首页> 外文期刊>Journal of Plant Physiology >Expression analysis of beta -glucosidase genes that regulate abscisic acid homeostasis during watermelon (Citrullus lanatus) development and under stress conditions.
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Expression analysis of beta -glucosidase genes that regulate abscisic acid homeostasis during watermelon (Citrullus lanatus) development and under stress conditions.

机译:β-葡萄糖苷酶基因在西瓜( Citrullus lanatus )发育过程中和胁迫条件下调节脱落酸稳态的表达分析。

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The aim of this study was to obtain new insights into the mechanisms that regulate endogenous abscisic acid (ABA) levels by beta -glucosidase genes during the development of watermelons (Citrullus lanatus) and under drought stress conditions. In total, five cDNAs from watermelons were cloned by using reverse transcription-PCR (RT-PCR). They included three cDNAs (ClBG1, ClBG2 and ClBG3) homologous to those that encode beta -glucosidase l that hydrolyzes the ABA glucose ester (ABA-GE) to release active ABA, ClNCED4, which encodes 9-cis-epoxycarotenoid dioxygenase (NCED), a key enzyme in ABA biosynthesis, and ClCYP707A1, encoding ABA 8'-hydroxylase. A BLAST homology search revealed that the sequences of cDNAs and the deduced amino acids of these genes showed a high degree of homology to comparable molecules of other plant species. During fruit development and ripening, the expressions of ClBG1, ClNCED4 and ClCYP707A1 were relatively low at an early stage, increased rapidly along with fruit ripening, and reached the highest levels at 27 days after full bloom (DAFB) at the harvest stage. This trend was consistent with the accumulation of ABA. The ClBG2 gene on the other hand was highly expressed at 5 DAFB, and then decreased gradually with fruit development. Unlike ClBG1 and ClBG2, the expression of ClBG3 was low at an early stage; its expression peak occurred at 15 DAFB and then declined to the lowest point. When watermelon seedlings were subjected to drought stress, expressions of ClBG1 and ClCYP707A1 were significantly down-regulated, while expressions of ClBG2 and ClNCED4 were up-regulated in the roots, stems and leaves. The expression of ClBG3 was down-regulated in root tissue, but was up-regulated in stems and leaves. In conclusion, endogenous ABA content was modulated by a dynamic balance between biosynthesis and catabolism regulated by ClNCED4, ClCYP707A1 and ClBGs during development and under drought stress condition. It seems likely that beta -glucosidase genes are important for this regulation process.
机译:这项研究的目的是获得新的见解,了解在西瓜( Citrullus lanatus )发育期间和干旱胁迫条件下,β-葡萄糖苷酶基因调节内源脱落酸(ABA)水平的机制。总共,通过使用逆转录-PCR(RT-PCR)克隆了五个来自西瓜的cDNA。它们包括与编码水解β-葡萄糖苷酶l水解ABA葡萄糖酯(ABA-)的同源的三个cDNA( ClBG1 , ClBG2 和 ClBG3 )。 GE)释放活性ABA,编码9- 顺式-环氧类胡萝卜素双加氧酶(NCED)的活性ABA ClNCED4 和 ClCYP707A1 >,编码ABA 8'-羟化酶。 BLAST同源性搜索显示,这些基因的cDNA序列和推导的氨基酸与其他植物物种的可比分子具有高度同源性。在果实发育和成熟期间, ClBG1 , ClNCED4 和 ClCYP707A1 的表达在早期相对较低,并随着果实成熟而迅速增加,并在收获期(DAFB)后第27天达到最高水平。该趋势与ABA的积累一致。另一方面, ClBG2 基因在5 DAFB上高表达,然后随着果实发育而逐渐下降。与 ClBG1 和 ClBG2 不同, ClBG3 的早期表达较低;其表达峰值出现在15 DAFB,然后下降到最低点。西瓜幼苗受到干旱胁迫后, ClBG1 和 ClCYP707A1 的表达均显着下调,而 ClBG2 和 ClNCED4的表达均降低。 在根,茎和叶中被上调。 ClBG3 在根组织中的表达下调,但在茎和叶中的表达上调。综上所述,内源性ABA的含量是受发育和干旱胁迫下 ClNCED4 , ClCYP707A1 和 ClBGs 调节的生物合成与分解代谢之间动态平衡的调节。健康)状况。 β-葡糖苷酶基因似乎对该调节过程很重要。

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