Krabbenhoft Trevor J, Turner Thomas F
Department of Biology and Museum of Southwestern Biology, University of New Mexico, Albuquerque, NM 87131, USA.
DNA Res. 2018 Feb 1;25(1):11-23. doi: 10.1093/dnares/dsx034.
Comparative transcriptomics can now be conducted on organisms in natural settings, which has greatly enhanced understanding of genome-environment interactions. Here, we demonstrate the utility and potential pitfalls of comparative transcriptomics of wild organisms, with an example from three cyprinid fish species (Teleostei:Cypriniformes). We present extensively filtered and annotated transcriptome assemblies that provide a valuable resource for studies of genome evolution (e.g. polyploidy), ecological and morphological diversification, speciation, and shared and unique responses to environmental variation in cyprinid fishes. Our results and analyses address the following points: (i) 'essential developmental genes' are shown to be ubiquitously expressed in a diverse suite of tissues across later ontogenetic stages (i.e. juveniles and adults), making these genes are useful for assessing the quality of transcriptome assemblies, (ii) the influence of microbiomes and other exogenous DNA, (iii) potentially novel, species-specific genes, and (iv) genomic rearrangements (e.g. whole genome duplication). The data we present provide a resource for future comparative work in cypriniform fishes and other taxa across a variety of sub-disciplines, including stress response, morphological diversification, community ecology, ecotoxicology, and climate change.
现在可以在自然环境中的生物体上进行比较转录组学研究,这极大地增进了我们对基因组与环境相互作用的理解。在此,我们以三种鲤科鱼类(硬骨鱼纲:鲤形目)为例,展示野生生物比较转录组学的实用性和潜在陷阱。我们呈现了经过广泛筛选和注释的转录组组装结果,这些结果为鲤科鱼类的基因组进化(如多倍体)、生态和形态多样化、物种形成以及对环境变化的共同和独特反应等研究提供了宝贵资源。我们的结果和分析涉及以下几点:(i)“关键发育基因”在个体发育后期阶段(即幼鱼和成鱼)的多种组织中普遍表达,这使得这些基因可用于评估转录组组装的质量;(ii)微生物群落和其他外源DNA的影响;(iii)潜在的新的物种特异性基因;以及(iv)基因组重排(如全基因组复制)。我们提供的数据为未来鲤形目鱼类及其他类群在包括应激反应、形态多样化、群落生态学、生态毒理学和气候变化等多个子学科的比较研究提供了资源。