Proteomic analyses reveal differences in cold acclimation mechanisms in freezing-tolerant and freezing-sensitive cultivars of alfalfa

文献类型: 外文期刊

第一作者: Chen, Jing

作者: Chen, Jing;Han, Guiqing;Han, Guiqing;Shang, Chen;Li, Jikai;Zhang, Hailing;Liu, Fengqi;Wang, Jianli;Liu, Huiying;Zhang, Yuexue

作者机构:

关键词: proteomics;cold acclimation;RuBisCO;metabolism;homeostasis;alfalfa

期刊名称:FRONTIERS IN PLANT SCIENCE ( 影响因子:5.753; 五年影响因子:6.612 )

ISSN: 1664-462X

年卷期: 2015 年 6 卷

页码:

收录情况: SCI

摘要: Cold acclimation in alfalfa (Medicago sativa L.) plays a crucial role in cold tolerance to harsh winters. To examine the cold acclimation mechanisms in freezing-tolerant alfalfa (ZD) and freezing-sensitive alfalfa (W5), holoproteins, and low-abundance proteins (after the removal of RuBisCO) from leaves were extracted to analyze differences at the protein level. A total of 84 spots were selected, and 67 spots were identified. Of these, the abundance of 49 spots and 24 spots in ZD and W5, respectively, were altered during adaptation to chilling stress. Proteomic results revealed that proteins involved in photosynthesis, protein metabolism, energy metabolism, stress and redox and other proteins were mobilized in adaptation to chilling stress. In ZD, a greater number of changes were observed in proteins, and autologous metabolism and biosynthesis were slowed in response to chilling stress, thereby reducing consumption, allowing for homeostasis. The capability for protein folding and protein biosynthesis in W5 was enhanced, which allows protection against chilling stress. The ability to perceive low temperatures was more sensitive in freezing-tolerant alfalfa compared to freezing-sensitive alfalfa. This proteomics study provides new insights into the cold acclimation mechanism in alfalfa.

分类号:

  • 相关文献

[1]Autumn dormancy regulates the expression of cas18, vsp and corF genes during cold acclimation of lucerne (Medicago sativa L.). Liu, Zhi-ying,Liu, Zhi-ying,Li, Xi-liang,Yan, Ya-fei,Gao, Run,Sun, Qi-zhong,Wang, Zong-li,Yang, Guo-feng,Sun, Juan,Wang, Zong-li.

[2]Comparative proteomic analysis of alfalfa revealed new salt and drought stress-related factors involved in seed germination. Ma, Qiaoli,Kang, Junmei,Zhang, Kun,Wang, Tenghua,Sun, Yan,Kang, Junmei,Long, Ruicai,Zhang, Tiejun,Yang, Qingchuan,Ma, Qiaoli,Xiong, Junbo.

[3]Proteomic analysis of salt and osmotic-drought stress in alfalfa seedlings. Ma Qiao-li,Sun Yan,Kang Jun-mei,Long Rui-cai,Cui Yan-jun,Zhang Tie-jun,Xiong Jun-bo,Yang Qing-chuan,Ma Qiao-li,Xiong Jun-bo. 2016

[4]Carbon: Nitrogen: Phosphorus Stoichiometry in Fungi: A Meta-Analysis. Zhang, Ji,Zhang, Ji,Elser, James J.,Elser, James J.. 2017

[5]Tissue-Specific Regulation of the Contents and Correlations of Mineral Elements in Hens by Zinc Oxide Nanoparticles. Zhao, Yong,Zhang, Peng-Fei,Liu, Xin-Qi,Zhang, Wei-Dong,Huang, Ting-Ting,Zhao, Li,Hao, Zhi-Hui,Zhao, Yong,Feng, Yan-Ni,Li, Lan,Zhang, Peng-Fei,Zhang, Wei-Dong,Shen, Wei,Zhang, Hong-Fu,Zhang, Yu-Na.

[6]C:N:P stoichiometry in China's forests: From organs to ecosystems. Zhang, Jiahui,Liu, Congcong,Yang, Hao,Li, Meiling,Yu, Guirui,He, Nianpeng,Zhang, Jiahui,Yu, Guirui,He, Nianpeng,Zhao, Ning,Wilcox, Kevin,Yu, Qiang,He, Nianpeng,He, Nianpeng. 2018

[7]The pha2 gene cluster involved in Na+ resistance and adaption to alkaline pH in Sinorhizobium fredii RT19 encodes a monovalent cation/proton antiporter. Yang, Lifu,Jiang, Juquan,Wei, Wei,Zhang, Bo,Wang, Lei,Yang, Susheng.

