Difference between revisions of "Os10g0536100"

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Please input one-sentence summary here.
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The rice '''''Os10g0536100''''' was reported as '''''OsMADS56''''' in 2009 <ref name="ref1" /> by researchers from Korea.  
  
 
==Annotated Information==
 
==Annotated Information==
===Function===
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[[File:fig2a.jpg|right|thumb|327px|'''Figure 2.''' ''Gene structure of Os10g0536100 .<ref name="ref1" />.'']]
Please input function information here.
 
OsMADS50 and OsMADS56 , which is
 
highly homologous to Arabidopsis SOC1, are affected by the circadian clock. Under long days, OsMADS50 serves as a
 
flowering activator by controlling various floral regulators
 
such as OsMADS1, OsMADS14, OsMADS15, OsMADS18
 
and Hd3a. But OsMADS50 and OsMADS56 function
 
antagonistically in regulating LD-dependent flowering
 
by controlling expression of OsLFL1 and Ehd1.
 
MATERIALS. So OsMADS56 is an LD-specific floral repressor.OsMADS50 and
 
OsMADS56 form a complex that regulates downstream
 
target genes in order to regulate the Rice's flowering time.
 
  
===Expression===
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===Gene Symbol===
Please input expression information here.
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*'''''Os10g0536100''''' '''''<=>''''' '''''OsMADS56''''','''''MADS56,RMADS214'''''
(1)OsMADS56 transcript levels were low at the seedling stage
 
but gradually increased to a maximum at 4 weeks after
 
germination as the observation made by CHOONG-HWAN RYU1 etc. (fig3)
 
(2)OsMADS56 and OsMADS50
 
  
===Evolution===
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===Function===
Please input evolution information here.
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* '''''OsMADS50''''' and '''''OsMADS56''''' may form a complex that regulates down- stream target genes.
  
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===Phenotypic analysis===
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* Overexpression of OsMADS56 (56OX) resulted in delayed flowering under LD.
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* In the osmads50 mutants and 56OX transgenic plants, transcripts of Ehd1, Hd3a and RFT1 were reduced, although that of OsLFL1 increased.
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* On the other hand, mRNA levels of OsGI, Hd1, OsId1, OsDof12, Ghd7, Hd6 and SE5 were unchanged.
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* These observations imply that OsMADS50 and OsMADS56 function antagonistically through OsLFL1-Ehd1 in regulating LD-dependent flowering.
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* Yeast two-hybrid and co-immunoprecipitation analyses indicated an interaction between those two proteins as well as their formation of homodimers.
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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.
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* CHOONG-HWAN RYU1 ,Department of Life Science and Functional Genomic Center, Pohang University of Science and Technology (POSTECH), Pohang 790-784, Korea
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* SOON JU PARK2&CHANG-DEOK HAN, Division of Applied Life Science (BK21 Program), Plant Molecular Biology and Biotechnology Research Center (PMBBRC), Gyeongsang National University, Jinju 660-701, Korea
  
 
==References==
 
==References==
Please input cited references here.
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<references>
 +
* <ref name="ref1">
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Ryu CH, Lee S, Cho LH, Kim SL, Lee YS, Choi SC, Jeong HJ, Yi J, Park SJ, Han
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CD, An G. OsMADS50 and OsMADS56 function antagonistically in regulating long day
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(LD)-dependent flowering in rice. Plant Cell Environ. 2009 Oct;32(10):1412-27.
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doi: 10.1111/j.1365-3040.2009.02008.x. PubMed PMID: 19558411.
 +
 
 +
</ref>
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</references>
  
==Structured Information==
 
{{JaponicaGene|
 
GeneName = Os10g0536100|
 
Description = Transcription factor MADS56|
 
Version = NM_001071703.1 GI:115483149 GeneID:4349237|
 
Length = 10441 bp|
 
Definition = Oryza sativa Japonica Group Os10g0536100, 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 = [[:category:Japonica Chromosome 10|Chromosome 10]]|
 
AP = Chromosome 10:21318476..21328916|
 
CDS = 21318861..21319045,21325700..21325778,21327505..21327566,21327666..21327765,21327903..21327944<br>,21328060..21328101,21328414..21328517,21328527..21328605|
 
