Difference between revisions of "Os10g0558900"

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Please input one-sentence summary here.
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The rice '''''Os10g0558900''''' was reported as '''''RL14''''' in 2012 <ref name="ref1" /> by researchers from China.  
  
 
==Annotated Information==
 
==Annotated Information==
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[[File:Os10g0558900.png|right|thumb|327px|'''''Figure 2.  Phenotypic analysis of RL14 mutants''''']]
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===Gene Symbol===
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*'''''Os10g0558900''''' '''''<=>''''' '''''RL14,OsRL14'''''
 
===Function===
 
===Function===
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* '''''RL14''''' encode a 2OG-Fe (II) oxygenase of unknown function.
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* '''''RL14''''' gene affects water transport in leaves by affecting the composition of the secondary cell wall.
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* This change in water transport results in water deficiency, which is the major reason for the abnormal shape of the bulliform cells.
  
RL14 (rolling leaf 14) regulates leaf rolling, which is found to encode a 2OG-Fe (II) oxygenase of unknown function. the RL14 gene affects water transport in leaves by affecting the composition of the secondary cell wall. This change in water transport results in water deficiency, which is the major reason for the abnormal shape of the bulliform cells.
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===Phenotypic analysis===
RL14 mutant plants displayed smaller stomatal complexes and decreased transpiration rates, as compared with the wild type. Defective development could be rescued functionally by the expression of wild-type RL14.
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* rl14 mutant plants had incurved leaves because of the shrinkage of bulliform cells on the adaxial side.  
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* In addition, rl14 mutant plants displayed smaller stomatal complexes and decreased transpiration rates, as compared with the wild type. Defective development could be rescued functionally by the expression of wild-type RL14.
  
 
===Expression===
 
===Expression===
Please input expression information here.
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* '''''RL14''''' was transcribed in sclerenchymatous cells in leaves that remained wrapped inside the sheath.
Histochemistry, as well as qRT-PCR analysis, showed that RL14 was highly transcribed in leaves, leaf sheaths and roots. It was also detected in stems and glumes, although its expression in these organs was not as intense as that in the mature leaves, leaf sheaths and roots (Figure 1b).
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* In mature leaves, '''''RL14''''' accumulated mainly in the mesophyll cells that surround the vasculature.
Expression of RL14 mRNA was detected in the sclerenchymal cell layer of underemerged leaves and sheaths. In the mature leaf, RL14 mRNA accumulated mainly in the mesophyll cells that surrounded the vasculature (Figure 1c).
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* Expression of genes related to secondary cell wall formation was affected in rl14-1 mutants, and cellulose and lignin content were altered in rl14-1 leaves.
[[File: Analysis of the expression pattern for the RL14 gene.png]]
 
 
 
    Analysis of the expression pattern for the RL14 gene
 
  
 
===Evolution===
 
===Evolution===
Please input evolution information here.
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* The RL14 gene was mapped first to an interval between the simple sequence repeat (SSR) markers RM3123 and RM1162 on the long arm of chromosome 10.
 
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* Finally, the RL14 locus was mapped to a 24.5-kb DNA region between the InDel marker SID2 and SSR marker SW24 on a single bacterial artificial chromosome, AC079874.
You can also add sub-section(s) at will.
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* RL14 was related most closely to members of the 2OG-Fe (II) oxygenase family from rice and sorghum.  
The RL14 gene was mapped first to an interval between the simple sequence repeat (SSR) markers RM3123 and RM1162 on the long arm of chromosome 10.
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* Orthologous of RL14 was identified in other species, such as maize, Arabidopsis, Papaver somniferum, Vitis spp and Ricinus communis.
Finally, the RL14 locus was mapped to a 24.5-kb DNA region between the InDel marker SID2 and SSR marker SW24 on a single bacterial artificial chromosome, AC079874.
 
Four annotated candidate genes, which encoded a polyol transporter (Os10g40950.1), a 2OG-Fe (II) oxygenase family protein (Os10g40960.1), a flavonol synthase (Os10g40990.1) and a retrotransposon protein (Os10g41000), were located in the 24.5-kb DNA region.
 
RL14 was related most closely to members of the 2OG-Fe (II) oxygenase family from rice and sorghum (Figure 2b). Orthologous of RL14 was identified in other species, such as maize, Arabidopsis, Papaver somniferum, Vitis spp and Ricinus communis (Figure 2b).
 
