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PMID: 12447439 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Sequence and analysis of rice chromosome 4.

Nature ·Vol. 420 ·No. 6913 ·2002-11-21 ·Pages 316-20

Feng Q, Zhang Y, Hao P, Wang S, Fu G, Huang Y, Li Y, Zhu J, Liu Y, Hu X, Jia P, Zhang Y, Zhao Q, Ying K, Yu S, Tang Y, Weng Q, Zhang L, Lu Y, Mu J, Lu Y, Zhang LS, Yu Z, Fan D, Liu X, Lu T, Li C, Wu Y, Sun T, Lei H, Li T, Hu H, Guan J, Wu M, Zhang R, Zhou B, Chen Z, Chen L, Jin Z, Wang R, Yin H, Cai Z, Ren S, Lv G, Gu W, Zhu G, Tu Y, Jia J, Zhang Y, Chen J, Kang H, Chen X, Shao C, Sun Y, Hu Q, Zhang X, Zhang W, Wang L, Ding C, Sheng H, Gu J, Chen S, Ni L, Zhu F, Chen W, Lan L, Lai Y, Cheng Z, Gu M, Jiang J, Li J, Hong G, Xue Y, Han B

Abstract

Rice is the principal food for over half of the population of the world. With its genome size of 430 megabase pairs (Mb), the cultivated rice species Oryza sativa is a model plant for genome research. Here we report the sequence analysis of chromosome 4 of O. sativa, one of the first two rice chromosomes to be sequenced completely. The finished sequence spans 34.6 Mb and represents 97.3% of the chromosome. In addition, we report the longest known sequence for a plant centromere, a completely sequenced contig of 1.16 Mb corresponding to the centromeric region of chromosome 4. We predict 4,658 protein coding genes and 70 transfer RNA genes. A total of 1,681 predicted genes match available unique rice expressed sequence tags. Transposable elements have a pronounced bias towards the euchromatic regions, indicating a close correlation of their distributions to genes along the chromosome. Comparative genome analysis between cultivated rice subspecies shows that there is an overall syntenic relationship between the chromosomes and divergence at the level of single-nucleotide polymorphisms and insertions and deletions. By contrast, there is little conservation in gene order between rice and Arabidopsis.

MeSH Terms
Arabidopsis/genetics Chromosomes, Plant/genetics Computational Biology Contig Mapping DNA Transposable Elements/genetics Expressed Sequence Tags Gene Order/genetics Genes, Plant/genetics Genetic Markers/genetics Genome, Plant Multigene Family/genetics Mutation/genetics Oryza/classification,genetics Physical Chromosome Mapping Plant Proteins/classification,genetics Polymorphism, Single Nucleotide/genetics Repetitive Sequences, Nucleic Acid/genetics Sensitivity and Specificity Sequence Alignment Sequence Analysis, DNA Sequence Homology, Nucleic Acid Species Specificity Synteny/genetics
Chemicals
DNA Transposable Elements Genetic Markers Plant Proteins
Authors & Affiliations
74 authors, click to expand affiliations / ORCID
Feng Qi
National Center for Gene Research, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 500 Caobao Road, Shanghai 200233, China.
Zhang Yujun
Hao Pei
Wang Shengyue
Fu Gang
Huang Yucheng
Li Ying
Zhu Jingjie
Liu Yilei
Hu Xin
Jia Peixin
Zhang Yu
Zhao Qiang
Ying Kai
Yu Shuliang
Tang Yesheng
Weng Qijun
Zhang Lei
Lu Ying
Mu Jie
Lu Yiqi
Zhang Lei S
Yu Zhen
Fan Danlin
Liu Xiaohui
Lu Tingting
Li Can
Wu Yongrui
Sun Tongguo
Lei Haiyan
Li Tao
Hu Hao
Guan Jianping
Wu Mei
Zhang Runquan
Zhou Bo
Chen Zehua
Chen Ling
Jin Zhaoqing
Wang Rong
Yin Haifeng
Cai Zhen
Ren Shuangxi
Lv Gang
Gu Wenyi
Zhu Genfeng
Tu Yuefeng
Jia Jia
Zhang Yi
Chen Jie
Kang Hui
Chen Xiaoyun
Shao Chunyan
Sun Yun
Hu Qiuping
Zhang Xianglin
Zhang Wei
Wang Lijun
Ding Chunwei
Sheng Haihui
Gu Jingli
Chen Shuting
Ni Lin
Zhu Fenghua
Chen Wei
Lan Lefu
Lai Ying
Cheng Zhukuan
Gu Minghong
Jiang Jiming
Li Jiayang
Hong Guofan
Xue Yongbiao
Han Bin
Article Info
Journal
Nature
Abbr.
Nature
ISSN
0028-0836
Published
2002-11-21
Pages
316-20
Language
English
Region
England
NLM ID
0410462
Subset
IM
Corrections
CommentIn
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