Difference between revisions of "Os02g0731200"
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==Annotated Information== | ==Annotated Information== | ||
Revision as of 12:31, 27 May 2014
The rice MADS57 gene plays a important role in controlling tillering.
Contents
Annotated Information
Function
Transcription factors of the MADS-domain family(named for yeast MCM1, plant AGAMOUS and DEFICIENS, and mammal Serum Response Factor) are highly conserved among fungi, animals and plants. In plants, MADS-box family are key regulators of flowering, floral organ identity and development, embryogenesis and meristem differentiation. In rice, most genes of MADS-box family are involved in reproductive growth, whereas AGL17-like clade genes may have a unique function in vegetative development.
OsMADS57 is one of AGL17-like clade genes. This gene play a important role in the differentiation of axillary buds. The osmads57-1 mutant has increased number of tillers. D14 that functions in strigolactone(SL) sigalling to control tillering is a direct target gene of OsMADS57. OsMADS57 is negatively regulated by OsmiR444a, and OsMADS57 subsequently repress expression of its target genes, thereby affecting tillering. OsMADS57 could interacted directly with OsTB1, and this interaction could partially the relieve the inhibitory effect of OsMADS57 on D14 transcription [1].
In a word, in rice, miR444a, MADS57, D14 and TB1 form a regulatory network to control tillering.
Expression
OsMADS57 expression is higher during tillering and stem-elongation stages than other stages in rice. It is highly expressed in leaf tissues especially sheaths and leaves, and weakly expressed in other organs.The expression levels of OsMADS57 is slightly induced by nitrate [2]. RNA in situ hybridization assays reveals that OsMADS57 is expressed in shoot apical meristems and axillary buds. This suggests that OsMADS57 is involved in the outgrowth of axillary buds[1]. OsMADS57 is repressed by GA3.
Evolution
This gene shows 56% identity to AGL17 in A.thaliana. This gene shows 63% identity to OsMADS27 and 65% identity to OsMADS61[2].
You can also add sub-section(s) at will.
Labs working on this gene
- The Key Laboratory of Plant Molecular Physiology, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China.
- Université Montpellier 2, Bat 15, CC 002, Place Eugène Bataillon, 34095 Montpellier Cedex 5, France
- CIRAD, UMR AGAP, Avenue Agropolis TA A-108/03, 34398 Montpellier Cedex 5, France
- University of Science and Technology of Hanoi, LMI RICE, Agricultural Genetics Institute, Ha Noi, Viet Nam
- IRD, UMR DIADE, Avenue Agropolis, 34398 Montpellier Cedex 5, France
References
- ↑ 1.0 1.1 Guo S, Xu Y, Liu,H, et al. The interaction between OsMADS57 and OsTB1 modulates rice tillering via DWARF14. Nat. Commun. 4:1566 doi: 10.1038/ncomms2542 (2013).
- ↑ 2.0 2.1 Puig J, Meynard D, Khong GN, et al. Analysis of the expression of the AGL17-like clade of MADS-box transcription factors in rice. Gene Expression Patterns. 13: 160-170. (2013).
Structured Information
| Gene Name |
Os02g0731200 |
|---|---|
| Description |
Transcription factor MADS57 |
| Version |
NM_001054553.1 GI:115448476 GeneID:4330621 |
| Length |
5472 bp |
| Definition |
Oryza sativa Japonica Group Os02g0731200, 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 2:31343861..31349332 |
