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伤口诱导的花药开裂缺陷1和类DAD1脂肪酶基因的表达在拟南芥中由不依赖于冠菌素不敏感1和依赖于冠菌素不敏感1的途径介导。

Wound-induced expression of DEFECTIVE IN ANTHER DEHISCENCE1 and DAD1-like lipase genes is mediated by both CORONATINE INSENSITIVE1-dependent and independent pathways in Arabidopsis thaliana.

作者信息

Ruduś Izabela, Terai Haruka, Shimizu Takafumi, Kojima Hisae, Hattori Kazuki, Nishimori Yuka, Tsukagoshi Hironaka, Kamiya Yuji, Seo Mitsunori, Nakamura Kenzo, Kępczyński Jan, Ishiguro Sumie

机构信息

Department of Biological Mechanisms and Functions, Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, 464-8601, Japan.

出版信息

Plant Cell Rep. 2014 Jun;33(6):849-60. doi: 10.1007/s00299-013-1561-8. Epub 2014 Jan 16.

Abstract

Endogenous JA production is not necessary for wound-induced expression of JA-biosynthetic lipase genes such as DAD1 in Arabidopsis. However, the JA-Ile receptor COI1 is often required for their JA-independent induction. Wounding is a serious event in plants that may result from insect feeding and increase the risk of pathogen infection. Wounded plants produce high amounts of jasmonic acid (JA), which triggers the expression of insect and pathogen resistance genes. We focused on the transcriptional regulation of DEFECTIVE IN ANTHER DEHISCENCE1 and six of its homologs including DONGLE (DGL) in Arabidopsis, which encode lipases involved in JA biosynthesis. Plants constitutively expressing DAD1 accumulated a higher amount of JA than control plants after wounding, indicating that the expression of these lipase genes contributes to determining JA levels. We found that the expression of DAD1, DGL, and other DAD1-LIKE LIPASE (DALL) genes is induced upon wounding. Some DALLs were also expressed in unwounded leaves. Further experiments using JA-biosynthetic and JA-response mutants revealed that the wound induction of these genes is regulated by several distinct pathways. DAD1 and most of its homologs other than DALL4 were fully induced without relying on endogenous JA-Ile production and were only partly affected by JA deficiency, indicating that positive feedback by JA is not necessary for induction of these genes. However, DAD1 and DGL required CORONATINE INSENSITIVE1 (COI1) for their expression, suggesting that a molecule other than JA might act as a regulator of COI1. Wound induction of DALL1, DALL2, and DALL3 did not require COI1. This differential regulation of DAD1 and its homologs might explain their functions at different time points after wounding.

摘要

内源性茉莉酸(JA)的产生对于伤口诱导拟南芥中如DAD1等JA生物合成脂肪酶基因的表达并非必需。然而,JA-Ile受体COI1通常是其非依赖JA诱导所必需的。伤口是植物中的严重事件,可能由昆虫取食引起,并增加病原体感染的风险。受伤的植物会产生大量茉莉酸(JA),从而触发昆虫和病原体抗性基因的表达。我们聚焦于拟南芥中花药开裂缺陷1(DEFECTIVE IN ANTHER DEHISCENCE1)及其包括东乐(DONGLE,DGL)在内的六个同源基因的转录调控,这些基因编码参与JA生物合成的脂肪酶。在受伤后,组成型表达DAD1的植物比对照植物积累了更高量的JA,这表明这些脂肪酶基因的表达有助于决定JA水平。我们发现,受伤后DAD1、DGL和其他类DAD1脂肪酶(DALL)基因的表达被诱导。一些DALL基因也在未受伤的叶片中表达。使用JA生物合成和JA反应突变体的进一步实验表明,这些基因的伤口诱导受几种不同途径调控。DAD1及其除DALL4外的大多数同源基因在不依赖内源性JA-Ile产生的情况下被完全诱导,并且仅部分受JA缺乏的影响,这表明JA的正反馈对于这些基因的诱导并非必需。然而,DAD1和DGL的表达需要冠菌素不敏感1(CORONATINE INSENSITIVE1,COI1),这表明除JA之外的一种分子可能作为COI1的调节因子。DALL1、DALL2和DALL3的伤口诱导不需要COI1。DAD1及其同源基因的这种差异调控可能解释了它们在受伤后不同时间点的功能。

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