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The gene expression network regulating queen brain remodeling after insemination and its parallel use in ants with reproductive workers

机译:基因表达网络调节女王脑重塑后的授精,并在生殖工人的蚂蚁中平行使用

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Caste differentiation happens early in development to produce gynes as future colony germlines and workers as present colony soma. However, gynes need insemination to become functional queens, a transition that initiates reproductive role differentiation relative to unmated gynes. Here, we analyze the anatomy and transcriptomes of brains during this differentiation process within the reproductive caste of Monomorium pharaonis . Insemination terminated brain growth, whereas unmated control gynes continued to increase brain volume. Transcriptomes revealed a specific gene regulatory network (GRN) mediating both brain anatomy changes and behavioral modifications. This reproductive role differentiation GRN hardly overlapped with the gyne-worker caste differentiation GRN, but appears to be also used by distantly related ants where workers became germline individuals after the queen caste was entirely or partially lost. The genes corazonin and neuroparsin A in the anterior neurosecretory cells were overexpressed in individuals with reduced or nonreproductive roles across all four ant species investigated.
机译:种姓差异发生在开发时期,以生产古代作为未来的殖民地系列和工人作为目前的殖民地躯体。然而,Gynes需要授精成为功能性皇后,一种转型,以引发相对于未发送的古尼斯的生殖角色分化。在这里,我们在植物植物的生殖种姓中分析了这种分化过程中大脑的解剖和转录组。授精终止脑增长,而蒙特式控制古尼继续增加脑体积。转录om显示出一种介导脑解剖变化和行为修饰的特定基因调节网络(GRN)。这种生殖角色分化Grn几乎没有与巨型工人种姓的分化GRN重叠,但似乎也被远方相关的蚂蚁使用,其中工人在女王种姓完全或部分失去后工人成为种系。在对所有四种蚂蚁物种中的减少或非培养性作用的个体中过表达了前神经细胞中的基因菌根和神经血清素A。

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