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Phylogeny-Guided Selection of Priority Groups for Venom Bioprospecting: Harvesting Toxin Sequences in Tarantulas as a Case Study

机译:系统发育学指导的毒液生物勘探优先组的选择:以狼蛛为例收集毒素序列

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摘要

Animal venoms are promising sources of novel drug leads, but their translational potential is hampered by the low success rate of earlier biodiscovery programs, in part reflecting the narrow selection of targets for investigation. To increase the number of lead candidates, here we discuss a phylogeny-guided approach for the rational selection of venomous taxa, using tarantulas (family Theraphosidae) as a case study. We found that previous biodiscovery programs have prioritized the three subfamilies Ornithoctoninae, Selenocosmiinae, and Theraphosinae, which provide almost all of the toxin sequences currently available in public databases. The remaining subfamilies are poorly represented, if at all. These overlooked subfamilies include several that form entire clades of the theraphosid life tree, such as the subfamilies Eumenophorinae, Harpactirinae, and Stromatopelminae, indicating that biodiversity space has not been covered effectively for venom biodiscovery in Theraphosidae. Focusing on these underrepresented taxa will increase the likelihood that promising candidates with novel structures and mechanisms of action can be identified in future bioprospecting programs.
机译:动物毒液是新药线索的有前途的来源,但其转化潜力因早期生物发现计划的成功率低而受到阻碍,部分反映了研究目标的选择范围狭窄。为了增加主要候选人的数量,在此我们讨论一种系统发育指导方法,以狼蛛(Theraphosidae家族)为例,对有毒分类单元进行合理选择。我们发现,以前的生物发现计划已将鸟眼鸟科,狼蛛科和鞘菌科这三个亚科列为优先事项,它们提供了公共数据库中当前可用的几乎所有毒素序列。如果有的话,其余的亚科代表很少。这些被忽视的亚科包括构成拟南芥生命树的整个进化枝的几个亚科,例如Eumenophorinae,Harpactirinae和Stromatopelminae亚科,这表明生物多样性空间并未有效地覆盖Theraphosidae的毒生物发现。专注于这些代表性不足的分类单元将增加在未来的生物勘探计划中可以确定具有新颖结构和作用机制的有前途的候选人的可能性。

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