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Sequencing and comparison of yeast species to identify genes and regulatory elements

机译:酵母菌种的测序和比较,以鉴定基因和调控元件

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Identifying the functional elements encoded in a genome is one of the principal challenges in modern biology. Comparative genomics should offer a powerful, general approach. Here, we present a comparative analysis of the yeast Saccharomyces cerevisiae based on high-quality draft sequences of three related species (S. paradoxus, S. mikatae and S. bayanus). We first aligned the genomes and characterized their evolution, defining the regions and mechanisms of change. We then developed methods for direct identification of genes and regulatory motifs. The gene analysis yielded a major revision to the yeast gene catalogue, affecting approximately 15% of all genes and reducing the total count by about 500 genes. The motif analysis automatically identified 72 genome-wide elements, including most known regulatory motifs and numerous new motifs. We inferred a putative function for most of these motifs, and provided insights into their combinatorial interactions. The results have implications for genome analysis of diverse organisms, including the human. [References: 50]
机译:鉴定基因组中编码的功能元件是现代生物学的主要挑战之一。比较基因组学应该提供一种强大的通用方法。在这里,我们基于三种相关物种(S. paradoxus,S。mikatae和S. bayanus)的高质量草图序列对啤酒酵母进行比较分析。我们首先对基因组进行比对并表征其进化,从而确定变化的区域和机制。然后,我们开发了直接识别基因和调控基序的方法。基因分析对酵母基因目录进行了重大修订,影响了所有基因的约15%,并将总数减少了约500个基因。模体分析自动识别出72个全基因组元件,包括最著名的调控模体和许多新的模体。我们推断出大多数这些图案的推定功能,并提供了对其组合相互作用的见解。该结果对包括人类在内的多种生物的基因组分析具有重要意义。 [参考:50]

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