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著者 Tian C, Wan P, Sun S, Li J, Chen M.
タイトル Genome-wide analysis of the GRAS gene family in rice and Arabidopsis.
Abstract:
Members of the GRAS gene family encode transcriptional regulators that have diverse functions in plant growth and development such as gibberellin signal transduction, root radial patterning, axillary meristem formation, phytochrome A signal transduction, and gametogenesis. Bioinformatic analysis identified 57 and 32 GRAS genes in rice and Arabidopsis, respectively. Here, we provide a complete overview of this gene family, describing the gene structure, gene expression, chromosome localization, protein motif organization, phylogenetic analysis, and comparative analysis between rice and Arabidopsis. Phylogenetic analysis divides the GRAS gene family into eight subfamilies, which have distinct conserved domains and functions. Both genome/segmental duplication and tandem duplication contributed to the expansion of the GRAS gene family in the rice and Arabidopsis genomes. The existence of GRAS-like genes in bryophytes suggests that GRAS is an ancient family of transcription factors, which arose before the appearance of land plants over 400 million years ago.
掲載誌 Plant Mol. Biol.
Country China
刊数 54
ページ 519-532
発刊年 2004
PubMed ID 15316287
PubMed Central ID -
DOI 10.1023/B:PLAN.0000038256.89809.57
URL -
関連情報
遺伝子 CIGR1 CIGR2 DLT GRAS10 GRAS11 GRAS12 GRAS16 GRAS17 GRAS2 GRAS20 GRAS22 GRAS23 GRAS24 GRAS25 GRAS26 GRAS27 GRAS28 GRAS29 GRAS31 GRAS35 GRAS37 GRAS39 GRAS4 GRAS40 GRAS42 GRAS43 GRAS44 GRAS45 GRAS46 GRAS47 GRAS48 GRAS49 GRAS5 GRAS50 GRAS52 GRAS53 GRAS54 GRAS55 GRAS56 GRAS57 GRAS6 GRAS7 HAM1 HAM2 HAM3 MOC1 NSP1 NSP2 PH1 SCR SCR1 SHR1 SHR2 SLR1 SLRL1 SLRL2 WG3
INSD -
系統 野生イネ
コアコレクション
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突然変異系統(遺伝研 Collection) -
種子不稔系統 -
致死変異体系統 -
組織別発生段階
- 突然変異系統(遺伝子)
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栽培イネ品種(遺伝研 Collection) -
組織別発生段階 -
/rice/oryzabase