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单个基因决定了水螅水母辐射枝螅近交系中的异体识别。

A single gene determines allorecognition in hydrozoan jellyfish Cladonema radiatum inbred lines.

作者信息

Tang Crystal, Tamura-Nakano Miwa, Kobayakawa Kenta, Ozawa Takuto, Onojima Takao, Kajitani Rei, Itoh Takehiko, Tachibana Kazunori

机构信息

Laboratory of Chronobiology, School of Life Science and Technology, Tokyo Institute of Technology, Yokohama, Japan.

Research Institute National Center for Global Health and Medicine, Tokyo, Japan.

出版信息

J Exp Zool A Ecol Integr Physiol. 2024 Nov;341(9):1002-1020. doi: 10.1002/jez.2853. Epub 2024 Jul 8.

DOI:10.1002/jez.2853
PMID:38973306
Abstract

Allorecognition-the ability of an organism to discriminate between self and nonself-is crucial to colonial marine animals to avoid invasion by other individuals in the same habitat. The cnidarian hydroid Hydractinia has long been a major research model in studying invertebrate allorecognition, establishing a rich knowledge foundation. In this study, we introduce a new cnidarian model Cladonema radiatum (C. radiatum). C. radiatum is a hydroid jellyfish which also forms polyp colonies interconnected with stolons. Allorecognition responses-fusion or regression of stolons-are observed when stolons encounter each other. By transmission electron microscopy, we observe rapid tissue remodeling contributing to gastrovascular system connection in fusion. Meanwhile, rejection responses are regulated by reconstruction of the chitinous exoskeleton perisarc, and induction of necrotic and autophagic cellular responses at cells in contact with the opponent. Genetic analysis identifies allorecognition genes: six Alr genes located on the putative allorecognition complex and four immunoglobulin superfamily genes on a separate genome region. C. radiatum allorecognition genes show notable conservation with the Hydractinia Alr family. Remarkedly, stolon encounter assays of inbred lines reveal that genotypes of Alr1 solely determine allorecognition outcomes in C. radiatum.

摘要

异体识别——生物体区分自我与非自我的能力——对于群居海洋动物避免被同一栖息地的其他个体入侵至关重要。刺胞动物水螅虫纲的辐射枝螅长期以来一直是研究无脊椎动物异体识别的主要研究模型,建立了丰富的知识基础。在本研究中,我们引入了一种新的刺胞动物模型——辐射枝管水母(C. radiatum)。辐射枝管水母是一种水螅型水母,它也会形成通过匍匐茎相互连接的水螅体群落。当匍匐茎相互接触时,会观察到异体识别反应——匍匐茎融合或退化。通过透射电子显微镜,我们观察到在融合过程中快速的组织重塑有助于胃血管系统的连接。同时,排斥反应受几丁质外骨骼围鞘的重建以及与对手接触的细胞处坏死和自噬细胞反应的诱导调控。遗传分析鉴定出异体识别基因:位于假定的异体识别复合体上的六个Alr基因以及在一个单独基因组区域的四个免疫球蛋白超家族基因。辐射枝管水母的异体识别基因与水螅虫纲的Alr家族具有显著的保守性。值得注意的是,近交系的匍匐茎接触试验表明,Alr1的基因型单独决定了辐射枝管水母的异体识别结果。

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