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生长素信号的负反馈调节由 ATHB8/ACL5-BUD2 转录模块实现。

Negative feedback regulation of auxin signaling by ATHB8/ACL5-BUD2 transcription module.

机构信息

Food and Nutrition Research Centre, Agricultural Research Council, Via Ardeatina 546, Rome 00178, Italy.

Food and Nutrition Research Centre, Agricultural Research Council, Via Ardeatina 546, Rome 00178, Italy; Present address: Department of Physics, Sapienza University of Rome, P.le A. Moro 5, 00185, Rome, Italy.

出版信息

Mol Plant. 2014 Jun;7(6):1006-1025. doi: 10.1093/mp/ssu051. Epub 2014 Apr 27.

Abstract

The role of auxin as main regulator of vascular differentiation is well established, and a direct correlation between the rate of xylem differentiation and the amount of auxin reaching the (pro)cambial cells has been proposed. It has been suggested that thermospermine produced by ACAULIS5 (ACL5) and bushy and dwarf2 (BUD2) is one of the factors downstream to auxin contributing to the regulation of this process in Arabidopsis. Here, we provide an in-depth characterization of the mechanism through which ACL5 modulates xylem differentiation. We show that an increased level of ACL5 slows down xylem differentiation by negatively affecting the expression of homeodomain-leucine zipper (HD-ZIP) III and key auxin signaling genes. This mechanism involves the positive regulation of thermospermine biosynthesis by the HD-ZIP III protein Arabidopsis thaliana homeobox8 tightly controlling the expression of ACL5 and BUD2. In addition, we show that the HD-ZIP III protein REVOLUTA contributes to the increased leaf vascularization and long hypocotyl phenotype of acl5 likely by a direct regulation of auxin signaling genes such as like auxin resistant2 (LAX2) and LAX3. We propose that proper formation and differentiation of xylem depend on a balance between positive and negative feedback loops operating through HD-ZIP III genes.

摘要

生长素作为血管分化主要调节剂的作用已得到充分证实,并且已经提出木质部分化的速度与到达(原)形成层细胞的生长素数量直接相关。有人提出,由 ACAULIS5 (ACL5) 和丛生和矮化 2 (BUD2) 产生的热亚精胺是生长素下游调节拟南芥这一过程的因素之一。在这里,我们深入研究了 ACL5 调节木质部分化的机制。我们表明,ACL5 水平的增加通过负向影响同源域亮氨酸拉链 (HD-ZIP) III 和关键生长素信号基因的表达,从而减缓木质部分化。这种机制涉及 HD-ZIP III 蛋白拟南芥同源盒 8 通过正调控热亚精胺生物合成来紧密控制 ACL5 和 BUD2 的表达。此外,我们表明 HD-ZIP III 蛋白 REVOLUTA 通过直接调节生长素信号基因(如生长素抗性 2 (LAX2) 和 LAX3),有助于增加 acl5 的叶片脉管系统和长下胚轴表型。我们提出,木质部的适当形成和分化取决于通过 HD-ZIP III 基因的正反馈和负反馈环之间的平衡。

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