数字农科院2.0

Unearthing the Alleviatory Mechanisms of Brassinolide in Cold Stress in Rice

文献类型: 外文期刊

作者: Xu, Qingshan;Wei, Qianqian;Kong, Yali;Zhu, Lianfeng;Tian, Wenhao;Huang, Jing;Pan, Lin;Jin, Qianyu;Zhang, Junhua;Zhu, Chunquan

作者机构:

关键词: rice;brassinolide;cold stress;osmotic substance;antioxidant enzymes;gene regulation

期刊名称: LIFE-BASEL

ISSN:

年卷期: 2022 年 12.0 卷 6 期

页码:

摘要: Cold stress inhibits rice germination and seedling growth. Brassinolide (BR) plays key roles in plant growth, development, and stress responses. In this study, we explored the underlying mechanisms whereby BR helps alleviate cold stress in rice seedlings. BR application to the growth medium significantly increased seed germination and seedling growth of the early rice cultivar Zhongzao 39 after three days of cold treatment. Specifically, BR significantly increased soluble protein and soluble sugar contents after three days of cold treatment. Moreover, BR stimulated the activity of superoxide dismutase, catalase, peroxidase, and ascorbate peroxidase; thereby alleviating cold-induced damage and increasing glutathione content and the GSH/GSSG ratio while concomitantly reducing H2O2 content. BR upregulated the expression levels of cold-response-related genes, including OsICE1, OsFer1, OsCOLD1, OsLti6a, OsSODB, OsMyb, and OsTERF2, and downregulated that of OsWRKY45, overall alleviating cold stress symptoms. Thus, BR not only upregulated cellular osmotic content and the antioxidant enzyme system to maintain the physiological balance of reactive oxygen species under cold but, additionally, it regulated the expression of cold-response-related genes to alleviate cold stress symptoms. These results provide a theoretical basis for rice breeding for cold resistance using young seedlings.

分类号:

  • 相关文献

[1]Salicylic Acid Alleviates Cold Stress in Rice via Regulating Nutrient Absorption, Osmotic Material Content, Antioxidation System, and Expression of Cold Tolerance Genes. Xu, Qingshan,Yan, Yulian,Wei, Qianqian,Wang, Hangfeng,Chi, Chunxin,Pan, Lin,Kong, Yali,Zhu, Lianfeng,Tian, Wenhao,Zhang, Junhua,Zhu, Chunquan. 2025

[2]Global N6-Methyladenosine Profiling Revealed the Tissue-Specific Epitranscriptomic Regulation of Rice Responses to Salt Stress. Yinxiao Wang,Fengping Du,Yingbo Li,Juan Wang,Xiuqin Zhao,Zhikang Li,Jianlong Xu,Wensheng Wang,Binying Fu. 2022

[3]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

[4]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

[5]Effects of Mineral-Based Potassium Humate on Cadmium Accumulation in Rice (Oryza sativa L.) under Three Levels of Cadmium-Contaminated Alkaline Soils. Li S.,Huang X.,Li G.,Zhang K.,Bai L.,He H.,Chen S.,Dai J.. 2023

[6]Mitigating the toxicity of reactive oxygen species induced by cadmium via restoring citrate valve and improving the stability of enzyme structure in rice. Weijie Xue,Xin Zhang,Changbo Zhang,Changrong Wang,Yongchun Huang,Zhongqi Liu. 2023

[7]DNA methylation alterations of rice in response to cold stress. Pan, Yajiao,Wang, Wensheng,Zhao, Xiuqin,Zhu, Linghua,Fu, Binying,Li, Zhikang. 2011

[8]Glycine increases cold tolerance in rice via the regulation of N uptake, physiological characteristics, and photosynthesis. Cao Xiaochuang,Zhong Chu,Zhu Lianfeng,Zhang Junhua,Hussain, Sajid,Jin Qianyu,Wu Lianghuan,Jin Qianyu.

[9]The Rice Pentatricopeptide Repeat Gene TCD10 is Needed for Chloroplast Development under Cold Stress. Lanlan Wu, Jun Wu, Yanxia Liu, Xiaodi Gong, Jianlong Xu, Dongzhi Lin, Yanjun Dong. 2016

[10]Transcriptome and Metabolome Analyses Reveal Ascorbic Acid Ameliorates Cold Tolerance in Rice Seedling Plants. Huanran Wang,Tingting Lu,Wenhui Yan,Pinghui Yu,Weimeng Fu,Juncai Li,Xiaona Su,Tingting Chen,Guanfu Fu,Zhihai Wu,Baohua Feng. 2024

[11]Effects of geniposide on the regulation mechanisms of photosynthetic physiology, root osmosis and hormone levels in maize under saline-alkali stress. Z. Y. Liu,W. H. Xu,W. R. Gu,J. Li,C. F. Li,M. Q. Wang,L. G. Zhang,L. Piao,Q. R. Zhu,S. Wei. 2021

[12]Functional study of CYP90A1 and ALDH3F1 gene obtained by transcriptome sequencing analysis of Brassica napus seedlings treated with brassinolide. Qingqin Gan,Mingbao Luan,Maolong Hu,Zhongsong Liu,Zhenqian Zhang. 2022

[13]Tobacco roots increasing diameter and secondary lateral density in response to drought stress. Xiaolei Liu,Dong Liang,Wenjing Song,Xiaolin Wang,Wangjun Duan,Chengdong Wang,Peng Wang. 2023

[14]Leveraging computer-aided drug design for the discovery of phytohormone analogs: A review. Yuling Guo,Ghulam Qanmber,Zhao Liu,Han Yang,Jun Li,Zhikun Yang,Zhongxian Li,Linlin Yang,Zuoren Yang. 2025

[15]In rice, Oryzalin and abscisic acid differentially affect tubulin mRNA and protein levels. Giani, S,Qin, XQ,Faoro, F,Breviario, D. 1998

[16]Arabidopsis C3H14 and C3H15 have overlapping roles in the regulation of secondary wall thickening and anther development. Chai, Guohua,Zhu, Ming,Yu, Li,Qi, Guang,Tang, Xianfeng,Wang, Zengguang,Cao, Yingping,Yu, Changjiang,Zhou, Gongke,Kong, Yingzhen.

[17]Global characterization of microRNAs in Trichomonas gallinae. Xu, Min-Jun,Qiu, Shen-Ben,Fu, Jing-Hua,Zhu, Xing-Quan,Nisbet, Alasdair J.,Qiu, Shen-Ben,Fu, Jing-Hua,Shao, Chang-Chun. 2014

[18]Functional analysis of a putative regulatory gene, tadR, involved in aniline degradation in Delftia tsuruhatensis AD9. Geng, Lizhao,Chen, Ming,Liu, Wei,Zhang, Wei,Ping, Shuzhen,Lu, Wei,Yan, Yongliang,Wang, Weiwei,Lin, Min,Liang, Quanfeng,Takeo, Masahiro. 2009

[19]Foxtail Millet NF-Y Families: Genome-Wide Survey and Evolution Analyses Identified Two Functional Genes Important in Abiotic Stresses. Feng, Zhi-Juan,He, Guan-Hua,Lu, Pan-Pan,Chen, Ming,Ma, You-Zhi,Xu, Zhao-Shi,Feng, Zhi-Juan,Gong, Ya-Ming,Zheng, Wei-Jun. 2015

[20]Functions and Application of the AP2/ERF Transcription Factor Family in Crop Improvement. Xu, Zhao-Shi,Chen, Ming,Li, Lian-Cheng,Ma, You-Zhi. 2011

作者其他论文 更多>>