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首页> 外文期刊>Plant and cell physiology >MYB46 and MYB83 bind to the SMRE sites and directly activate a suite of transcription factors and secondary wall biosynthetic genes.
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MYB46 and MYB83 bind to the SMRE sites and directly activate a suite of transcription factors and secondary wall biosynthetic genes.

机译:MYB46和MYB83与SMRE位点结合并直接激活一组转录因子和次生壁生物合成基因。

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MYB46 and MYB83 are two functionally redundant Arabidopsis thaliana MYB transcription factors that act as master switches regulating secondary wall biosynthesis. Here, we report the identification of the transcriptional responsive elements and global analysis of the direct targets of MYB46 and MYB83. Using the estrogen-inducible direct activation system, we found that a number of previously identified MYB46 downstream transcription factors, including MYB43, MYB52, MYB54, MYB58, MYB63 and KNAT7, are direct targets of MYB46. Promoter deletion coupled with transactivation analysis of the MYB63 promoter led to the identification of a 7 bp sequence that is sufficient to be responsive to MYB46 activation, and therefore this sequence is designated as the secondary wall MYB-responsive element (SMRE). Further single nucleotide mutation together with electrophoretic mobility shift assay mapped the SMRE consensus sequence as ACC(A/T)A(A/C)(T/C). Genome-wide analysis of direct targets of MYB46 demonstrated that it directly regulates the expression of not only a number of downstream transcription factors, but also a suite of secondary wall biosynthetic genes, some of which are also directly activated by secondary wall NAC (SWN) master switches or by MYB46 direct targets. Furthermore, MYB83 was found to bind to the same SMRE consensus sequence and activate the same set of direct targets as MYB46. Our study has revealed that the transcription program regulating secondary wall biosynthesis involves a multileveled feed-forward loop regulatory structure in which MYB46/MYB83 together with their regulators SWNs and their direct targets regulate an array of downstream genes thereby activating the secondary wall biosynthetic program.
机译:MYB46和MYB83是两个功能上冗余的拟南芥(Arabidopsis thaliana)MYB转录因子,可作为调节次生壁生物合成的主开关。在这里,我们报告的转录反应元件的鉴定和MYB46和MYB83的直接目标的全局分析。使用雌激素诱导的直接激活系统,我们发现许多先前确定的MYB46下游转录因子,包括 MYB43 , MYB52 , MYB54 , MYB58 , MYB63 和 KNAT7 是MYB46的直接目标。启动子缺失加上 MYB63 启动子的反式激活分析导致鉴定出足以响应MYB46激活的7 bp序列,因此该序列被称为次级壁MYB响应元件(SMRE)。进一步的单核苷酸突变与电泳迁移率迁移分析一起将SMRE共有序列定位为ACC(A / T)A(A / C)(T / C)。全基因组分析MYB46的直接靶标表明,它不仅直接调节许多下游转录因子的表达,而且直接调节一组次级壁生物合成基因的表达,其中一些也被次级壁NAC(SWN)直接激活。主开关或通过MYB46直接目标。此外,发现MYB83与相同的SMRE共有序列结合并激活与MYB46相同的直接靶标集合。我们的研究表明,调控次级壁生物合成的转录程序涉及多级前馈环调控结构,其中MYB46 / MYB83与其调控因子SWN及其直接靶标共同调控一系列下游基因,从而激活了次级壁生物合成程序。

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