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拟南芥中 FIN219/JAR1 和隐花色素 1 相互拮抗,在蓝光下调节光形态建成。

FIN219/JAR1 and cryptochrome1 antagonize each other to modulate photomorphogenesis under blue light in Arabidopsis.

机构信息

Institute of Plant Biology, College of Life Science, National Taiwan University, Taipei, Taiwan.

出版信息

PLoS Genet. 2018 Mar 21;14(3):e1007248. doi: 10.1371/journal.pgen.1007248. eCollection 2018 Mar.

Abstract

Plant development is affected by the integration of light and phytohormones, including jasmonates (JAs). To address the molecular mechanisms of possible interactions between blue light and JA signaling in Arabidopsis thaliana, we used molecular and transgenic approaches to understand the regulatory relationships between FAR-RED INSENSITIVE 219 (FIN219)/JASMONATE RESISTANT1 (JAR1) and the blue-light photoreceptor cryptochrome1 (CRY1). FIN219 overexpression in the wild type resulted in a short-hypocotyl phenotype under blue light. However, FIN219 overexpression in cry1, cry2 and cry1cry2 double mutant backgrounds resulted in phenotypes similar to their respective mutant backgrounds, which suggests that FIN219 function may require blue light photoreceptors. Intriguingly, FIN219 overexpression in transgenic plants harboring ectopic expression of the C terminus of CRY1 (GUS-CCT1), which exhibits a hypersensitive short-hypocotyl phenotype in all light conditions including darkness, led to a rescued phenotype under all light conditions except red light. Further expression studies showed mutual suppression between FIN219 and CRY1 under blue light. Strikingly, FIN219 overexpression in GUS-CCT1 transgenic lines (FIN219-OE/GUS-CCT1) abolished GUS-CCT1 fusion protein under blue light, whereas GUS-CCT1 fusion protein was stable in the fin219-2 mutant background (fin219-2/GUS-CCT1). Moreover, FIN219 strongly interacted with COP1 under blue light, and methyl JA (MeJA) treatment enhanced the interaction between FIN219 and GUS-CCT1 under blue light. Furthermore, FIN219 level affected GUS-CCT1 seedling responses such as anthocyanin accumulation and bacterial resistance under various light conditions and MeJA treatment. Thus, FIN219/JAR1 and CRY1 antagonize each other to modulate photomorphogenic development of seedlings and stress responses in Arabidopsis.

摘要

植物发育受光和植物激素(包括茉莉酸(JAs))的整合影响。为了研究拟南芥中蓝光和茉莉酸信号转导之间可能相互作用的分子机制,我们使用分子和转基因方法来理解 FAR-RED INSENSITIVE 219(FIN219)/JASMONATE RESISTANT1(JAR1)和蓝光受体隐花色素 1(CRY1)之间的调节关系。在野生型中过表达 FIN219 导致在蓝光下出现短下胚轴表型。然而,在 cry1、cry2 和 cry1cry2 双突变体背景下过表达 FIN219 导致与各自突变体背景相似的表型,这表明 FIN219 功能可能需要蓝光受体。有趣的是,在含有隐花色素 1 C 端异位表达(GUS-CCT1)的转基因植物中过表达 FIN219,在包括黑暗在内的所有光照条件下表现出超敏短下胚轴表型,导致除红光外的所有光照条件下出现表型恢复。进一步的表达研究表明 FIN219 和 CRY1 在蓝光下相互抑制。引人注目地是,在 GUS-CCT1 转基因系(FIN219-OE/GUS-CCT1)中过表达 FIN219 导致在蓝光下 GUS-CCT1 融合蛋白被消除,而 GUS-CCT1 融合蛋白在 fin219-2 突变体背景下稳定(fin219-2/GUS-CCT1)。此外,FIN219 在蓝光下与 COP1 强烈相互作用,而甲基茉莉酸(MeJA)处理增强了蓝光下 FIN219 和 GUS-CCT1 之间的相互作用。此外,FIN219 水平影响 GUS-CCT1 幼苗对各种光照条件和 MeJA 处理的反应,如花青素积累和细菌抗性。因此,FIN219/JAR1 和 CRY1 相互拮抗,调节拟南芥幼苗光形态建成发育和应激反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e272/5880400/d54f66199359/pgen.1007248.g001.jpg

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