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首页> 外文期刊>Scientific reports. >Artificially designed hybrids facilitate efficient generation of high-resolution linkage maps
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Artificially designed hybrids facilitate efficient generation of high-resolution linkage maps

机译:人工设计的混合动力车促进高分辨率联动地图的高效生成

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摘要

When sequencing eukaryotic genomes, linkage maps are indispensable for building scaffolds to assemble and/or to validate chromosomes. However, current approaches to constructing linkage maps are limited by marker density and cost-effectiveness, especially for wild organisms. We have now devised a new strategy based on artificially generated hybrid organisms to acquire ultrahigh-density genomic markers at reduced cost and build highly accurate linkage maps. We have also developed the novel analysis pipeline Scaffold Extender with Low Depth Linkage Analysis (SELDLA) for data processing to generate linkage maps and draft genomes. Using SELDLA, linkage maps and improved genomes for two species of pufferfish, Takifugu rubripes and Takifugu stictonotus, were obtained simultaneously. The strategy is applicable to a wide range of sexually reproducing organisms, and could, therefore, accelerate the whole genome analysis of various organisms including fish, mollusks, amphibians, insects, plants, and even mammals.
机译:当测序真核基因组时,连接图是构建支架和/或验证染色体的支架是必不可少的。然而,通过标记密度和成本效益的电流对构建联系地图的方法受到限制,特别是对于野生生物。我们现在设计了一种基于人工产生的杂种生物的新策略,以降低成本,并建立高度准确的联系地图。我们还开发了新的分析管道支架扩展器,具有低深度连杆分析(Seldla),用于数据处理以产生联系地图和草稿基因组。同时使用Seldla,连杆地图和改进的两种Pufferfish,Takifuu Rubripes和Takifugu Stictonootus。该策略适用于各种性繁殖的生物,因此可以加速各种生物的全基因组分析,包括鱼类,软体动物,两栖动物,昆虫,植物,甚至哺乳动物。

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