Difference between revisions of "Os06g0110000"
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<ref name="ref3"> Yasuno N, Yasui Y, Takamure I, Kato K. Genetic interaction between 2 tillering genes, reduced culm number 1 (rcn1) and tillering dwarf gene d3, in rice [J]. Journal of heredity, 2007, 98(2): 169-172.</ref> | <ref name="ref3"> Yasuno N, Yasui Y, Takamure I, Kato K. Genetic interaction between 2 tillering genes, reduced culm number 1 (rcn1) and tillering dwarf gene d3, in rice [J]. Journal of heredity, 2007, 98(2): 169-172.</ref> | ||
| + | </references> | ||
==Structured Information== | ==Structured Information== | ||
Revision as of 12:33, 19 May 2014
Please input one-sentence summary here.
Contents
Annotated Information
Function
In the case of the rice plant, more tillering equates to more grain-bearing branches, hence a higher grain yield.The D3 gene plays an important role in the control of tiller bud dormancy to suppress bud activity, encoding an F-box leucine-trich-repeat protein orthologous to Arabidopsis MAX2/ORE9[1]. Besides, the d3 protein is also involved in darkness-induced senescence or H2O2-induced cell death in the plant leaves[2].
Mutation
To identify genes involved in the control of rice tillering, Ishikawa et al. analyzed d3, d7, d10, d14, d27 tillering dwarf mutants exhibit reduction of plant stature and an increase in tiller numbers, in the mutants, axillary meristems are normally established but the suppression of tiller bud activity is weakened[1]. All mutants exhibited a similar abnormal appearance from the early stage of development, we can the this phenomena from figure 1.Yan et al found that darkness-induced senescence or H2O2-induced cell death in the thisd leaf [as measured by chlorophyll degradation, membrane ion leakage and expression of senescence-associated genes(SAGs)] in a d3 rice mutant was dalayed compared to that in its reference line Shiokari[2], we can see the leaf senescence phenomenon from the figure 2.
In addition,Yasuno et al.compare the phenotype of the d3rcn1 double mutant with each single mutant and parental rice cultivar‘‘Shiokari’’, The reduction in tillering by the rcn1 mutation was independent of the d3 genotype, and tillering number of d3rcn1 double mutant was between those of the d3 and rcn1 mutants. The phenotypes of the 4 genotypes at heading time are shown in Figure 3.These results demonstrated that the Rcn1 gene was not involved in the D3-associated pathway in tillering control[3].
Expression
Tissue specificity of D3 expression was examined by RT–PCR analysis (Fig. 4A, B),the expression of D3 mRNA is regulated posttranscriptionaly or that transcripts with different lengths of 3′-untranslated regions are generated[1].The effect of d3 mutation on D3 mRNA expression was also analyzed by RT–PCR (Fig. 4C),it is strongly suggested that the function of the D3 gene is hampered in the Id3 mutant[1].The mRNA levels of D3 is increased during cell death by qRT-PCR analyzed.These results suggest that D3 protein is involved in leaf senescence or cell death.
Evolution
The D3 gene sequenced and cloned by Ishikawa et al.A database search with the predicted D3 amino acid sequence indicated the presence of an N-terminal F-box and an LRR in the middle, suggesting that D3 is a member of the Fbox LRR family of proteins that function as a component of the ubiquitin E3 ligase complex(Figure5)[1].The D3 gene showed the highest sequence similarity to MAX2/ORE9 of Arabidopsis.The insertion of a putative transposon at the 154th amino acid of the predicted D3 protein caused an alteration of the amino acid sequence and generated a stop codon[2].
