Unveiling the Role of GhP5CS1 in Cotton Salt Stress Tolerance: A Comprehensive Genomic and Functional Analysis of P5CS Genes
文献类型: 外文期刊
作者: Hui Fang;Xin Gao;Yunhao Wu;Ke Zhang;Ying Wu;Junyi Li;Dongmei Qian;Ruochen Li;Haijing Gu;Teame Gereziher Mehari;Xinlian Shen;Baohua Wang
作者机构:
关键词: cotton genomics;GhP5CS1 function;P5CS gene family;proline;salt stress;virus-induced gene silencing (VIGS)
期刊名称: Plants
ISSN: 2223-7747
年卷期: 2025 年 14 卷 2 期
页码:
收录情况: SCIE(2025版)
摘要: Proline, a critical osmoregulatory compound, is integral to various plant stress responses. The P5CS gene, which encodes the rate-limiting enzyme in proline biosynthesis, known as ∆1-pyrroline-5-carboxylate synthetase, is fundamental to these stress response pathways. While the functions of P5CS genes in plants have been extensively documented, their specific roles in cotton remain inadequately characterized. In this study, we identified 40 P5CS genes across four cotton species with diverse sequence lengths and molecular weights. Phylogenetic analysis of 100 P5CS genes from nine species revealed three subgroups, with Gossypium hirsutum closely related to Gossypium barbadense. Collinearity analysis highlighted significant differences in collinear gene pairs, indicating evolutionary divergence among P5CS genes in tetraploid and diploid cotton. Exon–intron structures and conserved motifs correlated with phylogenetic relationships, suggesting functional differentiation. Stress-responsive elements in P5CS promoters suggest involvement in abiotic stress. Expression analysis under salt stress revealed differential expressions of GhP5CS genes, with GhP5CS1 emerging as a potential key regulator. Virus-induced gene silencing confirmed the pivotal role of GhP5CS1 in cotton’s salt stress response, as evidenced by increased salt sensitivity in the silenced plants. This study enhances our understanding of the functional diversity and roles of P5CS genes in cotton under stress conditions.
分类号:
- 相关文献
作者其他论文 更多>>
-
Multi-objective optimization of rice production and environmental sustainability under climate change in the Yangtze River Delta: A DNDC-random forest framework approach
作者:Shuoshuo Liang;Ping He;Qingnan Chu;Wentian He;Ruochen Li;Xinpeng Xu;Rong Jiang;Shuang Liu;Linkui Cao;Zhimin Sha
关键词:Climate change;DNDC-RF framework;Greenhouse gas emissions;Multi-objective optimization;Rice production
-
Effects of Na+ and Ca2+ on the rheological properties of alkaline-extracted green tea polysaccharides conjugates and their gelling mechanism
作者:Yuxue Zhang;Ke Zhang;Jianxin Chen;Xiaoqiang Chen
关键词:Gel formation mechanism;Green tea polysaccharide conjugates;Rheological property
-
Insights into the Role of GhTAT2 Genes in Tyrosine Metabolism and Drought Stress Tolerance in Cotton
作者:Teame Gereziher Mehari;Jungfeng Tang;Haijing Gu;Hui Fang;Jinlei Han;Jie Zheng;Fang Liu;Kai Wang;Dengbing Yao;Baohua Wang
关键词:drought stress;Gossypium;RT-qPCR;tyrosine aminotransferase;tyrosine metabolism;VIGS
-
Centromere-size reduction and chromatin state dynamics following intergenomic hybridization in cotton
作者:Jinlei Han;Guanjing Hu;Yan Dai;Xin Zhang;Jingjing Tian;Jialiang Zhou;Xinqi Xu;Qi Chen;Xiaobing Kou;Lei Xu;Xinyu Wu;Ziying Sun;Jiahui Geng;Lin Li;Chenyu Qiu;Teame Gereziher Mehari;Baohua Wang;Hui Zhang;Xinlian Shen;Zhenzhen Xu;Jonathan F. Wendel;Kai Wang
关键词:(2-0-3)
-
Genome-wide association analysis of wheat stem traits using 55K microarrays
作者:Wei Wang;Na Sun;Kai Zhao;Ji Kun Song;Hui Fang;Guiqiang Fan;Yonghong Gao;Tianrong Huang;Yindeng Ding
关键词:candidate genes;collapse;GWAS;stem thickness;wheat
-
Transcriptome dynamics along with expression analysis of key genes involved in fiber development between Gossypium barbadense and Gossypium darwinii
作者:Allah Ditta;Xiaoyan Cai;Muhammad Shehzad;Sajid Fiaz;Yanchao Xu;Yuqing Hou;Zunaira Anwar;Aqsa Ijaz;Najla B.S. Al-Saud;Fang Liu;Kunbo Wang;Baohua Wang;Baohong Zhang;Ahmed M. Ramadan;Muhammad Kashif Riaz Khan;Zhongli Zhou
关键词:DPAs;Fiber development;Gene Functions;Single sequence repeats;Transcriptome profile
-
Insights into the role of GhCYP and GhTPS in the gossypol biosynthesis pathway via a multiomics and functional-based approach in cotton
作者:Teame Gereziher Mehari;Marijana Skorić;Hui Fang;Kai Wang;Fang Liu;Tesfay Araya;Branislav Šiler;Dengbing Yao;Baohua Wang
关键词:correlation;cotton;gossypol;near-isogenic lines;target metabolomics;transcriptome