GCID = <gbrowseImage1>
 
name=NC_008403:21318476..21328916
 
source=RiceChromosome10
 
preset=GeneLocation
 
</gbrowseImage1>|
 
GSID = <gbrowseImage2>
 
name=NC_008403:21318476..21328916
 
source=RiceChromosome10
 
preset=GeneLocation
 
</gbrowseImage2>|
 
CDNA = <cdnaseq>atggtgcgggggaggacggagctgaagcggattgagaacccgacgagccggcaggtgaccttctccaagcgccggaatggcctcctcaagaaggcgttcgagctctccgtcctctgcgacgccgaggtcgccctcatcgtcttctccccccgcggccgcctctacgagttcgccagcgcccccagcctacagaaaaccatcgaccgctataaagcatacacaaaggatcatgtcaacaataagacaattcaacaagatatccagcaagtcaaagatgatactttaggcttggccaagaaacttgaagctcttgatgagtccagacggaaaatattgggagaaaatttagaaggattctctattgaagaactgcgtggtctagaaatgaaacttgagaagagcctccacaagataagactaaagaagaccgagcttctggagcagcagatagccaagctgaaagagaaggagcggactttgcttaaagacaacgaaaatttacgcggaaagcatcgcaaccttgaggctgcggcgctggtggctaaccacatgacgacgacgacggcgccggcggcgtggccgcgggacgtgcctatgacgagcagcacagccggcgccatggacgtggagactgatctgtacattggattgcccggcactgagcgctcctccaaccggtcggagacaggttga</cdnaseq>|
 
AA = <aaseq>MVRGRTELKRIENPTSRQVTFSKRRNGLLKKAFELSVLCDAEVA                    LIVFSPRGRLYEFASAPSLQKTIDRYKAYTKDHVNNKTIQQDIQQVKDDTLGLAKKLE                    ALDESRRKILGENLEGFSIEELRGLEMKLEKSLHKIRLKKTELLEQQIAKLKEKERTL                    LKDNENLRGKHRNLEAAALVANHMTTTTAPAAWPRDVPMTSSTAGAMDVETDLYIGLP                    GTERSSNRSETG</aaseq>|
 
DNA = <dnaseqindica>386..570#7225..7303#9030..9091#9191..9290#9428..9469#9585..9626#9939..10042#10052..10130#cgccctcgtctcgtctcgtctctccactcccccacctcccatccgctactgctagtactactactacccggcctctcgccttctcgcgcggccgcgatttccgttcgcaaatccgcacccacggcggcgcgaggtcgccgtcgtcgtcgagccatttcgggtgagagggggggtctccggtttttctcagatctgtccacttttgtccagttttgatctggtgatttaatatactatttttcacttctggtggtttgcggcgacgcgtgtgcaggggggtagtttataagggcttgcgcgaggagggggaggagtagcgggtagcggcggctcgagtcgagtcgtcgtcgtcgtcggcggcggcggtcgagagagatcgggatcgatggtgcgggggaggacggagctgaagcggattgagaacccgacgagccggcaggtgaccttctccaagcgccggaatggcctcctcaagaaggcgttcgagctctccgtcctctgcgacgccgaggtcgccctcatcgtcttctccccccgcggccgcctctacgagttcgccagcgcccccaggtataccttcttctcgttctcggcaagttctcgccggaaattattctctcgctcgtttcgccctcgtcgtgctgctgcatcaaatgcaaatgcgatttcattctctctctctctctctgtggtaatcgggtgatttttgtggtttggggggtttgaggattcggctgttgggattgcttgttcgtcagagtttgaattcctgcccttaattccgtcgaacaaaaatgggttctctgttcggatttggcacctgcggatttggccaccgctgctgcgacgacgaagacgacggcgacggcgaccgccggccacacacactactagtagcctactagttcgtcttgcttctcacttgctattattgttattattggaagctgtgaactcctgtagaagttgaccccttctctccccctaaatatctgtacggccctggagaccggatggatatgcccacacctcagcactctctcacagtcaccaccagttgcctgtagtatctcttcttcattcatcttcttcttcctctcacatgttaacaactgttccatggagcatgtccacgagctctggattgattctctggcgcgtctctgtgcatcttccttccccattcgtcgattcttgttctcgatccgcgggaaaattgacgattaaaggaggctcctgacctctgaataaaatcaaggacaaaaacgtacaagaaggcagaggtaataaacccaagatagccaatatacaaagaaaaaccaaagtaaatggcagccaatgggaggaaggaggccggccggcgtgcgtggccagtaattgcggggtaggaagaaggctgcgagcctgcgagcgtgcgagactacaaatggagaaacaagctaatgtgacatccggtcagtgagatgagagatcattgggcgcctacctgcaccctctctctctctctctcgatccacaccactgcactgctcccctctcgatcgtacactggctgatgagctagccaagttgatttctctcgcaaaacgtaccacggattggtcgcatcagctccgttcgtcgagggtatggtgtgggggtatctttccatcatacacagtatgacgttggccacagtacatagcatgcgatatggctgtttctgaatattttttcagttttcagcaggtccgaatttgttaggtggaaccgtgatttatatatttctcccctcttccttgtggatatagtactcgtattgtgtatcttactcctagttctcttgcacccactccagctggagagtggagagagtggagagtacgtaccttatctggcgcacactgtactataatccttatattttggtgatcaggtgcaccgtttattatagattaatcatcatctcttagacatggcttgttgcaccttaatatccatctctttatcaggcttatatgtctacggcagtgaaaaagcgttgccagttaattcattgtcgtgcatgtagtttccaaaccatagtctagggaacactcaatgttgttccatgatattaagtgatgttaagtactccataacttaattagtactccatgccaatactcgacaacataatatttccatcacacttcatatatatgtatgctctccctctttctcaattaggaagatctatctagaaaattcttgagtttgcaagctatgatatgcaacgaactttcttctaatgtaagtgcaaaactatggattgtcattcattacttacgttacttcttaataaacattatcaagaagctagattgtagagcatgtaaagctgagtggaaaaggagttttggtaagcatgtgattgacatgtcttataggtcgtcgattgatctgcccaaacaacagtacaaatgaagttaattctactgtgaatagcatgtgataactcgcaatccgtagaatgctttggctttaaaacaataattttaagagtgtgagcaatgcttatgttacttcatcagattatcgtgtgccttaattcttatctgttgatcatatttagtactcctcctacccataaatatatgaacacttgaagcatttaaaatttatccacaaatatgatgattattcctagagtactactgatccctcttcccaaaataagtgaccaatttggatgtaaaatttgtttcaagataagtgatcacattacagtgctacttgtctattaatcacctcttgttcaaacttcttatcttacctcaactaccctcccacttctaaacatccctcatttaggtcatttgcctttcctcattatttggctcatatataagtgataaagtagcttattcatttattttagaacagatcgatggagtacttattacaacaatcacccgtcattcaaatttctttctaacttacactcaaccaccgtcccacctccatctctctatcttctcctccaactctctctcttttaatgaggggcaccaaaatattttcttctcaactttaatctctactaaacaatttggcatgtgtatatttgttaatggagggagtattttctaagttctaagtacttgatatatatcgtttaaccagaaatctatacctatgtgaaaaaaatacattgtccatagatcgatctttcatgagtatattactgaatcatgccaaatttggccaatgttacatattaattatgatcttaaagtttgttctgaaattactttgccttgaatcttccaagcaagtatatatatacgtgtaggcaccacacttctcatggtcaaatttagatatttatcaacctaattagtcagtccatatatagagagttaatgcaactagctagttgctttgtctaatgtgagatcttttgtacgtgaactgtaaacattatatatacaacctccatcctatattacttgtcgctttgagtttttatttgtaatgtttgatcattcgtcttattcaaaaattttttacaattgttatttattttatttgtgatttgctttattatcaaaagtattttaaatatgacttatcttttttatatttgcactaatttttcaaataaaacaaagggtcaaacgttgtaacgaaaaagtcaaagcgacatctattatgagacggaggtagtatgatcggtgtgctgtctttagtcctgtttaagatacttaatttctctgaaatacaattgctcataattacagtgttgttgtcagttttgtcttcttttccaaatactttatttgaaatatggataaatcaaacttaccttttaccctaataaactacactatacatactaatcttaataacatttatgcataacatttatggtttttgttcattcttttcaaatccgttccattctgggcagaatggggcaatgcaagtactgtcacaaagaacaaagaacagatggtgcagccggatatgcatatatatataccagctgaatttttggccgtttcaggaaaacttcaatttaaaatcaatgttggtactatcaaattaatagctgcaaagtctccactaggtctagcaagaaagtagcagctcaatggtagtaataacttcatatgtttatcgaacagatattagctttctttaaaagtccattaccaaacaaggcttatctaggggcatagtacccccatagacccatatgtaggagtaacaaagagaaaatgattaattacaaatattttaatgggcttgtttggcagggctccaactctaagtactagctaaattctgttctacctctctagttcattttataaaagcactctagcattctcctctctctttgtaggtggagctgaaaccgtttggttgggctctagctcaaggagaggtggagttggagctttgccgtatgggcccaatgtatataaaaaatatctataatttggttatagagtatttgtatttcaatgggaaaaaggtatatgtgttaatagtattatactcttctcataaaaatgagtgtgaaactaacttttgtaataatccttactattagttagctgagctcgaactattctttagtgtacaggcaacacgccccaattctacaagtgctgcaaccaaagctttcaatactggttttgccggaaatacccgtaccgcttgctggttgttacttcttccgtttcataatgtaagtcattctaacattgcccacattcatacaaatgttaatgaatctagacataaacatatgactagattcattaacatctatatgaatgtgggcaatgctagaatgacttacgttatgaaatggagggagtattagacaaatgttcaaatctaaaattttgaactcactgtggttcag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ccattaattatcttgagaaaatgtgcaattgatctctgcagcatcgcaaccttgaggctgcggcgctggtggctaaccacatgacgacgacgacggcgccggcggcgtggccgcgggacgtgcctatgacgagcagcacagccggcgccgccgacgccatggacgtggagactgatctgtacattggattgcccggcactgagcgctcctccaaccggtcggagacaggttgaagaaggccagccacagcaacagctgctatatagcatgcagtagcagcaacgacgccagtgacatcctgttcatctcacaagaataaccagagctctacgcatgcgcacatgaaacccaggcatgcagttctcggtgggtaaattattatctcgcattattagctatatgcgtgtccttgtctttttctttaggcaatggaataaaatttccggtaagtacaaacacaaacggaaacaaagaattaacaaagctgtagcagaccagatcggcaaattgaaatgccaggtaatccagtatatatttcgcttcc</dnaseqindica>|
 
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001071703.1 RefSeq:Os10g0536100]|
 
}}
 
 
[[Category:Genes]]
 
[[Category:Genes]]
 
[[Category:Japonica mRNA]]
 
[[Category:Japonica mRNA]]
Line 71: Line 42:
 
[[Category:Japonica Chromosome 10]]
 
[[Category:Japonica Chromosome 10]]
 
[[Category:Chromosome 10]]
 
[[Category:Chromosome 10]]
 +
 +
==Structured Information==

Latest revision as of 01:34, 17 February 2017

The rice Os10g0536100 was reported as OsMADS56 in 2009 [1] by researchers from Korea.

Annotated Information

Figure 2. Gene structure of Os10g0536100 .[1].

Gene Symbol

  • Os10g0536100 <=> OsMADS56,MADS56,RMADS214

Function

  • OsMADS50 and OsMADS56 may form a complex that regulates down- stream target genes.

Phenotypic analysis

  • Overexpression of OsMADS56 (56OX) resulted in delayed flowering under LD.
  • In the osmads50 mutants and 56OX transgenic plants, transcripts of Ehd1, Hd3a and RFT1 were reduced, although that of OsLFL1 increased.
  • On the other hand, mRNA levels of OsGI, Hd1, OsId1, OsDof12, Ghd7, Hd6 and SE5 were unchanged.
  • These observations imply that OsMADS50 and OsMADS56 function antagonistically through OsLFL1-Ehd1 in regulating LD-dependent flowering.
  • Yeast two-hybrid and co-immunoprecipitation analyses indicated an interaction between those two proteins as well as their formation of homodimers.

You can also add sub-section(s) at will.

Labs working on this gene

  • CHOONG-HWAN RYU1 ,Department of Life Science and Functional Genomic Center, Pohang University of Science and Technology (POSTECH), Pohang 790-784, Korea
  • SOON JU PARK2&CHANG-DEOK HAN, Division of Applied Life Science (BK21 Program), Plant Molecular Biology and Biotechnology Research Center (PMBBRC), Gyeongsang National University, Jinju 660-701, Korea

References

  1. 1.0 1.1 Ryu CH, Lee S, Cho LH, Kim SL, Lee YS, Choi SC, Jeong HJ, Yi J, Park SJ, Han CD, An G. OsMADS50 and OsMADS56 function antagonistically in regulating long day (LD)-dependent flowering in rice. Plant Cell Environ. 2009 Oct;32(10):1412-27. doi: 10.1111/j.1365-3040.2009.02008.x. PubMed PMID: 19558411.

Structured Information