数字农科院2.0

Molecular mechanisms of cold stress response in cotton: Transcriptional reprogramming and genetic strategies for tolerance

文献类型: 外文期刊

作者: Washu Dev;Fahmida Sultana;Hongge Li;Daowu Hu;Zhen Peng;Shoupu He;Haobo Zhang;Muhammad Waqas;Xiaoli Geng;Xiongming Du

作者机构:

关键词: Cold Stress;Gene regulations;Molecular mechanisms;Morphological response;Physiological response;Signal molecules;Transcriptional regulation

期刊名称: Plant Science

ISSN: 0168-9452

年卷期: 2025 年 352 卷

页码:

收录情况: SCIE(2025版)

摘要: Cold stress has a huge impact on the growth and development of cotton, presenting a significant challenge to its productivity. Comprehending the complex molecular mechanisms that control the reaction to CS is necessary for developing tactics to improve cold tolerance in cotton. This review paper explores how cotton responds to cold stress by regulating gene expression, focusing on both activating and repressing specific genes. We investigate the essential roles that transcription factors and regulatory elements have in responding to cold stress and controlling gene expression to counteract the negative impacts of low temperatures. Through a comprehensive examination of new publications, we clarify the intricacies of transcriptional reprogramming induced by cold stress, emphasizing the connections between different regulatory elements and signaling pathways. Additionally, we investigate the consecutive effects of cold stress on cotton yield, highlighting the physiological and developmental disturbances resulting from extended periods of low temperatures. The knowledge obtained from this assessment allows for a more profound comprehension of the molecular mechanisms that regulate cold stress responses, suggesting potential paths for future research to enhance cold tolerance in cotton by utilizing targeted genetic modifications and biotechnological interventions.

分类号:

  • 相关文献

[1]SALINITY TOLERANCE IN WHEAT: RESPONSES, MECHANISMS AND ADAPTATION APPROACHES. Mahboob, W.,Rizwan, M.,Irfan, M.,Hafeez, O. B. A.,Sarwar, N.,Akhtar, M.,Munir, M.,Rani, R.,El Sabagh, A.,Shimelis, H.. 2023

[2]Identifications of Genes Involved in ABA and MAPK Signaling Pathways Positively Regulating Cold Tolerance in Rice. Guohua Ding,Zhugang Li,Zubair Iqbal,Minghui Zhao,Zhibo Cui,Liangzi Cao,Jinsong Zhou,Lei Lei,Yu Luo,Liangming Bai,Guang Yang,Rongsheng Wang,Kun Li,Xueyang Wang,Kai Liu,Mingnan Qu,Shichen Sun. 2025

[3]A sustainable method for effective regulation of anaerobic granular sludge: Artificially increasing the concentration of signal molecules by cultivating a secreting strain. Feng, Huajun,Shen, Dongsheng,Wang, Meizhen,Huang, Wenkun.

[4]The growth and antioxidant defense responses of wheat seedlings to omethoate stress. Liang, Yongchao,Zhang, Bo,Chu, Guixin,Wei, Changzhou,Ye, Jun,Li, Zhiqiang,Zhang, Bo.

[5]Physiological changes and differential gene expression of tea plant under dehydration and rehydration conditions. Liu, Sheng-Chuan,Yao, Ming-Zhe,Ma, Chun-Lei,Jin, Ji-Qiang,Ma, Jian-Qiang,Li, Chun-Fang,Chen, Liang,Liu, Sheng-Chuan.

