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Clade IVa Basic Helix-Loop-Helix Transcription Factors Form Part of a Conserved Jasmonate Signaling Circuit for the Regulation of Bioactive Plant Terpenoid Biosynthesis

机译:进化枝IVa基本的螺旋-螺旋-螺旋转录因子形成保守的茉莉酸酯信号转导回路,用于调节生物活性植物类萜生物合成

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摘要

Plants produce many bioactive, specialized metabolites to defend themselves when facing various stress situations. Their biosynthesis is directed by a tightly controlled regulatory circuit that is elicited by phytohormones such as jasmonate (JA). The basic helix-loop-helix (bHLH) transcription factors (TFs) bHLH iridoid synthesis 1 (BIS1) and Triterpene Saponin Activating Regulator (TSAR) 1 and 2, from Catharanthus roseus and Medicago truncatula, respectively, all belong to clade IVa of the bHLH protein family and activate distinct terpenoid pathways, thereby mediating monoterpenoid indole alkaloid (MIA) and triterpene saponin (TS) accumulation, respectively, in these two species. In this study, we report that promoters of the genes encoding the enzymes involved in the specific terpenoid pathway of one of these species can be transactivated by the orthologous bHLH factor from the other species through recognition of the same cis-regulatory elements. Accordingly, ectopic expression of CrBIS1 in M. truncatula hairy roots up-regulated the expression of all genes required for soyasaponin production, resulting in strongly increased levels of soyasaponins in the transformed roots. Likewise, transient expression of MtTSAR1 and MtTSAR2 in C. roseus petals led to up-regulation of the genes involved in the iridoid branch of the MIA pathway. Together, our data illustrate the functional similarity of these JA-inducible TFs and indicate that recruitment of defined cis-regulatory elements constitutes an important aspect of the evolution of conserved regulatory modules for the activation of species-specific terpenoid biosynthesis pathways by common signals such as the JA phytohormones.
机译:植物在面对各种压力情况时会产生许多具有生物活性的专门代谢产物来保护自己。它们的生物合成受严格控制的调控回路控制,调控回路是由植物激素(如茉莉酸酯(JA))引起的。基本螺旋-环-螺旋(bHLH)转录因子(TFs),bHLH虹彩化合物合成1(BIS1)和三萜皂苷激活调节剂(TSAR)1和2,分别来自长春花和紫花苜蓿,均属于小枝IVa bHLH蛋白家族并激活不同的萜类途径,从而分别介导这两个物种中的单萜类吲哚生物碱(MIA)和三萜皂苷(TS)积累。在这项研究中,我们报告说,通过识别相同的顺式调控元件,来自其他物种的直系同源bHLH因子可以激活这些物种之一的特定萜类途径中涉及的酶的编码基因的启动子。因此,在截短支原体毛状根中CrBIS1的异位表达上调了大豆皂甙生产所需的所有基因的表达,从而导致转化根中大豆皂甙的含量大大增加。同样,玫瑰花花瓣中MtTSAR1和MtTSAR2的瞬时表达导致与MIA途径的虹膜状分支有关的基因上调。总之,我们的数据说明了这些JA诱导型TF的功能相似性,并表明募集已定义的顺式调控元件构成了保守调控模块进化的一个重要方面,该调控模块可通过常见信号(例如,)激活物种特异性萜类生物合成途径。 JA植物激素。

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