Single-cell transcriptomics reveals the brain evolution of web-building spiders

Author:

Jin PengyuORCID,Zhu Bingyue,Jia Yinjun,Zhang YimingORCID,Wang Wei,Shen Yunxiao,Zhong Yu,Zheng Yami,Wang Yang,Tong Yan,Zhang WeiORCID,Li ShuqiangORCID

Abstract

AbstractSpiders are renowned for their efficient capture of flying insects using intricate aerial webs. How the spider nervous systems evolved to cope with this specialized hunting strategy and various environmental clues in an aerial space remains unknown. Here we report a brain-cell atlas of >30,000 single-cell transcriptomes from a web-building spider (Hylyphantes graminicola). Our analysis revealed the preservation of ancestral neuron types in spiders, including the potential coexistence of noradrenergic and octopaminergic neurons, and many peptidergic neuronal types that are lost in insects. By comparing the genome of two newly sequenced plesiomorphic burrowing spiders with three aerial web-building spiders, we found that the positively selected genes in the ancestral branch of web-building spiders were preferentially expressed (42%) in the brain, especially in the three mushroom body-like neuronal types. By gene enrichment analysis and RNAi experiments, these genes were suggested to be involved in the learning and memory pathway and may influence the spiders’ web-building and hunting behaviour. Our results provide key sources for understanding the evolution of behaviour in spiders and reveal how molecular evolution drives neuron innovation and the diversification of associated complex behaviours.

Funder

Chinese Academy of Sciences

National Natural Science Foundation of China

CAS | Key Laboratory of Zoological and Systematics and Evolution, Chinese Academy of Sciences

Publisher

Springer Science and Business Media LLC

Subject

Ecology,Ecology, Evolution, Behavior and Systematics

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