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De novo transcriptome assembly and annotation for the desert rainbowfish (Melanotaenia splendida tatei) with comparison with candidate genes for future climates

机译:De Novo转录组合体组装和沙漠雨鱼(Melanotaenia Splendida Tatei)的注释与未来气候的候选基因相比

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Transcriptomics via RNA-seq has rapidly emerged as a powerful tool for ecological and evolutionary studies, enabling genome-scale studies of adaptation via regulation of global gene expression. Here we present a de novo transcriptome for the desert rainbowfish (Melanotaenia splendida tatei) based on individuals sampled in the Lake Eyre Basin, Australia's arid zone river system. Recently developed methods in RNA-seq and bioinformatics were used for sequencing, assembling and annotating a high-quality liver transcriptome suitable for studies of ecology and adaptation in desert rainbowfish. Transcript annotation in UniprotKB using BLASTx assigned unique protein matches to similar to 47% of 116,092 Trinity genes, while BLASTp assigned unique protein matches to similar to 35% of 62,792 predicted protein-coding regions. A full Trinotate annotation report is provided for predicted genes and their corresponding transcripts. Annotations were compared with previously identified genes for transcriptional regulation and heritable plasticity in future climates in the subtropical rainbowfish (M. duboulayi), finding similar to 57% of these candidate genes present in the desert rainbowfish transcriptome. We discuss the utility of transcriptomics methods for ecological studies of adaptation, while emphasising a range of methodological considerations for dealing with transcriptome datasets. This newly assembled transcriptome is expected to help elucidate mechanisms for adaptation to high temperatures and a variable climate in desert aquatic fauna. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过RNA-SEQ转录组织迅速出现为生态和进化研究的强大工具,通过调节全球基因表达来实现对适应的基因组规模研究。在这里,我们为澳大利亚沙漠河河畔艾德雷·河流系统湖盆地盆地采样的个体,为沙漠雨鱼(Melanotaenia Splendida Tatei)提出了一名De Novo转录组。最近在RNA-SEQ和生物信息学中的开发方法用于测序,组装和注释一种高质量的肝脏转录组,适用于沙漠雨盆的生态和适应性研究。 UniProtkB中使用Blastx分配的特殊蛋白质的转录作用符合与116,092个三相基因的47%相似,而BLASTP将独特的蛋白质分配到类似于62,792个预测的蛋白质编码区的35%。为预测基因及其相应的成绩单提供完整的Trinotate注释报告。将注释与先前鉴定的亚热带雨鱼(Duboulayi)中未来气候中的转录调节和遗传可塑性进行了比较,发现类似于沙漠雨鱼转录组中存在的57%的候选基因。我们讨论转录组织方法对适应生态学研究的效用,同时强调了一系列用于处理转录组数据集的方法考虑因素。这种新组装的转录组有望帮助阐明适应高温的机制和沙漠水生动物中的可变气候。 (c)2017 Elsevier B.v.保留所有权利。

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