Nambara Eiji, Marion-Poll Annie
Laboratory for Reproductive Growth Regulation, Plant Science Center, RIKEN, Yokohama, 230-0045, Japan.
Annu Rev Plant Biol. 2005;56:165-85. doi: 10.1146/annurev.arplant.56.032604.144046.
The level of abscisic acid (ABA) in any particular tissue in a plant is determined by the rate of biosynthesis and catabolism of the hormone. Therefore, identifying all the genes involved in the metabolism is essential for a complete understanding of how this hormone directs plant growth and development. To date, almost all the biosynthetic genes have been identified through the isolation of auxotrophic mutants. On the other hand, among several ABA catabolic pathways, current genomic approaches revealed that Arabidopsis CYP707A genes encode ABA 8'-hydroxylases, which catalyze the first committed step in the predominant ABA catabolic pathway. Identification of ABA metabolic genes has revealed that multiple metabolic steps are differentially regulated to fine-tune the ABA level at both transcriptional and post-transcriptional levels. Furthermore, recent ongoing studies have given new insights into the regulation and site of ABA metabolism in relation to its physiological roles.
植物中任何特定组织的脱落酸(ABA)水平由该激素的生物合成和分解代谢速率决定。因此,鉴定所有参与代谢的基因对于全面理解这种激素如何指导植物生长发育至关重要。迄今为止,几乎所有的生物合成基因都是通过分离营养缺陷型突变体来鉴定的。另一方面,在几种ABA分解代谢途径中,目前的基因组学方法表明拟南芥CYP707A基因编码ABA 8'-羟化酶,其催化主要ABA分解代谢途径中的第一步关键反应。ABA代谢基因的鉴定表明,多个代谢步骤在转录和转录后水平受到差异调节,以微调ABA水平。此外,最近正在进行的研究为ABA代谢的调节及其生理作用的位点提供了新的见解。