Difference between revisions of "Os12g0618600"

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(Created page with "{{JaponicaGene| GeneName = Os12g0618600| Description = Similar to Transcriptional activator HAP2| Version = NM_001073825.1 GI:115489611 GeneID:4352811| Length = 4312 bp| ...")
 
 
(One intermediate revision by one other user not shown)
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{{JaponicaGene|
+
The rice '''''Os12g0618600''''' was reported as '''''OsNF-YA10''''' in 2016 <ref name="ref1" /> by researchers from China.
GeneName = Os12g0618600|
+
==Annotated Information==
Description = Similar to Transcriptional activator HAP2|
+
===Gene Symbol===
Version = NM_001073825.1 GI:115489611 GeneID:4352811|
+
*'''''Os12g0618600''''' '''''<=>''''' '''''OsNF-YA10'''''
Length = 4312 bp|
+
===Function===
Definition = Oryza sativa Japonica Group Os12g0618600, complete gene.|
+
* Nuclear factor γ (NF-γ) is a ubiquitous transcription factor that regulates important physiological and developmental processes.<ref name="ref1" />
Source = Oryza sativa Japonica Group
+
* In plants, the roles of NF-γ were identified in regulation of embryogenesis, flowering time, chloroplast biogenesis, seed germination and stress tolerance.<ref name="ref1" /> <ref name="ref2" />
 +
===Expression===
 +
* Expression profile analysis covering the whole life cycle revealed that transcripts of OsNF-γ differentially accumulated in a tissue-specific preferential or constitutive manner.<ref name="ref1" />
 +
* Analysis of expression correlation and Gene Ontology annotation suggested that OsNF-Y genes were co-expressed with genes that participated in stress, accumulation of seed storage reserves, and plant development.
 +
* Co-expression analysis also revealed that OsNF-Y genes might interact with each other, suggesting that NF-γ subunits formed complexes that take part in transcriptional regulation.<ref name="ref1" />
 +
===Evolution===
 +
* NF-γ is a heterotrimeric complex composed of three subunits: NF-γA (CBF-B/HAP2), NF-γB (CBF-A/HAP3), and NF-γC
 +
(CBF-C/HAP5).
 +
* NF-γ complexes are CCAAT-specific transcription factors that bind to CCAAT sites in DNA to control the expression of target genes<ref name="ref1" /> .
 +
You can also add sub-section(s) at will.
 +
==Labs working on this gene==
 +
* College of Life Science and Technology, Huazhong Agricultural University, Wuhan, 430070, China
 +
* College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, 430070, China
 +
==References==
 +
<references>
 +
* <ref name="ref1">
 +
Yang, W., Lu, Z., Xiong, Y., & Yao, J. (2016). Genome-wide identification and co-expression network analysis of the OsNF-γ gene family in rice. The Crop Journal.
 +
</ref>
 +
* <ref name="ref2">
 +
Laloum T, De Mita S, Gamas P, Baudin M, Niebel A. CCAAT-box binding
 +
transcription factors in plants: Y so many? Trends Plant Sci. 2013
 +
Mar;18(3):157-66. doi: 10.1016/j.tplants.2012.07.004. Epub 2012 Aug 30. Review.
 +
Erratum in: Trends Plant Sci. 2013 Oct;18(10):594-5. PubMed PMID: 22939172.
 +
</ref>
 +
</references>
  
  ORGANISM  Oryza sativa Japonica Group
+
==Structured Information==
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
+
    [[Category:Genes]][[Category:Oryza Sativa Japonica Group]][[Category:Japonica Chromosome 12]]
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP
 
            clade; Ehrhartoideae; Oryzeae; Oryza.
 
|
 
Chromosome = [[:category:Japonica Chromosome 12|Chromosome 12]]|
 
AP = Chromosome 12:26573343..26577654|
 
CDS = 26573916..26574299,26574552..26574695,26575236..26575304,26575428..26575528,26576650..26576887<br>|
 
