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首页> 外文期刊>BMC Genomics >Genomic tools for durum wheat breeding: de novo assembly of Svevo transcriptome and SNP discovery in elite germplasm
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Genomic tools for durum wheat breeding: de novo assembly of Svevo transcriptome and SNP discovery in elite germplasm

机译:杜兰姆小麦育种基因组工具:Elite种质中Svevo转录组和SNP发现的De Novo组装

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The tetraploid durum wheat (Triticum turgidum L. ssp. durum Desf. Husnot) is an important crop which provides the raw material for pasta production and a valuable source of genetic diversity for breeding hexaploid wheat (Triticum aestivum L.). Future breeding efforts to enhance yield potential and climate resilience will increasingly rely on genomics-based approaches to identify and select beneficial alleles. A deeper characterisation of the molecular and functional diversity of the durum wheat transcriptome will be instrumental to more effectively harness its genetic diversity. We report on the de novo transcriptome assembly of durum wheat cultivar 'Svevo'. The transcriptome of four tissues/organs (shoots and roots at the seedling stage, reproductive organs and developing grains) was assembled de novo, yielding 180,108 contigs, with a N50 length of 1121?bp and mean contig length of 883?bp. Alignment against the transcriptome of nine plant species identified 43% of transcripts with homology to at least one reference transcriptome. The functional annotation was completed by means of a combination of complementary software. The presence of differential expression between the A- and B-homoeolog copies of the durum wheat tetraploid genome was ascertained by phase reconstruction of polymorphic sites based on the T. urartu transcripts and inferring homoeolog-specific sequences. We observed greater expression divergence between A and B homoeologs in grains rather than in leaves and roots. The transcriptomes of 13 durum wheat cultivars spanning the breeding period from 1969 to 2005 were analysed for SNP diversity, leading to 95,358 non-rare, hemi-SNPs shared among two or more cultivars and 33,747 locus-specific (diploid inheritance) SNPs. Our study updates and expands the de novo transcriptome reference assembly available for durum wheat. Out of 180,108 assembled transcripts, 13,636 were specific to the Svevo cultivar as compared to the only other reference transcriptome available for durum, thus contributing to the identification of the tetraploid wheat pan-transcriptome. Additionally, the analysis of 13 historically relevant hallmark varieties produced a SNP dataset that could successfully validate the genotyping in tetraploid wheat and provide a valuable resource for genomics-assisted breeding of both tetraploid and hexaploid wheats.
机译:四倍体杜兰姆小麦(Triticum Turgidum L. SSP。杜兰姆DESF。Husnot)是一种重要的作物,为意大利面生产的原料和繁殖六倍体麦片(Triticum aestivum L.)的遗传多样性源。未来培养努力提高产量潜力和气候恢复力将越来越依赖基于基于基因组织的方法来识别和选择有益等位基因。杜兰姆小麦转录组的分子和功能多样性的更深入表征将有助于更有效地利用其遗传多样性。我们报道了Dutum小麦品种“Svevo”的德诺科转录组合。组装DE Novo的四种组织/器官(幼苗阶段,生殖器官和发育晶粒的芽和根部)的转录组合,产生180,108个葡萄片,N50长度为1121〜BP,平均折叠长度为883μl≤BP。对九种植物物种的转录组的对准将43%的转录物与至少一种参考转录组具有同源性。通过互补软件的组合完成了功能诠释。基于T.Urartu转录物的多态性位点和推断同源性序列,通过相位重建确定了硬质小麦四倍体基因组的A和B-同源物拷贝之间的差异表达。我们观察到谷物中A和B同源物之间的更大的表达分歧,而不是叶子和根。为SNP多样性分析了跨越1969年至2005年繁殖期的育种期的13例杜兰姆小麦品种的转录组,导致了295,358个非罕见的半SNP,共用了两种或更多种品种和33,747名轨迹特异性(二倍体遗产)SNP。我们的研究更新并扩大了DE Novo转录组参考组件可用于硬质小麦。在180,108个组装的转录物中,与杜兰姆可用的唯一其他参考转录组相比,13,636对Svevo品种特异,因此有助于鉴定四倍体麦片转录组。此外,历史相关的标志品种的13个分析产生了一个SNP数据集,可以成功验证四倍体小麦中的基因分型,并为四倍体和六倍体麦的基因组学辅助育种提供了有价值的资源。

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