| Sequence Coding Region |
31343861..31344042,31345205..31345280,31348037..31348098,31348534..31348633,31348722..31348763 |
| Expression | |
| Genome Context |
<gbrowseImage1> name=NC_008395:31343861..31349332 source=RiceChromosome02 preset=GeneLocation </gbrowseImage1> |
| Gene Structure |
<gbrowseImage2> name=NC_008395:31343861..31349332 source=RiceChromosome02 preset=GeneLocation </gbrowseImage2> |
| Coding Sequence |
<cdnaseq>atggggagggggaagatagtgataaggaggatagacaactcgacgagcaggcaggtgacgttctcgaagcgtcggaacgggcttctgaagaaggcgaaggagctatccatcctctgcgatgcggaggtcggccttgtcgtcttctccagcaccggcaggctctatgagttctccagcaccaacatgaaaactgtgatagaccggtataccaacgcaaaggaggagctacttggcgggaatgcaacttcagaaattaagatttggcagagggaggcagcaagcttgaggcagcaactgcacaacttgcaagaaagccacaagcaactgatgggtgaggagctttctggcctaggtgttagagacctacaaggtttagagaataggcttgaaataagtctacgtaatatcagaatgagaaaggacaatcttttgaaaagtgaaatcgaggagttacatgtgaagggaagcctaattcaccaggaaaacatcgaactttctagaagcctaaatgtcatgtcgcaacaaaaattggaactgtataacaagcttcaggcctgtgaacagagaggtgccacagatgcaaatgaaagttccagcactccatacagctttcgtatcatacaaaatgctaatatgcctcctagtcttgaattgagccaatcacagcaaagagaaggggagtgcagcaaaacagctgctccagaactgggacttcatctgccttaa</cdnaseq> |
| Protein Sequence |
<aaseq>MGRGKIVIRRIDNSTSRQVTFSKRRNGLLKKAKELSILCDAEVG LVVFSSTGRLYEFSSTNMKTVIDRYTNAKEELLGGNATSEIKIWQREAASLRQQLHNL QESHKQLMGEELSGLGVRDLQGLENRLEISLRNIRMRKDNLLKSEIEELHVKGSLIHQ ENIELSRSLNVMSQQKLELYNKLQACEQRGATDANESSSTPYSFRIIQNANMPPSLEL SQSQQREGECSKTAAPELGLHLP</aaseq> |
| Gene Sequence |
<dnaseqindica>1..182#1345..1420#4177..4238#4674..4773#4862..4903#5003..5086#5170..5333#5421..5436#atggggagggggaagatagtgataaggaggatagacaactcgacgagcaggcaggtgacgttctcgaagcgtcggaacgggcttctgaagaaggcgaaggagctatccatcctctgcgatgcggaggtcggccttgtcgtcttctccagcaccggcaggctctatgagttctccagcaccaagtaagcaatccatcggatttataagtatatatgtatatttcccctaatttaattgtagtttccttagttgttctcggatctgctttgaagtctccttttgttcttgatttatttttgaaagaactctccttgttctttcacttgataggtatatatatctggttctggtaatctttcatccttttaagtttgagacgtttttatcaacaaaatgacccaagtatatgtctgatcagcttttcatcctttcaagttttgaggcatttttatcaacacaaagacccaagctaagcatatatgtatgcatggctattagtcattcttgtgatcttttagtaagctatagctacatagcaatcaatatgtatgcatatagtgtcagtttaattgtgatattttccctccgttctcgaaaacaattgacacttggcactactaagttttgatcactccttttctttcaaaaaatttataaacacttaaaatatgttatattattaaagtatgtagcgtagaaaatataaccatacaacttccattcatcatcatataattatttaaaagtaatttgtgatcaaagtaacagccgtagtactcaaccgtgtcaaccaagtcagttattcaagaactgagggagtaaatattgaatgcaaaattaatatgaaaattttttcttctgctatatatcctttttcagcgtacgtatgttcactcttctgaattgattacaacttagaaactcaaggtggatatatagcgaagaaatattaacatgttaacgtttaataaaattagatgaatttgttctctttttttttgtttcaagtgatgttgatttgtaccaaaatcagatggcatgtgtcacggtcaaacttattaattaaagagatttagcatgcaatcttgacaatcaaatctttacagagaatggcatttctatatatgaagccttacatgcatgtgcataaatatttttttggagctagagtgtggtagctttacgtgccactgcatcaaagacagatagatatttccagatttttaaatatctatttatctgtgtgttttgtctaagtaaattgaaggttttttaatataagctgtatgttttagctaaaaatgaaacaactgactcaaccatttggctttacttgcatgctagcatgaaaactgtgatagaccggtataccaacgcaaaggaggagctacttggcgggaatgcaacttcagaaattaaggtatggttaagaagataagctatcttgttaattgttactatacgagaacacgcatgtgatcttgatctgacgaccaatgacagcttttagtctctttaagattgattttataaataagatgctgattggccaactagttaaagtgctgaatgcactgtgttctcatgcatgcatgcagctgggcatggtgcactgctcacgctgaagaatatagtgagaaattatttctgaacccctctggctgatgcaggcatgcagcaggggttgttactgaattacatatacattgtttactgtatatatagacgcaaacctttttataaaaaaaattcatgagaattttagatgttatcatttctaggagttttttttttctatatagtcctttttaaatcaaaataatgaattatatgaaatcttacaaaattcctatggaatgtctttttctcgtataagttttggaggaattcttgtgtttttccaatggcataatcaaacggtcatttatatatttttttcatgtgttttgtaatcatctgttttacacttagacttgcatttctgtgattcaaagcgccctcaacattttcctatcttctccttccagatgccatatataaaaaactgatgcgtgttgtgcctaatgctgatagtaccaactcctataactggagaactccagcaaactcccctcaaaggagctgaatatgcgcacaatatatgcgcacaatccgatagtacagaatcttctgaacttgaggttggcaagagctgcaagccacgcatgggccaaagggggcagattgctgcaggttcctagattaggacactgggcccaaccataatctaactaagcccctgcaaactcctcaattatcaagcgtgttctggagcaggaagaagcactagtcgatctccctcggttaatgcatcaacagtaatgcataggacgaaagtaaccgagcaattcgtaatctcaacataagcaaaaacaagcatactttaaacaagataaaacagtgtacaatacaagagcttgcagagtattgtataggcaggagaagcatttgatggtagtgcaatataatgctgtacaagttgcttgaaaataacatgctcaagtcttaatttctcagtaattaactttcttcatagtggccacactggtactcactcccgttactccactacttagcttctcacgttttcatgaaccacacacttcatcagcatctgagggcatcagggcaggccatcctcaagtttgcaaatgatggaaaatccatgcacatcctgacatcgaacgttcagccaaagaagcgtatgaagatcataaggcgattcgcgaaaaaaaaaaggggcagattataggtgcatacgtaccttttggcacgataaggacttcgctgattgcattggtccaagatacagcgcagtaatttcgctgcatcttatgacaaccacaaactcagaaaacaacacccaacacatactgaacctgtctgagtatctaacatccatatttcagaggggggcaaacttactcggtatatttatgcattatgtggcaacttggaggttaaaaacagttggagactcgaaaggaaatctaaaaactgttagaaaatggttttctaaataacagatgccaatagcgtaagcagaatggctgtaaagcaacaaagccagaacaacaaggatacatagcaaaccaagtgatattaacagttaaaagtaccgttgttgctcaattgaccagtaaactcgacagacaattgtaaacataaaaaatatataccttaagaaacaaaccgtctacgcataaaaatttcactgctgctgatggtatgatattcatgttactgaatcatgggggaatatgaagtgatattttcaggagtactagcttatgtactcctttatgaatttcatttccatgtcatcatttatttaatgtttattctttctatatgttaaggaaaaggtcaaaacaagcatccacacctacatggtctcaaagaactgtagtacatagcatgcccccacagagatccttctctttccctctattttgggttcaaaaatgccatcgctcatgaaaaatacaaaaagataccaagcaccaaaaagggataaatctgatttgccctgagtttacattggagactgtactcatcattactacagtataactgttatatcaacaaaatggttgaaaacaaagtcctgattaaagatacaattatacataagtacctcctatgtctatgcgtaagttttgtgccaacaaagtgatcagcagttatgcattatgcactccaatggccagtccataatacagatcagcaaggttatgtctagattttttttttccttagaacacagggaagttcagtgtgcaaatttttcagctaggagtttaggaccaaaggtttaaaagtctaatgatgatgaaacaaccaagctactggagcactagacaaaaacaagtgtcagctgaattgacaagttggtccaaattaatctagaataataagtactgaagactgaacaactataacactctgatgcacttgtgctacgcatatcccacatcttgagatattggaactatgtgaatcagatagcattttacctcatctcaaatgcatatgtgattgagttgtgtgtgatttttggcaacatactgcgtttctagattaatcatatgtatatagttcaaggaaactgacatgattttctttttttgctgatagatttggcagagggaggcagcaagcttgaggcagcaactgcacaacttgcaagaaagccacaagtaatcatctaatgattctgcaatggaaattgatcatacattaatataaaattcatcaagaaagtagtttatcaacaatttaaatgccacatggaattgtataagaaccaccaaaagatgcttaaatacttgaaggaaaactttaggaatataatcagaatattcactgtcagatttatcaagaaagtagtttatcaacaatttaaatgtcacatggaattgtataagaaccaccaaaagatgcttaaatacttgaaggaaaattttaggaatataattagaatattcactgtcagatttattttaatagtattcctaagtttctttaacaaataagtttggcctgtctcaaaccatgtcgacagaagagagctgtagtggcatatagattgggacttcttgaactgctgagattactcttttgcatggttgtaggcaactgatgggtgaggagctttctggcctaggtgttagagacctacaaggtttagagaataggcttgaaataagtctacgtaatatcagaatgagaaaggttatattccttgtgctcttcaatatccgtatttttgcttttgatttgctataggctaatgatgatacagtaaacacctatcaaacaggacaatcttttgaaaagtgaaatcgaggagttacatgtgaa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