Integrated cell wall and transcriptomic analysis revealed the mechanism underlying zinc-induced alleviation of cadmium toxicity in Cosmos bipinnatus

毒性 机制(生物学) 转录组 Cosmos(工厂) 化学 细胞生物学 生物 植物 生物化学 基因 基因表达 物理 量子力学 有机化学
作者
Xiao-Fang Yu,XiaoXuan Zeng,Xiaoyu Wang,Jie Du,Xinhao Wang,Yujia Liu,Maolin Chen,Xinyu Zhang,Xue Xiao,Lijuan Yang,Ting Lei,Suping Gao,Xi Li,Mingyan Jiang,Qi Tao
出处
期刊:Plant Physiology and Biochemistry [Elsevier BV]
卷期号:214: 108940-108940
标识
DOI:10.1016/j.plaphy.2024.108940
摘要

Plant growth is severely harmed by cadmium (Cd) contamination, while the addition of zinc (Zn) can reduce the toxic effects of Cd. However, the interaction between Cd and Zn on the molecular mechanism and cell wall of Cosmosbipinnatus is unclear. In this study, a transcriptome was constructed using RNA-sequencing. In C. bipinnatus root transcriptome data, the expression of 996, 2765, and 3023 unigenes were significantly affected by Cd, Zn, and Cd + Zn treatments, respectively, indicating different expression patterns of some metal transporters among the Cd, Zn, and Cd + Zn treatments. With the addition of Zn, the damage to the cell wall was reduced, both the proportion and content of polysaccharides in the cell wall were changed, and Cd accumulation was decreased by 32.34%. In addition, we found that Cd and Zn mainly accumulated in pectins, the content of which increased by 30.79% and 61.4% compared to the CK treatment. Thus, Zn could alleviate the toxicity of Cd to C. bipinnatus. This study revealed the interaction between Cd and Zn at the physiological and molecular levels, broadening our understanding of the mechanisms of tolerance to Cd and Zn stress in cosmos.

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