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GrainGenes Sequence Report: CK209860

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Sequence
CK209860
Contig
TaAffx.96847.1.S1_at
External Databases
Data at GenBank
Data at EMBL
Data at DDBJ
TIGR Gene Index
TC326705
NCBI UniGene
Ta.32405
DB Remark
Locus Source: Triticum aestivum (bread wheat)
UniGene title 'Transcribed locus, moderately similar to NP_001066166.1 Os12g0150200 [Oryza sativa (japonica cultivar-group)]'
Keyword
EST
Species
Triticum aestivum
Clone Library
Triticum aestivum FGAS: Library 5 GATE 7
Data Source
genbankRelease 139, Dec 15 2003
genbankUpdated Nov 2006
Title
FGAS021646 Triticum aestivum FGAS: Library 5 GATE 7 Triticum aestivum cDNA, mRNA sequence.
Remark
DB_xref: taxon:4565
Feature: source: mol_type = 'mRNA';
Locus Comment: Contact: Wm L Crosby; Bioinformatics; University of Saskatchewan, Department of Computer Science; 1C101 Engineering Building, 57 Campus Drive, Saskatoon,; Saskatchewan, S7N 5A9, Canada; Tel: 306 966 1769; Fax: 306 966 2033; Email: fgas_ests@cs.usask.ca; This sequence is the direct result of the Base calling software; Phred (default parameters). It is the raw base calls. To aid in the; identification of the high quality insert the software Lucy; (default parameters) has been run on this sequence. Lucy identified; the region [25,758].; Plate: L5B020 row: P column: 07.
Note: Vector: pCMV.SPORT6; Crown and developmental stages of spike formation in wheat cultivar Norstar. 4 mRNA populations were combined before constructing the library. The first mRNA population is from 1cm crown sections after 30 days of cold acclimation. The second is from 1cm crown sections after 11 days of deacclimation (before deacclimation plants were fully vernalized for 49 days). The third is from different developmental stages of spike formation (5 to 50mm) that still have not emerged from the leaf (dissection required). The last is from different developmental stages of spike and seed formation after having emerged from the leaf (visible). First strand synthesis in this library was done in the presence of methylated dCTP thereby protecting from internal cleavage with NotI.
DNA
ctaccgctttttnctcctgcgtctccccggaacccgctcgacattcgctt
tctcctttgccattcgtgcgagtcgtgagagcagctaaccggagagcgat
ggacgccgtggagttgtcctggggcgcgcggtgcgccgggctggccttct
tcgtcctgtccgtcctcgtggtggcgctcgccgcggtgctcctgctcgtg
cgccggtggccgtggtgcagctgccatgtctgccggacgtacctcacggg
ctcctgggccaaggacttcaccaacctcggcgactggtacgcgcacctgc
tgcgcgagtcgcccacgggcaccgtccacatccacgtcctcggctgcacc
gtcaccgccaacccggccaacgtcgagtacatgctcaagaccaacttcga
gaacttccccaagggcaagcgcttctccgcgctcctcggcgacctcctcg
gcggcggcatcttcaacgtcgacggcgacgcgtggtgccaccagcgcaag
atggccagcctcgagctcggcagcgtcaccgtgcgctcctacgcctacaa
gatcgtcgcccatgaggtggagacccgcctcctgcccgtcctcgccgacg
cagccgacaagggcaaggtggtcgacctccaggacgtgttccgccggttc
gccttcgacaccatctgcaagatctccttcggcttggacccaggctgcct
cgacctcgacatgcccatgtcggacctggcgaacgcgttcgacaccgnct
cgcgcctctccgncatgcggggcgccgcggcttcgccgttggtgtggaag
atgaagcgggatgctcacattgggtccgagagggagcntcagaaggggca
tcagctcgtcgacgacctcgcgtcggcgatgattctacagcggcggaagc
tgggttttgaaaatagccatgacctccctctccggntcatggnnctcgac
ggagacgtgcaagcatggnacgacagtacctcgcgacatcgtggtcagtt
tctcctcgccggggggacaagtgggctccggctgaccagctcttatccac
tgttcagaaccctgatttcgggcgcaatccccggaaccgggggaaaaccg
cccgttcaactttaagacttggtaacccccggtgttttaaaaattccctt
tccc

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