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迈向黑麦(Secale cereale L.)的全基因组序列。

Towards a whole-genome sequence for rye (Secale cereale L.).

作者信息

Bauer Eva, Schmutzer Thomas, Barilar Ivan, Mascher Martin, Gundlach Heidrun, Martis Mihaela M, Twardziok Sven O, Hackauf Bernd, Gordillo Andres, Wilde Peer, Schmidt Malthe, Korzun Viktor, Mayer Klaus F X, Schmid Karl, Schön Chris-Carolin, Scholz Uwe

机构信息

Technical University of Munich, Plant Breeding, Liesel-Beckmann-Str. 2, 85354, Freising, Germany.

Leibniz Institute of Plant Genetics and Crop Plant Research (IPK) Gatersleben, Corrensstr. 3, 06466, Stadt Seeland, Germany.

出版信息

Plant J. 2017 Mar;89(5):853-869. doi: 10.1111/tpj.13436. Epub 2017 Feb 8.

Abstract

We report on a whole-genome draft sequence of rye (Secale cereale L.). Rye is a diploid Triticeae species closely related to wheat and barley, and an important crop for food and feed in Central and Eastern Europe. Through whole-genome shotgun sequencing of the 7.9-Gbp genome of the winter rye inbred line Lo7 we obtained a de novo assembly represented by 1.29 million scaffolds covering a total length of 2.8 Gbp. Our reference sequence represents nearly the entire low-copy portion of the rye genome. This genome assembly was used to predict 27 784 rye gene models based on homology to sequenced grass genomes. Through resequencing of 10 rye inbred lines and one accession of the wild relative S. vavilovii, we discovered more than 90 million single nucleotide variants and short insertions/deletions in the rye genome. From these variants, we developed the high-density Rye600k genotyping array with 600 843 markers, which enabled anchoring the sequence contigs along a high-density genetic map and establishing a synteny-based virtual gene order. Genotyping data were used to characterize the diversity of rye breeding pools and genetic resources, and to obtain a genome-wide map of selection signals differentiating the divergent gene pools. This rye whole-genome sequence closes a gap in Triticeae genome research, and will be highly valuable for comparative genomics, functional studies and genome-based breeding in rye.

摘要

我们报道了黑麦(Secale cereale L.)的全基因组草图序列。黑麦是一种与小麦和大麦密切相关的二倍体小麦族物种,是中欧和东欧重要的粮食和饲料作物。通过对冬黑麦自交系Lo7的7.9 Gbp基因组进行全基因组鸟枪法测序,我们获得了一个从头组装序列,由129万个支架组成,总长度为2.8 Gbp。我们的参考序列代表了黑麦基因组几乎全部的低拷贝部分。该基因组组装用于基于与已测序禾本科基因组的同源性预测27784个黑麦基因模型。通过对10个黑麦自交系和一个野生近缘种瓦维洛夫黑麦(S. vavilovii)的重测序,我们在黑麦基因组中发现了9000多万个单核苷酸变异以及短插入/缺失。基于这些变异,我们开发了具有600843个标记的高密度黑麦600k基因分型阵列,该阵列能够将序列重叠群锚定到高密度遗传图谱上,并建立基于共线性的虚拟基因顺序。基因分型数据用于表征黑麦育种群体和遗传资源的多样性,并获得区分不同基因库的全基因组选择信号图谱。这个黑麦全基因组序列填补了小麦族基因组研究的空白,对黑麦的比较基因组学、功能研究和基于基因组的育种具有很高的价值。

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