Difference between revisions of "Os06g0229800"

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(Labs working on this gene)
(Labs working on this gene)
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2、Institute of Crop Science and the National Key Facility for Crop Gene Resources and Genetic Improvement, Chinese Academy of Agricultural Sciences
 
2、Institute of Crop Science and the National Key Facility for Crop Gene Resources and Genetic Improvement, Chinese Academy of Agricultural Sciences
  Jianmin Wan, His group is mainly engaged in rice gene mapping, cloning and cultivar selection. They focus on rice heading date, hybrid sterility, protein trafficking,and other traits which are related in rice important development (Germination, Plant Height, Panicle development, Starch biosynthesis). The lab also commit themselves to building high-density new molecular marker map, conducting fine mapping of genes related to the new, map-based cloning, conducting genetic transformation and function identification, as well as doing research of rice functional genomics, proteomics and bioinformatics, establishing and improving the design of efficient molecular breeding system, combined with conventional breeding to cultivate new varieties of high-quality rice with powerful market competitiveness.
+
  Jianmin Wan, His group is mainly engaged in rice gene mapping, cloning and cultivar selection.  
 +
They focus on rice heading date, hybrid sterility, protein trafficking,and other traits which are related in rice important development (Germination, Plant Height, Panicle development, Starch biosynthesis). The lab also commit themselves to building high-density new molecular marker map, conducting fine mapping of genes related to the new, map-based cloning, conducting genetic transformation and function identification, as well as doing research of rice functional genomics, proteomics and bioinformatics, establishing and improving the design of efficient molecular breeding system, combined with conventional breeding to cultivate new varieties of high-quality rice with powerful market competitiveness.
  
 
==References==
 
==References==

Revision as of 07:49, 7 June 2014

Please input one-sentence summary here.

Annotated Information

Function

ALK gene encodes a soluble starch synthase Ⅱ, controlling the temperature of rice pasting .The encoding amino acid product of ALK gene may cause a change in starch synthase activity, thus affecting the synthesis of amylopectin branch chain of medium length, so that the crystal layer structure changes, resulting in the final performance of pasting temperature change.

Expression

ALK gene is a single copy gene, and it has a specific expression in the seed of rice,RT-PCR results showed that expression of the gene product is not detected in the blade tissues.

Evolution

According to comparison of genomic DNA sequences among nine rice varieties, S-type varieties: Double Branch early, Minghui 63 and Zhaiyeqing,have G at the 264 site.While in C-type varieties(Ningxia early japonica, Chunjiang 06, No. 6 Nipponbare Yang Rice (indica)),have a C at the 264 site. So, the replace of G264 to C264 cause the amino acid change from Glu to Asp of SSS Ⅱ enzyme protein, which may be the genetic basis leading to pasting temperature change. Study the phylogenesis of five different plants including goats grass, wheat, barley, maize and rice, it shows that rice SSS Ⅱ and SSS Ⅱ a and b of maize is nearer relatively in evolutionary kinship, while is distantly related with goat grass species.

Labs working on this gene

1、China National Rice Research Institute Gao Zhenyu, Research: (1) rice functional genomics Genetic characteristics of important agronomic traits in rice, screening mutant libraries and build genetic populations, combined with genomics and transcriptomics gene / QTL mapping and cloning, and conduct functional analysis. (2) Rice Molecular Genetics and Breeding Use of existing genetic resources, gene / QTL polymerization and molecular breeding, creating a new high yield and quality of rice germplasm breeding

2、Institute of Crop Science and the National Key Facility for Crop Gene Resources and Genetic Improvement, Chinese Academy of Agricultural Sciences

Jianmin Wan, His group is mainly engaged in rice gene mapping, cloning and cultivar selection. 
They focus on rice heading date, hybrid sterility, protein trafficking,and other traits which are related in rice important development (Germination, Plant Height, Panicle development, Starch biosynthesis). The lab also commit themselves to building high-density new molecular marker map, conducting fine mapping of genes related to the new, map-based cloning, conducting genetic transformation and function identification, as well as doing research of rice functional genomics, proteomics and bioinformatics, establishing and improving the design of efficient molecular breeding system, combined with conventional breeding to cultivate new varieties of high-quality rice with powerful market competitiveness.

