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NtMYB12 requires for competition between flavonol and(pro)anthocyanin biosynthesis in Narcissus tazetta tepals 被引量:1
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作者 Jingwen Yang Xi Wu +6 位作者 Cristina belen Aucapina Deyu Zhang Jiazhi Huang Ziyuan Hao Yu Zhang Yujun Ren Ying Miao 《Molecular Horticulture》 2023年第1期372-390,共19页
The color of flowers is one of the main characteristics adopted for plants to attract pollinators to ensure the reproductive success of the plant,they are also important in their ornamental appeal in Narcissus plant.I... The color of flowers is one of the main characteristics adopted for plants to attract pollinators to ensure the reproductive success of the plant,they are also important in their ornamental appeal in Narcissus plant.In this study,we identified a NtMYB12 locus encoding an R2R3-MYB transcription factor.Comparative transcriptome analysis of lossand gain-of NtMYB12 tissue relative to wild-type narcissus showed NtMYB12 was mainly involved in flavonol and phenylpropanoid metabolic pathways.Biochemical evidences of dual-luciferase activity and chromatin immunoprecipitation assay supported that MYB12 directly bound to promoters of NtFLS,NtLAR,and NtDFR that were cloned by genome walking assay,and activated NtFLS and NtLAR expression but repressed NtDFR expression.More interestingly,NtMYB12 can interact with NtbHLH1 and NtWD40-1 proteins via R3 domain that were selected by transcriptomebased WGCNA and confirmed by yeast two hybrid,bimolecular fluorescence complementation and coimmunoprecipitation assay.Interaction of NtMYB12 with NtbHLH1 and NtWD40-1 forming MYB-bHLH-WD40 triplex specially activated NtDFR and NtANS expression and promoted(pro)anthocyanin accumulation,while NtMYB12 alone activated NtFLS and NtLAR expression and accumulated flavonols,but repressed NtDFR expression.These results indicated that NtMYB12 alone or NtMYB12-bHLH1-WD40-1 triplex requires for competition of metabolism fluxes between flavonol and(pro)anthocyanin biosynthesis. 展开更多
关键词 ntmyb12 MBW triplex Flavonol biosynthesis Proanthocyanin biosynthesis Narcissus tazetta
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烟草转录因子MYB12基因克隆及表达模式分析 被引量:8
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作者 王姗姗 赵影影 +5 位作者 李超杰 谢小东 武明珠 李锋 杨军 王中 《烟草科技》 EI CAS CSCD 北大核心 2017年第8期1-9,共9页
R2R3-MYB转录因子是植物中最大的转录因子家族之一,在植物生长发育和代谢活动中发挥着重要的调节作用。为明确MYB12转录因子在烟草中的生物学功能和调控机制,同源克隆了普通烟草MYB12基因(NtMYB12a和NtMYB12b),利用实时荧光定量PCR表征... R2R3-MYB转录因子是植物中最大的转录因子家族之一,在植物生长发育和代谢活动中发挥着重要的调节作用。为明确MYB12转录因子在烟草中的生物学功能和调控机制,同源克隆了普通烟草MYB12基因(NtMYB12a和NtMYB12b),利用实时荧光定量PCR表征基因表达模式,结合生物信息学分析对基因功能和调控机制进行了初步预测。结果表明,NtMYB12a和NtMYB12b核苷酸序列一致性为92.91%,氨基酸序列一致性为87.91%。烟草MYB12基因结构高度保守,均由4个外显子和3个内含子组成。进化分析表明,普通烟草中NtMYB12a系由绒毛状烟草MYB12基因进化而来,而NtMYB12b则来源于林烟草。NtMYB12基因表达具有时空特异性,烟草在打顶以及盐、干旱、黑暗和磷饥饿等胁迫处理后,NtMYB12a和NtMYB12b基因表达差异明显,NtMYB12a基因表达水平在打顶处理下呈现上调趋势,在盐、黑暗和磷饥饿胁迫处理下显著下调,而在干旱胁迫下无明显变化;各种胁迫处理均可诱导NtMYB12b基因表达水平的提高,预示着NtMYB12基因在烟草响应各种非生物胁迫中发挥着重要的调控作用。 展开更多
关键词 烟草 转录因子 ntmyb12 表达模式 非生物胁迫 基因克隆
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