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Systematic functional analysis of the Caenorhabditis elegans genome using RNAi

机译:使用RNAi对秀丽隐杆线虫基因组进行系统功能分析

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A principal challenge currently facing biologists is how to connect the complete DNA sequence of an organism to its development and behaviour. Large-scale targeted-deletions have been successful in defining gene functions in the single-celled yeast Saccharomyces cerevisiae, but comparable analyses have yet to be performed in an animal. Here we describe the use of RNA interference to inhibit the function of ~86% of the 19,427 predicted genes of C. elegans. We identified mutant phenotypes for 1,722 genes, about two-thirds of which were not previously associated with a phenotype. We find that genes of similar functions are clustered in distinct, multi-megabase regions of individual chromosomes; genes in these regions tend to share transcriptional profiles. Our resulting data set and reusable RNAi library of 16,757 bacterial clones will facilitate systematic analyses of the connections among gene sequence, chromosomal location and gene function in C. elegans.
机译:生物学家目前面临的主要挑战是如何将生物的完整DNA序列与其发育和行为联系起来。大规模靶向删除已成功定义了单细胞酵母酿酒酵母中的基因功能,但尚未在动物中进行可比的分析。在这里,我们描述了使用RNA干扰来抑制线虫的19,427个预测基因中约86%的功能。我们确定了1,722个基因的突变表型,其中约三分之二以前与表型无关。我们发现具有相似功能的基因聚集在单个染色体的不同,多兆碱基区域中。这些区域中的基因倾向于共享转录谱。我们所得的数据集和16757个细菌克隆的可重用RNAi文库将有助于系统分析秀丽隐杆线虫的基因序列,染色体位置和基因功能之间的联系。

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