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ABA 响应的 AREB1/ABI3-1/ABI5 级联反应调节 IAA 氧化酶基因 SlDAO2 抑制番茄下胚轴伸长。

ABA-responsive AREB1/ABI3-1/ABI5 cascade regulates IAA oxidase gene SlDAO2 to inhibit hypocotyl elongation in tomato.

机构信息

Key Laboratory of Horticultural Crop Biology and Germplasm Innovation, Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Ministry of Agriculture, Beijing, People's Republic of China.

Crop Breeding and Cultivation Research Institute, Shanghai Academy of Agricultural Sciences, Shanghai, China.

出版信息

Plant Cell Environ. 2023 Feb;46(2):498-517. doi: 10.1111/pce.14491. Epub 2022 Nov 26.

Abstract

Hypocotyl elongation is dramatically influenced by environmental factors and phytohormones. Indole-3-acetic acid (IAA) plays a prominent role in hypocotyl elongation, whereas abscisic acid (ABA) is regarded as an inhibitor through repressing IAA synthesis and signalling. However, the regulatory role of ABA in local IAA deactivation remains largely uncharacterized. In this study, we confirmed the antagonistic interplay of ABA and IAA during the hypocotyl elongation of tomato (Solanum lycopersicum) seedlings. We identified an IAA oxidase enzyme DIOXYGENASE FOR AUXIN OXIDATION2 (SlDAO2), and its expression was induced by both external and internal ABA signals in tomato hypocotyls. Moreover, the overexpression of SlDAO2 led to a reduced sensitivity to IAA, and the knockout of SlDAO2 alleviated the inhibitory effect of ABA on hypocotyl elongation. Furthermore, an ABA-responsive regulatory SlAREB1/SlABI3-1/SlABI5 cascade was identified to act upstream of SlDAO2 and to precisely control its expression. SlAREB1 directly bound to the ABRE present in the SlDAO2 promoter to activate SlDAO2 expression, and SlABI3-1 enhanced while SlABI5 inhibited the activation ability of SlAREB1 by directly interacting with SlAREB1. Our findings revealed that ABA might induce local IAA oxidation and deactivation via SlDAO2 to modulate IAA homoeostasis and thereby repress hypocotyl elongation in tomato.

摘要

下胚轴伸长受环境因子和植物激素的显著影响。吲哚-3-乙酸(IAA)在下胚轴伸长中起着重要作用,而脱落酸(ABA)通过抑制 IAA 的合成和信号传递被认为是一种抑制剂。然而,ABA 在局部 IAA 失活中的调节作用在很大程度上仍未被阐明。在这项研究中,我们证实了 ABA 和 IAA 在番茄(Solanum lycopersicum)幼苗下胚轴伸长过程中的拮抗作用。我们鉴定了一种 IAA 氧化酶酶 DIOXYGENASE FOR AUXIN OXIDATION2(SlDAO2),其表达在外源和内源 ABA 信号的诱导下在番茄下胚轴中被诱导。此外,SlDAO2 的过表达导致对 IAA 的敏感性降低,而 SlDAO2 的敲除减轻了 ABA 对下胚轴伸长的抑制作用。此外,鉴定出一个 ABA 响应调节 SlAREB1/SlABI3-1/SlABI5 级联反应,该级联反应在上游作用于 SlDAO2 并精确控制其表达。SlAREB1 直接结合到 SlDAO2 启动子中的 ABRE 上以激活 SlDAO2 的表达,而 SlABI3-1 通过直接与 SlAREB1 相互作用增强 SlAREB1 的激活能力,而 SlABI5 抑制其激活能力。我们的研究结果表明,ABA 可能通过 SlDAO2 诱导局部 IAA 氧化和失活来调节 IAA 平衡,从而抑制番茄下胚轴伸长。

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