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章鱼 maya 的白色身体在生殖阶段表现出性别特异性的转录组特征,信号通路存在高度分化。

Octopus maya white body show sex-specific transcriptomic profiles during the reproductive phase, with high differentiation in signaling pathways.

机构信息

Departamento de Biotecnología Marina, Centro de Investigación Científica y de Educación Superior de Ensenada, Zona Playitas, Ensenada, Baja California, México.

Departamento de Innovación Biomédica, Centro de Investigación Científica y de Educación Superior de Ensenada, Zona Playitas, Ensenada, Baja California, México.

出版信息

PLoS One. 2019 May 16;14(5):e0216982. doi: 10.1371/journal.pone.0216982. eCollection 2019.

Abstract

White bodies (WB), multilobulated soft tissue that wraps the optic tracts and optic lobes, have been considered the hematopoietic organ of the cephalopods. Its glandular appearance and its lobular morphology suggest that different parts of the WB may perform different functions, but a detailed functional analysis of the octopus WB is lacking. The aim of this study is to describe the transcriptomic profile of WB to better understand its functions, with emphasis on the difference between sexes during reproductive events. Then, validation via qPCR was performed using different tissues to find out tissue-specific transcripts. High differentiation in signaling pathways was observed in the comparison of female and male transcriptomic profiles. For instance, the expression of genes involved in the androgen receptor-signaling pathway were detected only in males, whereas estrogen receptor showed higher expression in females. Highly expressed genes in males enriched oxidation-reduction and apoptotic processes, which are related to the immune response. On the other hand, expression of genes involved in replicative senescence and the response to cortisol were only detected in females. Moreover, the transcripts with higher expression in females enriched a wide variety of signaling pathways mediated by molecules like neuropeptides, integrins, MAPKs and receptors like TNF and Toll-like. In addition, these putative neuropeptide transcripts, showed higher expression in females' WB and were not detected in other analyzed tissues. These results suggest that the differentiation in signaling pathways in white bodies of O. maya influences the physiological dimorphism between females and males during the reproductive phase.

摘要

白色身体(WB),包裹视束和视叶的多叶状软组织,被认为是头足类动物的造血器官。其腺体外观和小叶形态表明,WB 的不同部位可能具有不同的功能,但对章鱼 WB 的详细功能分析还很缺乏。本研究旨在描述 WB 的转录组谱,以更好地了解其功能,重点是在生殖事件中两性之间的差异。然后,使用不同组织进行 qPCR 验证,以找出组织特异性转录本。在雌性和雄性转录组图谱的比较中观察到信号通路的高度分化。例如,仅在雄性中检测到参与雄激素受体信号通路的基因的表达,而雌激素受体在雌性中表达更高。在雄性中高度表达的基因富集氧化还原和凋亡过程,这与免疫反应有关。另一方面,仅在雌性中检测到与复制衰老和皮质醇反应相关的基因的表达。此外,在雌性中表达更高的基因富集了由神经肽、整合素、MAPKs 和 TNF 和 Toll 样受体等分子介导的各种信号通路。此外,这些假定的神经肽转录本在雌性 WB 中的表达更高,而在其他分析的组织中未检测到。这些结果表明,在白色身体的信号通路中的分化影响了雌性和雄性在生殖阶段的生理二态性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2b3/6522055/abce819f60fc/pone.0216982.g001.jpg

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