首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Activated Ras/JNK driven Dilp8 in imaginal discs adversely affects organismal homeostasis during early pupal stage in Drosophila, a new checkpoint for development
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Activated Ras/JNK driven Dilp8 in imaginal discs adversely affects organismal homeostasis during early pupal stage in Drosophila, a new checkpoint for development

机译:Imaginal Discs中的活化RAS / JNK驱动DILP8对果蝇的早期蛹阶段的有机体稳态产生不利影响,这是一种新的发展检查点

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Background Dilp8-mediated inhibition of ecdysone synthesis and pupation in holometabolous insects maintains developmental homeostasis through stringent control of timing and strength of molting signals. We examined reasons for normal pupation but early pupal death observed in certain cases. Results Overexpression of activated Ras in developing eye/wing discs inhibited Ptth expression in brain via upregulated JNK signaling mediated Dilp8 secretion from imaginal discs, which inhibited ecdysone synthesis in prothoracic gland after pupariation, leading to death of similar to 25- to 30-hour-old pupae. Inhibition of elevated Ras signaling completely rescued early pupal death while post-pupation administration of ecdysone to organisms with elevated Ras signaling in eye discs partially rescued their early pupal death. Unlike the earlier known Dilp8 action in delaying pupation, hyperactivated Ras mediated elevation of pJNK signaling in imaginal discs caused Dilp8 secretion after pupariation. Ectopic expression of certain other transgene causing pupal lethality similarly enhanced pJNK and early pupal Dilp8 levels. Suboptimal ecdysone levels after 8 hours of pupation prevented the early pupal metamorphic changes and caused organismal death. Conclusions Our results reveal early pupal stage as a novel Dilp8 mediated post-pupariation checkpoint and provide further evidence for interorgan signaling during development, wherein a peripheral tissue influences the CNS driven endocrine function.
机译:背景技术DILP8介导的泌胞昆虫中蜕皮酮的抑制和蛹化通过严格控制蜕皮信号的严格控制来维持发育性稳态。我们检查了正常蛹的原因,但在某些情况下观察到早期蛹死亡。结果在发育眼睛/翼片中的活化RA过表达通过从想象的JNK信号传导介导的DILP8分泌抑制了脑椎间盘的脑部肿瘤表达,这抑制了粉碎后的孕激素在PROTHORACICIC腺体中的肌肉合成,导致类似于25至30小时的死亡 - 老蛹。抑制RAS信号传导的抑制完全拯救了早期蛹死亡,同时后蛹施用对眼盘中的RA信号升高的RAS信号传导的生物体部分地救出了他们的早期蛹死亡。与延迟蛹中的早期已知的DILP8作用不同,多动RAS介导的PJNK信号在想象椎间盘中的升高导致蛹后的DELP8分泌。某些其他转基因的异位表达引起蛹致命性同样增强了PJNK和早期蛹DELP8水平。次优生态蜕膜水平在8小时的蛹后防止了早期蛹变形变化并导致机能死亡。结论我们的结果揭示了早期蛹阶段作为一种新型DILP8介导的蛹后检查点,并在发育过程中提供了进一步证据了在发育过程中的同机信号传导,其中外周组织影响CNS驱动的内分泌功能。

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