Research Progress on (Plant Cadmium Resistance) Genes in Plants.
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PubMed
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| Auteurs principaux: | , , , , , , , , , |
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| Format: | Artículo científico |
| Langue: | en |
| Publié: |
Biology
2025
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| _version_ | 1868266146737684482 |
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| author | Li, Hongzheng Liu, Shuyu Chen, Zhiqi Qiu, Linyan Wang, Xianfeng Kang, Xianhui Gao, Jujuan Guo, Pingping Lin, Wenbo Pan, Chenglang |
| author_facet | Li, Hongzheng Liu, Shuyu Chen, Zhiqi Qiu, Linyan Wang, Xianfeng Kang, Xianhui Gao, Jujuan Guo, Pingping Lin, Wenbo Pan, Chenglang Li, Hongzheng Liu, Shuyu Chen, Zhiqi Qiu, Linyan Wang, Xianfeng Kang, Xianhui Gao, Jujuan Guo, Pingping Lin, Wenbo Pan, Chenglang |
| collection | PubMed - marine biology |
| contents | Research Progress on (Plant Cadmium Resistance) Genes in Plants. Li, Hongzheng Liu, Shuyu Chen, Zhiqi Qiu, Linyan Wang, Xianfeng Kang, Xianhui Gao, Jujuan Guo, Pingping Lin, Wenbo Pan, Chenglang Heavy metal pollution is becoming increasingly severe, and cadmium (Cd) is one of the most threatening pollutants. The PCR (Plant cadmium resistance) gene encodes a class of small transmembrane proteins containing the PLAC8 motif, which confer cadmium tolerance to plants through multiple mechanisms such as efflux, compartmentalization, chelation, and antioxidant activity, and regulate fruit size and ion homeostasis. This study systematically integrated the / gene families from mosses, monocots, and dicots, revealing their structural and functional relationships, evolutionary trajectories, and functional diversification patterns through phylogenetic and motif analyses, providing a theoretical basis for cadmium-resistant breeding and environmental remediation. Future research should further integrate multi-omics and gene editing technologies to deeply elucidate the transport mechanism of the PCR protein pentamer and the functional differences of key motifs (CCXXXXCPC, CCXXCAL, and CCXXG), and conduct field trials to assess their ecological safety and crop application potential. |
| format | Artículo científico |
| id | pubmed_41007309 |
| institution | PubMed |
| language | en |
| publishDate | 2025 |
| publisher | Biology |
| record_format | pubmed |
| spellingShingle | Research Progress on (Plant Cadmium Resistance) Genes in Plants. Li, Hongzheng Liu, Shuyu Chen, Zhiqi Qiu, Linyan Wang, Xianfeng Kang, Xianhui Gao, Jujuan Guo, Pingping Lin, Wenbo Pan, Chenglang Research Progress on (Plant Cadmium Resistance) Genes in Plants. Li, Hongzheng Liu, Shuyu Chen, Zhiqi Qiu, Linyan Wang, Xianfeng Kang, Xianhui Gao, Jujuan Guo, Pingping Lin, Wenbo Pan, Chenglang Heavy metal pollution is becoming increasingly severe, and cadmium (Cd) is one of the most threatening pollutants. The PCR (Plant cadmium resistance) gene encodes a class of small transmembrane proteins containing the PLAC8 motif, which confer cadmium tolerance to plants through multiple mechanisms such as efflux, compartmentalization, chelation, and antioxidant activity, and regulate fruit size and ion homeostasis. This study systematically integrated the / gene families from mosses, monocots, and dicots, revealing their structural and functional relationships, evolutionary trajectories, and functional diversification patterns through phylogenetic and motif analyses, providing a theoretical basis for cadmium-resistant breeding and environmental remediation. Future research should further integrate multi-omics and gene editing technologies to deeply elucidate the transport mechanism of the PCR protein pentamer and the functional differences of key motifs (CCXXXXCPC, CCXXCAL, and CCXXG), and conduct field trials to assess their ecological safety and crop application potential. |
| title | Research Progress on (Plant Cadmium Resistance) Genes in Plants. |
| url | https://pubmed.ncbi.nlm.nih.gov/41007309/ |