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三种茶树小热激蛋白基因的异源表达赋予酵母和拟南芥温度胁迫耐受性。

Heterologous expression of three Camellia sinensis small heat shock protein genes confers temperature stress tolerance in yeast and Arabidopsis thaliana.

作者信息

Wang Mingle, Zou Zhongwei, Li Qinghui, Xin Huahong, Zhu Xujun, Chen Xuan, Li Xinghui

机构信息

Tea Research Institute, Nanjing Agricultural University, Nanjing, 210095, China.

Department of Plant Science, University of Manitoba, Winnipeg, MB, R3T 2N2, Canada.

出版信息

Plant Cell Rep. 2017 Jul;36(7):1125-1135. doi: 10.1007/s00299-017-2143-y. Epub 2017 Apr 28.

Abstract

CsHSP17.7, CsHSP18.1, and CsHSP21.8 expressions are induced by heat and cold stresses, and CsHSP overexpression confers tolerance to heat and cold stresses in transgenic Pichia pastoris and Arabidopsis thaliana. Small heat shock proteins (sHSPs) are crucial for protecting plants against biotic and abiotic stresses, especially heat stress. However, knowledge concerning the functions of Camellia sinensis sHSP in heat and cold stresses remains poorly understood. In this study, three C. sinensis sHSP genes (i.e., CsHSP17.7, CsHSP18.1, and CsHSP21.8) were isolated and characterized using suppression subtractive hybridization (SSH) technology. The CsHSPs expression levels in C. sinensis leaves were significantly up-regulated by heat and cold stresses. Phylogenetic analyses revealed that CsHSP17.7, CsHSP18.1, and CsHSP21.8 belong to sHSP Classes I, II, and IV, respectively. Heterologous expression of the three CsHSP genes in Pichia pastoris cells enhanced heat and cold stress tolerance. When exposed to heat and cold treatments, transgenic Arabidopsis thaliana plants overexpressing CsHSP17.7, CsHSP18.1, and CsHSP21.8 had lower malondialdehyde contents, ion leakage, higher proline contents, and transcript levels of stress-related genes (e.g., AtPOD, AtAPX1, AtP5CS2, and AtProT1) compared with the control line. In addition, improved seed germination vigor was also observed in the CsHSP-overexpressing seeds under heat stress. Taken together, our results suggest that the three identified CsHSP genes play key roles in heat and cold tolerance.

摘要

CsHSP17.7、CsHSP18.1和CsHSP21.8的表达受热胁迫和冷胁迫诱导,CsHSP过表达赋予转基因毕赤酵母和拟南芥耐热性和耐寒性。小分子热激蛋白(sHSPs)对于保护植物抵御生物和非生物胁迫,尤其是热胁迫至关重要。然而,关于茶树sHSP在热胁迫和冷胁迫中的功能了解甚少。在本研究中,利用抑制性消减杂交(SSH)技术分离并鉴定了三个茶树sHSP基因(即CsHSP17.7、CsHSP18.1和CsHSP21.8)。热胁迫和冷胁迫显著上调了茶树叶片中CsHSPs的表达水平。系统发育分析表明,CsHSP17.7、CsHSP18.1和CsHSP21.8分别属于sHSP的第I、II和IV类。这三个CsHSP基因在毕赤酵母细胞中的异源表达增强了耐热性和耐寒性。与对照品系相比,在热胁迫和冷胁迫处理下,过表达CsHSP17.7、CsHSP18.1和CsHSP21.8的转基因拟南芥植株丙二醛含量更低、离子渗漏更少、脯氨酸含量更高,且胁迫相关基因(如AtPOD、AtAPX1、AtP5CS2和AtProT1)的转录水平更高。此外,在热胁迫下,过表达CsHSP的种子萌发活力也有所提高。综上所述,我们的结果表明,鉴定出的这三个CsHSP基因在耐热性和耐寒性中起关键作用。

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