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Platform GPL3731 Query DataSets for GPL3731
Status Public on May 05, 2007
Title Chick Pineal 2006
Technology type spotted DNA/cDNA
Distribution non-commercial
Organism Gallus gallus
Manufacturer Laboratory for Functional Genomics, Department of Biology, Texas A&M University, College Station, TX 77843
Manufacture protocol The cDNA microarrays were prepared based upon approximately 4,000 PCR products from each of the two chicken pineal cDNA libraries constructed, for a total of ~8,000 ESTs. Briefly, the cDNA in plasmids from each library were PCR amplified using flanking primers (SK and T7), purified by ethanol precipitation using ammonium acetate, and placed in the wells of 96 well plates at a concentration of 50 ug/ml in 3X SSC. A GeneMachines OmniGrid microarrayer equipped with 8 Telechem SMP3 pins was used to spot the samples onto poly-L-lysine coated slides (CEL Associates). Duplicate 100 micron diameter spots were placed at intervals of 190 microns (center to center). Slides were printed in batches of 50–100. Printing was accomplished at 21.1 C and 60% humidity. The OmniGrid’s operating software used information on the position of the individual clones within the 96-well sample plates and the order in which the plates were used to create a file describing the position of each cDNA clone on the array for later analysis.

Slides were stored desiccated at room temperature until their subsequent use. Prior to hybridization, the dried spots were hydrated gently over a steaming water bath, snap dried, and the DNA was UV cross-linked using a Stratalinker (Stratagene).

Keywords = chick pineal gland
Keywords = circadian oscillator
 
 
Web link http://enterprise.bio.tamu.edu/chick_20030116/chick_20030116.html
Contributor(s) Karaganis SP, Bailey MJ, Beremand PD, Hammer RL, Thomas TL, Cassone VM
Submission date May 05, 2006
Last update date May 05, 2007
Contact name Phillip D. Beremand
E-mail(s) beremand@mail.bio.tamu.edu
Phone 979-845-0663
Fax 979-847-8805
Organization name Texas A&M University
Department Biology
Lab Laboratory for Functional Genomics
Street address
City College Station
State/province TX
ZIP/Postal code 77843-3258
Country USA
 
Samples (196) GSM112966, GSM112969, GSM112973, GSM113013, GSM113014, GSM113015 
Series (1)
GSE5292 Circadian Transcriptome of the Chicken Pineal In Vitro

Data table header descriptions
ID
SPOT_ID Descriptions given indicate the best ID for each EST based on BLAST analysis.
Accession_Number The accession numbers listed are for the chick pineal database maintained by thr Laboratory for Functional Genomics in the Biology Department at Texas A&M University. This public database can be viewed on the internet. The website is: http://enterprise.bio.tamu.edu/chick_20030116/chick_20030116.html This website is periodically updated and contains links showing sequence data for the ESTs and BLAST results.
SEQUENCE EST sequence

