Han Jiaxin, Li Xingguo, Li Wenhui, Yang Qian, Li Zhenghao, Cheng Zhi, Lv Long, Zhang Lihua, Han Deguo
Key Laboratory of Biology and Genetic Improvement of Horticultural Crops (Northeast Region), Ministry of Agriculture and Rural Affairs, National-Local Joint Engineering Research Center for Development and Utilization of Small Fruits in Cold Regions, College of Horticulture & Landscape Architecture, Northeast Agricultural University, Harbin, 150030, China.
Key Laboratory of Biology and Genetic Improvement of Horticultural Crops (Northeast Region), Ministry of Agriculture and Rural Affairs, National-Local Joint Engineering Research Center for Development and Utilization of Small Fruits in Cold Regions, College of Horticulture & Landscape Architecture, Northeast Agricultural University, Harbin, 150030, China.
Plant Physiol Biochem. 2023 Mar;196:270-280. doi: 10.1016/j.plaphy.2023.01.048. Epub 2023 Jan 27.
Cold and drought stresses are serious problems of strawberry cultivation in temperate and subtropical regions. In the molecular regulation system of cold and drought stresses, ICE transcription factors (TFs) are crucial. In this research, the FvICE1 was isolated from Fragaria vesca 'Hawaii 4', a bioinformatics analysis was conducted, overexpression vector and CRISPR/cas9 vector were constructed. The results showed that FvICE1 was a member of the bHLH TF family, with a length of 1608 bp, encoding 535 amino acids, and its molecular formula was CHNOS. By observing the fusion protein 35S-FvICE1-GFP, it was found that FvICE1 was a nuclear protein. The qRT-PCR results demonstrated that FvICE1 was significantly upregulated in different tissues of Fragaria vesca after cold, drought, salt and heat treatments. The wild type (WT) strawberry was selected as the control group, FvICE1-overexpression strawberries showed high tolerance to cold and drought treatments at the phenotypic and physiological levels. On the contrary, fvice1 mutant strawberries obtained by CRISPR/cas9 editing technology had lower tolerance to cold and drought treatments. Moreover, the expression of FvCBF1, FvCBF2, FvCBF3, FvCOR413, FvRD22 and FvKIN1 was positively regulated in the FvICE1-overexpression strawberries and inhibited in fvice1 mutant strawberries. Overall, the current results suggested that FvICE1 functioned as a positively regulator of cold and drought resistances.
寒冷和干旱胁迫是温带和亚热带地区草莓种植面临的严重问题。在寒冷和干旱胁迫的分子调控系统中,ICE转录因子至关重要。本研究从野草莓‘夏威夷4’中分离出FvICE1,进行了生物信息学分析,并构建了过表达载体和CRISPR/cas9载体。结果表明,FvICE1是bHLH转录因子家族成员,长度为1608 bp,编码535个氨基酸,其分子式为CHNOS。通过观察融合蛋白35S-FvICE1-GFP,发现FvICE1是一种核蛋白。qRT-PCR结果表明,在寒冷、干旱、盐和热处理后,FvICE1在野草莓的不同组织中显著上调。以野生型(WT)草莓为对照组,FvICE1过表达草莓在表型和生理水平上对寒冷和干旱处理表现出高耐受性。相反,通过CRISPR/cas9编辑技术获得的fvice1突变体草莓对寒冷和干旱处理的耐受性较低。此外,FvCBF1、FvCBF2、FvCBF3、FvCOR413、FvRD22和FvKIN1的表达在FvICE1过表达草莓中受到正向调控,而在fvice1突变体草莓中受到抑制。总体而言,目前的结果表明FvICE1作为寒冷和干旱抗性的正向调节因子发挥作用。