References

Please input cited references here.

Structured Information

Gene Name

Os06g0229800

Description

Similar to Starch synthase IIA

Version

NM_001063751.1 GI:115467233 GeneID:4340567

Length

4946 bp

Definition

Oryza sativa Japonica Group Os06g0229800, 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

Chromosome 6

Location

Chromosome 6:6747359..6752304

Sequence Coding Region

6747562..6747891,6748021..6748689,6748789..6748857,6749547..6749624,6749707..6749817
,6749923..6749967,6750384..6750557,6751025..6751981

Expression

GEO Profiles:Os06g0229800

Genome Context

<gbrowseImage1> name=NC_008399:6747359..6752304 source=RiceChromosome06 preset=GeneLocation </gbrowseImage1>

Gene Structure

<gbrowseImage2> name=NC_008399:6747359..6752304 source=RiceChromosome06 preset=GeneLocation </gbrowseImage2>

Coding Sequence

<cdnaseq>atgtcgtcggccgtcgtcgcgtcatccaccacgttcctcgtcgcgctcgcctcttcggcgtcacggggagggcccaggagggggagggtggtgggcgtggccgcgccgccggccctgctttacgacggccgcgccggaaggctagccctacgggcgccgcctccgccccggcctcggcctcggcgtcgggatgcgggcgtggtgcgccgcgcggatgatggggagaacgaggcggcggtggagcgggcgggtgaggacgacgacgaggaggaggagttctcttcgggcgcgtggcagccgccccgctcgcgtcgcggcggcgtcggcaaggtcttgaagcggaggggcaccgtcccgcccgtcggccggtacggctccggcggtgatgcggcgagagtgcgcggggcggccgcgccggcgccggcgccgacacaggacgccgcctcaagtaagaacggagcgcttctcagcggccgcgacgacgacacacctgcctcacggaacggatcggtcgttaccggcgccgacaagcctgccgccgccacgccgccggtgaccataacgaagctcccagcgccggactcccccgtgatccttccatccgtagacaagccgcagccggagttcgtcatcccagacgcgacggcgccggcgccgccaccgcccggttcaaatcccaggtcgtccgctcctctccccaagcctgacaattcggaatttgcagaggataagagcgcaaaagttgttgagagtgctccgaagccaaaggcgactagatcttcccctattcctgcggtagaagaggagacgtgggatttcaagaaatattttgatctgaacgaaccggacgccgcggaggatggcgatgacgatgatgactgggctgattcagatgcgtcagattctgagatcgaccaggatgacgattcgggccctttggctggggagaatgtcatgaacgtgatcgtggtggctgctgaatgttctccctggtgcaaaacaggtgggcttggagatgttgcaggtgctttacccaaagctttggcgaggagaggacatcgtgttatggttgtggtaccaaggtacggtgattacgcggaagcccaggatgtaggaatcaggaaatactacaaggctgctggacaggatctggaagtgaaatatttccatgcatttatcgatggagttgattttgtgttcattgacgctcctctcttccgtcaccgtcaggatgacatctatggggggaacagacaggaaatcatgaagcgcatgattctgttttgtaaggctgctgttgaggttccttggcacgttccatgcggtggtgtgccctatggggatggcaacttggtgttccttgcaaacgattggcacactgcactcctgcctgtttatctgaaggcatattacagagacaatggcatgatgcagtacactcgctctgtccttgtgatacataatatcgcttaccagggccgtggcccagtagatgaattcccctacatggaattgccggagcactacctggatcacttcaagctgtacgaccccgtcggcggcgagcacgccaacatcttcggcgcgggcctgaagatggcggaccgggtggtgaccgtgagccccggctacctctgggagctgaagacgacggagggcggctggggcctccacgacatcatacgggagaacgactggaagatgaacggcatcgtgaacggcatcgactaccgggagtggaacccggaggtggacgtgcacctgcagtccgacggctacgccaactacaccgtggcctcgctggactccagcaagccgcggtgcaaggcggcgctgcagcgcgagctggggctggaggtgcgcgacgacgtgccgctgatcgggttcatcgggcggctcgacgggcagaaaggtgtggacatcatcggcgacgcgatgccgtggatcgccgggcaggacgtgcagctggtgctgctgggctccggccgccgcgacctggaggtgatgctgcagcggttcgaggcgcagcacaacagcaaggtgcgcgggtgggtggggttctcggtgaagatggcgcaccggatcacggcgggcgccgacgtgctggtcatgccgtcgcggttcgagccgtgcggcctcaaccagctctacgccatggcgtacggcaccgtccccgtcgtgcacgccgtcggcgggctgagggacaccatgtcggcgttcgacccgttcgaggacaccggcctcgggtggacgttcgaccgcgccgagccgcacaagctcatcgaggcgctcggccactgcctcgagacgtaccgcaagtacaaggagagctggagggggctccaggtgcgcggcatgtcgcaggacctcagctgggaccacgccgccgagctctacgaggaggtccttgtcaaggccaagtaccaatggtga</cdnaseq>

