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借助光学图谱改进野生二粒小麦Zavitan的基因组序列

Improved Genome Sequence of Wild Emmer Wheat Zavitan with the Aid of Optical Maps.

作者信息

Zhu Tingting, Wang Le, Rodriguez Juan C, Deal Karin R, Avni Raz, Distelfeld Assaf, McGuire Patrick E, Dvorak Jan, Luo Ming-Cheng

机构信息

Department of Plant Sciences, University of California, Davis CA 95616.

School of Plant Sciences and Food Security, Tel Aviv University, Tel Aviv, Israel.

出版信息

G3 (Bethesda). 2019 Mar 7;9(3):619-624. doi: 10.1534/g3.118.200902.

Abstract

Wild emmer ( ssp. ) is the progenitor of all modern cultivated tetraploid wheat. Its genome is large (> 10 Gb) and contains over 80% repeated sequences. The successful whole-genome-shotgun assembly of the wild emmer (accession Zavitan) genome sequence (WEW_v1.0) was an important milestone for wheat genomics. In an effort to improve this assembly, an optical map of accession Zavitan was constructed using Bionano Direct Label and Stain (DLS) technology. The map spanned 10.4 Gb. This map and another map produced earlier by us with the Bionano's Nick Label Repair and Stain (NLRS) technology were used to improve the current wild emmer assembly. The WEW_v1.0 assembly consisted of 151,912 scaffolds. Of them, 3,102 could be confidently aligned on the optical maps. Forty-seven were chimeric. They were disjoined and new scaffolds were assembled with the aid of the optical maps. The total number of scaffolds was reduced from 151,912 to 149,252 and N50 increased from 6.96 Mb to 72.63 Mb. Of the 149,252 scaffolds, 485 scaffolds, which accounted for 97% of the total genome length, were aligned and oriented on genetic maps, and new WEW_v2.0 pseudomolecules were constructed. The new pseudomolecules included 333 scaffolds (68.51 Mb) which were originally unassigned, 226 scaffolds (554.84 Mb) were placed into new locations, and 332 scaffolds (394.83 Mb) were re-oriented. The improved wild emmer genome assembly is an important resource for understanding genomic modification that occurred by domestication.

摘要

野生二粒小麦(亚种)是所有现代栽培四倍体小麦的祖先。其基因组庞大(>10 Gb),重复序列含量超过80%。野生二粒小麦(品种Zavitan)基因组序列(WEW_v1.0)的成功全基因组鸟枪法组装是小麦基因组学的一个重要里程碑。为了改进该组装,利用Bionano直接标记和染色(DLS)技术构建了品种Zavitan的光学图谱。该图谱跨度为10.4 Gb。此图谱以及我们之前使用Bionano的缺口标记修复和染色(NLRS)技术生成的另一张图谱被用于改进当前的野生二粒小麦组装。WEW_v1.0组装由151,912个支架组成。其中,3,102个可以在光学图谱上可靠比对。47个是嵌合的。它们被拆分,新的支架在光学图谱的帮助下进行组装。支架总数从151,912个减少到149,252个,N50从6.96 Mb增加到72.63 Mb。在149,252个支架中,485个支架(占基因组总长度的97%)在遗传图谱上进行了比对和定向,并构建了新的WEW_v2.0假分子。新的假分子包括333个原本未分配的支架(68.51 Mb)、226个被放置到新位置的支架(554.84 Mb)以及332个重新定向的支架(394.83 Mb)。改进后的野生二粒小麦基因组组装是理解驯化过程中发生的基因组修饰的重要资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a50/6404602/3167559a50ea/619f1.jpg

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