Aegilops tauschii draft genome sequence reveals a gene repertoire for wheat adaptation

继增 贾;Shancen Zhao;秀英 孔;Yingrui Li;光耀 赵;Weiming He;Rudi Appels;Matthias Pfeifer;Yong Tao;Xueyong Zhang;Ruilian Jing;Chi Zhang;有志 马;丽锋 高;Chuan Gao;Manuel Spannagl;Klaus F.X. Mayer;Dong Li;Shengkai Pan;Fengya Zheng;Qun Hu;先春 夏;Jianwen Li;Qinsi Liang;Jie Chen;Thomas Wicker;Caiyun Gou;汉晖 匡;军 王;Genyun He;Yadan Luo;Beat Keller;Qiuju Xia;Peng Lu;Junyi Wang;Hongfeng Zou;Rongzhi Zhang;Junyang Xu;Jinlong Gao;Christopher Middleton;Zhiwu Quan;Guangming Liu;Jian Wang;焕明 杨;Xu Liu;中虎 何;龙 毛

China Association for Science and Technology;CAS - Beijing Institute of Genomics;Chinese University of Hong Kong;Murdoch University;Helmholtz Zentrum München - German Research Center for Environmental Health;Chinese Academy of Agricultural Sciences;Huazhong Agricultural University;University of Zurich;National Supercomputing Center in Tianjin

发表时间:2013-4-4

期 刊:Nature

语 言:English

U R L: http://www.scopus.com/inward/record.url?scp=84875898037&partnerID=8YFLogxK

摘要

About 8,000 years ago in the Fertile Crescent, a spontaneous hybridization of the wild diploid grass Aegilops tauschii (2n = 14; DD) with the cultivated tetraploid wheat Triticum turgidum (2n = 4x = 28; AABB) resulted in hexaploid wheat (T. aestivum; 2n = 6x = 42; AABBDD). Wheat has since become a primary staple crop worldwide as a result of its enhanced adaptability to a wide range of climates and improved grain quality for the production of baker's flour. Here we describe sequencing the Ae. tauschii genome and obtaining a roughly 90-fold depth of short reads from libraries with various insert sizes, to gain a better understanding of this genetically complex plant. The assembled scaffolds represented 83.4% of the genome, of which 65.9% comprised transposable elements. We generated comprehensive RNA-Seq data and used it to identify 43,150 protein-coding genes, of which 30,697 (71.1%) were uniquely anchored to chromosomes with an integrated high-density genetic map. Whole-genome analysis revealed gene family expansion in Ae. tauschii of agronomically relevant gene families that were associated with disease resistance, abiotic stress tolerance and grain quality. This draft genome sequence provides insight into the environmental adaptation of bread wheat and can aid in defining the large and complicated genomes of wheat species.

文献指纹

医学与生命科学

Aegilops

Triticum

Genome

Genes

Disease Resistance

Tetraploidy

Flour

DNA Transposable Elements

Bread

Poaceae

Physiological Stress

Climate

Diploidy

Libraries

Chromosomes

RNA

Proteins

被引量

期刊度量

Scopus度量

年份 CiteScore SJR SNIP
1996
1997
1998
1999 15.599 7.183
2000 11.917 6.845
2001 9.874 6.735
2002 10.114 7.208
2003 11.384 7.504
2004 11.222 7.523
2005 10.333 7.199
2006 9.702 7.156
2007 10.344 7.097
2008 13.17 7.321
2009 15.185 8.2
2010 16.465 8.23
2011 53.1 17.598 8.652
2012 51 17.546 8.409
2013 50.9 19.69 8.482
2014 49.9 18.78 7.946
2015 51.6 19.669 8.052
2016 49.2 18.389 7.901
2017 53.7 17.875 8.647
2018 55.7 16.345 9.448
2019 51 14.047 8.82
2020 49.5

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