Protein Sequence

<aaseq>MSSAVVASSTTFLVALASSASRGGPRRGRVVGVAAPPALLYDGR AGRLALRAPPPPRPRPRRRDAGVVRRADDGENEAAVERAGEDDDEEEEFSSGAWQPPR SRRGGVGKVLKRRGTVPPVGRYGSGGDAARVRGAAAPAPAPTQDAASSKNGALLSGRD DDTPASRNGSVVTGADKPAAATPPVTITKLPAPDSPVILPSVDKPQPEFVIPDATAPA PPPPGSNPRSSAPLPKPDNSEFAEDKSAKVVESAPKPKATRSSPIPAVEEETWDFKKY FDLNEPDAAEDGDDDDDWADSDASDSEIDQDDDSGPLAGENVMNVIVVAAECSPWCKT GGLGDVAGALPKALARRGHRVMVVVPRYGDYAEAQDVGIRKYYKAAGQDLEVKYFHAF IDGVDFVFIDAPLFRHRQDDIYGGNRQEIMKRMILFCKAAVEVPWHVPCGGVPYGDGN LVFLANDWHTALLPVYLKAYYRDNGMMQYTRSVLVIHNIAYQGRGPVDEFPYMELPEH YLDHFKLYDPVGGEHANIFGAGLKMADRVVTVSPGYLWELKTTEGGWGLHDIIRENDW KMNGIVNGIDYREWNPEVDVHLQSDGYANYTVASLDSSKPRCKAALQRELGLEVRDDV PLIGFIGRLDGQKGVDIIGDAMPWIAGQDVQLVLLGSGRRDLEVMLQRFEAQHNSKVR GWVGFSVKMAHRITAGADVLVMPSRFEPCGLNQLYAMAYGTVPVVHAVGGLRDTMSAF DPFEDTGLGWTFDRAEPHKLIEALGHCLETYRKYKESWRGLQVRGMSQDLSWDHAAEL YEEVLVKAKYQW</aaseq>

