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普通铃蚶(双壳纲,不等蛤科)的解剖学和转录组学研究支持双壳类触手的感觉功能。

Anatomy and transcriptomics of the common jingle shell (Bivalvia, Anomiidae) support a sensory function for bivalve tentacles.

作者信息

Audino Jorge A, McElroy Kyle E, Serb Jeanne M, Marian José E A R

机构信息

Department of Zoology, University of São Paulo, São Paulo, SP, Brazil.

Ecology, Evolutionary, and Organismal Biology, Iowa State University, Ames, IA, USA.

出版信息

Sci Rep. 2024 Dec 28;14(1):31539. doi: 10.1038/s41598-024-83313-7.

Abstract

Animals have evolved numerous mechanisms to perceive and interact with the environment that can be translated into different sensory modalities. However, the genomic and phenotypic features that support sensory functions remain enigmatic for many invertebrates, such as bivalves, an ecologically and economically important taxonomic group. No repertoire of sensory genes has been characterized in bivalves, representing a significant knowledge gap in molluscan sensory biology. Here, we gather multiple lines of evidence to explore the specialized sensory function of bivalve tentacles in the common jingle shell, Anomia simplex. In addition to applying microscopy techniques, we performed transcriptome sequencing of dissected tentacles using phylogenetically-informed annotation to identify candidate receptors. Our results demonstrate the expression of candidate GPCRs, including one opsin type, five small-molecule receptors, and 11 chemosensory-related receptors, supporting the involvement of sensory neurons in the organ, likely in association with the ciliated receptor cells observed along the tentacle surface. In addition, we identified seven ionotropic receptors as putative chemosensory receptors and one member of the Piezo mechanosensitive ion channel, which might be involved in touch sensation by ciliated sensory receptors. Our results provide the first evidence of putative sensory genes expressed in a bivalve sensory organ, representing an important starting point to investigate chemosensation in this class.

摘要

动物已经进化出多种机制来感知环境并与之相互作用,这些机制可以转化为不同的感觉模式。然而,对于许多无脊椎动物,如双壳贝类(一个在生态和经济上都很重要的分类群体)来说,支持感觉功能的基因组和表型特征仍然是个谜。双壳贝类中尚未对任何感觉基因库进行过表征,这代表着软体动物感觉生物学方面存在重大的知识空白。在这里,我们收集了多条证据来探究普通贻贝(Anomia simplex)双壳贝类触手的特殊感觉功能。除了应用显微镜技术外,我们还使用系统发育信息注释对解剖后的触手进行了转录组测序,以鉴定候选受体。我们的结果表明,候选G蛋白偶联受体(GPCRs)得以表达,其中包括一种视蛋白类型、五种小分子受体和11种化学感觉相关受体,这支持了感觉神经元参与该器官活动,可能与沿触手表面观察到的纤毛受体细胞有关。此外,我们鉴定出七种离子型受体作为假定的化学感觉受体,以及一种Piezo机械敏感离子通道成员,其可能参与纤毛感觉受体的触觉感受。我们的结果首次证明了在双壳贝类感觉器官中表达的假定感觉基因,这是研究该类群化学感觉的一个重要起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2df/11682238/43193d0711d9/41598_2024_83313_Fig1_HTML.jpg

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