GCID = <gbrowseImage1>
 
name=NC_008405:26573343..26577654
 
source=RiceChromosome12
 
preset=GeneLocation
 
</gbrowseImage1>|
 
GSID = <gbrowseImage2>
 
name=NC_008405:26573343..26577654
 
source=RiceChromosome12
 
preset=GeneLocation
 
</gbrowseImage2>|
 
CDNA = <cdnaseq>atgatgagcttcaacaagagccaagaaggatttgggcaggttgctgctgtggccaccctggcctccaatggaggaggctctctaccatggctgctgtacggcgagccactggggcaggggaagccggccatgtcgccggagggcgtggtgccgagagcacagactcctctggatcctcctcaggttccagccatggacaggggtgtccctgaaattctgaacttctccatggttccaggtaaaggagaaaaatgttctgagcactcaactactattgctctgcagtcaccatttgcagaatataatggctgttttgagctgggccttggtcaatctgtggttccctctaattatccttatgctgaccagcactatggcctactttctccttatggagtgagaccaacgcctagcgggcgaattcttattccaccaaatatgccagctgatgcaccaatttatgtgaatgcaaaacagtgttcagccatcattcgacgtcgccatgctcgtgccaaggcagagagggagaataggctggtcaaagctagaaaaccatatcttcacgaatcacgccatcttcatgcaatgcgtcgtgcaagaggctctggtgggcgcttcctcaacacgaagaaagagaccaatgggaaaaccactggtggaggcaggaaggtgatggacatcatcatcccgcctctgtgccccgccgcatctcccagctcggagcagtgcaacccaagcagcgtttccagcctgtccgggtcagaggtgtcgagcatatatgaacacgaagacatggaccacttccatagctttgatcatctccggacacacttcttcaccccgctcccgagcctcatggatgtcgagcacggggctggtaaccccttcaagtggacagcagcctctgatggctgctgtgacctcctcaaagcatga</cdnaseq>|
 
AA = <aaseq>MMSFNKSQEGFGQVAAVATLASNGGGSLPWLLYGEPLGQGKPAM                    SPEGVVPRAQTPLDPPQVPAMDRGVPEILNFSMVPGKGEKCSEHSTTIALQSPFAEYN                    GCFELGLGQSVVPSNYPYADQHYGLLSPYGVRPTPSGRILIPPNMPADAPIYVNAKQC                    SAIIRRRHARAKAERENRLVKARKPYLHESRHLHAMRRARGSGGRFLNTKKETNGKTT                    GGGRKVMDIIIPPLCPAASPSSEQCNPSSVSSLSGSEVSSIYEHEDMDHFHSFDHLRT                    HFFTPLPSLMDVEHGAGNPFKWTAASDGCCDLLKA</aaseq>|
 
