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首页> 外文期刊>Scientific reports. >Identification of basic/helix-loop-helix transcription factors reveals candidate genes involved in anthocyanin biosynthesis from the strawberry white-flesh mutant
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Identification of basic/helix-loop-helix transcription factors reveals candidate genes involved in anthocyanin biosynthesis from the strawberry white-flesh mutant

机译:碱性/螺旋环 - 螺旋转录因子的鉴定揭示了来自草莓白肉突变体的花青素生物合成的候选基因

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As the second largest transcription factor family in plant, the basic helix-loop-helix (bHLH) transcription factor family, characterized by the conserved bHLH domain, plays a central regulatory role in many biological process. However, the bHLH transcription factor family of strawberry has not been systematically identified, especially for the anthocyanin biosynthesis. Here, we identified a total of 113 bHLH transcription factors and described their chromosomal distribution and bioinformatics for the diploid woodland strawberry Fragaria vesca. In addition, transcription profiles of 113 orthologous bHLH genes from various tissues were analyzed for the cultivar ‘Benihoppe’, its white-flesh mutant ‘Xiaobai’, and the ‘Snow Princess’ from their fruit development to the ripening, as well as those under either the ABA or Eth treatment. Both the RT-PCR and qRT-PCR results show that seven selected FabHLH genes (FabHLH17, FabHLH25, FabHLH27, FabHLH29, FabHLH40, FabHLH80, FabHLH98) are responsive to the fruit anthocyanin biosynthesis and hormone signaling according to transcript profiles where three color modes are observed for strawberry’s fruit skin and flesh. Further, prediction for the protein interaction network reveals that four bHLHs (FabHLH25, FabHLH29, FabHLH80, FabHLH98) are involved in the fruit anthocyanin biosynthesis and hormone signaling transduction. These bioinformatics and expression profiles provide a good basis for a further investigation of strawberry bHLH genes.
机译:作为植物中第二大转录因子家族,基本螺旋环 - 螺旋(BHLH)转录因子家族,其特征在于保守的BHLH结构域,在许多生物过程中起着中枢调节作用。然而,尚未系统地鉴定了草莓的BHLH转录因子家族,特别是对于花青素生物合成。在这里,我们鉴定了113个BHLH转录因子,并描述了两倍林地草莓钙虫草的染色体分布和生物信息学。此外,分析了来自各种组织的113个原果BHLH基因的转录型材,其白肉体突变'小鼠的品种“苯甲酸”和“雪公主”以及从他们的果实开发到成熟,以及那些人无论是ABA还是eth治疗。 RT-PCR和QRT-PCR结果均显示出七种选定的FabhlH基因(FabhlH17,FabhlH25,FabhlH27,FabhlH29,FabhlH40,FabhlH80,FabhlH98)对果花青蛋白生物合成和根据转录物曲线的果岭型生物合成和激素信号传导,其中三种颜色模式是观察草莓的果皮和肉体。此外,对蛋白质相互作用网络的预测揭示了四种BHLH(FabhlH25,FabhlH29,FabhlH80,FabhlH98)参与水果花青素生物合成和激素信号转导。这些生物信息学和表达型材为进一步调查草莓BHLH基因提供了良好的基础。

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