Cao Fuliang, Cheng Hua, Cheng Shuiyuan, Li Linling, Xu Feng, Yu Wanwen, Yuan Honghui
Economic Forest Germplasm Improvement and Comprehensive Utilization of Resources of Hubei Key Laboratory, Huanggang Normal University, Huanggang 438000, China.
College of Forest Resources and Environment, Nanjing Forestry University, Nanjing 210037, China.
Int J Mol Sci. 2012;13(5):5768-5788. doi: 10.3390/ijms13055768. Epub 2012 May 15.
Heat shock proteins (HSPs) play various stress-protective roles in plants. In this study, three HSP genes were isolated from a suppression subtractive hybridization (SSH) cDNA library of Ginkgo biloba leaves treated with cold stress. Based on the molecular weight, the three genes were designated GbHSP16.8, GbHSP17 and GbHSP70. The full length of the three genes were predicted to encode three polypeptide chains containing 149 amino acids (Aa), 152 Aa, and 657 Aa, and their corresponding molecular weights were predicted as follows: 16.67 kDa, 17.39 kDa, and 71.81 kDa respectively. The three genes exhibited distinctive expression patterns in different organs or development stages. GbHSP16.8 and GbHSP70 showed high expression levels in leaves and a low level in gynoecia, GbHSP17 showed a higher transcription in stamens and lower level in fruit. This result indicates that GbHSP16.8 and GbHSP70 may play important roles in Ginkgo leaf development and photosynthesis, and GbHSP17 may play a positive role in pollen maturation. All three GbHSPs were up-regulated under cold stress, whereas extreme heat stress only caused up-regulation of GbHSP70, UV-B treatment resulted in up-regulation of GbHSP16.8 and GbHSP17, wounding treatment resulted in up-regulation of GbHSP16.8 and GbHSP70, and abscisic acid (ABA) treatment caused up-regulation of GbHSP70 primarily.
热休克蛋白(HSPs)在植物中发挥着多种应激保护作用。在本研究中,从经冷胁迫处理的银杏叶抑制性消减杂交(SSH)cDNA文库中分离出三个HSP基因。根据分子量,这三个基因被命名为GbHSP16.8、GbHSP17和GbHSP70。预测这三个基因的全长分别编码含149个氨基酸(Aa)、152个Aa和657个Aa的三条多肽链,其相应的分子量预测如下:分别为16.67 kDa、17.39 kDa和71.81 kDa。这三个基因在不同器官或发育阶段表现出独特的表达模式。GbHSP16.8和GbHSP70在叶片中表达水平高,在雌蕊中表达水平低,GbHSP17在雄蕊中转录水平较高,在果实中表达水平较低。这一结果表明,GbHSP16.8和GbHSP70可能在银杏叶发育和光合作用中发挥重要作用,而GbHSP17可能在花粉成熟中发挥积极作用。在冷胁迫下,所有三个GbHSPs均上调,而极端热胁迫仅导致GbHSP70上调,UV - B处理导致GbHSP16.8和GbHSP17上调,创伤处理导致GbHSP16.8和GbHSP70上调,脱落酸(ABA)处理主要导致GbHSP70上调。