[[File: Phylogenetic analysis and subcellular localization of RL14 protein.png]]
 
 
 
Phylogenetic analysis and subcellular localization of RL14 protein
 
  
 
==Labs working on this gene==
 
==Labs working on this gene==
Rice Research Institute, Chongqing Key Laboratory of Application and Safety Control of Genetically Modified Crops, Southwest University, Chongqing, China.
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* Rice Research Institute, Chongqing Key Laboratory of Application and Safety Control of Genetically Modified Crops, Southwest University, Chongqing, China
  
 
==References==
 
==References==
Please input cited references here.
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<references>
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* <ref name="ref1">
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Zhang K, Qian Q, Huang Z, Wang Y, Li M, Hong L, Zeng D, Gu M, Chu C, Cheng Z.  
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GOLD HULL AND INTERNODE2 encodes a primarily multifunctional cinnamyl-alcohol
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dehydrogenase in rice. Plant Physiol. 2006 Mar;140(3):972-83. Epub 2006 Jan 27.
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PubMed PMID: 16443696; PubMed Central PMCID: PMC1400561.
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</ref>
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</references>
  
==Structured Information==
 
{{JaponicaGene|
 
GeneName = Os10g0558900|
 
Description = 2OG-Fe(II) oxygenase domain containing protein|
 
Version = NM_001071899.1 GI:115483393 GeneID:4349365|
 
Length = 2021 bp|
 
Definition = Oryza sativa Japonica Group Os10g0558900, 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 10:22450841..22452861|
 
CDS = 22451155..22451400,22452093..22452404|
 
GCID = <gbrowseImage1>
 
name=NC_008403:22450841..22452861
 
source=RiceChromosome10
 
preset=GeneLocation
 
</gbrowseImage1>|
 
GSID = <gbrowseImage2>
 
name=NC_008403:22450841..22452861
 
source=RiceChromosome10
 
preset=GeneLocation
 
</gbrowseImage2>|
 
CDNA = <cdnaseq>tgcatactcatcagagacagaaaatattggactctgcctgctgcaattcatgccaaggccgttggtgttgagccgaagtcgttgttaagtgtatttgaagggcaagctaggggtttgaggatgaactactatccaccgtgcttgaaagctgacaaggtgttgggtttgtcaccgcacactgatccaggtggcttgacactgcttctccaggtgaatgatgtacagggcctgcagatcaacaaggatggcaaatggttctccgtgaatgctctgaatggtgcactcatcgttaacattggcgacacacttgagatcctgagtaatggaaagttcagaagtgttgagcacagggccgtggtacatccaagcagagagaggatttcagcggcactgttctactatccgtgccaggatatggtgatcagccctctgccggactttgtgaaagatggtaaagtgaaatacaaaacaataagctaccaggatttgctgacagagtacttcacagcagagcttgatggaaggaaccggctaaagaaaatgaagctggaaccgtag</cdnaseq>|
 
AA = <aaseq>CILIRDRKYWTLPAAIHAKAVGVEPKSLLSVFEGQARGLRMNYY                    PPCLKADKVLGLSPHTDPGGLTLLLQVNDVQGLQINKDGKWFSVNALNGALIVNIGDT                    LEILSNGKFRSVEHRAVVHPSRERISAALFYYPCQDMVISPLPDFVKDGKVKYKTISY                    QDLLTEYFTAELDGRNRLKKMKLEP</aaseq>|
 
