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一种加速毒液肽发现与表征的高效转录组分析流程。

An efficient transcriptome analysis pipeline to accelerate venom peptide discovery and characterisation.

作者信息

Prashanth Jutty Rajan, Lewis Richard J

机构信息

IMB Centre for Pain Research, The University of Queensland, 306 Carmody Road, St. Lucia, 4072, Australia.

IMB Centre for Pain Research, The University of Queensland, 306 Carmody Road, St. Lucia, 4072, Australia.

出版信息

Toxicon. 2015 Dec 1;107(Pt B):282-9. doi: 10.1016/j.toxicon.2015.09.012. Epub 2015 Sep 14.

Abstract

Transcriptome sequencing is now widely adopted as an efficient means to study the chemical diversity of venoms. To improve the efficiency of analysis of these large datasets, we have optimised an analysis pipeline for cone snail venom gland transcriptomes. The pipeline combines ConoSorter with sequence architecture-based elimination and similarity searching using BLAST to improve the accuracy of sequence identification and classification, while reducing requirements for manual intervention. As a proof-of-concept, we used this approach reanalysed three previously published cone snail transcriptomes from diverse dietary groups. Our pipeline method generated similar results to the published studies with significantly less manual intervention. We additionally found undiscovered sequences in the piscovorous Conus geographus and vermivorous Conus miles and identified sequences in incorrect superfamilies in the molluscivorus Conus marmoreus and C. geographus transcriptomes. Our results indicate that this method can improve toxin detection without extending analysis time. While this method was evaluated on cone snail transcriptomes it can be easily optimised to retrieve toxins from other venomous animals.

摘要

转录组测序现已被广泛用作研究毒液化学多样性的有效手段。为提高这些大型数据集的分析效率,我们优化了一种用于芋螺毒腺转录组的分析流程。该流程将ConoSorter与基于序列结构的筛选以及使用BLAST进行的相似性搜索相结合,以提高序列鉴定和分类的准确性,同时减少人工干预的需求。作为概念验证,我们使用这种方法重新分析了先前发表的来自不同食性组的三个芋螺转录组。我们的流程方法产生了与已发表研究相似的结果,且人工干预显著减少。我们还在食鱼性的地纹芋螺和食虫性的笋螺中发现了未发现的序列,并在食软体动物的大理石芋螺和地纹芋螺转录组中识别出了属于错误超家族的序列。我们的结果表明,这种方法可以在不延长分析时间的情况下提高毒素检测能力。虽然该方法是在芋螺转录组上进行评估的,但可以轻松优化以从其他有毒动物中检索毒素。

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