Wang Botao, Zhang Lei, Zhang Ting, Ma Yaping, Song Lihua
College of Enology and Horticulture, Ningxia University, Yinchuan, 750021, China.
College of Forestry and Prataculture, Ningxia University, Yinchuan, 750021, China.
BMC Plant Biol. 2024 Dec 2;24(1):1156. doi: 10.1186/s12870-024-05837-4.
The anthocyanin synthase (ANS) gene is pivotal in plant anthocyanin biosynthesis, significantly influencing fruit coloration. Despite extensive on various studies, there remains a notable absence of research on the regulatory functions of the ANS gene in the 'Lingwuchangzao' variety under elevated temperature and drought stress.
In this study, 107 ZjANS genes were identified. Analyses of their physicochemical properties and gene structures revealed that most are localized in the cytosol and nucleus, with only seven ZjANS genes exhibiting basic characteristics. All genes contained the conserved domains 2OG-FeII_Oxy and DIOX-N. Chromosomal localization and Ka/Ks analysis indicated that these genes are distributed across 12 chromosomes, with 22 tandem gene pairs, suggesting purifying selection. Phylogenetic and synteny analysis demonstrated that ZjANS genes are evolutionarily conserved, forming collinear gene pairs with four species. Cis-acting element analysis identified elements related to anthocyanin synthesis and environmental stress, such as LTR and MBS. Predictions of protein interaction indicated that certain ZjANS proteins interact with MYB, CHI, and GA proteins, potentially involved in the anthocyanin synthesis pathway. Transcriptome and qRT-PCR analysis revealed that thirteen ZjANS genes positively respond to coloring in jujube under elevated temperature and drought stress, with ZjANS17 identified as particularly significant.
This study identified 107 ZjANS genes and systematically analyzed their evolutionary conservation. Thirteen ZjANS genes were found to positively influence fruit coloring in 'Lingwuchangzao' under elevated temperature and drought stress. These findings provide a foundation for further investigations into ZjANS genes and the breeding new jujube varieties.
花青素合酶(ANS)基因在植物花青素生物合成中起关键作用,对果实着色有显著影响。尽管对其进行了广泛研究,但在高温和干旱胁迫下,关于“灵武长枣”品种中ANS基因的调控功能仍缺乏显著研究。
本研究鉴定出107个ZjANS基因。对其理化性质和基因结构的分析表明,大多数基因定位于细胞质和细胞核中,只有7个ZjANS基因表现出基本特征。所有基因都含有保守结构域2OG-FeII_Oxy和DIOX-N。染色体定位和Ka/Ks分析表明,这些基因分布在12条染色体上,有22个串联基因对,表明存在纯化选择。系统发育和共线性分析表明,ZjANS基因在进化上是保守的,与四个物种形成共线基因对。顺式作用元件分析鉴定出与花青素合成和环境胁迫相关的元件,如LTR和MBS。蛋白质相互作用预测表明,某些ZjANS蛋白与MYB、CHI和GA蛋白相互作用,可能参与花青素合成途径。转录组和qRT-PCR分析表明,13个ZjANS基因在高温和干旱胁迫下对枣的着色呈阳性反应,其中ZjANS17被确定为特别显著。
本研究鉴定出107个ZjANS基因,并系统分析了它们的进化保守性。发现13个ZjANS基因在高温和干旱胁迫下对“灵武长枣”的果实着色有积极影响。这些发现为进一步研究ZjANS基因和培育新的枣品种提供了基础。