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作 者:宋艳红 陈亚铎 张晓玉 宋盼 刘丽锋[1] 李刚[1] 赵霞[1] 周厚成[1] SONG Yanhong;CHEN Yaduo;ZHANG Xiaoyu;SONG Pan;LIU Lifeng;LI Gang;ZHAO Xia;ZHOU Houcheng(Zhengzhou Fruit Research Institute,Chinese Academy of Agricultural Sciences,Zhengzhou 450009,China;College of Horticulture,Henan Agricultural University,Xuchang,Henan 461101,China)
机构地区:[1]中国农业科学院郑州果树研究所,郑州450009 [2]河南农业大学许昌校区园艺学院,河南许昌461101
出 处:《园艺学报》2023年第2期295-306,共12页Acta Horticulturae Sinica
基 金:国家重点研发计划项目(2019YFD1000203);河南省重大科技专项(221100110400);河南省大宗水果产业技术体系项目(HARS-22-09-G2);中国农业科学院科技创新工程项目(CAAS-ASTIP-2021-ZFRI)。
摘 要:分析草莓碱性螺旋—环—螺旋(basichelix-loop-helix,bHLH)转录因子家族,鉴定到森林草莓(Fragaria vesca)花特异表达的转录因子基因FvbHLH130。FvbHLH130编码区序列长度为960 bp,编码319个氨基酸,保守结构域预测结果显示第247~297 aa是bHLH结合域,其属于bHLH家族成员。FvbHLH130启动子含有生长素等激素响应、逆境胁迫和低温响应元件,推测基因表达可能受到生物和非生物胁迫诱导。FvbHLH130蛋白氨基酸序列与月季(Rosa chinensis)的相似性高达93.70%,与其他蔷薇科bHLH蛋白聚在一个分支上,与拟南芥AtFBH4是同源蛋白。农杆菌介导的FvbHLH130拟南芥转基因株系提前7 d开花,且促进开花相关基因AtAP1、AtFT、AtFUL和AtCO的表达。酵母双杂交实验结果表明FvbHLH130与FvARF4和FvARF6互作,可能作为蛋白复合体共同参与开花调控。The basic helix-loop-helix(bHLH)transcription factor family of strawberry was analyzed,and the transcription factor FvbHLH130 was identified in Fragaria vesca.qRT-PCR analysis in different tissues showed that FvbHLH130 was flower-specifically expressed.Overexpression of FvbHLH130 in Arabidopsis thaliana activated flowering in transgenic lines.The full-length coding sequence of Fvb HLH130was 960 bp,encoding a 319-amino-acid protein.The prediction of conserved domain of Fvb HLH130 showed that 247–297 amino acids were bHLH binding domain.The promoter of FvbHLH130 contained hormone,stress-and low temperature-response elements,which indicated FvbHLH130 might be induced by biotic and abiotic stress.The amino acids sequence of FvbHLH130 revealed up to 93.70%similarity with RcbHLH130.FvbHLH130 sequence was more closely related to Rosaceae bHLH proteins and was homologous to AtFBH4.Agrobacterium-mediated transformation of Arabidopsis thaliana showed that the FvbHLH130 overexpression lines flowered seven days earlier than the control plants,and activated the expression of flowering-related genes AtAP1,AtFT,AtFUL and AtCO.The yeast two-hybrid results showed that FvbHLH130 interacted with FvARF4 and FvARF6,which may form protein complexes in the regulation of flowering.
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