A physical map with yeast artificial chromosome (YAC) clones covering 63% of the 12 rice chromosomes

Author:

Saji Shoko,Umehara Yosuke,Antonio Baltazar A,Yamane Hiroko,Tanoue Hiroshi,Baba Tomoya,Aoki Hiroyoshi,Ishige Naoko,Wu Jianzhong,Koike Kazuhiro,Matsumoto Takashi,Sasaki Takuji

Abstract

A new YAC (yeast artificial chromosome) physical map of the 12 rice chromosomes was constructed utilizing the latest molecular linkage map. The 1439 DNA markers on the rice genetic map selected a total of 1892 YACs from a YAC library. A total of 675 distinct YACs were assigned to specific chromosomal locations. In all chromosomes, 297 YAC contigs and 142 YAC islands were formed. The total physical length of these contigs and islands was estimated to 270 Mb which corresponds to approximately 63% of the entire rice genome (430 Mb). Because the physical length of each YAC contig has been measured, we could then estimate the physical distance between genetic markers more precisely than previously. In the course of constructing the new physical map, the DNA markers mapped at 0.0-cM intervals were ordered accurately and the presence of potentially duplicated regions among the chromosomes was detected. The physical map combined with the genetic map will form the basis for elucidation of the rice genome structure, map-based cloning of agronomically important genes, and genome sequencing.Key words: physical mapping, YAC contig, rice genome, rice chromosomes.

Publisher

Canadian Science Publishing

Subject

Genetics,Molecular Biology,General Medicine,Biotechnology

Cited by 16 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Sequencing the Rice Genome: Gateway to Agricultural Development;Rice Research for Quality Improvement: Genomics and Genetic Engineering;2020

2. Meiotic genes and proteins in cereals;Cytogenetic and Genome Research;2008

3. Rice Genomics: Current Status of Genome Sequencing;Novartis Foundation Symposia;2007-09-28

4. Decoding the rice genome;BioEssays;2006

5. Where Does the Accurate Rice Genome Sequence Lead Us?;Plant Molecular Biology;2005-09

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