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组装和分析青稞参考基因组表明其与现代栽培大麦具有密切的遗传关系。

Assembly and analysis of a qingke reference genome demonstrate its close genetic relation to modern cultivated barley.

机构信息

Department of Agronomy, Zhejiang Key Lab of Crop Germplasm, Zhejiang University, Hangzhou, China.

Western Barley Genetics Alliance, Western Australian State Agricultural Biotechnology Centre, School of Veterinary and Life Sciences, Murdoch University, Perth, WA, Australia.

出版信息

Plant Biotechnol J. 2018 Mar;16(3):760-770. doi: 10.1111/pbi.12826. Epub 2017 Oct 5.

Abstract

Qingke, the local name of hulless barley in the Tibetan Plateau, is a staple food for Tibetans. The availability of its reference genome sequences could be useful for studies on breeding and molecular evolution. Taking advantage of the third-generation sequencer (PacBio), we de novo assembled a 4.84-Gb genome sequence of qingke, cv. Zangqing320 and anchored a 4.59-Gb sequence to seven chromosomes. Of the 46,787 annotated 'high-confidence' genes, 31 564 were validated by RNA-sequencing data of 39 wild and cultivated barley genotypes with wide genetic diversity, and the results were also confirmed by nonredundant protein database from NCBI. As some gaps in the reference genome of Morex were covered in the reference genome of Zangqing320 by PacBio reads, we believe that the Zangqing320 genome provides the useful supplements for the Morex genome. Using the qingke genome as a reference, we conducted a genome comparison, revealing a close genetic relationship between a hulled barley (cv. Morex) and a hulless barley (cv. Zangqing320), which is strongly supported by the low-diversity regions in the two genomes. Considering the origin of Morex from its breeding pedigree, we then demonstrated a close genomic relationship between modern cultivated barley and qingke. Given this genomic relationship and the large genetic diversity between qingke and modern cultivated barley, we propose that qingke could provide elite genes for barley improvement.

摘要

青稞,青藏高原地区的青稞的当地名称,是藏族的主食。青稞参考基因组序列的可用性对于育种和分子进化研究可能很有用。利用第三代测序仪(PacBio),我们从头组装了青稞 cv. 藏青 320 的 4.84-Gb 基因组序列,并将 4.59-Gb 序列锚定到 7 条染色体上。在 46787 个注释的“高可信度”基因中,有 31564 个基因通过 39 个具有广泛遗传多样性的野生和栽培大麦基因型的 RNA-seq 数据进行了验证,结果也通过来自 NCBI 的非冗余蛋白质数据库得到了证实。由于 Morex 参考基因组中的一些缺口被 PacBio 读取覆盖在 Zangqing320 的参考基因组中,因此我们认为 Zangqing320 基因组为 Morex 基因组提供了有用的补充。使用青稞基因组作为参考,我们进行了基因组比较,揭示了有壳大麦(cv. Morex)和无壳大麦(cv. Zangqing320)之间的密切遗传关系,这得到了两个基因组中低多样性区域的有力支持。考虑到 Morex 从其育种谱系起源,我们随后证明了现代栽培大麦和青稞之间存在密切的基因组关系。鉴于这种基因组关系以及青稞和现代栽培大麦之间的巨大遗传多样性,我们提出青稞可为大麦改良提供优质基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d98/11388478/90ac204a514d/PBI-16-760-g005.jpg

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