DNA = <dnaseqindica>3356..3739#2960..3103#2351..2419#2127..2227#768..1005#gctgctgctgaaagcctgatgaaatgtgagtgggccttcttgtttctttctttgctatactccacactcccccgtgcatgccttggatcctttcggtttggtttcttgctgctcagtgggagattcttgcatctgctgcacatgcacctgctggctgtggctgtggcctatgcttactagtagtagtagtagtagctcaccttgttattgagaagttcttggttttgtgactcctgtgggttattgaagttcttggtttcagttgggaaggtgaaaagaggatttctggattcttgggaaggtttgatcttgcatttattcacccaaggttgtttgttcatgtggtttggggggtctttttctttttgttactaataatttacccaagtgtgagactttgtggctcttttgatgcatatgtttgtatggtgattggccatgggttctttggtaaagttggttcttggtctgcttcatctgccttgttactatcttccttttgctaatcttgttctgcttagattgtcttttctcttggggcatcctttgcattttggctaatcttgtcatctccttttgaagtttcacctctcttcctgcatctcactacctgatttggtgcttagtctaatccaattcctttttggttcttgtgattgcagtgggtgattaggtgcttaacataatcccaatcctagaaaaatacattcggagtggttgctgctgagctcaaccaatcaagcttgttggggaggcaagcagtcacaatgatgagcttcaacaagagccaagaaggatttgggcaggttgctgctgtggccaccctggcctccaatggaggaggctctctaccatggctgctgtacggcgagccactggggcaggggaagccggccatgtcgccggagggcgtggtgccgagagcacagactcctctggatcctcctcaggttccagccatggacaggggtgtccctgaaattctgaacttctccatggttccaggtgaggctgcctgttcttggtttcatggtttgtgagtgaaatggacttggttgatgtatctgtggatggtaacagcaaagagttagggaattatgtgcaacatatgtgagtgacatagggttggattcaggttgcaaaaaaaagaaaaaaaaactaaatatctaaaatatctagttttggtataaagttggcactgatttgctgttatttctttgttgcttaaatgtgaaaatggatttgattgatgtctctgtgaatgttatagcaaaaagtaagtactaggcaattatatgcaacatatgtgagtgacatagggttggattcaggttgcaaaagtctagttttggtataaagttgccactggtttgcagttatttctttgttgcttgaatgtgaaaaggtttgatttttggatgagaggttaatccctgagccaagggtgtgtatctctgtaagcacaactagtaggcttattgccatgttatcattagatggttttttcggttgcaaaagtctatatagatatgcaagtccaaaagtaatattagcagaaaataattaatattacagatgaaagtattgccatgttatcattagatggttttttcggttttcacggaaaggctgctcgcatgtacttaggcaaatcgtgaaagtactacagtagggattaatactgtgtaacagtcatatatttggtttaggttagaaactgttgatgatttggttttgcagtaaaaaaaagatagtgtcaagcaacatgtgccagagaaatgctgatacttctgggttacaaaatttttttctttgatacaaggtgacatgacaccaaagcaacttcaacccttctacattaattatttaccgcacaatctagtatggctaatttggtccctctgaaacttataatacatcatagcctgataggtcaagatggcatgagtacaaggacccacaaatgtttaaattcttcttttgacattggttaccacataattgtgttggttagactagacaagaaccttgaatcatgcatgaacaatcttttgtttctgataataagagtacagaccgtcattgactgcttctgttttatgattggacatctaattgcttttcaggtaaaggagaaaaatgttctgagcactcaactactattgctctgcagtcaccatttgcagaatataatggctgttttgagctgggccttggtcaatctgtggtaagctttcccctctatttgtttatgttgacgcattgaataaagatcatcgaccttacagatgaacatgcccatttccgaatttccctagtgctgagttgagaaatggcttcaatgtttcaggttccctctaattatccttatgctgaccagcactatggcctactttctccttatggagtgagaccaacggtatgtttctgttgatctctgaggagtcatcttgagattttctctgactctgaagaaaacacagctaactgtagcaacactatcaccaaactaacacatatatagagcactttgatcaattgtgcccttgaattccacagtttgaacagtcttgtgcaacaattcttttgtttgctgcaaattggtttactgtttttgtatgtgttgggatttgtgaacattgattaagctcaccagtgctttaatcaatccaataaataaagaaaaaaatgctttagcatcttattcaccagtgcagaaagaacgggtaaataataggcaggtatggctaaagctttggtaataatagcaggcgcagtttcatgatgtttggacatacttgctgttgcgatttttttctccctcttggtagtccagcaaagatgtaaaacggactgttttttgtttcaagctgtagtttttcaactggcataatctattgaaagctctaaattatgcacgctaactaatatgttcctctattttctttgtggaatgcagcctagcgggcgaattcttattccaccaaatatgccagctgatgcaccaatttatgtgaatgcaaaacagtgttcagccatcattcgacgtcgccatgctcgtgccaaggcagagagggagaataggctggtcaaagctagaaaagtaagtctcaactttcaactgtcgatggattctttcagttttgcaattttgtacatatctttgtaagaacttatccttctttttaaaaattaccattggggtttcccatactgtattgggcaaaaaaaggaaaaggaaagaactatcaatgaatccaaaactgttgcctaagtgagatgttttgattccatttccactttatctcgcagaatttcttctcttctgcattcatgtgagttctctttgatgcagccatatcttcacgaatcacgccatcttcatgcaatgcgtcgtgcaagaggctctggtgggcgcttcctcaacacgaagaaagagaccaatgggaaaaccactggtggaggcaggaaggtgatggacatcatcatcccgcctctgtgccccgccgcatctcccagctcggagcagtgcaacccaagcagcgtttccagcctgtccgggtcagaggtgtcgagcatatatgaacacgaagacatggaccacttccatagctttgatcatctccggacacacttcttcaccccgctcccgagcctcatggatgtcgagcacggggctggtaaccccttcaagtggacagcagcctctgatggctgctgtgacctcctcaaagcatgactagaggggggatacaccgggcagccgaagctggcaaacatcagcagtttctgctggatacattgcccagctccaggtcagggattgtccctgctggtattggctgtctgtaggcaactcattcttggctgatcggttccgctcatcgcctacttgtcccggaaactccagcaccggtttctgggatcctgcggtgatcagaacaacccatcgcgtgtaaaaaaaaaaaaaaatcatctatgctatgctgttactgcttgctaccattatctgaactgctactactaggtagcaagcttaatctggcaaggtaaataaagtctggaactttgaactggttccagtggtgatgattgtggtgtgcttgtatcctgataactattgtgagtttgagacctggctttgttgatctactgaactactactgtagcactatgcttgaagtttgtgtgggcttggtttgcagtttgtattgttaaaaaaaactcaaatctagtgatgtattaagaccttgtttgtgtgtatcttgttaatgtggtatatctgcaagaaggtataatctgtttgggagtg</dnaseqindica>|
 
