSnRK2.3和CsSnRK2.4的表达对120 mM NaCl和0.5 mM Cu〜(2+)处理敏感。

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