首页> 外文期刊>Journal of Plant Physiology >Cloning and expression analysis of cDNAs for ABA 8'-hydroxylase during sweet cherry fruit maturation and under stress conditions.
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Cloning and expression analysis of cDNAs for ABA 8'-hydroxylase during sweet cherry fruit maturation and under stress conditions.

机译:甜樱桃果实成熟过程中及胁迫条件下ABA 8'-羟化酶cDNA的克隆与表达分析。

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Abscisic acid (ABA) plays a key role in various aspects of plant growth and development, including adaptation to environmental stress and fruit maturation in sweet cherry fruit. In higher plants, the level of ABA is determined by synthesis and catabolism. In order to gain insight into ABA synthesis and catabolism in sweet cherry fruit during maturation and under stress conditions, four cDNAs of PacCYP707A1-PacCYP707A4 for 8'-hydroxylase, a key enzyme in the oxidative catabolism of ABA, and one cDNA of PacNCED1 for 9-cis-epoxycarotenoid dioxygenase, a key enzyme in the ABA biosynthetic pathway, were isolated from sweet cherry fruit (Prunus avium L.). The timing and pattern of PacNCED1 expression was coincident with that of ABA accumulation, which was correlated to maturation of sweet cherry fruit. All four PacCYP707As were expressed at varying intensities throughout fruit development and appeared to play overlapping roles in ABA catabolism throughout sweet cherry fruit development. The application of ABA enhanced the expression of PacCYP707A1-PacCYP707A3 as well as PacNCED1, but downregulated the PacCYP707A4 transcript level. Expressions of PacCYP707A1, PacCYP707A3 and PacNCED1 were strongly increased by water stress. No significant differences in PacCYP707A2 and PacCYP707A4 expression were observed between dehydrated and control fruits. The results suggest that endogenous ABA content is modulated by a dynamic balance between biosynthesis and catabolism, which are regulated by PacNCED1 and PacCYP707As transcripts, respectively, during fruit maturation and under stress conditions.
机译:脱落酸(ABA)在植物生长和发育的各个方面都起着关键作用,包括对环境压力的适应和甜樱桃果实的成熟。在高等植物中,ABA的水平由合成和分解代谢决定。为了深入了解甜樱桃果实成熟过程中和在胁迫条件下的ABA合成和分解代谢, PacCYP707A1 - PacCYP707A4 的四个cDNA涉及8'-羟化酶从甜樱桃果实中分离出一种氨基酸,它是ABA的氧化分解代谢中的一种,并且从 PacNCED1 的一个cDNA中分离出9- 顺式-环氧类胡萝卜素双加氧酶,这是ABA生物合成途径中的关键酶。 李子 L.)。 PacNCED1 表达的时间和模式与ABA积累的时间和模式一致,这与甜樱桃果实的成熟有关。所有四种 PacCYP707A 在整个果实发育过程中均以不同的强度表达,并且在甜樱桃果实的整个发育过程中似乎在ABA分解代谢中发挥重叠作用。 ABA的应用增强了 PacCYP707A1 - PacCYP707A3 以及 PacNCED1 的表达,但下调了 PacCYP707A4 的转录水平。水分胁迫强烈增强了 PacCYP707A1 , PacCYP707A3 和 PacNCED1 的表达。脱水和对照果实之间的 PacCYP707A2 和 PacCYP707A4 表达没有显着差异。结果表明,内源ABA的含量受生物合成和分解代谢之间动态平衡的调节,分别由 PacNCED1 和 PacCYP707As 转录本调节,在果实成熟和胁迫条件下。

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