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SND1 a NAC Domain Transcription Factor Is a Key Regulator of Secondary Wall Synthesis in Fibers of Arabidopsis

机译:SND1是NAC域转录因子是拟南芥纤维中次生壁合成的关键调节剂。

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摘要

Secondary walls in fibers and tracheary elements constitute the most abundant biomass produced by plants. Although a number of genes involved in the biosynthesis of secondary wall components have been characterized, little is known about the molecular mechanisms underlying the coordinated expression of these genes. Here, we demonstrate that the Arabidopsis thaliana NAC (for NAM, ATAF1/2, and CUC2) domain transcription factor, SND1 (for secondary wall–associated NAC domain protein), is a key transcriptional switch regulating secondary wall synthesis in fibers. We show that SND1 is expressed specifically in interfascicular fibers and xylary fibers in stems and that dominant repression of SND1 causes a drastic reduction in the secondary wall thickening of fibers. Ectopic overexpression of SND1 results in activation of the expression of secondary wall biosynthetic genes, leading to massive deposition of secondary walls in cells that are normally nonsclerenchymatous. In addition, we have found that SND1 upregulates the expression of several transcription factors that are highly expressed in fibers during secondary wall synthesis. Together, our results reveal that SND1 is a key transcriptional activator involved in secondary wall biosynthesis in fibers.
机译:纤维和气管中的次生壁构成了植物产生的最丰富的生物质。尽管已表征了涉及次生壁成分生物合成的许多基因,但对这些基因的协同表达所基于的分子机制知之甚少。在这里,我们证明了拟南芥NAC(对于NAM,ATAF1 / 2和CUC2)域转录因子SND1(对于次生壁相关的NAC域蛋白)是调节纤维中次生壁合成的关键转录开关。我们显示SND1在茎中的束间纤维和木聚糖纤维中特异性表达,并且SND1的显性抑制导致纤维的次级壁增厚急剧减少。 SND1的异位过表达导致次生壁生物合成基因表达的激活,导致次生壁大量沉积在通常非硬化性细胞中。此外,我们发现SND1上调在次级壁合成过程中在纤维中高度表达的几种转录因子的表达。总之,我们的结果表明SND1是参与纤维次级壁生物合成的关键转录激活因子。

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