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Acontia,一种特殊的防御结构,在 中具有低毒性复杂性。

Acontia, a Specialised Defensive Structure, Has Low Venom Complexity in .

机构信息

School of Biology and Environmental Sciences, Faculty of Science, Queensland University of Technology, Brisbane, QLD 4001, Australia.

Centre for Agriculture and the Bioeconomy, Queensland University of Technology, Brisbane, QLD 4001, Australia.

出版信息

Toxins (Basel). 2023 Mar 12;15(3):218. doi: 10.3390/toxins15030218.

Abstract

Phylum Cnidaria represents a unique group among venomous taxa, with its delivery system organised as individual organelles, known as nematocysts, heterogeneously distributed across morphological structures rather than packaged as a specialised organ. Acontia are packed with large nematocysts that are expelled from sea anemones during aggressive encounters with predatory species and are found in a limited number of species in the superfamily Metridioidea. Little is known about this specialised structure other than the commonly accepted hypothesis of its role in defence and a rudimentary understanding of its toxin content and activity. This study utilised previously published transcriptomic data and new proteomic analyses to expand this knowledge by identifying the venom profile of acontia in . Using mass spectrometry, we found limited toxin diversity in the proteome of acontia, with an abundance of a sodium channel toxin type I, and a novel toxin with two ShK-like domains. Additionally, genomic evidence suggests that the proposed novel toxin is ubiquitous across sea anemone lineages. Overall, the venom profile of acontia in and the novel toxin identified here provide the basis for future research to define the function of acontial toxins in sea anemones.

摘要

腔肠动物门在有毒生物分类中是一个独特的群体,其输送系统组织为单个细胞器,称为刺丝囊,不均匀地分布在形态结构中,而不是包装成专门的器官。海葵刺丝囊充满了大的刺丝囊,在与捕食性物种的激烈相遇中会从海葵中排出,并且在超科 Metridioidea 中只有少数几种物种中发现。除了防御作用的普遍接受假说和对其毒素含量和活性的初步了解外,人们对这种特殊结构知之甚少。本研究利用以前发表的转录组数据和新的蛋白质组分析,通过鉴定 中的海葵刺丝囊的毒液特征来扩展这方面的知识。通过质谱分析,我们在海葵刺丝囊的蛋白质组中发现了有限的毒素多样性,其中富含一种钠离子通道毒素 I 型和一种具有两个 ShK 样结构域的新型毒素。此外,基因组证据表明,所提出的新型毒素在海葵的进化枝中普遍存在。总的来说, 中的海葵刺丝囊的毒液特征和这里鉴定的新型毒素为未来的研究提供了基础,以确定海葵刺丝囊毒素在海葵中的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41bb/10051995/9c2be11e1531/toxins-15-00218-g001.jpg

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