[8]Effects of ectopically expressed hyperthermophilic archaeon (Pyrococcus furiosus) ribulose-1,5-bisphosphate carboxylase/oxygenase on tobacco photosynthesis. Li, X. -G.,Meng, J. -J.,Guo, F.,Wan, S. -B.,Li, X. -G.,Meng, J. -J.,Guo, F.,Wan, S. -B.,Yang, J.,Wang, R.,Tang, X. -F.,Qin, H. -J.,Liu, X.. 2013

[9]Small Antisense RNA RbIR Positively Regulates RuBisCo in Synechocystis sp PCC 6803. Hu, Jinlu,Li, Tianpei,Zhan, Jiao,Chen, Hui,He, Chenliu,Li, Tianpei,Xu, Wen,Wang, Qiang. 2017

[10]Characterization of ribulose-1, 5-bisphosphate carboxylase/oxygenase and transcriptional analysis of its related genes in Saccharina japonica (Laminariales, Phaeophyta). Shao Zhanru,Li Qiuying,Yao Jianting,Duan Delin,Liu Fuli,Shao Zhanru,Li Qiuying. 2014

[11]Physiological basis of photosynthetic tolerance to photooxidation and shading in rice. Li, X,Jiao, DM. 2000

[12]The response of rbcL, rbcS and rca genes in cucumber (Cucumis sativus L.) to growth and induction light intensity. Sun, Jianlei,Sui, Xiaolei,Wei, Yuxia,Huang, Hongyu,Hu, Liping,Zhang, Zhenxian,Sun, Jianlei,Wang, Shaohui.

[13]Interaction between potyvirus P3 and ribulose-1,5-bisphosphate carboxylase/oxygenase (RubisCO) of host plants. Lin, Lin,Yan, Fei,Lu, Yuwen,Zheng, Hongying,Chen, Jianping,Luo, Zhaopeng. 2011

[14]Evaluation of an optimal extraction method for measuring D-ribulose-1,5-bisphosphate carboxylase/oxygenase (RubisCO) in agricultural soils and its association with soil microbial CO2 assimilation. Ge, Tida,Yuan, Hongzhao,Zhou, Ping,Chen, Xiangbi,Brookes, Phil,Wu, Jinshui,Wu, Xiaohong,Ge, Tida,Yuan, Hongzhao,Zhou, Ping,Chen, Xiangbi,Brookes, Phil,Wu, Jinshui,Ge, Tida,Chen, Xiangbi,Wu, Jinshui,Chen, Shan.

[15]CONVERTIBILITY OF VIRESCENT RICE ASSOCIATED WITH THE SMALL-SUBUNIT OF RIBULOSE-1, 5-BISPHOSPHATE CARBOXYLASE OXYGENASE. YANG, W,QIAN, Q,HUANG, DN. 1993

[16]The effects of enhanced UV-B radiation on photosynthetic and biochemical activities in super-high-yield hybrid rice Liangyoupeijiu at the reproductive stage. Yu, G. H.,Li, W.,Yuan, Z. Y.,Cui, H. Y.,Gao, Z. P.,Chen, G. X.,Lv, C. G.,Han, B.,Gong, Y. Z..

[17]Expression and regulation of a cold-responsive gene, CsCBF in Citrus sinensis (L.) Osbeck under low temperature, high salinity and abscisic acid. He, L. G.,Jiang, Y. C.,Wang, H. L.,Xu, M.,Sun, Z. H.. 2016

[18]Differentially expressed genes under cold acclimation in Physcomitrella patens. Sun, Ming-Ming,Li, Lin-Hui,Xie, Hua,Ma, Rong-Cai,He, Yi-Kun. 2007

[19]Global transcriptome profiles of Camellia sinensis during cold acclimation. Wang, Xin-Chao,Ma, Chun-Lei,Cao, Hong-Li,Yue, Chuan,Hao, Xin-Yuan,Chen, Liang,Ma, Jian-Qiang,Jin, Ji-Qiang,Yang, Ya-Jun,Wang, Xin-Chao,Ma, Chun-Lei,Cao, Hong-Li,Yue, Chuan,Hao, Xin-Yuan,Chen, Liang,Ma, Jian-Qiang,Jin, Ji-Qiang,Yang, Ya-Jun,Zhao, Qiong-Yi,Yue, Chuan,Li, Xuan,Zhao, Qiong-Yi,Zhang, Zong-Hong. 2013

[20]Effects of cold acclimation on sugar metabolism and sugar-related gene expression in tea plant during the winter season. Yue, Chuan,Cao, Hong-Li,Wang, Lu,Zhou, Yan-Hua,Huang, Yu-Ting,Hao, Xin-Yuan,Wang, Yu-Chun,Wang, Bo,Yang, Ya-Jun,Wang, Xin-Chao,Yue, Chuan,Cao, Hong-Li,Wang, Lu,Zhou, Yan-Hua,Huang, Yu-Ting,Hao, Xin-Yuan,Wang, Yu-Chun,Wang, Bo,Yang, Ya-Jun,Wang, Xin-Chao,Wang, Lu,Hao, Xin-Yuan,Wang, Yu-Chun,Wang, Bo,Yang, Ya-Jun,Wang, Xin-Chao.

作者其他论文 更多>>