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Signal-transduction pathways toward the regulation of brassinosteroid biosynthesis

机译:调节油菜素类固醇生物合成的信号转导途径

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Brassinosteroids (BRs) collectively refer to the steroidal plant hormones that stimulate dramatic growth by cells and organs. Because of their essential roles, mutants that are defective in either the biosynthetic or signaling pathway exhibit severe dwarfism. Numerous reports from biochemical, genetic, and physiological studies agree thatDWARF4 mediates the flux-determining step in the biosynthetic pathway. Rather than exercising allosteric feed-back regulation of the enzyme by the end product brassinolide, transcriptional control of theDWF4 gene is considered the most important for precise modulation of the pool size for bioactive BRs.DWF4 expression is localized to actively growing tissues, including shoot and root tips, and the junction tissues between inflorescences and roots. This expression is significantly down-regulated by exogenous or endogenous applications of BRs, but increased by auxin treatment. Direct measurement of the endogenous BRs in different tissues ofArabidopsis has demonstrated that the accumulated BRs are mainly attributable toDWF4 expression. Regarding their interaction with other hormones, BRs induce many auxin-associated genes, e.g., Aux/IAA, GH3, and SAUR. Therefore, it is likely that the brassinosteroids synthesized by a limited number of tightly controlled cells in actively growing tissues are responsible for the demands by those tissues. Future research should elucidate which portion of the BRs is transported via which mechanisms, as well as reveal the roles of auxin-associated genes expressed in a BR-dependent manner.
机译:油菜素类固醇(BRs)统称为类固醇植物激素,可刺激细胞和器官急剧生长。由于它们的重要作用,在生物合成或信号途径中有缺陷的突变体表现出严重的侏儒症。生化,遗传和生理学研究的许多报道都认为DWARF4介导了生物合成途径中的通量决定步骤。 DWF4基因的转录控制被认为对生物活性BR的池大小的精确调节最重要,而不是通过终产物油菜素内酯对酶进行变构反馈调节,DWF4基因的表达定位于活跃生长的组织,包括芽和根尖以及花序和根之间的交界组织。通过外源或内源性施用BR,该表达显着下调,但通过生长素处理而增加。直接测量拟南芥不同组织中的内源性BRs已证明积累的BRs主要归因于DWF4表达。关于它们与其他激素的相互作用,BRs诱导了许多与生长素相关的基因,例如Aux / IAA,GH3和SAUR。因此,很可能由活跃生长的组织中有限数量的严格控制的细胞合成的油菜素类固醇负责这些组织的需求。未来的研究应阐明BR的哪一部分通过哪种机制转运,并揭示以BR依赖性方式表达的与生长素相关的基因的作用。

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