Gene Sequence

<dnaseqindica>204..533#663..1331#1431..1499#2189..2266#2349..2459#2565..2609#3026..3199#3667..4623#gcgcacgctttacaggtggctcccccgccgtctcccccgcgtgccctcctcgccgtcgtcgctcgctgcccatttcatcccccgcacggcacgcgcgggacgaaagcaaagcacgcgcacacactcaaacccgcgcctcctccgctctcgtccgtcgcttcggttcggttccggctcgatcggggaggttcctcggggcgaccatgtcgtcggccgtcgtcgcgtcatccaccacgttcctcgtcgcgctcgcctcttcggcgtcacggggagggcccaggagggggagggtggtgggcgtggccgcgccgccggccctgctttacgacggccgcgccggaaggctagccctacgggcgccgcctccgccccggcctcggcctcggcgtcgggatgcgggcgtggtgcgccgcgcggatgatggggagaacgaggcggcggtggagcgggcgggtgaggacgacgacgaggaggaggagttctcttcgggcgcgtggcagccgccccgctcgcgtcgcggcggcgtcggcaaggtgggttggtggtgtcgatcggggcgccgagatcgtcgtgctcgagaggtgttctctgctttgattcgctttgatgttttcatttgaaaccgacgcgtgtgcttgcgcgtgcgcgcgctgtgtttgcaggtcttgaagcggaggggcaccgtcccgcccgtcggccggtacggctccggcggtgatgcggcgagagtgcgcggggcggccgcgccggcgccggcgccgacacaggacgccgcctcaagtaagaacggagcgcttctcagcggccgcgacgacgacacacctgcctcacggaacggatcggtcgttaccggcgccgacaagcctgccgccgccacgccgccggtgaccataacgaagctcccagcgccggactcccccgtgatccttccatccgtagacaagccgcagccggagttcgtcatcccagacgcgacggcgccggcgccgccaccgcccggttcaaatcccaggtcgtccgctcctctccccaagcctgacaattcggaatttgcagaggataagagcgcaaaagttgttgagagtgctccgaagccaaaggcgactagatcttcccctattcctgcggtagaagaggagacgtgggatttcaagaaatattttgatctgaacgaaccggacgccgcggaggatggcgatgacgatgatgactgggctgattcagatgcgtcagattctgagatcgaccaggatgacgattcgggccctttggctggggagaatgtcatgaacgtgatcgtggtggctgctgaatgttctccctggtgcaaaacaggcatgtacacgatatatacttcttttttctcttttttgttcttctgatcttgtaaatttgcttcagttactgatatgaacaagtgttgcatttgcacaggtgggcttggagatgttgcaggtgctttacccaaagctttggcgaggagaggacatcgtgttatggtattactccttttttctctccttcatggttggatgtttcttccattcttacagatttgatcatttaattaacgtatattttcagatatataaatttggatcaaatgtaaagcagattagttctcttatgttcttttgtttacataatcatgatggcaaattaaaaaggctactccagctgttagattcaaaatacaaaagtaatattgataaatttgcaaatctgtacttgaaagctaaattgcttactattgttacagaaatgttcatttctaacatgctgttgaaaatatatacactatggcgtagccgcttagatcatcacgtggccatggaaactagtgccaaaagtagttctcttagttacactagttacatacctgtacatgataacggatcaggcccatacaattagggatagattaggagcccgttaacgaactaggcccttataattagggagggacggtagttacttttcgcatatggacatgctgcacgtgttgggaggaggggatggaaggaagacgacttcgcttttaagatagtagagaaatgtagcaattttttttagcaattttagttatggtaataatataaaccacaacgtattcagagatcggaaacggggactctcggtgacttcctgatataaactgataactggcaaatgcatctttcaatcttaggttgtggtaccaaggtacggtgattacgcggaagcccaggatgtaggaatcaggaaatactacaaggctgctggacaggtgtgtgtcaacaatgcaatccaagaagactggcataggagacgcaaattccttagtaattggtttttattttggcctgcaggatctggaagtgaaatatttccatgcatttatcgatggagttgattttgtgttcattgacgctcctctcttccgtcaccgtcaggatgacatctatggggggaacagacaggtgaagcttctatctgtttggtattacattgcattagtaaaacttaagttgcatctcctaggcgtactgatttgaaaatgcttacccattcccattttcattcaggaaatcatgaagcgcatgattctgttttgtaaggctgctgttgaggtattttctccaactccattatcaatcattaatttggttttaggaatgagatgtatttgtttggtttgaggattggtcaaaagcacaaatcattttttctgttgataaatagaagaagtgtattaacttttggactgaagcacacaataagtaggagaaatgaggtcgcagtagatgatttgaatttgatccctcaaacaaacagcccgtaaatgtttctgcaagatttcacagagattcatattcttttttattttaaatatattacacattatcgccaaatacacggatgaactccttcgatacctctagcagcatttcaacctgctaccgttcgtaatatgcaatgctcttgccaatgttgtcatatgttcccctacaaagggctatattttctgtttctgtacaatcggcaggttccttggcacgttccatgcggtggtgtgccctatggggatggcaacttggtgttccttgcaaacgattggcacactgcactcctgcctgtttatctgaaggcatattacagagacaatggcatgatgcagtacactcgctctgtccttgtgatacataatatcgcttaccaggttttgtttttctctcctccctaatgaatcatctttattctatttgtatgcatctcctgctgtttgttagagaaattagttgagtgcacaaattgtgggtcatggtaattattgagcagggacacgataaactcttcttcagtctattactacttttagttcagcaatttctccgtttcatattataatttataagtcgttttttttctaatcaaacatctttacgtttgattaactttatcgaaaaatttaacagcatctataacatcaaattagtttaattaaatataatgtttaatgtaatttgattatatgtttgttttgtattggaaatgttattgtatttttctataaactaattaaatttaaaactgtttaacttaaaaaaatatcaaaacaatttacaatatgaaacgggccggggagtactttttttgtgtgctaaatggttcgtgtaatgtttgtagggccgtggcccagtagatgaattcccctacatggaattgccggagcactacctggatcacttcaagctgtacgaccccgtcggcggcgagcacgccaacatcttcggcgcgggcctgaagatggcggaccgggtggtgaccgtgagccccggctacctctgggagctgaagacgacggagggcggctggggcctccacgacatcatacgggagaacgactggaagatgaacggcatcgtgaacggcatcgactaccgggagtggaacccggaggtggacgtgcacctgcagtccgacggctacgccaactacaccgtggcctcgctggactccagcaagccgcggtgcaaggcggcgctgcagcgcgagctggggctggaggtgcgcgacgacgtgccgctgatcgggttcatcgggcggctcgacgggcagaaaggtgtggacatcatcggcgacgcgatgccgtggatcgccgggcaggacgtgcagctggtgctgctgggctccggccgccgcgacctggaggtgatgctgcagcggttcgaggcgcagcacaacagcaaggtgcgcgggtgggtggggttctcggtgaagatggcgcaccggatcacggcgggcgccgacgtgctggtcatgccgtcgcggttcgagccgtgcggcctcaaccagctctacgccatggcgtacggcaccgtccccgtcgtgcacgccgtcggcgggctgagggacaccatgtcggcgttcgacccgttcgaggacaccggcctcgggtggacgttcgaccgcgccgagccgcacaagctcatcgaggcgctcggccactgcctcgagacgtaccgcaagtacaaggagagctggagggggctccaggtgcgcggcatgtcgcaggacctcagctgggaccacgccgccgagctctacgaggaggtccttgtcaaggccaagtaccaatggtgaagagaccatgtccgcccgcggtctccgcctgcgcgttcggcagctatagctatagcctccctgaagaagcttggcgctgctgtggaggtgcgactcggtggcggtgtggcgccggcgccggcgcttgcaggggaggtgtttgtgctgaccgagctgtgcgttgaggtgcgcaaattagcttccggtttgtgtgttcatggcgaggcatggtggagttgagggagtattaagctttgtttcagatgcatcatgcatgcgtaataggatgttgtatttaataatgtgtttgttatgtccattgatgcgatgttacttcttcatta</dnaseqindica>

External Link(s)

NCBI Gene:Os06g0229800, RefSeq:Os06g0229800