途径的调控机制:MYC2 和 BBX21 在类黄酮网络中的调节作用

Plants Pub Date : 2024-04-22 DOI:10.3390/plants13081156
Nan Li, Yunzhang Xu, Yingqing Lu
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引用次数: 0

摘要

代谢途径中的基因通常通过不明确的机制单独或集体受到调控。花青素通路因受 MYB/bHLH/WDR(MBW)复合体的调控而广为人知,但其与 MYC2、BBX21、SPL9、PIF3 和 HY5 的联系却鲜为人知。我们发现,在拟南芥和芸苔属植物中,当存在局部 MBW 复合物时,MYC2 既能激活花青素途径的结构基因,也能抑制它们(F3′H 除外)。BBX21 或 SPL9 可分别激活全部或部分结构基因,但其作用在很大程度上会被局部 MBW 复合物所覆盖。HY5 主要影响早期基因(CHS、CHI 和 F3H)的表达。这里的 TF-TF 关系可能很复杂:PIF3、BBX21 或 SPL9 可轻度激活 MYC2;MYC2 与 MBW 复合物的 bHLH(GL3)发生物理作用,和/或与 BBX21 的强作用竞争,以减少对花青素途径的刺激。MYC2 在调节花色素通路中的双重作用和 BBX21 在调节 BAN 中的类似作用揭示了一种网络水平的机制,在这种机制中,通路受到局部调节,而调节剂之间的竞争性相互作用可能会在强环境信号到达网络之前将其弱化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Regulatory Mechanism on Pathways: Modulating Roles of MYC2 and BBX21 in the Flavonoid Network
Genes of metabolic pathways are individually or collectively regulated, often via unclear mechanisms. The anthocyanin pathway, well known for its regulation by the MYB/bHLH/WDR (MBW) complex but less well understood in its connections to MYC2, BBX21, SPL9, PIF3, and HY5, is investigated here for its direct links to the regulators. We show that MYC2 can activate the structural genes of the anthocyanin pathway but also suppress them (except F3′H) in both Arabidopsis and Oryza when a local MBW complex is present. BBX21 or SPL9 can activate all or part of the structural genes, respectively, but the effects can be largely overwritten by the local MBW complex. HY5 primarily influences expressions of the early genes (CHS, CHI, and F3H). TF-TF relationships can be complex here: PIF3, BBX21, or SPL9 can mildly activate MYC2; MYC2 physically interacts with the bHLH (GL3) of the MBW complex and/or competes with strong actions of BBX21 to lessen a stimulus to the anthocyanin pathway. The dual role of MYC2 in regulating the anthocyanin pathway and a similar role of BBX21 in regulating BAN reveal a network-level mechanism, in which pathways are modulated locally and competing interactions between modulators may tone down strong environmental signals before they reach the network.
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