Lu Chuang, Yang Wenhui, Zhang Huaxi, Wu Yanrong, Meng Huina, Lv Lifeng, Lu Wanping, Zhao Dongmei, Huang Guixiang
College of Agriculture, Guangxi University, Nanning 530004, China.
Plants (Basel). 2024 Dec 27;14(1):53. doi: 10.3390/plants14010053.
Citric acid is an important organic acid with wide applications and diverse biological functionality. As the predominant organic acid in lemons, citric acid plays a crucial role in determining the flavor of citrus, especially in lemons. ATP citrate lyase (ACL, EC4.1.3.8) is the keg gene in citric acid metabolism. Several research studies on ACL only focused on high-sugar- and low-acid-content citrus varieties; however, the ACL mechanism in lemons with high acid and low sugar levels remains undetermined. In this study, a key candidate gene, , for citrate cleavage was identified from the genome data of 'Xiangshui' lemon [ (L.) Burm f.]. The putative protein coded by the gene -1 is localized in the nuclear and cell membranes. The -1 gene was expressed in all tissues, with the highest expression in male flowers and the lowest expression in mature fruits; the expression decreased during lemon fruit development. The overexpression of -1 in transgenic tomatoes significantly increases the activity of citrate lyase, which subsequently reduces citric acid content. This study clarified the function of the gene in cleaving citric acid, provided new insights into the citric acid metabolism of citrus, and offered a theoretical reference for reducing acid and increasing sugar in citrus to improve fruit quality. It also helped to enhance the understanding of the metabolism and role of citrate in plants.
柠檬酸是一种重要的有机酸,具有广泛的应用和多样的生物学功能。作为柠檬中的主要有机酸,柠檬酸在决定柑橘类水果尤其是柠檬的风味方面起着关键作用。ATP柠檬酸裂解酶(ACL,EC4.1.3.8)是柠檬酸代谢中的关键基因。此前关于ACL的多项研究仅聚焦于高糖低酸含量的柑橘品种;然而,高酸低糖柠檬中的ACL机制仍未明确。在本研究中,从‘香水’柠檬[(L.)Burm f.]的基因组数据中鉴定出一个柠檬酸裂解的关键候选基因 。该基因编码的推定蛋白定位于细胞核和细胞膜。 基因在所有组织中均有表达,在雄花中表达量最高,在成熟果实中表达量最低;在柠檬果实发育过程中表达量下降。在转基因番茄中过表达 显著提高了柠檬酸裂解酶的活性,进而降低了柠檬酸含量。本研究阐明了 基因在裂解柠檬酸中的功能,为柑橘类水果的柠檬酸代谢提供了新的见解,并为降低柑橘酸度、提高糖分以改善果实品质提供了理论参考。它也有助于增强对植物中柠檬酸代谢及其作用的理解。