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高质量的基因组组装突出了黑麦的基因组特征和农艺上重要的基因。

A high-quality genome assembly highlights rye genomic characteristics and agronomically important genes.

机构信息

College of Agronomy, Longzi Lake Campus, Henan Agricultural University, Zhengzhou, China.

The State Key Laboratory of Wheat and Maize Crop Science, Center for Crop Genome Engineering, Henan Agricultural University, Zhengzhou, China.

出版信息

Nat Genet. 2021 Apr;53(4):574-584. doi: 10.1038/s41588-021-00808-z. Epub 2021 Mar 18.

Abstract

Rye is a valuable food and forage crop, an important genetic resource for wheat and triticale improvement and an indispensable material for efficient comparative genomic studies in grasses. Here, we sequenced the genome of Weining rye, an elite Chinese rye variety. The assembled contigs (7.74 Gb) accounted for 98.47% of the estimated genome size (7.86 Gb), with 93.67% of the contigs (7.25 Gb) assigned to seven chromosomes. Repetitive elements constituted 90.31% of the assembled genome. Compared to previously sequenced Triticeae genomes, Daniela, Sumaya and Sumana retrotransposons showed strong expansion in rye. Further analyses of the Weining assembly shed new light on genome-wide gene duplications and their impact on starch biosynthesis genes, physical organization of complex prolamin loci, gene expression features underlying early heading trait and putative domestication-associated chromosomal regions and loci in rye. This genome sequence promises to accelerate genomic and breeding studies in rye and related cereal crops.

摘要

黑麦是一种有价值的粮食和饲料作物,是改良小麦和小黑麦的重要遗传资源,也是禾本科植物高效比较基因组研究中不可或缺的材料。在这里,我们对中国一个优良的黑麦品种威宁黑麦进行了基因组测序。组装的连续序列(7.74Gb)占估计基因组大小(7.86Gb)的 98.47%,其中 93.67%(7.25Gb)的连续序列被分配到七个染色体上。重复元件构成了组装基因组的 90.31%。与以前测序的禾本科植物基因组相比,Daniela、Sumaya 和 Sumana 逆转录转座子在黑麦中表现出强烈的扩张。对威宁组装体的进一步分析揭示了淀粉生物合成基因、复杂醇溶蛋白基因座的物理组织、早期抽穗性状的基因表达特征以及黑麦中可能与驯化相关的染色体区域和基因座的全基因组基因复制及其影响。这个基因组序列有望加速黑麦和相关谷类作物的基因组和育种研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c63/8035075/e3d3617d144a/41588_2021_808_Fig1_HTML.jpg

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