College of Life Science, State Key Laboratory of Crop Biology, Shandong Key Laboratory of Crop Biology, Shandong Agricultural University, Taian 271018, China.
Department of Horticulture, ALS 4017, Oregon State University, Corvallis, OR 97331, USA.
Plant Sci. 2018 May;270:221-233. doi: 10.1016/j.plantsci.2018.01.015. Epub 2018 Feb 3.
Solanum tuberosum potato species constitute the bulk of economically and agronomically important potato production. However, S. tuberosum is a drought- and frost-sensitive species that is incapable of acclimating to the cold. Solanum commersonii is a tuber-bearing wild potato species that exhibits greater frost and drought resistance than S. tuberosum. CBF/DREB (C-REPET BINDING FACTOR/DROUGHT RESPONSE ELEMENT BINGING FACTOR) transcription factors play important roles in response to a variety of abiotic stresses, such as cold, drought and salt stresses. To explore different functions between S. tuberosum CBF1 (StCBF1) and S. commersonii CBF1 (ScCBF1), Arabidopsis was transformed with the ScCBF1 and StCBF1 genes driven by a constitutive CaMV35S promoter. Our results reveal that the ScCBF1 transgenic lines are much more tolerant to freezing and drought than the StCBF1 transgenic lines. The development of transgenic plants was altered, resulting in dwarf phenotype with delayed flowering and thicker and additional rosette leaves. The expression levels of several COR (COLD-RESPONSIVE) genes and development-related genes, including genes that inhibited plant growth (GA2ox7, RGL3) and delayed flowering (FLC) were higher in transgenic plants. These results suggest that these two potato CBF1 play important roles in the plant response to abiotic stress and can influence plant growth and development, and ScCBF1 plays a more pronounced function than StCBF1.
马铃薯块茎是经济和农业上重要的马铃薯生产的主要物种。然而,马铃薯是一种对干旱和寒冷敏感的物种,无法适应寒冷。Solanum commersonii 是一种结薯的野生马铃薯种,比马铃薯具有更强的抗寒和抗旱性。CBF/DREB(C-重复结合因子/干旱响应元件结合因子)转录因子在应对多种非生物胁迫(如寒冷、干旱和盐胁迫)中发挥重要作用。为了探索马铃薯 CBF1(StCBF1)和 S. commersonii CBF1(ScCBF1)之间的不同功能,我们用组成型 CaMV35S 启动子驱动的 ScCBF1 和 StCBF1 基因转化拟南芥。我们的结果表明,ScCBF1 转基因系比 StCBF1 转基因系更能耐受冻融和干旱。转基因植物的发育发生了改变,导致植株矮小,开花延迟,莲座叶变厚,增加。一些 COR(冷响应)基因和发育相关基因的表达水平升高,包括抑制植物生长的基因(GA2ox7、RGL3)和延迟开花的基因(FLC)。这些结果表明,这两个马铃薯 CBF1 在植物应对非生物胁迫中发挥重要作用,并能影响植物的生长发育,ScCBF1 比 StCBF1 发挥更显著的作用。