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Genome-wide analysis and expression profiling of Cation/H+ exchanger (CAX) family genes reveal likely functions in cadmium stress responses in poplar

基因 基因家族 毛果杨 基因组 基因复制 植物修复 遗传学 生物 化学 重金属 环境化学 有机化学
作者
Fang He,Yujie Shi,Junlin Li,Tiantian Lin,Kuangji Zhao,Lianghua Chen,Jia‐Xuan Mi,Fan Zhang,Yu Zhong,Mengmeng Lu,Meng‐Xue Niu,Cong‐Hua Feng,Shanshan Ding,Min-Yue Peng,Jin‐Liang Huang,Hanbo Yang,Xueqin Wan
出处
期刊:International Journal of Biological Macromolecules [Elsevier]
卷期号:204: 76-88 被引量:31
标识
DOI:10.1016/j.ijbiomac.2022.01.202
摘要

Cadmium, a toxic heavy metal, seriously affects human health and ecological security. The cation/H+ exchanger (CAX) family is a unique metal transporter that plays a crucial role in Cd acquisition, transfer, and remission in plants. Although there are many studies related to the genome-wide analysis of Populus trichocarpa, little research has been done on the CAX family genes, especially concerning Cd stress. In this study, genome-wide analysis of the Populus CAX family identified seven stress-related CAX genes. The evolutionary tree indicated that the CaCA family genes were grouped into four clusters. Moreover, seven pairs of genes were derived by segmental duplication in poplars. Cis-acting element analysis identified numerous stress-related elements in the promoters of diverse PtrCAXs. Furthermore, some PtrCAXs were up-regulated by drought, beetle, and mechanical damage, indicating their possible function in regulating stress response. Under cadmium stress, all CAX genes in the roots were up-regulated. Our findings suggest that plants may regulate their response to Cd stress through the TF-CAXs module. Comprehensively investigating the CAX family provides a scientific basis for the phytoremediation of heavy metal pollution by Populus.
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