Data table
ID SPOT_ID Accession_Number SEQUENCE
1 TTHY_CHICK Transthyretin precursor (Prealbumin) (TBPA) cp1 AGGGAAGACGATCCGGGCGCGTAACAGGATCCCGCTGAGATCGACAGAACAATGCCTTACTCTACTTCTTGTTCTTAGCTGACTGTATTTCTCTTCGAAGCTGACCACTGGTCTCCCATGGCTCTGTTGATTCCAAATGCCCTCTCATGGTGAAAGTGCTGGATGCAGTCAGAGGAAGTCCTGCAGCTAACGTAGCTGTTAAAGTCTTTAAAAAGGCTGCAGATGGAACCTGGCAGGACTTTGCTACTGGGAAAACCACAGAGTTCGGTGAAATCCATGAGCTCACAACAGAAGAACAGTTTGTAGAAGGAGTATACAGAGTTGAGTTTGACACCAGTTCTTACTGGAAGGGACTTGGCCTTTTCCCATTCCATGAATATGCTGATGTGGGTTCACTGCTAATGATTCTGGCCACCGCCATTATACCATCGCTGCTCTCCTCAGTCCTTTCTCTTACTCAACAACTGCTTGTTGCAGTGAATCCCAGGAATGAAAACATACTGTCAATAGATATATATACCCTCCTCTGCTAAGACTATTATAGGTTTTTAAGAGGAAAGGTTTTCCGAATGGTAATGCAAAATCTTTTGCTCCATTAATTGGAATTTGGTTCTCATTTTGGAACCCGGCCAAAAATTTAGACAAGGCAATAAAAATGTAACTTTCCTTAANACCAAAAACAAAAAAAAAAAAACCCGGAGGGGGGGCCCCCGGACCCCACTTTCGCCCCTATACGGAGACCCAACTCACCAATCACTGGGCGGCCGGCTTAACACACGCCCGCAACTCGGAAACCCTGGGGGTGCCCCCACCTAATTCGCCTGTGAGACAATCCCCTCTTCCCCAGTGGGCATAAAACAAAAAGGGCCGACAATAACGCCTCCCCAACCTCCCACTCCCAAGCGCCAGCGCAATGTCACCCGCATATTCGGTCAACCCGCACACCTTCACCACCGTCCTTTCACCCCNGCCTACCCCCACTCCCTCACCCCCCTCTCACCGATTGCCCCCCGCCCGTGCCCCAACCGCGTCCGTCCACCCCCCCCCCCCACACGCAGCGCCGACCCGTCGCTGCG
2 no chromat cp2
3 no hit cp3 CACGGGGNNNAATGAACAGTGCAGTGCTCGAGCGCGTGGCCGCTCGATATATAGCTAGTGCATCCGCCGGCTGCAGGAATTCGGCACGAGGTGAGCTTTCTGGACATTGTAATTTATTGCTCCTGTTCATAAAAGGTGATGAATGTTACACATAGAAGAGTTTACAGGTCCTTGGGAAGGAACTTCAGCTGCCTGTTTACTTGGAAAGAAGCCTGGAAACAAACGGACAGACCAGAGCTGTGGAGTGTTCCGGTTGNTGCAGTACCCCATATCCCAGTTCTTGCAGCTGAGCATCAAGAGAACACTGGAATGGGTTGAATCTGTTCAGNTATGGTCTCTTTCCCTGTTTCTAAAAATGATTGGCTTCCTTATATCACAGGTGAAGGCTGCCTGACCCTATTNTTTTAATTTTATTTTTTTAAAGGGTGCCTTAAAGTGAAGGGGAGGAAGGCAGCTCTTAACTTTGGACATTTTCTTAAAGCTAGCCCAGACTGTGGTACAGGGTTGTTACTGGCTCCCCTCTGGGGGTGGCCAACGGCCCCCGTCTTTACCTCCGCCCCCTTTCCACGGCCGCAACCCCCACCCGACAGACTCCCGCAGCCTGTTGCGCGCACTCTCCCTTGCTCTTCCTCTTCTCATCCCTCCCCACTCCTCCTTCTTTCTTCTCACGCCTCCTCCCCACGCCCCCGCCCCGCGTGCTCGATCCCCGCCCTTCCCCCCCTCTCTCCGCNCTCCTCTCCGCGCGTCCCCNATCCCCGTCGCCNNCCCCCTCCTCCCCCCTTCCGTCCCCTACCCGACCCCGAACGCCCTTCTCCTTCCCTCTCTCCCCTTATCTCTACTCCCCCCGTCCCTCCCCACCTCCTCCCTCNTCCCTCTCGCGTCTCTCTCCCCTCCCCGACCCCTGTTCCCTCNTCTTCCTTACCTCTCGACCCCCCTGGTCCTCCCCGCTCTCCCCTCCCCCTTTCTCCTCCCCCCCTNCCCTCTGTCCCTCCNTCCCCCTCCCTCCCCCCCTCCCCCCTCCCACGCCCCCCCCCCTCCTCTCCTTCTCCACCCCAGGCTCCCCTCGTCCCCCGCCTGTCCCCTCCTCTTCCCGCCCCCTCTACACCCCGCTCTATCCTTCGCCCC
