López Cristina Mª, Alseekh Saleh, Martínez Rivas Félix J, Fernie Alisdair R, Prieto Pilar, Alamillo Josefa M
Departamento de Botánica, Ecología y Fisiología Vegetal, Grupo de Fisiología Molecular y Biotecnología de Plantas, Campus de Excelencia Internacional Agroalimentario, CEIA3, Campus de Rabanales, Universidad de Córdoba, 14071 Córdoba, Spain.
Max-Planck-Institute of Molecular Plant Physiology, 14476 Potsdam-Golm, Germany.
J Exp Bot. 2025 Jan 10;76(2):346-362. doi: 10.1093/jxb/erae424.
Adenine metabolism is important for common bean (Phaseolus vulgaris L.) productivity since this legume uses ureides derived from the oxidation of purine nucleotides as its primary nitrogen storage molecules. Purine nucleotides are produced from de novo synthesis or through salvage pathways. Adenine phosphoribosyl transferase (APRT) is the enzyme dedicated to adenine nucleobase salvage for nucleotide synthesis, but it can also convert active cytokinin bases into their inactive nucleotide forms. In common bean, APRT is encoded by four genes. Gene expression analysis, biochemical properties, and subcellular location indicated functional differences among the common bean APRT isoforms. CRISPR/Cas9 targeted down-regulation of two of the four PvAPRTs followed by metabolomic and physiological analyses of targeted hairy roots revealed that, although the two proteins have redundant functions, PvAPRT1 mostly participated in the salvage of adenine, whereas PvAPRT5 was the predominant form in the regulation of cytokinin homeostasis and stress responses with a high impact in root and nodule growth.
腺嘌呤代谢对普通菜豆(Phaseolus vulgaris L.)的生产力很重要,因为这种豆科植物利用嘌呤核苷酸氧化产生的脲类作为其主要的氮储存分子。嘌呤核苷酸可通过从头合成或补救途径产生。腺嘌呤磷酸核糖转移酶(APRT)是一种专门用于腺嘌呤碱基补救以合成核苷酸的酶,但它也可以将活性细胞分裂素碱基转化为非活性核苷酸形式。在普通菜豆中,APRT由四个基因编码。基因表达分析、生化特性和亚细胞定位表明普通菜豆APRT同工型之间存在功能差异。利用CRISPR/Cas9对四个PvAPRTs中的两个进行靶向下调,随后对靶向毛状根进行代谢组学和生理学分析,结果表明,虽然这两种蛋白具有冗余功能,但PvAPRT1主要参与腺嘌呤的补救,而PvAPRT5是调节细胞分裂素稳态和应激反应的主要形式,对根和根瘤生长有很大影响。