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Labs working on this gene
(1) Graduate School of Agriculture and Life Sciences, University of Tokyo, 1-1-1 Yayoi, Bunkyo, Tokyo, 113-8657 Japan
(2)CREST, Japan Science and Technology Corporation, 4-1-8 Honcho, Kawaguchi, Saitama, 332-0012 Japan
(3) Research Institute for Bioresources, Okayama University,2-20-1Chuo, Kurashiki, Okayama, 710-0046 Japan
(4) Faculty of Agriculture, Hokkaido University, Sapporo, 060 Japan
(5) Department of Crop Science Obihiro University of Agriculture and Veterinary Medicine, Nishi 2-5 Inada-cho,Obihiro, Hokkaido, 080-8555 Japan
(6) Graduate School of Agriculture, Hokkaido University, Kita 9 Nishi 9, Kita-ku, Sapporo, Hokkaido, 060-8589 Japan
References
- ↑ 1.0 1.1 1.2 1.3 1.4 1.5 1.6 Ishikawa S, Maekawa M, Arite T, Onishi K, Takamure I,Kyozuka J. Suppression of tiller bud activity in tillering dwarf mutants of rice[J]. Plant and Cell Physiology, 2005, 46(1): 79-86.
- ↑ 2.0 2.1 2.2 2.3 Yan H, Saika H, Maekawa M, Takamure I, Tsutsumi N,Kyozuka J, Nakazono M. Rice tillering dwarf mutant dwarf3 has increased leaf longevity during darkness-induced senescence or hydrogen peroxide-induced cell death[J]. Genes & genetic systems, 2007, 82(4): 361-366.
- ↑ 3.0 3.1 Yasuno N, Yasui Y, Takamure I, Kato K. Genetic interaction between 2 tillering genes, reduced culm number 1 (rcn1) and tillering dwarf gene d3, in rice [J]. Journal of heredity, 2007, 98(2): 169-172.
Structured Information
| Gene Name |
Os06g0110000 |
|---|---|
| Description |
Similar to DWARF3 (Fragment) |
| Version |
NM_001063114.1 GI:115465959 GeneID:4339885 |
| Length |
5774 bp |
| Definition |
Oryza sativa Japonica Group Os06g0110000, complete gene. |
| Source |
Oryza sativa Japonica Group ORGANISM Oryza sativa Japonica Group
Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP
clade; Ehrhartoideae; Oryzeae; Oryza.
|
| Chromosome | |
| Location |
Chromosome 6:579671..585444 |
| Sequence Coding Region |
579736..580004,582676..583426,583535..583624,584130..584208,584387..584493 |
| Expression | |
| Genome Context |
<gbrowseImage1> name=NC_008399:579671..585444 source=RiceChromosome06 preset=GeneLocation </gbrowseImage1> |
| Gene Structure |
<gbrowseImage2> name=NC_008399:579671..585444 source=RiceChromosome06 preset=GeneLocation </gbrowseImage2> |
| Coding Sequence |
