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From genomes to functions in aquatic biology

机译:从基因组到水生生物学的功能

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In this paper we evaluate factors which should, in our opinion, be taken into account when genomic studies in aquatic organisms are extended to functions. Our first point is that genome-wide gene duplications characteristic of teleosts have enabled more rapid evolution in fish generally than usually in tetrapods. We further discuss factors that are pertinent when gene ontologies are used in animals with little earlier work combining genomic and functional data. We then review issues relating to transcription, especially transcription factor function and gene regulatory pathways. As the most important single factor affecting gene expression is translation, we emphasize the need to relate mRNA and protein level findings whenever functional inferences are made. We finish with considering the possible roles of functional genomics studies in aquatic environmental research. We have concentrated especially on fish, although many of the points made are common to all eukaryotes.
机译:在本文中,我们评估了水生生物的基因组研究扩展到功能时应考虑的因素。我们的第一点是硬骨鱼的全基因组全基因复制使鱼类比通常在四足动物中的进化更快。我们进一步讨论了将基因本体论应用于动物时的相关因素,而几乎没有结合基因组和功能数据的早期工作。然后,我们回顾与转录有关的问题,尤其是转录因子功能和基因调控途径。由于影响基因表达的最重要的单一因素是翻译,因此我们强调在进行功能推断时必须关联mRNA和蛋白质水平的发现。我们首先考虑功能基因组学研究在水生环境研究中的可能作用。尽管许多观点对于所有真核生物都是共同的,但我们尤其专注于鱼类。

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