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| − | Please input one-sentence summary here.
| + | The rice '''''Os07g0529600''''' was reported as '''''OsDR8''''' in 2006 by researchers from China. |
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| | ==Annotated Information== | | ==Annotated Information== |
| | + | [[File:1.png|right|thumb|227px|]] |
| | + | ===Gene Symbol=== |
| | + | *'''''Os07g0529600''''' '''''<=>''''' '''''FOXRED1, OsDR8, OsXNP''''' |
| | + | |
| | ===Function=== | | ===Function=== |
| − | Please input function information here.
| + | * Silencing of OsDR8 using an RNA interference approach resulted in phenotypic alteration of the plants. |
| | + | * The transgenic plants with repressed expression of OsDR8 showed reduced resistance or susceptibility to Xanthomonas oryzae pv. oryzae and Magnaporthe grisea causing bacterial blight and blast, which are two of the most devastating diseases in rice worldwide, respectively. |
| | | | |
| | ===Expression=== | | ===Expression=== |
| − | Please input expression information here.
| + | * The impact of OsDR8 on disease resistance in rice may be through the regulation of expression of other defense-responsive genes and the site of OsDR8 function is on the upstream of the signal transduction pathway. In addition, the accumulation of thiamine may be essential for bacterial blight resistance and blast resistance. |
| | | | |
| | ===Evolution=== | | ===Evolution=== |
| − | Please input evolution information here.
| + | * The putative product of OsDR8 was highly homologous to an enzyme involved in the biosynthesis of the thiazole precursor of thiamine. |
| | | | |
| | You can also add sub-section(s) at will. | | You can also add sub-section(s) at will. |
| | | | |
| | ==Labs working on this gene== | | ==Labs working on this gene== |
| − | Please input related labs here.
| + | National Key Laboratory of Crop Genetic Improvement, National Center of Plant Gene Research |
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| | ==References== | | ==References== |
| − | Please input cited references here.
| + | Dual function of rice OsDR8 gene in disease resistance and thiamine accumulation, Gongnan Wang, Xinhua Ding, Meng Yuan, Deyun Qiu, Xianghua Li, Caiguo Xu and Shiping Wang, Plant Molecular Biology (2006) 60:437-449. |
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| | ==Structured Information== | | ==Structured Information== |
| − | {{JaponicaGene|
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| − | GeneName = Os07g0529600|
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| − | Description = Similar to Thiazole biosynthetic enzyme 1-1, chloroplast precursor|
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| − | Version = NM_001066376.1 GI:115472484 GeneID:4343443|
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| − | Length = 1489 bp|
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| − | Definition = Oryza sativa Japonica Group Os07g0529600, complete gene.|
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| − | Source = Oryza sativa Japonica Group
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| − | ORGANISM Oryza sativa Japonica Group
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| − | Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
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| − | Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP
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| − | clade; Ehrhartoideae; Oryzeae; Oryza.
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| − | |
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| − | Chromosome = [[:category:Japonica Chromosome 7|Chromosome 7]]|
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| − | AP = Chromosome 7:21384739..21386227|
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| − | CDS = 21384795..21385688,21385767..21385940|
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| − | GCID = <gbrowseImage1>
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| − | name=NC_008400:21384739..21386227
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| − | source=RiceChromosome07
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| − | preset=GeneLocation
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| − | </gbrowseImage1>|
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| − | GSID = <gbrowseImage2>
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| − | name=NC_008400:21384739..21386227
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| − | source=RiceChromosome07
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| − | preset=GeneLocation
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| − | </gbrowseImage2>|
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| − | CDNA = <cdnaseq>atggcagccatggccaccaccgcgtccagcctcctcaagacctccttcgctggcgcgcgcctccccgccgccgcccgcaaccccaccgtctccgtcgcgccgcgcaccggcggcgccatctgcaactccatctcgtcgtcgtcgtccactcccccctacgacctcaacgccatcaggttcagccccatcaaggagtccatcgtgtctcgcgagatgacccggcggtacatgaccgacatgatcacctacgccgacaccgacgtcgtcgtcgtcggcgccggctccgcggggctctcctgcgcgtacgagctctccaaggacccctccgtcagcgtcgccgtcatcgagcagtcggtgtcccccggcggcggcgcgtggctcggcgggcagctgttctccgccatggtggtgcgcaagccggcgcacctgttcctcgacgagctcggcgtcgcgtacgacgagcaggaggactacgtcgtcatcaagcacgccgcgctcttcacctccaccgtcatgagccgcctcctggcgcgccccaacgtgaagctgttcaacgccgtcgccgtcgaggacctcatcgtcaaggagggccgcgtcggcggcgtggtcaccaactgggcgctggtgtcgatgaaccacgacacgcagtcgtgcatggaccccaacgtgatggagtccagggtggtggtgagctcctgcggccacgacgggccgttcggcgccacgggcgtcaagcggctgcaggacatcggcatgatcgacgccgtgcccggcatgcgcgccctcgacatgaacaccgccgaggacgagatcgtccgcctcacccgcgaggtcgtccccggcatgatcgtcaccggcatggaggtcgccgagatcgacggcgccccgagaatgggcccgacgttcggagccatgatgatctccggccagaaggcggcgcacctggcgctgaaggcgctcggccggccgaacgccatcgacggcacgatcaagaaggcggcggcggcggcggcgcacccggagctgatcctggcgtcgaaggacgacggcgagatcgtggacgcctga</cdnaseq>|
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| − | AA = <aaseq>MAAMATTASSLLKTSFAGARLPAAARNPTVSVAPRTGGAICNSI SSSSSTPPYDLNAIRFSPIKESIVSREMTRRYMTDMITYADTDVVVVGAGSAGLSCAY ELSKDPSVSVAVIEQSVSPGGGAWLGGQLFSAMVVRKPAHLFLDELGVAYDEQEDYVV IKHAALFTSTVMSRLLARPNVKLFNAVAVEDLIVKEGRVGGVVTNWALVSMNHDTQSC MDPNVMESRVVVSSCGHDGPFGATGVKRLQDIGMIDAVPGMRALDMNTAEDEIVRLTR EVVPGMIVTGMEVAEIDGAPRMGPTFGAMMISGQKAAHLALKALGRPNAIDGTIKKAA AAAAHPELILASKDDGEIVDA</aaseq>|
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| − | DNA = <dnaseqindica>57..950#1029..1202#actcacacacactctcctcatcccagagcaagaagctcagctcctcctcctctcgcatggcagccatggccaccaccgcgtccagcctcctcaagacctccttcgctggcgcgcgcctccccgccgccgcccgcaaccccaccgtctccgtcgcgccgcgcaccggcggcgccatctgcaactccatctcgtcgtcgtcgtccactcccccctacgacctcaacgccatcaggttcagccccatcaaggagtccatcgtgtctcgcgagatgacccggcggtacatgaccgacatgatcacctacgccgacaccgacgtcgtcgtcgtcggcgccggctccgcggggctctcctgcgcgtacgagctctccaaggacccctccgtcagcgtcgccgtcatcgagcagtcggtgtcccccggcggcggcgcgtggctcggcgggcagctgttctccgccatggtggtgcgcaagccggcgcacctgttcctcgacgagctcggcgtcgcgtacgacgagcaggaggactacgtcgtcatcaagcacgccgcgctcttcacctccaccgtcatgagccgcctcctggcgcgccccaacgtgaagctgttcaacgccgtcgccgtcgaggacctcatcgtcaaggagggccgcgtcggcggcgtggtcaccaactgggcgctggtgtcgatgaaccacgacacgcagtcgtgcatggaccccaacgtgatggagtccagggtggtggtgagctcctgcggccacgacgggccgttcggcgccacgggcgtcaagcggctgcaggacatcggcatgatcgacgccgtgcccggcatgcgcgccctcgacatgaacaccgccgaggacgagatcgtccgcctcacccgcgaggtcgtccccggcatgatcgtcaccggcatggaggtcgccgagatcgacggcgccccgagaatggtacgcaccaaaaaaacatcaaactcttcaccataatctctcccccgttcttggatttgaacaaattcgttgttgcagggcccgacgttcggagccatgatgatctccggccagaaggcggcgcacctggcgctgaaggcgctcggccggccgaacgccatcgacggcacgatcaagaaggcggcggcggcggcggcgcacccggagctgatcctggcgtcgaaggacgacggcgagatcgtggacgcctgagcgaatagaacagggtaaaaaaaaatccgcaagacgtggtggtgacacggaggagttggggacgagaagaagatgtggactttcccctgtgtttttttttcgggatttgcattgatccccttgtttgttttagctctggatgttgattagcgtcttgttcatagcacttccactgccaccgtgtgtgtgtgctctgcttgcctgatgagggcaagaaaacttccatggatccgtctctctgggaggaatgaataaaaaggatgaggaaataaaaatgattcagtgcc</dnaseqindica>|
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| − | Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001066376.1 RefSeq:Os07g0529600]|
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| − | }}
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| | [[Category:Genes]] | | [[Category:Genes]] |
| | [[Category:Japonica mRNA]] | | [[Category:Japonica mRNA]] |
The rice Os07g0529600 was reported as OsDR8 in 2006 by researchers from China.
Annotated Information
Gene Symbol
- Os07g0529600 <=> FOXRED1, OsDR8, OsXNP
Function
- Silencing of OsDR8 using an RNA interference approach resulted in phenotypic alteration of the plants.
- The transgenic plants with repressed expression of OsDR8 showed reduced resistance or susceptibility to Xanthomonas oryzae pv. oryzae and Magnaporthe grisea causing bacterial blight and blast, which are two of the most devastating diseases in rice worldwide, respectively.
Expression
- The impact of OsDR8 on disease resistance in rice may be through the regulation of expression of other defense-responsive genes and the site of OsDR8 function is on the upstream of the signal transduction pathway. In addition, the accumulation of thiamine may be essential for bacterial blight resistance and blast resistance.
Evolution
- The putative product of OsDR8 was highly homologous to an enzyme involved in the biosynthesis of the thiazole precursor of thiamine.
You can also add sub-section(s) at will.
Labs working on this gene
National Key Laboratory of Crop Genetic Improvement, National Center of Plant Gene Research
References
Dual function of rice OsDR8 gene in disease resistance and thiamine accumulation, Gongnan Wang, Xinhua Ding, Meng Yuan, Deyun Qiu, Xianghua Li, Caiguo Xu and Shiping Wang, Plant Molecular Biology (2006) 60:437-449.
Structured Information