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黄檀 MYB 转录因子 MYB30 是蜡质积累和耐旱性所必需的。

The yellowhorn MYB transcription factor MYB30 is required for wax accumulation and drought tolerance.

机构信息

State Key Laboratory of Tree Genetics and Breeding, Research Institute of Forestry, Chinese Academy of Forestry, Xiangshan Road, Beijing 100091, China.

出版信息

Tree Physiol. 2024 Oct 3;44(10). doi: 10.1093/treephys/tpae111.

Abstract

Yellowhorn (Xanthoceras sorbifolium Bunge) is an economically important tree species in northern China, mainly distributed in arid and semi-arid areas where water resources are scarce. Drought affects its yield and the expansion of its suitable growth area. It was found that the wax content in yellowhorn leaves varied significantly among different germplasms, which had a strong correlation with the drought resistance of yellowhorn. In this study, XsMYB30 was isolated from 'Zhongshi 4' of yellowhorn, a new highly waxy variety. DAP-Seq technology revealed that the pathways associated with fatty acids were significantly enriched in the target genes of XsMYB30. Moreover, the results of electrophoretic mobility shift assay, yeast one hybrid assay and dual-luciferase assay demonstrated that XsMYB30 could directly and specifically bind with the promoters of genes involved in wax biosynthesis (XsFAR4, XsCER1 and XsKCS1), lipid transfer (XsLTPG1 and XsLTP1) and fatty acid synthesis (XsKASIII), thus enhancing their expression. In addition, the overexpression of XsMYB30 in poplar promoted the expression levels of these target genes and increased the wax deposition on poplar leaves leading to a notable improvement in the plant's ability to withstand drought. These findings indicate that XsMYB30 is an important regulatory factor in cuticular wax biosynthesis and the drought resistance of yellowhorn.

摘要

黄杞(Xanthoceras sorbifolium Bunge)是中国北方一种重要的经济树种,主要分布在水资源匮乏的干旱和半干旱地区。干旱会影响其产量和适宜生长区的扩张。研究发现,不同黄杞品种的叶片蜡质含量差异显著,与黄杞的抗旱性有很强的相关性。本研究从黄杞高蜡新品种‘中石 4 号’中分离得到 XsMYB30。DAP-Seq 技术揭示,与脂肪酸相关的途径在 XsMYB30 的靶基因中显著富集。此外,电泳迁移率变动分析、酵母单杂交和双荧光素酶报告基因检测实验结果表明,XsMYB30 可以直接并特异性地与参与蜡质生物合成(XsFAR4、XsCER1 和 XsKCS1)、脂类转运(XsLTPG1 和 XsLTP1)和脂肪酸合成(XsKASIII)的基因启动子结合,从而增强它们的表达。此外,在杨树中过表达 XsMYB30 可以促进这些靶基因的表达水平,并增加杨树叶片上的蜡质沉积,从而显著提高植物的抗旱能力。这些结果表明,XsMYB30 是黄杞角质层蜡质生物合成和抗旱性的重要调控因子。

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