Overexpression of histone demethylase gene SlJMJ18 and SlJMJ23 from tomato confers cadmium tolerance by regulating metal transport and hormone content in Arabidopsis

生物 拟南芥 脱甲基酶 镉 非生物胁迫 基因 转基因 细胞生物学 转基因作物 植物激素 组蛋白 拟南芥 植物 遗传学 突变体 冶金 材料科学
作者
Yanlong Dong,Yufang Ma,Qian Li,Yaoliang Cao,Dingxiao Dong,Chao Chen,Xinxin Zhang,Yawen Fan,Xiaoxia Jin
出处
期刊:Plant Science [Elsevier BV]
卷期号:346: 112169-112169 被引量:4
标识
DOI:10.1016/j.plantsci.2024.112169
摘要

A lower concentration of cadmium (Cd), a hazardous and non-essential element for plant growth, will have deleterious effects on plants and endanger human health. Histone demethylase (JHDM) is important for plants' ability to withstand abiotic stress, according to an increasing number of studies. The degree of expression of the SlJMJ18 and SlJMJ23 genes in different tomato tissues was confirmed by this study. These two genes were responsive to the heavy metals Cd, Hg, Pb, and Cu stress, according to fluorescence quantification and GUS staining. Interestingly, the overexpression transgenic Arabidopsis plants of two genes have different responses to Cd stress. While SlJMJ18-OE lines consistently display Cd resistance but an early-flowering phenotype, SlJMJ23-OE plants have sensitivity during the post-germination stage and then greater tolerance to Cd stress. It was discovered that these two genes may affect cadmium tolerance of plants by regulating the expression of hormone synthesis related genes and hormone contents (BRs and ABA). Moreover, SlJMJ23 may resist cadmium stress by increasing the total phenol content in plants. The functional significance of JMJs is better understood in this study, which also offers a theoretical foundation for the use of molecular technology to develop plants resistant to Cd and an experimental basis for the efficient use of land resources.
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