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苹果 MdGA2ox7 以依赖于花青素的方式调节生长和胁迫耐受性之间的平衡。

The apple MdGA2ox7 modulates the balance between growth and stress tolerance in an anthocyanin-dependent manner.

机构信息

College of Forestry, Hebei Agricultural University, Baoding, 071000, China.

State Key Laboratory of North China Crop Improvement and Regulation, Hebei Agricultural University, Baoding, 071000, China.

出版信息

Plant Physiol Biochem. 2024 Jul;212:108707. doi: 10.1016/j.plaphy.2024.108707. Epub 2024 May 8.

Abstract

Apple (Malus domestica Borkh.) is a widely cultivated fruit crop worldwide but often suffers from abiotic stresses such as salt and cold. Gibberellic acid (GA) plays a pivotal in controlling plant development, environmental adaptability, and secondary metabolism. The GA2-oxidase (GA2ox) is responsible for the deactivation of bioactive GA. In this study, seventeen GA2-oxidase genes were identified in the apple genome, and these members could be clustered into four clades based on phylogenetic relationships and conserved domain structures. MdGA2ox7 exhibited robust expression across various tissues, responded to cold and salt treatments, and was triggered in apple fruit peels via light-induced anthocyanin accumulation. Subcellular localization prediction and experiments confirmed that MdGA2ox7 was located in the cytoplasm. Overexpression of MdGA2ox7 in Arabidopsis caused a lower level of active GA and led to GA-deficient phenotypes, such as dwarfism and delayed flowering. MdGA2ox7 alleviated cold and salt stress damage in both Arabidopsis and apple in concert with melatonin (MT). Additionally, MdGA2ox7 enhanced anthocyanin biosynthesis in apple calli and activated genes involved in anthocyanin synthesis. These findings provide new insights into the functions of apple GA2ox in regulating development, stress tolerance, and secondary metabolism.

摘要

苹果(Malus domestica Borkh.)是一种在世界范围内广泛种植的水果作物,但常受到盐害和冷害等非生物胁迫的影响。赤霉素(GA)在控制植物发育、环境适应性和次生代谢方面起着关键作用。GA2-氧化酶(GA2ox)负责使生物活性 GA 失活。在这项研究中,在苹果基因组中鉴定出了十七个 GA2-氧化酶基因,这些成员可以根据系统发育关系和保守结构域分为四个分支。MdGA2ox7 在各种组织中表达丰富,对冷害和盐害处理有反应,并通过光诱导的花青素积累在苹果果皮中被触发。亚细胞定位预测和实验证实 MdGA2ox7 位于细胞质中。在拟南芥中过表达 MdGA2ox7 导致活性 GA 水平降低,并导致 GA 缺陷表型,如矮化和开花延迟。MdGA2ox7 与褪黑素(MT)一起协同减轻拟南芥和苹果中的冷害和盐害。此外,MdGA2ox7 增强了苹果愈伤组织中的花青素生物合成,并激活了参与花青素合成的基因。这些发现为苹果 GA2ox 在调节发育、耐胁迫和次生代谢方面的功能提供了新的见解。

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