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

机译:FIN219 / JAR1和Cryptochrome1彼此拮抗,以调节拟南芥蓝光下的光血栓发生

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摘要

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.
机译:植物开发受光和植物激素的整合的影响,包括茉莉酸盐(Jas)。为了解决蓝光和JA信号在拟南芥中可能相互作用的分子机制,我们使用了分子和转基因方法来了解远红不敏感219(FIN219)/ jasMonate1(JAR1)和蓝光感光体之间的调节关系Cryptochrome1(Cry1)。野生型中的FIN219过表达导致蓝光下的短胚轴表型。然而,CRY1,CRY2和CRY1CRY2双突变体背景中的FIN219过表达导致类似于它们各自的突变体背景的表型,这表明FIN219功能可能需要蓝光光感受器。有趣的是,涉及CRY1(GUS-CCT1)的C末端异位表达的转基因表达的转基因植物中的过表达,其在包括黑暗中的所有光线条件下表现出过敏短的短杆基表型,导致除了红光之外的所有光条件下的救出表型。进一步的表达研究表明FIN219与蓝光下的CRY1之间的互抑制。令人醒目地,在蓝光下废除GUS-CCT1转基因系(FIN219-OE / GUS-CCT1)的FIN219过表达(FIN219-OE / GUS-CCT1),而GUS-CCT1融合蛋白在FIN219-2突变体背景下稳定(FIN219-2 / GUS -cct1)。此外,在蓝光下与COP1强烈相互作用的FIN219,并且甲基JA(MEJA)处理增强了FIN219和GUS-CCT1在蓝光下的相互作用。此外,FIN219水平影响了GUS-CCT1幼苗反应,例如在各种光线条件下的花青素积累和细菌抗性。因此,Fin219 / JAR1和Cry1彼此拮抗以调节幼苗的光学发育和拟南芥中的应激反应。

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