Ecdysteroid signaling acts as a central switch underlying wing polyphenism in two hemipteran insects

多酚类物质 生物 翼 蜕皮激素 物候学 保幼激素 细胞生物学 昆虫 进化生物学 遗传学 信号转导 双斑蟋蟀 适应(眼睛) 激素 黑腹果蝇 黑色素 TOR信号 发条
作者
Yong-Kang Liu,Jinli Zhang,Nitong Xu,Hengguang Huang,Hui-Jie Wu,Yi Wan,Hai‐Jun Xu
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:123 (39): e2617907123-e2617907123
标识
DOI:10.1073/pnas.2617907123
摘要

Wing polyphenism represents a prevalent evolutionary adaptation in insect taxa, characterized by the capacity of a single genotype to produce distinct wing morphologies in response to environmental variations. Across hemipteran lineages, the regulation of wing polyphenism involves taxon-specific endocrine signaling cascades; however, the evolutionarily conserved genetic toolkit that underlies this developmental plasticity remains elusive. Here, we find that the steroid hormone ecdysteroids serve as a central hormonal switch that orchestrates wing polyphenism through dual downstream integration of the prothoracicotropic hormone (PTTH)-its receptor (Torso) and insulin/IGF-1 signaling (IIS) pathways in both the firebug Pyrrhocoris apterus and planthopper Nilaparvata lugens , two evolutionarily divergent Hemiptera species. Silencing of ecdysteroidogenic genes ( Spo and Shd ) in the firebug or ecdysteroid receptor signaling components ( EcR ) in both species induced wing bud growth in final-instar nymphs. Loss-of-function mutagenesis of Ptth or Torso in the firebug, whereas mutagenesis of Torso only in the planthopper, transformed short-wing-destined wing buds into long wings. In contrast to wild-type controls, disruption of both Torso and IIS signaling delayed the timing of the ecdysteroid pulse during the final nymphal instar of both species. Administration of exogenous ecdysteroids neutralized the effect of Torso and IIS signaling on wing morphs, redirecting the developmental trajectory of wings from long to short. The finding of the “neuropeptide–ecdysteroid axis” in the planthopper and the firebug indicates a conserved regulatory principle underlying wing polyphenism across Hemiptera.
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