数字农科院2.0

Ethylene Modulates Rice Root Plasticity under Abiotic Stresses

文献类型: 外文期刊

作者: Hua Qin;Minggang Xiao;Yuxiang Li;Rongfeng Huang

作者机构:

关键词: abiotic stress;ethylene;rice;root development

期刊名称: Plants

ISSN: 2223-7747

年卷期: 2024 年 13 卷 3 期

页码:

收录情况: SCIE(2024版)

摘要: Plants live in constantly changing environments that are often unfavorable or stressful. Root development strongly affects plant growth and productivity, and the developmental plasticity of roots helps plants to survive under abiotic stress conditions. This review summarizes the progress being made in understanding the regulation of the phtyohormone ethylene in rice root development in response to abiotic stresses, highlighting the complexity associated with the integration of ethylene synthesis and signaling in root development under adverse environments. Understanding the molecular mechanisms of ethylene in regulating root architecture and response to environmental signals can contribute to the genetic improvement of crop root systems, enhancing their adaptation to stressful environmental conditions.

分类号:

  • 相关文献

[1]Potential Roles of 1-Aminocyclopropane-1-carboxylic Acid Synthase Genes in the Response of Gossypium Species to Abiotic Stress by Genome-Wide Identification and Expression Analysis. Li, Jie,Zou, Xianyan,Chen, Guoquan,Meng, Yongming,Ma, Qi,Chen, Quanjia,Wang, Zhi,Li, Fuguang. 2022

[2]水稻淡褐斑叶突变体lbsll的遗传分析与基因定位. 奉保华,杨杨,施勇烽,林璐,陈洁,黄奇娜,魏彦林,HeiLEUNG,吴建利. 2012

[3]OsBTF3转基因水稻对病原茵侵染的反应和防卫基因的表达分析. 陈华民,吴茂森,何晨阳. 2012

[4]OsERF2 controls rice root growth and hormone responses through tuning expression of key genes involved in hormone signaling and sucrose metabolism. Xiao, Guiqing,Lu, Xiangyang,Xiao, Guiqing,Qin, Hua,Zhou, Jiahao,Quan, Ruidang,Huang, Rongfeng,Zhang, Haiwen.

[5]Ammonium improved cell wall and cell membrane P reutilization and external P uptake in a putrescine and ethylene dependent pathway. Chun Quan Zhu,Qian Qian Wei,Ya Li Kong,Qing Shan Xu,Lin Pan,Lian Feng Zhu,Wen Hao Tian,Qian Yu Jin,Yi Jun Yu,Jun Hua Zhang. 2022

[6]OsNAC2 Is Involved in Multiple Hormonal Pathways to Mediate Germination of Rice Seeds and Establishment of Seedling. Jiangtao Yu,Chanjuan Mao,Qun Zhong,Xuefeng Yao,Peng Li,Chunming Liu,Feng Ming. 2021

[7]Both Proteins/Peptides and Non-Proteins/Peptides in Larval Oral Secretions of a Chewing Herbivore Function as Elicitors That Induce Plant Defenses. Jing, Shiyun,Chen, Shuting,Xu, Yayun,Lin, Na,Lin, Songbo,Feng, Yubing,Kuai, Peng,Sun, Xiaoling,Lou, Yonggen. 2025

[8]Ethylene stimulates methane oxidation and inhibits methane production in green manure-rice systems. Jinxin Sun,Zhengbo Ma,Guopeng Zhou,Ting Liang,Rui Liu,Danna Chang,Han Liu,Jia Liu,Chunqin Zou,Weidong Cao. 2025

[9]Ethylene-Triggered Rice Root System Architecture Adaptation Response to Soil Compaction. Li, Yuxiang,Ge, Bingkun,Yan, Chunxia,Qi, Zhi,Huang, Rongfeng,Qin, Hua. 2025

[10]Improvement of rice drought tolerance through backcross breeding: Evaluation of donors and selection in drought nurseries. Lafitte, HR,Li, ZK,Vijayakumar, CHM,Gao, YM,Shi, Y,Xu, JL,Fu, BY,Ali, AJ,Domingo, J,Maghirang, R,Torres, R,Mackill, D. 2006

[11]Expression of a calcineurin gene improves salt stress tolerance in transgenic rice. Ma, XJ,Qian, Q,Zhu, DH.

[12]White stripe leaf 12 (WSL12), encoding a nucleoside diphosphate kinase 2 (OsNDPK2), regulates chloroplast development and abiotic stress response in rice (Oryza sativa L.). Ye, Weijun,Hu, Shikai,Wu, Liwen,Ge, Changwei,Cui, Yongtao,Chen, Ping,Wang, Xiaoqi,Xu, Jie,Ren, Deyong,Dong, Guojun,Qian, Qian,Guo, Longbiao,Ye, Weijun,Hu, Shikai,Qian, Qian.

[13]A comparative study of stress-related gene expression under single stress and intercross stress in rice. Y.P. Zhang , Z.G. E +, H. Jiang , L. Wang , J. Zhou *, D.F. Zhu *. 2015

[14]Genome-wide and molecular characterization of the DNA replication helicase 2 (DNA2) gene family in rice under drought and salt stress. Bilal Saleem,Umer Farooq,Obaid Ur Rehman,Muhammad Aqeel,Muhammad Shahbaz Farooq,Muhammad Kashif Naeem,Safeena Inam,Wajya Ajmal,Amna Abdul Rahim,Ming Chen,Rabia Kalsoom,Muhammad Uzair,Sajid Fiaz,Kotb Attia,Hayat Ali Alafari,Muhammad Ramzan Khan,Guoping Yu. 2022

[15]Applications and potential of genome-editing systems in rice improvement: Current and future perspectives. Javaria Tabassum,Shakeel Ahmad,Babar Hussain,Amos Musyoki Mawia,Aqib Zeb,Luo Ju. 2021

[16]Identification and characterization of profilin gene family in rice. Yanli Zhang,Guojun Dong,Limin Wu,Fei Chen,Yanchun Yu,Dianrong Ma. 2021

[17]Molecular Traits and Functional Exploration of BES1 Gene Family in Plants. Zhenting Sun,Xingzhou Liu,Weidong Zhu,Huan Lin,Xiugui Chen,Yan Li,Wuwei Ye,Zujun Yin. 2022

[18]Identification and Characterization of Shaker Potassium Channel Gene Family and Response to Salt and Chilling Stress in Rice. Quanxiang Tian,Tongyuan Yu,Mengyuan Dong,Yue Hu,Xiaoguang Chen,Yuan Xue,Yunxia Fang,Jian Zhang,Xiaoqin Zhang,Dawei Xue. 2024

[19]Bromus Ircutensis Kom Root Growth and Structure. Hao Xiaohong,Yu Tao,Han Bing,Gao Min,Tian Qingsong. 2011

[20]OsMOGS is required for N-glycan formation and auxin-mediated root development in rice ( Oryza sativa L.). Wang, SuiKang,Xu, YanXia,Zhang, SaiNa,Jiang, De An,Qi, YanHua,Li, ZhiLan,Lim, Jae-Min,Lim, Jae-Min,Lee, Kyun Oh,Lee, Kyun Oh,Li, ChuanYou,Qian, Qian. 2014

作者其他论文 更多>>