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Genome of an allotetraploid wild peanut Arachis monticola: a de novo assembly

机译:异源四倍体野生花生花生的基因组:从头组装

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摘要

Arachis monticola (2n = 4x = 40) is the only allotetraploid wild peanut within the Arachis genus and section, with an AABB-type genome of ∼2.7 Gb in size. The AA-type subgenome is derived from diploid wild peanut Arachis duranensis, and the BB-type subgenome is derived from diploid wild peanut Arachis ipaensis. A. monticola is regarded either as the direct progenitor of the cultivated peanut or as an introgressive derivative between the cultivated peanut and wild species. The large polyploidy genome structure and enormous nearly identical regions of the genome make the assembly of chromosomal pseudomolecules very challenging. Here we report the first reference quality assembly of the A. monticola genome, using a series of advanced technologies. The final whole genome of A. monticola is ∼2.62 Gb and has a contig N50 and scaffold N50 of 106.66 Kb and 124.92 Mb, respectively. The vast majority (91.83%) of the assembled sequence was anchored onto the 20 pseudo-chromosomes, and 96.07% of assemblies were accurately separated into AA- and BB- subgenomes. We demonstrated efficiency of the current state of the strategy for de novo assembly of the highly complex allotetraploid species, wild peanut (A. monticola), based on whole-genome shotgun sequencing, single molecule real-time sequencing, high-throughput chromosome conformation capture technology, and BioNano optical genome maps. These combined technologies produced reference-quality genome of the allotetraploid wild peanut, which is valuable for understanding the peanut domestication and evolution within the Arachis genus and among legume crops.
机译:花生花生(2n = 4x = 40)是花生属和部分内唯一的异源四倍体野生花生,AABB型基因组大小约为2.7 Gb。 AA型亚基因组来源于二倍体野生花生花生,而BB型亚基因组来源于二倍体野生花生花生。芒草被视为栽培花生的直接祖先,或被视为栽培花生与野生物种之间的渐渗。大的多倍体基因组结构和巨大的几乎相同的基因组区域使染色体假分子的组装非常具有挑战性。在这里,我们报告了使用一系列先进技术的A. monticola基因组的首次参考质量组装。 A. monticola的最终全基因组约为2.62 Gb,其重叠群N50和支架N50分别为106.66 Kb和124.92 Mb。组装序列的绝大多数(91.83%)被锚定在20个假染色体上,并且96.07%的装配被准确地分为AA-和BB-亚基因组。我们展示了基于全基因组shot弹枪测序,单分子实时测序,高通量染色体构象捕获的高度复杂的异源四倍体物种野生花生(A. monticola)从头组装策略的当前状态的效率技术和BioNano光学基因组图。这些结合的技术产生了具有同等质量四倍体野生花生的参考质量基因组,这对于了解花生属植物以及豆类作物中花生的驯化和进化具有重要价值。

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