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VaCBF1 from Vitis amurensis associated with cold acclimation and cold tolerance

文献类型: 外文期刊

作者: Dong, Chang 1 ; Zhang, Zhen 1 ; Qin, Yang 2 ; Ren, Junpeng 1 ; Huang, Jinfeng 1 ; Wang, Bailin 2 ; Lu, Huiling 2 ; Cai, B 1 ;

作者机构: 1.Nanjing Agr Univ, Coll Hort, Nanjing 210095, Jiangsu, Peoples R China

2.Heilongjiang Acad Agr Sci, Dept Hort, Harbin 150069, Peoples R China

关键词: CBF1;Vitis amurensis;Cold acclimation;Cold tolerance

期刊名称:ACTA PHYSIOLOGIAE PLANTARUM ( 2020影响因子:2.354; 五年影响因子:2.711 )

ISSN:

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收录情况: SCI

摘要: To understand cold acclimation and cold tolerance in Vitis, we isolated a C-repeat binding factor 1 (CBF1) transcriptional activator from cold-sensitive Vitis vinifera ‘Manicure Finger’ and cold-tolerant wild Vitis amurensis. Under cold stress, theCBF1 transcript accumulation of V. amurensis increased, whereas that of V. vinifera showed no significant change. The transcript levels of VaCBF1 in the roots, stems, leaves, and petioles under cold stress were up-regulated in a time-dependent manner. The transcript level of VaCBF1 in the leaves was induced by salinity stress or by exogenous abscisic acid and salicylic acid. The presence of the cis-elements MBS, MYB, and MYC in the VaCBF1 promoter suggests that this promoter is a component of the CBF transduction pathway, which is involved in plant response to cold stress. The overexpression of VaCBF1 increased the cold tolerance of transgenic tobacco at -4 °C. The transcript level of the downstream target gene NtERD10D appeared in the transgenic lines under normal conditions, whereas that of NtERD10D and NtDREB3 improved under low temperature. We suggest that VaCBF1 enhances stress tolerance by increasing antioxidant activities and promoting downstream target gene expression.

  • 相关文献

[1]Stress-responsive gene ICE1 from Vitis amurensis increases cold tolerance in tobacco. Dong, Chang,Zhang, Zhen,Ren, Junpeng,Huang, Jinfeng,Wang, Yan,Cai, Binhua,Tao, Jianmin,Dong, Chang,Qin, Yang,Wang, Bailin. 2013

[2]Proteomic analyses reveal differences in cold acclimation mechanisms in freezing-tolerant and freezing-sensitive cultivars of alfalfa. Chen, Jing,Han, Guiqing,Han, Guiqing,Shang, Chen,Li, Jikai,Zhang, Hailing,Liu, Fengqi,Wang, Jianli,Liu, Huiying,Zhang, Yuexue. 2015

[3]Overexpression of a ItICE1 gene from Isatis tinctoria enhances cold tolerance in rice. Xiang, Dianjun,Man, Lili,Yin, Kuide,Song, Qunyan,Wang, Lina,Zhao, Minghui,Xu, Zhengjin,Zhao, Minghui,Xu, Zhengjin.

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