<cdnaseq>atggtgatggagggcatgggcatggcggcggcgtgggcggcgggggacctgtgggtgctggcggcggcggtggtggccggcgtggtgctggtcgacgcggtggtgcggagggcgcacgactgggttcgcgtggcggcgctgggggcggagaggaggtcgaggttgccgccgggggagatggggtggccgatggtgggcagcatgtgggcgttcctccgcgccttcaagtccggcaaccccgacgccttcatcgcctccttcatccgacggtttgggcggacaggggtgtacaggacgttcatgttcagcagcccgacgatcctggcggtgacgccggaggcgtgcaagcaggtgctcatggacgacgagggcttcgtcaccggctggcccaaggccaccgtcaccctcatcggccccaaatccttcgtcaacatgtcctacgacgaccaccgccgcatccgcaagctcaccgccgcccccatcaacggcttcgacgccctcaccacctacctctccttcatcgaccagaccgtcgtcgcctccctccgccgctggtcctcgccggagtccggccaggtcgagttcctcaccgagctcaggcgcatgaccttcaagatcatcgtccagatcttcatgagcggcgccgacgacgccaccatggaggccctggagcggagctacaccgacctcaactacggcatgcgcgccatggccatcaacctccccggcttcgcctactaccgcgcgctcagggctcgccggaagctcgtgtccgtgctgcagggtgtgctcgacggccggagggccgccgccgccaagggcttcaaacgctccggggccatggacatgatggaccgcctcatcgaggccgaggacgaacgcggccgccgcctcgccgacgacgagatcgtcgacgtcctcatcatgtacctcaacgccggccacgagtcctccggccacatcaccatgtgggccaccgtcttcctccaggagaaccccgacatcttcgcaagagcaaaggctgagcaagaggagatcatgagaagcattccagcaacgcagaacggattaaccctcagggacttcaagaagatgcacttcctctcacaggttgtcgacgagacacttcgctgcgtcaacatctccttcgtgtccttccgtcaggccacaagagacatctttgtgaacggttatcttatccccaaggggtggaaggttcagctgtggtacagaagtgtgcacatggatgaccaagtttatcctgaccccaaaatgttcaacccttcaagatgggagggaccccctccgaaagccggaacattccttccatttggactgggagcaagactgtgccctggaaatgatcttgcaaagctggagatctctgtcttcctccatcattttctcctgggttacaagctgaagagggcaaatccaaagtgcagggtgagatatctgcctcatccccggcctgtggacaactgcttggcgacgatcaccaaagtttccgatgaacactaa</cdnaseq> |
| Protein Sequence |
<aaseq>MVMEGMGMAAAWAAGDLWVLAAAVVAGVVLVDAVVRRAHDWVRV AALGAERRSRLPPGEMGWPMVGSMWAFLRAFKSGNPDAFIASFIRRFGRTGVYRTFMF SSPTILAVTPEACKQVLMDDEGFVTGWPKATVTLIGPKSFVNMSYDDHRRIRKLTAAP INGFDALTTYLSFIDQTVVASLRRWSSPESGQVEFLTELRRMTFKIIVQIFMSGADDA TMEALERSYTDLNYGMRAMAINLPGFAYYRALRARRKLVSVLQGVLDGRRAAAAKGFK RSGAMDMMDRLIEAEDERGRRLADDEIVDVLIMYLNAGHESSGHITMWATVFLQENPD IFARAKAEQEEIMRSIPATQNGLTLRDFKKMHFLSQVVDETLRCVNISFVSFRQATRD IFVNGYLIPKGWKVQLWYRSVHMDDQVYPDPKMFNPSRWEGPPPKAGTFLPFGLGARL CPGNDLAKLEISVFLHHFLLGYKLKRANPKCRVRYLPHPRPVDNCLATITKVSDEH</aaseq> |
| Gene Sequence |
<dnaseqindica>66..334#3006..3756#3865..3954#4460..4538#4717..4823#4949..5070#5333..5435#actcgtctctgcgtgcgtttcgttccttcgttgcgttgcgttggttcatcgatagatcgttctcgatggtgatggagggcatgggcatggcggcggcgtgggcggcgggggacctgtgggtgctggcggcggcggtggtggccggcgtggtgctggtcgacgcggtggtgcggagggcgcacgactgggttcgcgtggcggcgctgggggcggagaggaggtcgaggttgccgccgggggagatggggtggccgatggtgggcagcatgtgggcgttcctccgcgccttcaagtccggcaaccccgacgccttcatcgcctccttcatccgacggtcagtactaacatactcccctcctcctgccacgtgtcactggtggggtccacaccaatgctgacttgtgggccccaccggtgatcgatccttctttttttttttttgctctctttttcatcatatatgcacgtatacatgcataaagaaagaagtgatcttaattattcattcatctcaagaaattaaagaatgagaacacacacatctgcagagtgatcttttgatgcaagtgtgatctttgaatctctttgatcgccgcaacttggatcgaatcccacatatataaacgcagaatttcaattggtggtgtgcgtgagagagagatttggttgggtttggtttggtttggctgaccctggaaatgaaacccatcgagatgttgttatgatcgggaatttaggggttgttcagattaatgatattttaattggtaaagttgttaaaaatgtatatctatttagttttttttataaaactttggtaaatatataagaaatcctgtcaaaacttggtaatattgtcaaattgtaaaaattttgacaatgccaaaatttggtaatgtttgttttagttataatctgaacagccccttaatatggatccatactccatttgatttcaataagattgtggatggatggacggatcatggatgggttgctttttaatttatgtaaacatcaaaagatgctccccttttgaatggtactactgctagtatgatatagcgttgttgcaatgcatgatccatctatcagaccctagcatcaaggcatggtacttctttttctttttcttttcttttctttttgcactaggatgctcttcttctaccttttcatcatcatacctgatatgctgccctgccctggcctgttgtcaaaacccataccgatgtgtttttctcgcagcaataaaaatatattatgccttttattttatttatttttcacctttatgaacttgcatgcatatcttcatatccttcaaaacggtcctgttaaatattcatgttgatatgtctgaatcattgaccaaacacactcctgaaaagaaatcactagctaataagtatagctattactcctagaaaaccccatcctgttgtaaaaacagcaaaccatgggatatttgatggctttatgccatgtactattctgctgagtgatgtctaagcatttttggctcagattaggaattgtcggcacagctttatttgtacaagaattgacagcaattgatgctaatgtggtaggctcacgagaattcacagccagataaacgtacgagctagttttagccagtcattaggttgctgacaccgaaatgaaaattttgtggcacccactgtccatcatcagatttccaccactccagatatgcaacaacatattccaattttgccgaacaaagtttcaggacaaaaatctctttcggtgctttgctaaatagttaatacactgcttgctgatctcttgttgcatatatttactgttaagacaaattcggtgggcataactaggcatgcattagcttttgtttaatctgctatatatgccatgggaatcaatatcatatagctaggtgaaaacaaagcacccagtgctttccaaattagtatatgtgcgcttcaccctgattgtcgtttagtcaaacgtaatctcccacactcggattgatttggtgtccttttattgcttgtcttatgcactgattatcttaatcgctgttaaaaagatggttacacgtgttgttcatagattaatgccttctgttctgaaagatgcaacaatgtgttgcctttttgtcaagaaagataacacaaatgaggcacaagtagaaagattgttgcaagatcagttcttcagatttgcataggaaaaatgtttgtcatgtctgtaccattgtctgcatcacagcaaaatgacttttgtctcttcattcacttatctcagtatatttcttctgcatatatactagagtactagtttcagtaacaaagaactcatctgttaaaaaaaatcacttctttttgtgtgtgtgtgttcaagttgctctaatttatggcaactgaaacaagagactgatatcactggaacatcagcagcttaattcagaagttataacaaataaagttgtaatagtacattcatagcgaatgaagtgatggaatgaaacagaaatgctattaatcacaatcaaatcggaactaaaaatatgcaaacttatggtgatttggaagcatgggaatgcaaagaatggcaggtttgctctaatttctgacaactgaaacaagagttgacactgaaaacaagatcactgatcgttgtgatcacaaagtagtactccctccgtttcaaaatatttgacactgttgactttttagcatatgtttgaccgttcgtcttattcaaaaacttttgtgagatatgtaaaattatatgtccacataaaaatatatttaacaatgaatcaaatgataggaaaagaattaataattacttaaattttttaaataagacgaacggtcaaacatgtgtaaaaagtcaacgacgtcaaatatttcgaaacggagggagtagcaaatattgtagcacattgatagtaatcaaaagagaaacaaaaagaagaatgggaatttgatggtaagcatggaagaatggcacaggtttgggcggacaggggtgtacaggacgttcatgttcagcagcccgacgatcctggcggtgacgccggaggcgtgcaagcaggtgctcatggacgacgagggcttcgtcaccggctggcccaaggccaccgtcaccctcatcggccccaaatccttcgtcaacatgtcctacgacgaccaccgccgcatccgcaagctcaccgccgcccccatcaacggcttcgacgccctcaccacctacctctccttcatcgaccagaccgtcgtcgcctccctccgccgctggtcctcgccggagtccggccaggtcgagttcctcaccgagctcaggcgcatgaccttcaagatcatcgtccagatcttcatgagcggcgccgacgacgccaccatggaggccctggagcggagctacaccgacctcaactacggcatgcgcgccatggccatcaacctccccggcttcgcctactaccgcgcgctcagggctcgccggaagctcgtgtccgtgctgcagggtgtgctcgacggccggagggccgccgccgccaagggcttcaaacgctccggggccatggacatgatggaccgcctcatcgaggccgaggacgaacgcggccgccgcctcgccgacgacgagatcgtcgacgtcctcatcatgtacctcaacgccggccacgagtcctccggccacatcaccatgtgggccaccgtcttcctccaggagaaccccgacatcttcgcaagagcaaaggtcactcctcactctgcttctttttttttcctgtcactccaaatttggtttcaatcatctgaacttttgcattatttgaaattttgcatgatttgattttgagttcaggctgagcaagaggagatcatgagaagcattccagcaacgcagaacggattaaccctcagggacttcaagaagatgcacttcctctcacaggtataatataataatatatatagggaaactctattcatttcttaaagcgatatctccttgtttttttatgaaatttaaaaagtcattaacttttttaaaaaaattagtatgatatatcaacatatgatatgttacttcataaacatacatattcaaattcaacttatacaagtagaaacaaaaataacaaatttgatggatagaacgcgtaattcattgtcaaatttgttatttttgtttcgaattgtatatgtcgaattttaacttgcatgtttgtaaaaagatatatcatatattcatctaccttgacaaagttttttaaattttttgataacttttttgaacgccatgcacaaaacgagaggatgtccactcgagggacaaaaatccacttccatatatgcaaatgatttttaacacagtggaatatactactgctccagccgaattaccacagtaattactgcataactaatttgcacgctaatgatgatgaaatctgaaggttgtcgacgagacacttcgctgcgtcaacatctccttcgtgtccttccgtcaggccacaagagacatctttgtgaacggtgcgttttcacatagctgaaaatccatcccttaaagacatatcagaatcatcatcatctgaattctgattgatgttgttgtttctctagtgaaccacatcgactgattactactagtgcttgaaatgaaatgaaaatgaatgaatgaatgttatactaaccaagaagaacccagcaggttatcttatccccaaggggtggaaggttcagctgtggtacagaagtgtgcacatggatgaccaagtttatcctgaccccaaaatgttcaacccttcaagatgggaggtaaattaaattcaatccattcttctgcagtttttgtttcttcatcaaactagattaagctccatcgattctctgcctttttcagtgtgtttcaatggtcgatgtaattttttttgttctttcagggaccccctccgaaagccggaacattccttccatttggactgggagcaagactgtgccctggaaatgatcttgcaaagctggagatctctgtcttcctccatcattttctcctgggttacaagtaaacctcctctcaacatatttatgacaaaaaaaactactgttaactgaacatgattaattgtgaacagataaaagactaactgctgcacctctcttcttcttttcagtctttatttcttctactcttttcatttcattatcagtttacttgtagcttccaggatcaaaactgaaagttatgcctttcagaataccaactccaaaaaggataaaattgctttgttcaaagttcaaaactgaaagttgtctgctgtgtgcaggctgaagagggcaaatccaaagtgcagggtgagatatctgcctcatccccggcctgtggacaactgcttggcgacgatcaccaaagtttccgatgaacactaaaagttcagggattctttagctggaaccgaaaacagccaggctaggctacttgttcctctgggacaagtaaataaacatgattataaagtatatcacgtactctggaagaaaaaaaagagagagaagtgatgtgtattcgtcttgatatgctcgctttggtttcgcattgttcttgtttgtcctagcttaggacaaagattaaagtaaagcagttcgagttatactaacaagcttcctgaatatgggaaacacgcaagcattccccttcttttctatctatccacctcactgaatttggattgttctttatcagttaataaagatggcacgaaaagttgc</dnaseqindica> 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