Venoms for all occasions: The functional toxin profiles of different anatomical regions in sea anemones are related to their ecological function

Cnidocyte细胞 生物 毒液 线虫囊肿 转录组 进化生物学 毒素 水母 生态学 蛇床子属 计算生物学 基因 遗传学 珊瑚 基因表达
作者
Lauren M. Ashwood,Eivind A. B. Undheim,Bruno Madio,Brett R. Hamilton,Marymegan Daly,David A. Hurwood,Glenn F. King,Peter J. Prentis
出处
期刊:Molecular Ecology [Wiley]
卷期号:31 (3): 866-883 被引量:33
标识
DOI:10.1111/mec.16286
摘要

The phylum Cnidaria is the oldest extant venomous group and is defined by the presence of nematocysts, specialized organelles responsible for venom production and delivery. Although toxin peptides and the cells housing nematocysts are distributed across the entire animal, nematocyte and venom profiles have been shown to differ across morphological structures in actiniarians. In this study, we explore the relationship between patterns of toxin expression and the ecological roles of discrete anatomical structures in Telmatactis stephensoni. Specifically, using a combination of proteomic and transcriptomic approaches, we examined whether there is a direct correlation between the functional similarity of regions and the similarity of their associated toxin expression profiles. We report that the regionalization of toxin production is consistent with the partitioning of the ecological roles of venom across envenomating structures, and that three major functional regions are present in T. stephensoni: tentacles, epidermis and gastrodermis. Additionally, we find that most structures that serve similar functions not only have comparable putative toxin profiles but also similar nematocyst types. There was no overlap in the putative toxins identified using proteomics and transcriptomics, but the expression patterns of specific milked venom peptides were conserved across RNA-sequencing and mass spectrometry imaging data sets. Furthermore, based on our data, it appears that acontia of T. stephensoni may be transcriptionally inactive and only mature nematocysts are present in the distal portions of the threads. Overall, we find that the venom profile of different anatomical regions in sea anemones varies according to its ecological functions.
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