Transcriptome studies on cadmium tolerance and biochar mitigating cadmium stress in muskmelon

生物炭 转录组 化学 WRKY蛋白质结构域 生物 基因 生物化学 基因表达 有机化学 热解
作者
Yuxuan Cheng,Lingzhi Qiu,Pingkai Shen,Yunqiang Wang,Junli Li,Zhaoyi Dai,Meifang Qi,Ying Zhou,Zhengkang Zou
出处
期刊:Plant Physiology and Biochemistry [Elsevier BV]
卷期号:197: 107661-107661 被引量:14
标识
DOI:10.1016/j.plaphy.2023.107661
摘要

Cadmium pollution in agricultural soil is a great threat to crop growth and human health. In this research, with 1%, 3% and 5% biochar applied to control soil cadmium pollution, melon was selected to be the experimental object for physiological detection and transcriptome analysis, through which we explored the mechanism of cadmium tolerance and biochar mitigating cadmium stress in muskmelon. Three set concentrations of biochar have a mitigative effect on muskmelon cadmium stress, and 5% biochar and 3% biochar respectively have the best and the worst alleviative effect. The alleviation of biochar to cadmium stress on muskmelon is primarily in the manner of inhibiting cadmium transfer, while the resistance of muskmelon to cadmium stress is through activating phenylpropanoid pathway and overexpressing stress related genes. Under cadmium treatment, 11 genes of the phenylpropane pathway and 19 stress-related genes including cytochrome P450 family protein genes and WRKY transcription factor genes were up-regulated, while 1%, 3%, 5% biochar addition significantly downregulated 3, 0, 7 phenylpropane pathway genes and 17, 5, 16 stress-related genes, respectively. Genes such as cytochrome P450 protein family genes, WRKY transcription factor genes, and annexin genes may play a key role in muskmelon's resistance to cadmium stress. The results show the key pathways and genes of cadmium stress resistance and the effect of different concentrations of biochar in alleviating cadmium stress, which provide a reference for the research of cadmium stress resistance in crops and the application of biochar in cadmium pollution in agricultural soil.
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