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Building near-complete plant genomes

机译:建立近乎完整的植物基因组

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摘要

Plant genomes span several orders of magnitude in size, vary in levels of ploidy and heterozygosity, and contain old and recent bursts of transposable elements, which render them challenging but interesting to assemble. Recent advances in single molecule sequencing and physical mapping technologies have enabled high-quality, chromosome scale assemblies of plant species with increasing complexity and size. Single molecule reads can now exceed megabases in length, providing unprecedented opportunities to untangle genomic regions missed by short read technologies. However, polyploid and heterozygous plant genomes are still difficult to assemble but provide opportunities for new tools and approaches. Haplotype phasing, structural variant analysis and de novo pan-genomics are the emerging frontiers in plant genome assembly.
机译:植物基因组尺寸尺寸的几个数量级,倍率和杂合子的水平变化,并且含有旧的和最近的可转换元素爆发,这使得它们挑战但有趣的组装。 单分子测序和物理映射技术的最新进展使得植物物种的高质量,染色体尺度组件,随着复杂性和尺寸的增加。 单个分子读取现在可以超过兆级,为短读技术错过的未错过的基因组区域提供前所未有的机会。 然而,多倍体和杂合植物基因组仍难以组装,但为新工具和方法提供了机会。 单倍型分阶段,结构变体分析和de novo pan-genomics是植物基因组组装中的新兴边疆。

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