Understanding brassinosteroid-centric phytohormone interactions for crop improvement
文献类型: 外文期刊
第一作者: Yin, Wenchao
作者: Yin, Wenchao;Dong, Nana;Li, Xicheng;Yang, Yanzhao;Lu, Zefu;Zhou, Wenbin;Qian, Qian;Tong, Hongning;Yin, Wenchao;Dong, Nana;Li, Xicheng;Yang, Yanzhao;Qian, Qian;Tong, Hongning;Chu, Chengcai;Chu, Chengcai;Chu, Chengcai
作者机构:
关键词: agronomic trait; brassinosteroid; crop; crosstalk; phytohormone
期刊名称:JOURNAL OF INTEGRATIVE PLANT BIOLOGY ( 影响因子:9.3; 五年影响因子:10.8 )
ISSN: 1672-9072
年卷期: 2025 年 67 卷 3 期
页码:
收录情况: SCI
摘要: Brassinosteroids (BRs) play a crucial role in regulating multiple biological processes in plants, particularly those related to crop productivity and stress tolerance. During their functioning, BRs engage in extensive and intricate interactions with other phytohormones, including auxin, cytokinins, gibberellins, abscisic acid, ethylene, jasmonates, salicylic acid, and strigolactones. These interactions facilitate the integration of internal and external signals, ultimately shaping the physiological status of the plant. In this review, we introduce BR metabolism and signaling and discuss their role in modulating agronomic traits that directly contribute to grain yield in rice (Oryza sativa), the model plant for crops. We also summarize recent advances in the crosstalk between BRs and other phytohormones in regulating agronomic traits in crops. Furthermore, we highlight significant research that provides insights into developing high-yielding and stress-resistant crop varieties from the perspective of hormone crosstalk. Understanding the genetic and molecular mechanisms through which BRs and other phytohormones collaboratively control agronomic traits offers new approaches for crop improvement.
分类号:
- 相关文献
作者其他论文 更多>>
-
RBB1 negatively regulates rice disease resistance by modulating protein glycosylation
作者:Zhang, Bin;Guo, Mingliang;Liu, Xiangpei;Zhang, Bintao;Cui, Yan;Cao, Xinglan;Zhang, Zhipeng;Shi, Chuanlin;Wei, Hua;He, Huiying;Zhang, Hong;Zhu, Yiwang;Wang, Xianmeng;Lv, Yang;Yu, Xiaoman;Chen, Dandan;Yuan, Qiaoling;Sun, Tongjun;Qian, Qian;Shang, Lianguang;Zhang, Bin;Qian, Qian;Shang, Lianguang;Teng, Sheng;Qian, Qian;Shang, Lianguang
关键词:crop genetics; molecular biology; disease resistance; glycosylation modification
-
Creeping Stem 1 regulates directional auxin transport for lodging resistance in soybean
作者:Xu, Zhiyong;Kong, Keke;Kong, Jiejie;Zhao, Tuanjie;Xu, Zhiyong;Zhang, Liya;Ji, Ronghuan;Liu, Jun;Li, Hongyu;Ren, Yulong;Zhou, Wenbin;Zhao, Tao;Liu, Bin;Xu, Zhiyong;Liu, Yi
关键词:soybean; lodging resistance; gravitropism; amyloplast sedimentation; polar auxin transport
-
The developments and prospects of plant super-pangenomes: Demands, approaches, and applications
作者:He, Wenchuang;Li, Xiaoxia;Qian, Qian;Shang, Lianguang;Qian, Qian;Shang, Lianguang;Qian, Qian;Qian, Qian;Shang, Lianguang
关键词:pangenomics; super-pangenome; plant; methodology; molecular breeding
-
The First International Symposium of the World Wild Rice Wiring: Conservation and utilization of global wild rice germplasm resources through international cooperation
作者:Ratnasekera, Disna;Zheng, Xiaoming;Qian, Qian;Zheng, Xiaoming;Qian, Qian;Zheng, Xiaoming;Ratnasekera, Disna;Fan, Jiayu;Qian, Qian;Fan, Jiayu;Henry, Robert J.;Song, Beng-Kah;Wambugu, Peterson;Pusadee, Tonapha;Aung, Ohn Mar;Vilayheuang, Koukham
关键词:
-
Uncovering the breeding contribution of transposable elements from landraces to improved varieties through pan-genome-wide analysis in rice
作者:Li, Xiaoxia;Dai, Xiaofan;Li, Xiaoxia;Dai, Xiaofan;He, Huiying;Chen, Wu;Shang, Lianguang;He, Wenchuang;Qian, Qian;Shang, Lianguang;Qian, Qian;Guo, Longbiao
关键词:transposable element; super pan-genome; improvement; rice; molecular breeding
-
Molecular dissection of hemizygote-dependent dominance of super-early flowering in soybean
作者:Xu, Xin;Yu, Yang;Jiang, Bingjun;Cao, Dong;Zhang, Lixin;Jia, Hongchang;Sun, Xuegang;Chen, Li;Yuan, Shan;Chen, Fulu;Lu, Zefu;Liu, Yanhong;Naser, Mahmoud;Wu, Tingting;Wu, Cunxiang;Sun, Shi;Han, Tianfu;Yu, Yang;Cao, Dong;Zhang, Qingzhu;Han, Tianfu
关键词:Soybean; Hemizygote-dependent dominance; Flowering time; siRNA; DNA methylation
-
OsBZR4 regulates temperature-dependent embryogenesis in rice
作者:Wang, Zhenyu;Xu, Min;Liu, Yingxiang;Hong, Zhipeng;He, Mingliang;Jin, Xin;Tang, Jiaqi;Li, Xiufeng;Tian, Xiaojie;Bu, Qingyun;Xu, Min;Liu, Yingxiang;Hong, Zhipeng;He, Mingliang;Jin, Xin;Zheng, Xiaoming;Qian, Qian;Qian, Qian
关键词: