Os02g0682200
The rice Os02g0682200 has been reported as MADS6 or MFO1 more than four times since the year 2009. As a member of MADS-box gene family, MADS6 draws attention of plant molecular biologists for its special functions in the regulation of rice flowers development[1][2][3][4][5].
Contents
Annotated Information
Function
OsMADS6, the AGL6-like gene in rice, plays an essential role in specifying floral organ, meristem identities and endosperm nutrient accumulation in rice[1][2][3]. It is also an important epigenetic regulator in rice[3]. The study by Shinnosuke Ohmori et al. in 2009 showed that the loss of OsMADS6 function in rice resulted in aberrant floral morphology[1]. The study by Dabing Zhanga et al. in 2011 further explained how OsMADS6 worked with MADS3, MADS16, MADS13 and MADS58 et al. and showed that MADS6 is a key player in specifying flower development via interacting with other floral homeotic genes in rice[4].
GO assignment(s): GO:0003700, GO:0005634, GO:0043565
Wild Type VS. Mutant
- In the research reported by Dabing Zhang et al. in 2010, a osmads6 mutant line with flower morphological defects was isolated from Japonica subspecies 9522 background treated with 60-Co γ-ray (280 Gy)[2]. No significant differences were observed when comparing the vegetative development stages, flowering time or inflorescene morphology of Wild type and the osmads6 mutant (Figure 1A and 1B).
- However, when comparing the morphology of flower organs, a defection of floral development could be found in osmads6 mutant. The spikelets of osmads6-1 at stage In9 showed somewhat larger palea than wild type (Figure 1C and 1D). The wellinterlocked lemma/palea structure was destroyed in the osmads6-1 mutant flower because of the altered marginal tissue (Figure 1F). Ectopic indeterminate glume-like structures enclosed the stamen filament in osmads6-1 mutant flowers (Figure 1G).
- In the research reproted by Shinnosuke Ohmori et al. in 2009, another MADS6 mutant mfo1-1 was described[1]. There is also no obvious abnormalities between mfo1-1 and wild type in the vegetative stage, however, abnormal flower morphological was observed in mfo1-1. A slightly enlarged palea and were half open was found in the florets of mfo1-1 (Figure 2A and 2B).
- Compared with wild type, Mfo1-1 is in defect of interlocking between the lemma and palea (Figure 2C and 2D). The mfo1-1 palea also lacked the membranous marginal region of palea which is found in wild type and its surface is relatively rougher then that of the wild-type lemma (Figures 2E and 2F).
Evolution
- The phylogenetic analyses made by Dabing Zhang et al. OsMADS6 belonged to an ancient and conserved AGL6 family. Both gymnosperms and angiosperms shared one common ancestor of AGL6-like genes. And the AGL6-like genes from grasses form two paralogous clades: the OsMADS17-clade contains OsMADS17 gene with an ortholog from Sorghum and the other genes, namely, OsMADS6-clades [2].
Labs working on this gene
- Rice Biotechnology Research Subteam (Hokuriku Region), National Agricultural Research Center, National Agriculture and Food Research Organization, Niigata 943-0193, Japan;
- Division of Genome and Biodiversity Research, National Institute of Agrobiological Sciences, Ibaraki 305-8602, Japan;
- School of Life Science and Biotechnology, Shanghai Jiaotong University, Shanghai 200240, China;
- Department of Biochemistry and Molecular Biology, Mississippi State University, MS 39762, USA;
- Institute of Plant Science, State Key Laboratory of Hybrid Rice, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai 200240, China;
- Dipartimento di Scienze Biomolecolari e Biotecnologie, Universita` degli Studi di Milano, 20133 Milan, Italy;
- Bio-X Center, Key Laboratory of Genetics and Development and Neuropsychiatric Diseases, Ministry of Education, Shanghai Jiao Tong University, Shanghai 200240, China;
- Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore-560012, India
- Department of Plant Biotechnology, School of Biotechnology, Madurai Kamaraj University, Madurai-625 021, Tamil Nadu, India
- Institute of Biotechnology, Viikinkaari 1, FI-00790, University of Helsinki, Finland
References
Please input cited references here.
Structured Information
| Gene Name |
Os02g0682200 |
|---|---|
| Description |
Similar to MADS box protein |
| Version |
NM_001054284.1 GI:115447938 GeneID:4330328 |
| Length |
7968 bp |
| Definition |
Oryza sativa Japonica Group Os02g0682200, 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 2:28762840..28770807 |
| Sequence Coding Region |
28762972..28763153,28765912..28765990,28767927..28767988,28768220..28768319,28769648..28769689 |
| Expression | |
| Genome Context |
<gbrowseImage1> name=NC_008395:28762840..28770807 source=RiceChromosome02 preset=GeneLocation </gbrowseImage1> |
| Gene Structure |
<gbrowseImage2> name=NC_008395:28762840..28770807 source=RiceChromosome02 preset=GeneLocation </gbrowseImage2> |
| Coding Sequence |
<cdnaseq>atggggaggggaagagttgagctgaagcgcatcgagaacaagatcaacaggcaggtcaccttctccaagcgccgcaacggcctcctcaagaaggcctacgagctgtccgttctctgcgacgccgaggtcgcgctcatcatcttctccagccgcggcaagctctacgagttcggcagcgccggcataacaaagactttagaaaggtaccaacattgttgctacaatgctcaagattccaacaatgcactttctgaaacccagagttggtaccatgaaatgtcaaagttgaaagcaaaatttgaagctttgcagcgcactcaaaggcacttgcttggggaggatcttggaccactcagcgtcaaagaattgcagcagctggagaaacagcttgaatgtgcactatcacaggcgagacagagaaagacgcaactgatgatggaacaagtggaggaacttcgcagaaaggagcgtcagctgggtgaaattaataggcaactcaagcacaagctcgaggttgaaggttccaccagcaactacagagccatgcagcaagcctcctgggctcagggcgccgtggtggagaatggcgccgcatacgtgcagccgccgccacactccgcggccatggactctgaacccaccttgcaaattgggtatcctcatcaatttgtgcctgctgaagcaaacactattcagaggagcactgcccctgcaggtgcagagaacaacttcatgctgggatgggttctttga</cdnaseq> |
| Protein Sequence |
<aaseq>MGRGRVELKRIENKINRQVTFSKRRNGLLKKAYELSVLCDAEVA LIIFSSRGKLYEFGSAGITKTLERYQHCCYNAQDSNNALSETQSWYHEMSKLKAKFEA LQRTQRHLLGEDLGPLSVKELQQLEKQLECALSQARQRKTQLMMEQVEELRRKERQLG EINRQLKHKLEVEGSTSNYRAMQQASWAQGAVVENGAAYVQPPPHSAAMDSEPTLQIG YPHQFVPAEANTIQRSTAPAGAENNFMLGWVL</aaseq> |
| Gene Sequence |
<dnaseqindica>133..314#3073..3151#5088..5149#5381..5480#6809..6850#7160..7201#7299..7444#7621..7720#atattctcgtcatcattggaggctttagcaagcaagaagagaggcagtggtggtggtggtggaggaggagctagctagcctgtgcttgctgatcggtgctgagctgaggaatcgttcgatcgatcgggcgagatggggaggggaagagttgagctgaagcgcatcgagaacaagatcaacaggcaggtcaccttctccaagcgccgcaacggcctcctcaagaaggcctacgagctgtccgttctctgcgacgccgaggtcgcgctcatcatcttctccagccgcggcaagctctacgagttcggcagcgccgggtataattaatacagacacaacaacacacacaaccaacaaaccagcatcaatttgaacctgcagatctgctgttttctctgatcaattgcttctttttttttgttcttttttgtttcttttatctgctgcaacggcgtcctgctcctctggggtttctcgttttctttttcatttatttttagcaggtgccaagtagccgagctactatacttacctggccatgttaattattttattccgtctgtctgtgtgtgtctgtgcatactactatagggacatggcgcggtgttcttataaaccgggaggccggatccctaactagcatgggaggatatcttttcagcggatctatacaaaccctactcctgctgacctctttcttccagtttctccgggtcttccttggattattattgcccatcttccgggttgtgcgtgtgtcagagacagctcgaacgataaatttctcaaaaccagtactagagagggtgtgttgtgtgtgagaactgagtggagagttagcatgaaggctgcaaactagaaaggaaggtatgttctttcctttttgatccatcaggggagccccttctggtattaagatctttccggcacattgattttcatactttgtgatgaccctggaagaatcggcgtagcagcgtagcaccgctccattttggtcttaccctcacctccccatgctatgaactgatcaatttcattgttcttcatcacccttctcctagctttccacttccttcggatctcatgccatgtttctcagcatgaatcaaatttaattcgtgttttctacttccatatatactggaagaaatttaattagatctatttttgctcgggaggtcttcatactttgagttctgatgccatcaccttatttcccccccccccttctcttgttctatcttcttcctcatcttggcttgatcattttgatctgtcagttatagcatgatgcattctcaatttgactgtatgtaagttcaaccggaaatatgttgaatggattttctatatatcaacacttgatgtcaggcctgcatctgtttcgcttgtggtggtgtggccaaaattgtctatatttgatctttgctcttctttctcctcatttcatgacgattcctactacggcttaaaccattctttattctttactaatcatggatgttgcttgactcctagttgtttcgtactagctcaacttggagatcttttcattatttgcctagttggtgggtacgtttgtgacagatctaaaatggtgcacgaaaagttttacttattatgaaaaaagggagcttaacagggtaatttctctatttattcgtgatgacattttttccttgataagggggattttttataatctgcactcacatgtttatatgtaaaatctagctcttttgttttgtttttggcatatttcccgctaagtatagagtttatgtggataacattataacttttcaagatccaatccacatctttgattgtgaaaatcatacaatagggaaaatcaactgaagggttaattagatgctatatgcatatatatatatatgtgcgcgcgcgcgcgcctgaatttaactatgtatgcatccaactgtttcattgaaaaagatttgatatttttcagtctattctttttcgagtatatatttaatatgtttcaatctgttttgaccattataagataaagcctatattcaccaggcatttgagatgatcttttcatgcatgaaaaagctgttgttatcacttcaactaaccagacgatctaacatgtatttgtataagaaacagaccttgatttccttctgtaaaatcatgcatgtgttcgttttgaattggagtcggcgcgcctgtgttttgaccgtcaggaaagtcttttttttccctgaatagtcaagggtctatacttcttgaagcaattgggacactaatcaattattgtttatacctcggaccatcttttccttcttcacaccactaatcagtttatgccttggaccattaattgtgttgttcacaagcttcttgtttatggtttacaaagcattcgcctagatttgtgtgtgtctctacacatcgatcacttttaaatacttgtcgctttcagttattcttttaacgtttggttatttatcttatttaaaaaaattatcgtattattatttattttgtttgtgatttactttattatcaaaagtatttcaaatatgacttatctttttttataagtgcactaatttttcaaataagatgaatggtcaaatgttacaagaaaaagttaaagcaaccactaatttagggcggaggtagtaaaacctagttattgtaaccaataattttatcaatctataaatgcaacacaaagtcacttcgtgatatctcacacaaagccacttcaacgatgaaagctgactgcatgttttatcaaaacacatgtgatcagtttgttggatgaaaaaaattatctatgtcataaatcaagagttataatataagcttctggctctacaagtaacatttctatgttttttttttacgttcttacatactatgttttgccaaaaaaaacatgatcattttgttggacgaaaagaaatagtaaatatagagtgacctttgatatcattataatataagcttctgcctctataaataacatctatgcactttttacgtcgtagtaatttgatatatgagaaatttacatataacatttttgtgcagcataacaaagactttagaaaggtaccaacattgttgctacaatgctcaagattccaacaatgcactttctgaaacccaggtatatatatctgcatgaactggtcatgaatttctgctgttggttttggtttcaaaatgggtcttgtttttttactatatatatttttgtatgaatatgcaattatcaatgtcctgacattgaaattagctacagtataaacctagctaggtattttcatcgtattgtgagattacattcaataaaaagtacacagattagcataactgtgttaatttgatgatgtatcccaaagctaatttgcagtgacttaaaatattttacttgacacagctactaaatcggatgttcttttcgtaaaagcattctaaagaatggcaaagtttagaagaattaaactagtagaatttcaacaccggcatgcattaaccatattttatgtaataaatgaagtttttattgacatgtcaaaggaggacaacaaagacaatcccttcttcctatatagttggtacccactacaagcattaacactataaagaagcatccaggttaagccacatcatcgataatcaatagccgtcggatcaaatgcatctttgtttgtttaactgtgcatgccttaagtaaggaaactgccatgggtaattaggcacatcaatggatgacccacttaagtgctcctggtcatgcattacatgcatcccccatattaagccactgctatatcccttaaccatctaccactcaaatgccaactttacactttattattttagaatgtttacttttgatatttcaattcttcaattctgtttgtaagcacatatttacaaagttgtttatcatcaccataaaatcccgtagcaacgcgcggggtatcaaactagttgtttgttataattataccatattacaatgcaagatcgtgctgtttacggcgtatatgtattcagaaatgttgcacctagtataggtttttaccagcatagaatatacaaatagctagtctaaatgactttttgtgcccctagctccctagtgtaaccttacatgaagtattccctgcatcgaatatgaagtatatattccctgcatcgacgaatatacaaatatactcctagctaggctaaaatacagccaccagtatgaagtaaattagtcgatgtagttcaatatttaaatatagatggtgattgaatgtacaacaatagtgcacatcccaaaaaaataagggtgtacctctgtgaccagatagtactccctcagtcagggtacgtccagattcattggactaggatatgtcacatccagtactagggccctgtttagattccaatttttttttcaaacttttaacttttccgtcacatcgaactttcctacatacaaacttccaacttttccgtcacatcgttccaatatcttcaaacttccaattttggcgtggaactaaacacagcctaggttggtttttcgtgggacggagggagtactctttatggtgattctaaatttcagtcaatcaattagagtacgtcctcataacatttcaaacaaaaacatagatgcccttgtgcataatttcaaaagtcatgagatcaaattgaaattcttgagaacttaccaaccgcaaaatatctaaggagttatgtcacttggttatatttatatcattgacatcctgcaacttatttgcccaataatcagtatatatagtttgctagctgtatcattaatagcatgtttcacaaaattttaaaaaaagaataagcccaacgtatatgtacaaggaggccatgtgacatatttagttaaaattcacaaacgacttttatcaagtgtttaaagaaaccgcagaaagttaatttgctctgtgtaacactaatattcagtgtatgattcgccaaacacacagttccttagtcgttagaactagctgataaatatttttgtgaactgaactaatggtttttcttttcctctgatcctgaagagttggtaccatgaaatgtcaaagttgaaagcaaaatttgaagctttgcagcgcactcaaaggtatttcactatgatctctccaagaagcataactcctgcaaatacacaatatatttttctataacatgcatgcaagtgataatgttgtgttaagggaaagagggaagaagcagcccataacgtgcatttacacacattattctgtaatatagctgctgcgaaactttatgtgtcatgcaatttaccttaatatttacattatgctctttgggttttgcttgattcttaaaggcacttgcttggggaggatcttggaccactcagcgtcaaagaattgcagcagctggagaaacagcttgaatgtgcactatcacaggcgagacagagaaaggtttatggcattctgcagtcctttgtttggaaccaaaatacttctgtttctagcctaccctggttcgcttgttatttgtccactgatttggatataggtgcaatacgtgagaagcaataaaatatacagtatgtctttagtttgtaggtaaagttatatatatttataaatagacaggaggtgtacgctagctatggaatatccccttgctaaagtttatataaagagcacctaactaatttgtttttgttcatggaagtgaacataataactgggaatgcttatcctacattatctaaagagaattgcataaaattgtttcaatctctagctaatgcatggtggtggtttggtagaaagccaagacatatttcacttagaatattgataccttattttatggtaaaggtcaactgatgatatttttaaagaagtgtgaaagctactatgcagcataagtaatccctttgtttcataaatttgccctaagtcattatctttaaccatcaatttctggaaatttgtgtagtttaacaaaatgtgaactgtacattctgtaaggatttttcatgttgtgtatctaacaacataacccttgtggtgttaaactatagtatcatttttttagaaactaatggtcaaaaatatatataagtgtttgaattaggacaaacgtagaatgacaagtaatttgaagcaactgggcgtagcatgtatcttgataaattcaccctattctaggcacgaaggtgatgcatacagtggcactaaatttcatataaaagactatctaagtatagaatagaaatatagaatggctagcacgcatgccctttttctttatatggatacatgtgtagtgacagggccgagcaactgcaacattaatctaaactgtcaatttcagatatactactacttatggctgcttgtttaggctaattaataattatatgtttactcttttcaaaataaaacacttcaaagctgcatgacaatcccgtcaacaaggatagtaatgacaatgagtagctgatgaaataatatggcttcaattctggagtttcaggaaaatttagctgctaaaaaaagaataagtgaataacccaaagaaaatagaactttgaaggatagaggtagagagattaaatatacactagtattcattttgtggtgcgtcgtacatgcttcaaaatctcccaaggaccataaaagatcccaagaaatagctaggtagaacacatgaaagttcagaaactggatataatctacacttcattatattactgtcaactcaatatgactgtgcttgaatggtttttgtgcagacgcaactgatgatggaacaagtggaggaacttcgcagaaaggtacattatcaatccaaagtttctcaagcatacatacagtatcagcattgccatgggcgggtgacttcaggagtgctagctactagtgataatctaaattaaaccacgaaatgacttggctagctttgacaatgcatctatattgccagcaaggctgctagggtataccgcatgcaagttaattagggtagatcgtgtagcctttgactgtataactaaagaaatggtagcttcgttcttgcgagagatttctttcatgagagttgttacatattatactatctccaatatatttttcttgtgccacaggagcgtcagctgggtgaaattaataggcaactcaagcacaaggttcttattcactcggaaatctgttatgccaatgcggtgcacatataattatttattgataattttcattcatatattctcatatccaatgctgcagctcgaggttgaaggttccaccagcaactacagagccatgcagcaagcctcctgggctcagggcgccgtggtggagaatggcgccgcatacgtgcagccgccgccacactccgcggccatggactctgaacccaccttgcaaattgggtaagattaatcaagaaaagccaagaccagaaatgcatatacttataacttctagctcaaatgcatacagctcgatcacagcatccgaactagtagaactaatgaaagattctcatcaaactgactgtgtatatcttgcttccattatattatctgaaaaacgattatgttactaggtatcctcatcaatttgtgcctgctgaagcaaacactattcagaggagcactgcccctgcaggtgcagagaacaacttcatgctgggatgggttctttgagctaagcagccatcgatcagctgtcagaagttggagctaataataaaagggatgtggagtgggctacatgtatctcggatctctctgcgagccacctaatggtcttgcgtggccctttaatctgtatgtttttgtgtgtaagctactgctagctgtttgcaccttctgcgtccgtggttgtgtttccgtgctacctttttatgttttgatttggatcttgtttgaaaataatcttaccagctttgggt</dnaseqindica> 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| External Link(s) |
- ↑ 1.0 1.1 1.2 1.3 1.4 Cite error: Invalid
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<ref>tag; no text was provided for refs namedref2 - ↑ 3.0 3.1 3.2 Cite error: Invalid
<ref>tag; no text was provided for refs namedref3 - ↑ 4.0 4.1 Cite error: Invalid
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