DNA = <dnaseqindica>1462..1707#458..769#atgtactgacagtagctctagctcagtttgagatgtgcaaatagtataacaaaagcattacttatgcaacaaaaactacagctcatcaaccatggagtgccagatgaagtgattgcaaatctcaagaacgacttggttgagtttttcagtcagccactggatgccaagaaggaatactcacagctgcccaataaccttgaaggttatggacaggccttcgttgtgtccgacaaccagaaactagactgggcagacatgctataccttcaagtctgtcctaccgattcaagggacttgagattctggcccaattaccctgcctctttcaggtgatactaccgacaaattattatgcaactaattactccattgataagcatatgttcattataacttttaaagcatacatatgtccatttattaacttgaaatatctgaaaattaggcattccattgatgcatactcatcagagacagaaaatattggactctgcctgctgcaattcatgccaaggccgttggtgttgagccgaagtcgttgttaagtgtatttgaagggcaagctaggggtttgaggatgaactactatccaccgtgcttgaaagctgacaaggtgttgggtttgtcaccgcacactgatccaggtggcttgacactgcttctccaggtgaatgatgtacagggcctgcagatcaacaaggatggcaaatggttctccgtgaatgctctgaatggtgcactcatcgttaacattggcgacacacttgaggtaatgactaatcccgttctcggggcaattgtatcgtatcgatgtaatttcatgagttaaataaagcttttatctttatactattataaaagttgaagatatttttcccggtattttggtgcgtcatccatgtatgagtcagtttctaagttcgttcgcttttggaaatacatatccgtatttgagtcggtttttaagatagttcacttttgataatacagaaggaataatataagaaatctgtttaaaaaactcgcatgctaacatgaggtgatcggactcctaactgcagctcatgattttctaaatatatatatatatatatatatatatatatatatatccaaacgaactcccacaataaatttcatcttaactaaaccatataacaataataatattaaaatagactccaccagttgcaacacacgagcattttttctagttatttaaaaaaaaagaactaatcccgtttgatataggatattaggcagattattttattgtgaatcaaaatatttttaagaaataaatttaacaaatagcttaaaacaaatgatcagtacaaaatcattttggttgtggccgataagccaatgagtagacaatcaaagccgctgatgctcaacttttggatcaacatgtttttctgatgtacaagtacggtcgatgtgcgctgttgatgtgtgcagatcctgagtaatggaaagttcagaagtgttgagcacagggccgtggtacatccaagcagagagaggatttcagcggcactgttctactatccgtgccaggatatggtgatcagccctctgccggactttgtgaaagatggtaaagtgaaatacaaaacaataagctaccaggatttgctgacagagtacttcacagcagagcttgatggaaggaaccggctaaagaaaatgaagctggaaccgtagccatcgaccatgatgcatgtaacaattttataagaagaacctgctttcaggttgtgtcctacttactgtatctgctatctactctcttcatcctaaaataaataaacatagtacatatatgatacatcatagtaccataaattagaaaatgttacatcgtgtactatgtttttttaaaaaatttgggatataggaaatatatgtcgtgaagaataatgtattcaggcatcaagctttatgcataattagcttatgcctgtaaactgcgttgaacatgttcagtttgatgaaacagacatggaagtttgcctctt</dnaseqindica>|
 
Link = [http://www.ncbi.nlm.nih.gov/nuccore/NM_001071899.1 RefSeq:Os10g0558900]|
 
}}
 
 
[[Category:Genes]]
 
[[Category:Genes]]
 
[[Category:Japonica mRNA]]
 
[[Category:Japonica mRNA]]
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[[Category:Japonica Chromosome 10]]
 
[[Category:Japonica Chromosome 10]]
 
[[Category:Chromosome 10]]
 
[[Category:Chromosome 10]]
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==Structured Information==

Latest revision as of 09:13, 8 May 2017

The rice Os10g0558900 was reported as RL14 in 2012 [1] by researchers from China.

Annotated Information

Figure 2. Phenotypic analysis of RL14 mutants

Gene Symbol

  • Os10g0558900 <=> RL14,OsRL14

Function

  • RL14 encode a 2OG-Fe (II) oxygenase of unknown function.
  • RL14 gene affects water transport in leaves by affecting the composition of the secondary cell wall.
  • This change in water transport results in water deficiency, which is the major reason for the abnormal shape of the bulliform cells.

Phenotypic analysis

  • rl14 mutant plants had incurved leaves because of the shrinkage of bulliform cells on the adaxial side.
  • In addition, rl14 mutant plants displayed smaller stomatal complexes and decreased transpiration rates, as compared with the wild type. Defective development could be rescued functionally by the expression of wild-type RL14.

Expression

  • RL14 was transcribed in sclerenchymatous cells in leaves that remained wrapped inside the sheath.
  • In mature leaves, RL14 accumulated mainly in the mesophyll cells that surround the vasculature.
  • Expression of genes related to secondary cell wall formation was affected in rl14-1 mutants, and cellulose and lignin content were altered in rl14-1 leaves.

Evolution

  • The RL14 gene was mapped first to an interval between the simple sequence repeat (SSR) markers RM3123 and RM1162 on the long arm of chromosome 10.
  • Finally, the RL14 locus was mapped to a 24.5-kb DNA region between the InDel marker SID2 and SSR marker SW24 on a single bacterial artificial chromosome, AC079874.
  • RL14 was related most closely to members of the 2OG-Fe (II) oxygenase family from rice and sorghum.
  • Orthologous of RL14 was identified in other species, such as maize, Arabidopsis, Papaver somniferum, Vitis spp and Ricinus communis.

Labs working on this gene

  • Rice Research Institute, Chongqing Key Laboratory of Application and Safety Control of Genetically Modified Crops, Southwest University, Chongqing, China

References

  1. Zhang K, Qian Q, Huang Z, Wang Y, Li M, Hong L, Zeng D, Gu M, Chu C, Cheng Z. GOLD HULL AND INTERNODE2 encodes a primarily multifunctional cinnamyl-alcohol dehydrogenase in rice. Plant Physiol. 2006 Mar;140(3):972-83. Epub 2006 Jan 27. PubMed PMID: 16443696; PubMed Central PMCID: PMC1400561.

Structured Information