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001073825.1 RefSeq:Os12g0618600]|
 
}}
 
[[Category:Genes]]
 
[[Category:Japonica mRNA]]
 
[[Category:Oryza Sativa Japonica Group]]
 
[[Category:Japonica Genes]]
 
[[Category:Japonica Chromosome 12]]
 
[[Category:Chromosome 12]]
 

Latest revision as of 03:41, 31 March 2017

The rice Os12g0618600 was reported as OsNF-YA10 in 2016 [1] by researchers from China.

Annotated Information

Gene Symbol

  • Os12g0618600 <=> OsNF-YA10

Function

  • Nuclear factor γ (NF-γ) is a ubiquitous transcription factor that regulates important physiological and developmental processes.[1]
  • In plants, the roles of NF-γ were identified in regulation of embryogenesis, flowering time, chloroplast biogenesis, seed germination and stress tolerance.[1] [2]

Expression

  • Expression profile analysis covering the whole life cycle revealed that transcripts of OsNF-γ differentially accumulated in a tissue-specific preferential or constitutive manner.[1]
  • Analysis of expression correlation and Gene Ontology annotation suggested that OsNF-Y genes were co-expressed with genes that participated in stress, accumulation of seed storage reserves, and plant development.
  • Co-expression analysis also revealed that OsNF-Y genes might interact with each other, suggesting that NF-γ subunits formed complexes that take part in transcriptional regulation.[1]

Evolution

  • NF-γ is a heterotrimeric complex composed of three subunits: NF-γA (CBF-B/HAP2), NF-γB (CBF-A/HAP3), and NF-γC

(CBF-C/HAP5).

  • NF-γ complexes are CCAAT-specific transcription factors that bind to CCAAT sites in DNA to control the expression of target genes[1] .

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

Labs working on this gene

  • College of Life Science and Technology, Huazhong Agricultural University, Wuhan, 430070, China
  • College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, 430070, China

References

  1. 1.0 1.1 1.2 1.3 1.4 1.5 Yang, W., Lu, Z., Xiong, Y., & Yao, J. (2016). Genome-wide identification and co-expression network analysis of the OsNF-γ gene family in rice. The Crop Journal.
  2. Laloum T, De Mita S, Gamas P, Baudin M, Niebel A. CCAAT-box binding transcription factors in plants: Y so many? Trends Plant Sci. 2013 Mar;18(3):157-66. doi: 10.1016/j.tplants.2012.07.004. Epub 2012 Aug 30. Review. Erratum in: Trends Plant Sci. 2013 Oct;18(10):594-5. PubMed PMID: 22939172.

Structured Information