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触手形态变化与海葵毒素的差异表达一致。

Tentacle Morphological Variation Coincides with Differential Expression of Toxins in Sea Anemones.

机构信息

School of Biology and Environmental Science, Faculty of Science, Queensland University of Technology, Brisbane, QLD 4000, Australia.

Medicinal Chemistry, Monash Institute of Pharmaceutical Sciences, Monash University, 381 Royal Parade, Parkville, VIC 3052, Australia.

出版信息

Toxins (Basel). 2021 Jun 29;13(7):452. doi: 10.3390/toxins13070452.

Abstract

Phylum Cnidaria is an ancient venomous group defined by the presence of cnidae, specialised organelles that serve as venom delivery systems. The distribution of cnidae across the body plan is linked to regionalisation of venom production, with tissue-specific venom composition observed in multiple actiniarian species. In this study, we assess whether morphological variants of tentacles are associated with distinct toxin expression profiles and investigate the functional significance of specialised tentacular structures. Using five sea anemone species, we analysed differential expression of toxin-like transcripts and found that expression levels differ significantly across tentacular structures when substantial morphological variation is present. Therefore, the differential expression of toxin genes is associated with morphological variation of tentacular structures in a tissue-specific manner. Furthermore, the unique toxin profile of spherical tentacular structures in families Aliciidae and Thalassianthidae indicate that vesicles and nematospheres may function to protect branched structures that host a large number of photosynthetic symbionts. Thus, hosting zooxanthellae may account for the tentacle-specific toxin expression profiles observed in the current study. Overall, specialised tentacular structures serve unique ecological roles and, in order to fulfil their functions, they possess distinct venom cocktails.

摘要

门珊瑚是一个古老的有毒群体,其特征是存在 cnidae,这是一种专门的细胞器,用作毒液输送系统。cnidae 在体式分布与毒液产生的区域化有关,在多种 Actiniaria 物种中观察到组织特异性的毒液组成。在这项研究中,我们评估触手的形态变异是否与独特的毒素表达谱相关,并研究专门触手结构的功能意义。使用五种海葵,我们分析了类似毒素的转录物的差异表达,发现当存在大量形态变异时,触手结构的毒素基因表达水平差异显著。因此,毒素基因的差异表达与触手结构的形态变异以组织特异性的方式相关。此外,Aliciidae 和 Thalassianthidae 家族中球形触手结构的独特毒素谱表明,囊泡和线虫体可能具有保护分支结构的作用,这些分支结构宿主着大量的光合共生体。因此,宿主共生藻可能解释了本研究中观察到的触手特异性毒素表达谱。总的来说,专门的触手结构具有独特的生态作用,为了发挥其功能,它们具有独特的毒液混合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91b6/8310139/f2ee9059c326/toxins-13-00452-g001.jpg

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