Difference between revisions of "Os06g0607700"

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(Created page with "{{JaponicaGene| GeneName = Os06g0607700| Description = ABC transporter related domain containing protein| Version = NM_001064568.1 GI:115468867 GeneID:4341486| Length = 61...")
 
(Annotated Information)
 
(7 intermediate revisions by 3 users not shown)
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{{JaponicaGene|
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The rice '''''Os06g0607700''''' was reported as '''''OsABCG15''''' in 2014 <ref name="ref1" /> by researchers from China.  
GeneName = Os06g0607700|
 
Description = ABC transporter related domain containing protein|
 
Version = NM_001064568.1 GI:115468867 GeneID:4341486|
 
Length = 6186 bp|
 
Definition = Oryza sativa Japonica Group Os06g0607700, complete gene.|
 
Source = Oryza sativa Japonica Group
 
  
  ORGANISM  Oryza sativa Japonica Group
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==Annotated Information==
            Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
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[[File:44-Os06g0607700.png|right|thumb|427px|'''Figure 1.''' ''The phenotype of osabcg15 mutant.<ref name="ref1" />.'']]
            Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP
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===Gene Symbol===
            clade; Ehrhartoideae; Oryzeae; Oryza.
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*'''''Os06g0607700''''' '''<=>''' '''''OsABCG15,ABCG15'''''
|
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===Function===
Chromosome = [[:category:Japonica Chromosome 6|Chromosome 6]]|
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* '''''OsABCG15''''' may play a key function in the processes related to sporopollenin biosynthesis or sporopollenin transfer from tapetal cells to anther locules.
AP = Chromosome 6:25052748..25058933|
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* '''''OsABCG15''''' plays a critical role in exine formation and pollen development, similar to the homologous gene of AtABCG26 in Arabidopsis.
CDS = 25052790..25052948,25053629..25053912,25054999..25055154,25055973..25056459,25056519..25056836<br>,25057428..25057820,25058407..25058676|
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===Function===
GCID = <gbrowseImage1>
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* The researchers generated a rice mutant library of a rice cultivar 02428 (O. sativa ssp. japonica) by 60 Co g‐ray irradiation (Y‐G Liu,unpubl. data, 2008). One of the mutants produced more tillers (Figure 1A), and exhibited collapsed anthers with smaller size and white color, and no pollen grains, thus leading to complete spikelet sterility (Figure 1B–D).  
name=NC_008399:25052748..25058933
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* Genetic analysis indicated that the male sterility of this mutant is sporophytic and is controlled by a single recessive locus, namely '''''OsABCG15''''' .
source=RiceChromosome06
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preset=GeneLocation
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===Expression===
</gbrowseImage1>|
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* Expression analysis showed that '''''OsABCG15''''' is expressed specifically in developmental anthers from stage 8 (meiosis II stage) to stage 10 (late microspore stage).
GSID = <gbrowseImage2>
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name=NC_008399:25052748..25058933
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You can also add sub-section(s) at will.
source=RiceChromosome06