[6]Stable Soil Moisture Improves the Water Use Efficiency of Maize by Alleviating Short-Term Soil Water Stress. Li Niu,Zhuan Wang,Guolong Zhu,Kefan Yu,Ge Li,Huaiyu Long. 2022

[7]Evaluation of salt tolerance of oat cultivars and the mechanism of adaptation to salinity. Ming Xu Zhang,Rong Bai,Ming Nan,Wei Ren,Chun Mei Wang,Sergey Shabala,Jin Lin Zhang. 2022

[8]Independent and combined influence of drought stress and nitrogen deficiency on physiological and proteomic changes of barley leaves. Li Li,Yaosheng Wang. 2023

[9]Effects of Kiwifruit Rootstocks with Opposite Tolerance on Physiological Responses of Grafting Combinations under Waterlogging Stress. Bai, Danfeng,Li, Zhi,Gu, Shichao,Li, Qiaohong,Sun, Leiming,Qi, Xiujuan,Fang, Jinbao,Zhong, Yunpeng,Hu, Chungen. 2022

[10]Effects of exogenous melatonin on wheat quality under drought stress and rehydration. Fu, Yuanyuan,Li, Penghui,Liang, Yueping,Si, Zhunyun,Ma, Shoutian,Gao, Yang. 2024

[11]Complex molecular mechanisms underlying seedling salt tolerance in rice revealed by comparative transcriptome and metabolomic profiling. Wang, Wen-Sheng,Zhao, Xiu-Qin,Li, Min,Huang, Li-Yu,Xu, Jian-Long,Zhang, Fan,Cui, Yan-Ru,Fu, Bin-Ying,Li, Zhi-Kang,Li, Min,Xu, Jian-Long,Fu, Bin-Ying,Li, Zhi-Kang.

[12]The Potential Regulatory Mechanisms Of T.he Gonadotropin-Releasing Hormone In G onadotropin Transcriptions Identified With Bioinformatics Analyses. Xiang, W, Zhang, BY, Lv, FL, Feng, GD, Chen, L, Yang, F, Zhang, K, Cao, CY, Wang, PQ, Chu, MX. 2017

[13]Molecular Insights into Roles of Dissolved Organic Matter in Cr(III) Immobilization by Coprecipitation with Fe(III) Probed by STXM-Ptychography and XANES Spectroscopy. Xing Xia,Jian Wang,Yongfeng Hu,Jin Liu,Aminu Inuwa Darma,Lin Jin,Hui Han,Chao He,Jianjun Yang. 2022

[14]Recent advances in the influences of drying technologies on physicochemical properties and biological activities of plant polysaccharides. Guo, Huan,Liu, Hong-Yan,Li, Hang,Wu, Ding-Tao,Zhong, Linda L. D.,Gan, Ren-You,Gao, Hong. 2023

[15]Methionine restriction diets: Unravelling biological mechanisms and enhancing brain health. Yi Liu,Jingjing Guo,Hao Cheng,Juan Wang,Yanfeng Tan,Jingjing Zhang,Hongxun Tao,Hongyan Liu,Jianbo Xiao,Dashi Qi,Xinyu Mei. 2024

[16]Comprehensive widely targeted metabolomics to decipher the molecular mechanisms of Dioscorea opposita thunb. cv. Tiegun quality formation during harvest. Li An,Yongliang Yuan,He Chen,Meng Li,Jingwei Ma,Juan Zhou,Lufei Zheng,Huan Ma,Zenglong Chen,Chenyu Hao,Xujin Wu. 2024

[17]Molecular Mechanisms of Cadmium Stress Resistance in Vegetable Crops. Mengxia Zhang,Chunjuan Dong. 2025

[18]Integration of metabolic and transcriptomic analyses for revealing the galactose metabolism of tobacco (Nicotiana tabacum) under salt stress. Bai, Ge,Zhang, Hui,Li, Yong,Yang, Da-Hai,Fei, Mingliang,Pang, Tao,Fu, Yaning,Yang, Ai-Guo,Wang, Zhen-Yu,Gu, Jinbao,Xie, He. 2025

[19]Advances and challenges in molecular understanding, early detection, and targeted treatment of liver cancer. Ji Shi,Xu Zhu,Jun Bo Yang. 2025

[20]Editorial: Multi-omics and molecular biology studies on abiotic stress in crops. Xiaobo Luo,Georgia Ntatsi,Rong Zhou,Mintao Sun. 2025

作者其他论文 更多>>