The Oryza Map Alignment Project: The Golden Path to Unlocking the Genetic Potential of Wild Rice Species

被引:0
|
作者
Rod A. Wing
Jetty S. S. Ammiraju
Meizhong Luo
HyeRan Kim
Yeisoo Yu
Dave Kudrna
Jose L. Goicoechea
Wenming Wang
Will Nelson
Kiran Rao
Darshan Brar
Dave J. Mackill
Bin Han
Cari Soderlund
Lincoln Stein
Phillip SanMiguel
Scott Jackson
机构
[1] The University of Arizona,Arizona Genomics Institute
[2] The University of Arizona,Arizona Genomics Computational Laboratory
[3] Purdue University,Department of Agronomy
[4] Purdue University,Genomics Core Facility
[5] Cold Spring Harbor,Cold Spring Harbor Laboratory
[6] International Rice Research Institute,undefined
[7] National Center for Gene Research,undefined
来源
Plant Molecular Biology | 2005年 / 59卷
关键词
BAC-end sequencing; comparative genomics; physical mapping; rice; wild species;
D O I
暂无
中图分类号
学科分类号
摘要
The wild species of the genus Oryza offer enormous potential to make a significant impact on agricultural productivity of the cultivated rice species Oryza sativa and Oryza glaberrima. To unlock the genetic potential of wild rice we have initiated a project entitled the ‘Oryza Map Alignment Project’ (OMAP) with the ultimate goal of constructing and aligning BAC/STC based physical maps of 11 wild and one cultivated rice species to the International Rice Genome Sequencing Project’s finished reference genome – O. sativa ssp. japonica c. v. Nipponbare. The 11 wild rice species comprise nine different genome types and include six diploid genomes (AA, BB, CC, EE, FF and GG) and four tetrapliod genomes (BBCC, CCDD, HHKK and HHJJ) with broad geographical distribution and ecological adaptation. In this paper we describe our strategy to construct robust physical maps of all 12 rice species with an emphasis on the AA diploid O. nivara – thought to be the progenitor of modern cultivated rice.
引用
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页码:53 / 62
页数:9
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