Comparative sequence analysis of the Ghd7 orthologous regions revealed movement of Ghd7 in the grass genomes.

Ghd7 is an important rice gene that has a major effect on several agronomic traits, including yield. To reveal the origin of Ghd7 and sequence evolution of this locus, we performed a comparative sequence analysis of the Ghd7 orthologous regions from ten diploid Oryza species, Brachypodium distachyon...

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Main Authors: Lu Yang, Tieyan Liu, Bo Li, Yi Sui, Jinfeng Chen, Jinfeng Shi, Rod A Wing, Mingsheng Chen
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/23185584/pdf/?tool=EBI
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spelling doaj-a019d539989d4afe8639144ffd9818942021-03-03T20:26:26ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01711e5023610.1371/journal.pone.0050236Comparative sequence analysis of the Ghd7 orthologous regions revealed movement of Ghd7 in the grass genomes.Lu YangTieyan LiuBo LiYi SuiJinfeng ChenJinfeng ShiRod A WingMingsheng ChenGhd7 is an important rice gene that has a major effect on several agronomic traits, including yield. To reveal the origin of Ghd7 and sequence evolution of this locus, we performed a comparative sequence analysis of the Ghd7 orthologous regions from ten diploid Oryza species, Brachypodium distachyon, sorghum and maize. Sequence analysis demonstrated high gene collinearity across the genus Oryza and a disruption of collinearity among non-Oryza species. In particular, Ghd7 was not present in orthologous positions except in Oryza species. The Ghd7 regions were found to have low gene densities and high contents of repetitive elements, and that the sizes of orthologous regions varied tremendously. The large transposable element contents resulted in a high frequency of pseudogenization and gene movement events surrounding the Ghd7 loci. Annotation information and cytological experiments have indicated that Ghd7 is a heterochromatic gene. Ghd7 orthologs were identified in B. distachyon, sorghum and maize by phylogenetic analysis; however, the positions of orthologous genes differed dramatically as a consequence of gene movements in grasses. Rather, we identified sequence remnants of gene movement of Ghd7 mediated by illegitimate recombination in the B. distachyon genome.https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/23185584/pdf/?tool=EBI
collection DOAJ
language English
format Article
sources DOAJ
author Lu Yang
Tieyan Liu
Bo Li
Yi Sui
Jinfeng Chen
Jinfeng Shi
Rod A Wing
Mingsheng Chen
spellingShingle Lu Yang
Tieyan Liu
Bo Li
Yi Sui
Jinfeng Chen
Jinfeng Shi
Rod A Wing
Mingsheng Chen
Comparative sequence analysis of the Ghd7 orthologous regions revealed movement of Ghd7 in the grass genomes.
PLoS ONE
author_facet Lu Yang
Tieyan Liu
Bo Li
Yi Sui
Jinfeng Chen
Jinfeng Shi
Rod A Wing
Mingsheng Chen
author_sort Lu Yang
title Comparative sequence analysis of the Ghd7 orthologous regions revealed movement of Ghd7 in the grass genomes.
title_short Comparative sequence analysis of the Ghd7 orthologous regions revealed movement of Ghd7 in the grass genomes.
title_full Comparative sequence analysis of the Ghd7 orthologous regions revealed movement of Ghd7 in the grass genomes.
title_fullStr Comparative sequence analysis of the Ghd7 orthologous regions revealed movement of Ghd7 in the grass genomes.
title_full_unstemmed Comparative sequence analysis of the Ghd7 orthologous regions revealed movement of Ghd7 in the grass genomes.
title_sort comparative sequence analysis of the ghd7 orthologous regions revealed movement of ghd7 in the grass genomes.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Ghd7 is an important rice gene that has a major effect on several agronomic traits, including yield. To reveal the origin of Ghd7 and sequence evolution of this locus, we performed a comparative sequence analysis of the Ghd7 orthologous regions from ten diploid Oryza species, Brachypodium distachyon, sorghum and maize. Sequence analysis demonstrated high gene collinearity across the genus Oryza and a disruption of collinearity among non-Oryza species. In particular, Ghd7 was not present in orthologous positions except in Oryza species. The Ghd7 regions were found to have low gene densities and high contents of repetitive elements, and that the sizes of orthologous regions varied tremendously. The large transposable element contents resulted in a high frequency of pseudogenization and gene movement events surrounding the Ghd7 loci. Annotation information and cytological experiments have indicated that Ghd7 is a heterochromatic gene. Ghd7 orthologs were identified in B. distachyon, sorghum and maize by phylogenetic analysis; however, the positions of orthologous genes differed dramatically as a consequence of gene movements in grasses. Rather, we identified sequence remnants of gene movement of Ghd7 mediated by illegitimate recombination in the B. distachyon genome.
url https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/23185584/pdf/?tool=EBI
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