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preset=GeneLocation
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==Labs working on this gene==
</gbrowseImage2>|
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* State Key Laboratory for Conservation and Utilization of Subtropical Agro‐bioresources, College of Life Sciences, South China Agricultural University, Guangzhou 510642, China
CDNA = <cdnaseq>atgatggagatcagcagcaatgaggagatgatggagatggccattgttgagcagctgcctccttcctctcatcatctcaatggtggcagtgttgaggttgacatggaggaggatcatgtgtggccaaccaaagatggccctctccctatattccttaagtttgagaatgtggagtacaaggtgaagctgactccaaagaacccactaacagctgcaagggtggcatttgcatctcacaagagcactgaggatcagggcagctgcaagcacatcctcaaggggataggaggcagtgttgaccctggtgagatcctggcactgatgggcccatctggcagtggcaagaccacgctgctcaagatacttggaggcaggctcagtggtggtgtcaagggccagatcacctacaatgacaccccctacagtccctgcctcaaaagaaggattggatttgtgacacaggacgacgtccttttccctcagttgacagtggaggagacccttgtgttcgctgccttcttgagactccccgctcgcatgtcaaagcagcagaagcgcgacagagttgacgccatcataactgagctaaatctagagaggtgccggcacaccaagatcggcggcgcgttcgtgcgcggcgtgtcgggcggcgagaggaagcggacgagcatcgggtacgagatcctcgtcgacccgtcgctgctgctcctcgacgagcccacctcgggcctcgactccacgtcggcggcgaagctcctcgtcgtgctccgccgcctcgccaggtcggcggcccgccggacggtgatcaccaccatccaccagccctccagccggatgttccacatgttcgacaagctgctgctcgtcgccgagggccacgccatctaccacggcggcgcccgcggctgcatgcgccacttcgccgccctcggcttctcccccggcatcgccatgaaccccgccgagttcctcctcgacctcgccaccggcaacctcgacggcatctcctcccccgcctccctcctcctcccctccgccgccgccgcctcgccggactcccccgagttcaggtcccacgtcatcaagtacttgcaggcgaggcacagggcggccggcgaggaggaggcggcggccgcggcggcgagggagggcggcggcggaggtggcgcggggagggatgaggcggcgaagcagctgagaatggcggtgaggatgaggaaggataggcggggcggcatcggctggctggagcagttcaccgtgctgtcgcggcgcacgttccgggagcgcgccgccgactacctcgacaagatgcgcctcgcccagtccgtcggcgtcgccctcctcctcggcctcctctggtggaagtcccagacctccaacgaggcccagctccgtgaccaagtggggttgatattctacatctgcatattctggacgtcgtcgtcgctgttcgggtcggtgtacgtgttcccgttcgagaagctgtacctggtgaaggagaggaaggcggacatgtacaggctgagcgcctactacgcgagcagcacggtgtgcgacgcggtgccgcacgtcgtgtacccggtgctcttcacggccatcctctacttcatggccgacctgcgccgcaccgtgccctgcttctgcctcaccctcctcgccaccctcctcatcgtcctcaccagccagggcaccggcgagctgctcggcgccgccatcctcagcgtcaagcgcgccggcgtcatggcctcgctcgtcctcatgctcttcctcctcaccggcggctactacgtccagcatataccgaagttcataaggtggctcaagtacgtgtcgttcatgcactacgggttcaacctgctgctgaaggcgcagtaccacggccacctgacctacaactgcggcagccgcggcggctgccagcggctgcagtcctcgccgtcgttcggcaccgtcgacctcgacggcggcatgcgcgaggtctggatcctcctcgccatggccgtcgcctaccgcctcctcgcctacctctgcctccgcaagcggatcagcctcatgcccttgtag</cdnaseq>|
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* Guangdong Provincial Key Laboratory of Protein Function and Regulation in Agricultural Organisms, College of Life Sciences, South China Agricultural University, Guangzhou 510642, China
AA = <aaseq>MMEISSNEEMMEMAIVEQLPPSSHHLNGGSVEVDMEEDHVWPTK                    DGPLPIFLKFENVEYKVKLTPKNPLTAARVAFASHKSTEDQGSCKHILKGIGGSVDPG                    EILALMGPSGSGKTTLLKILGGRLSGGVKGQITYNDTPYSPCLKRRIGFVTQDDVLFP                    QLTVEETLVFAAFLRLPARMSKQQKRDRVDAIITELNLERCRHTKIGGAFVRGVSGGE                    RKRTSIGYEILVDPSLLLLDEPTSGLDSTSAAKLLVVLRRLARSAARRTVITTIHQPS                    SRMFHMFDKLLLVAEGHAIYHGGARGCMRHFAALGFSPGIAMNPAEFLLDLATGNLDG                    ISSPASLLLPSAAAASPDSPEFRSHVIKYLQARHRAAGEEEAAAAAAREGGGGGGAGR                    DEAAKQLRMAVRMRKDRRGGIGWLEQFTVLSRRTFRERAADYLDKMRLAQSVGVALLL                    GLLWWKSQTSNEAQLRDQVGLIFYICIFWTSSSLFGSVYVFPFEKLYLVKERKADMYR                    LSAYYASSTVCDAVPHVVYPVLFTAILYFMADLRRTVPCFCLTLLATLLIVLTSQGTG                    ELLGAAILSVKRAGVMASLVLMLFLLTGGYYVQHIPKFIRWLKYVSFMHYGFNLLLKA                    QYHGHLTYNCGSRGGCQRLQSSPSFGTVDLDGGMREVWILLAMAVAYRLLAYLCLRKR                    ISLMPL</aaseq>|
