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NAC-MYB-based transcriptional regulation of secondary cell wall biosynthesis in land plants

机译:基于NAC-MYB的陆地植物次生细胞壁生物合成的转录调控

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Plant cells biosynthesize primary cell walls (PCW) in all cells and produce secondary cell walls (SCWs) in specific cell types that conduct water and/or provide mechanical support, such as xylem vessels and fibers. The characteristic mechanical stiffness, chemical recalcitrance, and hydrophobic nature of SCWs result from the organization of SCW-specific biopolymers, i.e., highly ordered cellulose, hemicellulose, and lignin. Synthesis of these SCW-specific biopolymers requires SCW-specific enzymes that are regulated by SCW-specific transcription factors. In this review, we summarize our current knowledge of the transcriptional regulation of SCW formation in plant cells. Advances in research on SCW biosynthesis during the past decade have expanded our understanding of the transcriptional regulation of SCW formation, particularly the functions of the NAC and MYB transcription factors. Focusing on the NAC-MYB-based transcriptional network, we discuss the regulatory systems that evolved in land plants to modify the cell wall to serve as a key component of structures that conduct water and provide mechanical support.
机译:植物细胞生物合成所有细胞中的原代细胞壁(PCW),并在特定的细胞类型中产生次生细胞壁(SCW),这些特定类型的细胞传导水和/或提供机械支撑,例如木质部血管和纤维。 SCW的机械强度,化学抗性和疏水性是SCW特定的生物聚合物(即高度有序的纤维素,半纤维素和木质素)的组织造成的。这些SCW特异性生物聚合物的合成需要SCW特异性转录因子调节的SCW特异性酶。在这篇综述中,我们总结了我们目前对植物细胞中SCW形成的转录调控的认识。在过去的十年中,SCW生物合成的研究进展扩大了我们对SCW形成的转录调控,特别是NAC和MYB转录因子功能的理解。着眼于基于NAC-MYB的转录网络,我们讨论了在陆地植物中进化的调节系统,以修饰细胞壁,以作为传导水和提供机械支持的结构的关键组成部分。

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