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Novel venom gene discovery in the platypus

机译:在鸭嘴兽中发现新的毒液基因

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Background: To date, few peptides in the complex mixture of platypus venom have been identified and sequenced, in part due to the limited amounts of platypus venom available to study. We have constructed and sequenced a c DNA library from an active platypus venom gland to identify the remaining components. Results: We identified 83 novel putative platypus venom genes from 13 toxin families, which are homologous to known toxins from a wide range of vertebrates (fish, reptiles, insectivores) and invertebrates (spiders, sea anemones, starfish). A number of these are expressed in tissues other than the venom gland, and at least three of these families (those with homology to toxins from distant invertebrates) may play non-toxin roles. Thus, further functional testing is required to confirm venom activity. However, the presence of similar putative toxins in such widely divergent species provides further evidence for the hypothesis that there are certain protein families that are selected preferentially during evolution to become venom peptides. We have also used homology with known proteins to speculate on the contributions of each venom component to the symptoms of platypus envenomation. Conclusions: This study represents a step towards fully characterizing the first mammal venom transcriptome. We have found similarities between putative platypus toxins and those of a number of unrelated species, providing insight into the evolution of mammalian venom.
机译:背景:迄今为止,鸭嘴兽毒的复杂混合物中几乎没有肽被鉴定和测序,部分原因是可用于研究的鸭嘴兽毒数量有限。我们已经从活跃的鸭嘴兽毒腺中构建了一个c DNA文库并对其进行了测序,以鉴定剩余的成分。结果:我们从13个毒素家族中鉴定出83个新颖的鸭嘴兽毒液基因,这些基因与多种脊椎动物(鱼,爬行动物,食虫)和无脊椎动物(蜘蛛,海葵,海星)的已知毒素同源。这些中的许多表达在除毒腺以外的组织中,并且这些家族中的至少三个家族(与来自遥远无脊椎动物的毒素同源的家族)可能发挥非毒素的作用。因此,需要进一步的功能测试以确认毒液的活性。然而,在如此广泛分歧的物种中类似推定毒素的存在为这一假设提供了进一步的证据,该假设是某些蛋白质家族在进化成为毒液肽时会优先选择。我们还利用与已知蛋白质的同源性推测每种毒液成分对鸭嘴兽毒化症状的贡献。结论:这项研究代表了全面表征第一个哺乳动物毒液转录组的步骤。我们发现推定的鸭嘴兽毒素与许多无关物种的相似性,从而为了解哺乳动物毒液的进化提供了见识。

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