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==References==
DNA = <dnaseqindica>43..201#882..1165#2252..2407#3226..3712#3772..4089#4681..5073#5660..5929#ctctgaacctgtcactctttttttctgtgtctcttggaggagatgatggagatcagcagcaatgaggagatgatggagatggccattgttgagcagctgcctccttcctctcatcatctcaatggtggcagtgttgaggttgacatggaggaggatcatgtgtggccaaccaaagatggccctctccctatattccttaaggtgtgtatatctatctcttcttccatttttcggtatgcgcgaaaacagatcaagtttatccttgttgatgttcaagaaagtgttttaatccctcgtttatggttatgaaaaattatgaaaacaataaatagattatccctataagcttttataggtaagtggatacatatgtgcatgtttgtaggtatgtgaaaagattaatcagaatgcttacacatgttgatgttctccctatgtagtgtgtgtatatatgtgcatgtttgatgtttgtagcaactgaacaatttagttctactaagcagagtttgaaaaagatcgatattactaccaggatttattaagatactaaaggttttaccgtgattaatcatgaaatcatgaaaaaaagtttgtattaattatttcttatgcattttatagagtctaattttgaactcagagatgcaaaaaatgccaaacaaaggaaacgacctgaaatagacatacttaaggagggaaggtacaagttagttggttggcaatttgcatgtctcattgctcaacagtttcttatctaattgcaaaaacttcttgcatggtgtttttacttctttggcatgcaatatagctaacaaaaaaggagcaaattcctggtctaaatttttgcttgatatataaatatttttttttggaaagtgcagtttgagaatgtggagtacaaggtgaagctgactccaaagaacccactaacagctgcaagggtggcatttgcatctcacaagagcactgaggatcagggcagctgcaagcacatcctcaaggggataggaggcagtgttgaccctggtgagatcctggcactgatgggcccatctggcagtggcaagaccacgctgctcaagatacttggaggcaggctcagtggtggtgtcaagggccagatcacctacaatgacaccccctacagtccctgcctcaaaagaaggtattccctctatttcatattataagtcgttttgactttttcttatttaaacattattaagtttaactaagtttataaaaatagcaatgttttaaacaccaaattagtttcattaaatttagcatcgaatatattttgataatatgtttgtttaattcttttgtgttaaaaatattactatatttttctataaacttacttaaacgtaaagaaatttaactagaaaaaaaagttaaaatgacttataatatgaaatagagagagtaactgtataaagtcatagtggatattaattagtatgatttatgtaatgagaaaggtccggggtcttccgactagcacgataaggtgtgggttagttgatcaagttcaagcctcatctctcttaataaattttgatataaaagttatttctctcatatctagtgtttttttttatttatggtagttattgtaagaccataaggtatgggttaggccctgtttagtttccaaaaacttttcgaaaaaacatcacatcgaatctttagacacatgtatggatcattaaatatagataaaaataaaaactaattacacagtttgtatgtaaatcgcgagacgaatcttttgagcctaattagcccatgattagccataagtgttacagtaactcacatgtactaatgccggcttaattaggctcaaaacattcgtctcgcggtttggcgagttatgaaattagttttttcattcgtgtccgaaaaccccttccgacatccggtcaaacgtccgatgtgacacccaaaaattttcatttcaccaactaaataggcccttagttattgtaagatagaatttttgcatagttatgctatctttcgtaaactagtggagtagattgagtaaaaccagtatgtcttcaaagagaatttacaggcacgcaaatgactgacaaactgcttagtgtttactgcaatcttcagataagagagaacatgtattggcatgccaaattaagcagtgtagttgcattgttctgcaggtatcaattaaagtggaaaaattaagtaatcaagactaattattttcttttgatgaaaacaggattggatttgtgacacaggacgacgtccttttccctcagttgacagtggaggagacccttgtgttcgctgccttcttgagactccccgctcgcatgtcaaagcagcagaagcgcgacagagttgacgccatcataactgagctaaatctagagaggtctgtaagtatattttcatcaaaggaaaaaaaaaactacaccgattttactaatataagttgtcaaaccaacaatctgcagcttaacacaaacccacgtgaagcaaaatagcatacaaaataaaatcatgactaatagcataaatctgttttttttctgaaattcgaataagaaaatgcaaagaaacgcaaatatcgcatcttaaagtacagtggtgcattagaattactcttgatttttctcgaccaacctacatgacatacctactgaacgtgcactttcatttcaaaagagaaattttacagttcttaaagagttattatattttgtagtgcaaatcaaaatttacattagaaaaaaaatgatatcttttaacggtcacaaaattactcatcttaaaaatggtgggtcatacggcaatggtatacccattgaacagtgtttacgatttcggaaaattttggaccctggcacaaaactacttcactgaattatttttcccttttttttcatgaatttgatcgaaaatttgttcaaaacctaataaatagtttttaaatatccaatatctcggaaaatttcgctacccaggacccacgacacaaatgctgaaaacgaaaaggactacctattaaacttttggtacatttataactttgaatcttacataattttcaactaatagatatatagcccgttttaaatgaaatagaaaaaaaagagacaaacatgtcaaaaaaaaaaccgtaaatctaacttaaaataaaatgttgtgaaaaaaattctaatgtttgtacacgattgcaaaactctgcaggtgccggcacaccaagatcggcggcgcgttcgtgcgcggcgtgtcgggcggcgagaggaagcggacgagcatcgggtacgagatcctcgtcgacccgtcgctgctgctcctcgacgagcccacctcgggcctcgactccacgtcggcggcgaagctcctcgtcgtgctccgccgcctcgccaggtcggcggcccgccggacggtgatcaccaccatccaccagccctccagccggatgttccacatgttcgacaagctgctgctcgtcgccgagggccacgccatctaccacggcggcgcccgcggctgcatgcgccacttcgccgccctcggcttctcccccggcatcgccatgaaccccgccgagttcctcctcgacctcgccaccggcaacctcgacggcatctcctcccccgcctccctcctcctcccctccgccgccgccgcctcgccggactcccccgagttcaggtcccacgtcatcaaggtatgtgcgtgtctcgtgtcgagggcccaagaatcactctcatggcgttgtgggtgcagtacttgcaggcgaggcacagggcggccggcgaggaggaggcggcggccgcggcggcgagggagggcggcggcggaggtggcgcggggagggatgaggcggcgaagcagctgagaatggcggtgaggatgaggaaggataggcggggcggcatcggctggctggagcagttcaccgtgctgtcgcggcgcacgttccgggagcgcgccgccgactacctcgacaagatgcgcctcgcccagtccgtcggcgtcgccctcctcctcggcctcctctggtggaagtcccagacctccaacgaggcccagctccgtgaccaagtatgtacactagcttcttcttcctcctctcgacaccgccattgctgacgtcatcaagaactcaaactgtccgatcaagaacacatacacaaacccaccctctccttcttcctcctcctctcgacaccgccattgctgacgccattgtcaagaacatacattcctcttcttcctcctcctctcgacaccgccattgctgacgtcatcaagaactcaaactgtccggtcaagaacacacaccctcttcttcttcctcctctcgatatcgccattttcaagaacatacactcctcttcttctttctcctcctttcgacaccgccattgctgacgtcatcaagaactcaaactgttcgatcaagaacatacacataaactcctcttcttcctcctcctctcgccaccaccattgctgacgtcatcaataactcaaaacacacacctcttcttcctcctcctcctctcgacaccaccattctcaagagtcaagaacatacactcctcatcttcttcctcctcctcctccttgcacagttgcaccgccatcggcaagaagtcgaggtgatcaagagtaatatgtgtgcgtttgcaggtggggttgatattctacatctgcatattctggacgtcgtcgtcgctgttcgggtcggtgtacgtgttcccgttcgagaagctgtacctggtgaaggagaggaaggcggacatgtacaggctgagcgcctactacgcgagcagcacggtgtgcgacgcggtgccgcacgtcgtgtacccggtgctcttcacggccatcctctacttcatggccgacctgcgccgcaccgtgccctgcttctgcctcaccctcctcgccaccctcctcatcgtcctcaccagccagggcaccggcgagctgctcggcgccgccatcctcagcgtcaagcgcgccggcgtcatggcctcgctcgtcctcatgctcttcctcctcaccggcggctactacgtccaggtgaatctcacaaatatcatcttctgatttctgaattttggttctcgatcactttcccgtgttctaaaacatggtttaaatgttgaagaaatcaaaagtattttggaaggacggatagaagtgaaattttggactagaaagcacaaaattatcttcttctagtttctgaattttgcttatcacaaacatggttataatattgagtaaattagaaacatttcttcttttagaaaaaaaaacaaaaagtatttcagaaacagagtttgaacaagcaatttgtttggctgaatttaaacatgttctactcaaatttaaaaaaaactatttttttcggttaaaataatatctgggaggccatatacccaaaatttctaaaattcctttccgaaaatttcaaaaataaatttgctccgaaatgtgaacgaacagggccaaaaaaaacacacaaaatattacatatcattgtgcatgcatcgactatttatcgacattatattcctaacttttttcacaccaaataagctcggataaaaatgaaattgaaatttgggataattttgtttggattgaacaaaaaacattgcagcatataccgaagttcataaggtggctcaagtacgtgtcgttcatgcactacgggttcaacctgctgctgaaggcgcagtaccacggccacctgacctacaactgcggcagccgcggcggctgccagcggctgcagtcctcgccgtcgttcggcaccgtcgacctcgacggcggcatgcgcgaggtctggatcctcctcgccatggccgtcgcctaccgcctcctcgcctacctctgcctccgcaagcggatcagcctcatgcccttgtagtccatcgatctgtcagatcaggatcagttggttcggggaagaagacgactgatgtggtagtgaattgcaattgcgattgatgatggtgaatgggccattgttggtttgggtgctgtgaattgtttcaaacttgagttcttttctttatttgagaagtatttgaggcttgtctgcttagcaagttgggaaataatcaaccccatcattttagcattcagcttgtaagcataagcgaagatttatttaaaacttatttt</dnaseqindica>|
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<references>
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001064568.1 RefSeq:Os06g0607700]|
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* <ref name="ref1">
}}
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Niu BX, He FR, He M, Ren D, Chen LT, Liu YG. The ATP-binding cassette
[[Category:Genes]]
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transporter OsABCG15 is required for anther development and pollen fertility in
[[Category:Japonica mRNA]]
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rice. J Integr Plant Biol. 2013 Aug;55(8):710-20. doi: 10.1111/jipb.12053. Epub
[[Category:Oryza Sativa Japonica Group]]
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2013 Jun 17. PubMed PMID: 23570336.
[[Category:Japonica Genes]]
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</ref>
[[Category:Japonica Chromosome 6]]
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</references>
[[Category:Chromosome 6]]
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 +
 
