Ouellette Luc, Anh Tuan Pham, Toora Parneet K, Yamaguchi Shinjiro, Ayele Belay T
Department of Plant Science, 222 Agriculture Building, University of Manitoba, Winnipeg, Manitoba R3T 2N2, Canada.
Institute for Chemical Research, Kyoto University, Gokasho, Uji, Kyoto 611-0011, Japan.
Gene. 2023 Apr 20;861:147255. doi: 10.1016/j.gene.2023.147255. Epub 2023 Feb 4.
The level of bioactive gibberellins (GAs) in plants is regulated partly by their inactivation, mainly by the action of GA 2-oxidases (GA2oxs). This study identified three new GA2ox genes in barley: HvGA2ox1, HvGA2ox3 and HvGA2ox6. Analysis of their nucleotide and putative amino acid sequences revealed that they share high sequence identity with other plant GA2oxs and their corresponding proteins. Phylogenetic analysis revealed the HvGA2ox1, HvGA2ox3 and HvGA2ox6 belong to GA2ox structural classes II, I, and III, respectively. Feeding the HvGA2ox1 and HvGA2ox3 recombinant proteins with the C19-GAs, GA and GA, resulted in the production of GA and GA, respectively, with no product detected when they were fed with the C20-GA, GA. Whereas the HvGA2ox6 recombinant protein was able to convert GA to GA, and no product was detected when it was fed with GA or GA. HvGA2ox1 and HvGA2ox3 were highly expressed in internodes and the endosperm of maturing seeds while HvGA2ox6 was predominantly expressed in the embryos. Salinity stress upregulated the expression of all three genes in seedling tissues. Our results indicate that HvGA2ox1, HvGA2ox3 and HvGA2ox6 encode functional GA2oxs that can regulate GA levels, and therefore growth and development of a barley plant, and its interaction with environment.
植物中生物活性赤霉素(GAs)的水平部分受其失活调节,主要通过GA 2-氧化酶(GA2oxs)的作用。本研究在大麦中鉴定出三个新的GA2ox基因:HvGA2ox1、HvGA2ox3和HvGA2ox6。对它们的核苷酸和推测的氨基酸序列分析表明,它们与其他植物GA2oxs及其相应蛋白质具有高度的序列同一性。系统发育分析表明,HvGA2ox1、HvGA2ox3和HvGA2ox6分别属于GA2ox结构类II、I和III。用C19-GAs、GA和GA饲喂HvGA2ox1和HvGA2ox3重组蛋白,分别产生GA和GA,而用C20-GA、GA饲喂时未检测到产物。而HvGA2ox6重组蛋白能够将GA转化为GA,用GA或GA饲喂时未检测到产物。HvGA2ox1和HvGA2ox3在节间和成熟种子的胚乳中高度表达,而HvGA2ox6主要在胚中表达。盐胁迫上调了幼苗组织中所有三个基因的表达。我们的结果表明,HvGA2ox1、HvGA2ox3和HvGA2ox6编码功能性GA2oxs,可调节GA水平,从而调节大麦植株的生长发育及其与环境的相互作用。