An evolutionarily conserved pathway mediated by neuroparsin-A regulates reproductive plasticity in ants

Author:

Zhang Xiafang,Xie Nianxia,Ding Guo,Ning Dongdong,Dai Wei,Xiong Zijun,Zhong Wenjiang,Zuo Dashuang,Zhao Jie,Zhang Pei,Liu Chengyuan,Li Qiye,Ran Hao,Liu WeiweiORCID,Zhang GuojieORCID

Abstract

Phenotypic plasticity displayed by an animal in response to different environmental conditions is supposedly crucial for its survival and reproduction. The female adults of some ant lineages display phenotypic plasticity related to reproductive role. In pharaoh ant queens, insemination induces substantial physiological/behavioral changes and implicates remarkable gene regulatory network (GRN) shift in the brain. Here, we report a neuropeptide neuroparsin A (NPA) showing a conserved expression pattern associated with reproductive activity across ant species. Knock-down of NPA in unmated queen enhances ovary activity, whereas injection of NPA peptide in fertilized queen suppresses ovary activity. We found that NPA mainly affected the downstream gene JHBP in the ovary, which is positively regulated by NPA and suppression of which induces elevated ovary activity, and shadow which is negatively regulated by NPA. Furthermore, we show that NPA was also employed into the brain–ovary axis in regulating the worker reproductive changes in other distantly related species, such as Harpegnathos venator ants.

Funder

National Natural Science Foundation of China

New Cornerstone Science Foundation

Publisher

Public Library of Science (PLoS)

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