 +
==Structured Information==
 +
    [[Category:Genes]][[Category:Oryza Sativa Japonica Group]][[Category:Japonica Chromosome 6]]

Latest revision as of 09:39, 10 October 2016

The rice Os06g0607700 was reported as OsABCG15 in 2014 [1] by researchers from China.

Annotated Information

Figure 1. The phenotype of osabcg15 mutant.[1].

Gene Symbol

  • Os06g0607700 <=> OsABCG15,ABCG15

Function

  • OsABCG15 may play a key function in the processes related to sporopollenin biosynthesis or sporopollenin transfer from tapetal cells to anther locules.
  • OsABCG15 plays a critical role in exine formation and pollen development, similar to the homologous gene of AtABCG26 in Arabidopsis.

Function

  • The researchers generated a rice mutant library of a rice cultivar 02428 (O. sativa ssp. japonica) by 60 Co g‐ray irradiation (Y‐G Liu,unpubl. data, 2008). One of the mutants produced more tillers (Figure 1A), and exhibited collapsed anthers with smaller size and white color, and no pollen grains, thus leading to complete spikelet sterility (Figure 1B–D).
  • Genetic analysis indicated that the male sterility of this mutant is sporophytic and is controlled by a single recessive locus, namely OsABCG15 .

Expression

  • Expression analysis showed that OsABCG15 is expressed specifically in developmental anthers from stage 8 (meiosis II stage) to stage 10 (late microspore stage).

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

Labs working on this gene

  • State Key Laboratory for Conservation and Utilization of Subtropical Agro‐bioresources, College of Life Sciences, South China Agricultural University, Guangzhou 510642, China
  • Guangdong Provincial Key Laboratory of Protein Function and Regulation in Agricultural Organisms, College of Life Sciences, South China Agricultural University, Guangzhou 510642, China

References

  1. 1.0 1.1 Niu BX, He FR, He M, Ren D, Chen LT, Liu YG. The ATP-binding cassette transporter OsABCG15 is required for anther development and pollen fertility in rice. J Integr Plant Biol. 2013 Aug;55(8):710-20. doi: 10.1111/jipb.12053. Epub 2013 Jun 17. PubMed PMID: 23570336.


Structured Information