4 no hit cp4 CCCGGGGNNATAGCTAGTGCAGCTCAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGCACGAGGGAAGAGGAGGAAACTGATGAGACTTTTGTGTTGGGTATTTAATAATTTAGTATCTCCAGATTGGTCAGCACATAGAACTTTTATATAAATGTTTGTTTGGAAAAAAAGCTTTGGCCAATTTTTAAAAGACCAGCTTATCTCCACAGTCTTCTACCCAAGAGTTATTTACCAACTTAGGCCACCATTTGCAGCTTTGACCTTGAAGAAGGAGTGGTATTATGTGTAGAAATATGCAACATTCATCGTAGGTATGCGTTGAAAACTTTGAACCGCCGATACCGCACACGTCTTCACCAGCTCGCCCTTCAACACTCCCCACCTCTCCCACCCTCCCCGCCCCCCCTACCCTCCTTCCCCCCCGCCCCTTCCCCTCCCCCCCCCCCCCCTCCCCCCCCCCCGCCCCCCCCCCCCCCCCCTCCCCTCCTCCTTCCCCCCCCCCCCCTCCTCCTCTCTCCCCCCCCCCCTCCTTCTCCTCCTCTCCCCCCTCCCGCCCCCGCCTCCCTCCTCCTCCCGCGTCCCCCTCCCTCCTCCCTTCCTCCTCCTGTCCTCCCCTCCCCCCTTTCCTCCCC
5 ACDL_PIG Acyl-CoA dehydrogenase long-chain specific mitochondrial cp5 ACGGAAGAGTGGTCCGGGGCGTAACAGGATCCCGCTGAGAATCGACGAGGGGCCGCGCCGAGGCCTTGCTACAGCAGTCTGGCAGCGACAGACGCACGAACGCCGGAGCTTCTCTGTAAGCGCTGACTGACATCGCACTCGAAGATCTTCTCGCAGACCACGACATCTTCAGGGAGAGCACCAGGAAGTTCTTCCAGGAGGAAGTGCTGCCTTTTCATGCAGAATGGGAGAAGGATGGCCAGGTGAGCAGAGAGCTCTGNGAANNAGCTGGACAGCANGGNTTGCTGGNGTGTGCTATTGCTGAGAAACATGGAGGCANTGGAGCGGATANTTCTCTCTCAGCTGTGGTCTGGGAGGAGCAGATGTACGTCAACTGGACTGGNCCAAGATTCAGCCTCCATTCCGATATAGTCATGCCCTACATTGCANACTATGGCACTGAAGAACAGATCANACGCTNTATTNCTCAGATGGNTGCAGGCANGTGTATTGGTGCTATGGCCATGACGGAGCCTTGGNGCTGCAGTGACTTNGANGGGAGACNGACNTATGCCANNAAAGATGGANGNGACTGATTCTAATGGGAGTANGACTTCTCACTAATGGTGGATGNGNACGNNGNGATGNNGTACCGTACAACCCGNAGGTCGACTCCCGCACCGATAAGCTTTTTGGGGAAATGAACAAGGGTTACAAAGAGCAGCGCACAAATGCTGAAGCAGACCAGCAAGTGTTTGAAAGGCGTGCCCAGTCCTGTTGAAAAACAAACTCTATATATGCAACTCCTTGGAAGCTGCGATGTATCGGTTTGCCACTGAAACACGTGAAACCCGGAAACGCGGCACCAACGTTTGGAAANGGTGTCCCCTCCACCTGCCTCCCATCGCTACACCATCACANTTTNGGGGCTCGCCCTTTCTCAACTGTCCANCCTCCTTATCAACCCTCGTCCTTTCTCTTCTTATTGCACNCCNNATGCTTGCACCCCCC
6 no hit cp6 CACGGGGNNAGACTGTAGCTXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGCACGAGGGGAGTTTTTCTTTTGGGTTGTTTTCTGACTTCTTGTTTTGGTCCCTAGTTAACTCAGCAGTGGGAATCCATTCACTCCCTCAGTCTGAATGGTGAAACGTAAGCCCAACACAAGCTGTTACAGGTATCTGTCGTGATGTGCTGTTCTCTGGTATTAATTGTCACTTCTTGAATGTCCTACCTCATTTTTTATTTCTCTTATTACCAATTTTACACTCCACTTAGCTAATTTCAATTTAATTAAAGCANATGCTTGGTGTCATTACCATANATAGCATGAAGTGGCTTTCTGTTGCTGAACCACGCCCGAGCTCTCTTCTTGNTCTAACACGACTGTAGGAATTTCGGAACAATGACACATCCTTTGCAGGAGAATTTACGTATGGNGAANAGCTGGTATTGATTTCACAGGACTGGAAGNGCTGGAAGGGACCTCTAAAAGACATCTAATCCAACCCCCCTGCAAAGCAGGCTTCCAAGGCCAAGTCGCACAGATAGGCATTCAAGTGGGTCTTGGATGCCTCCAAAAAGGGGACTCCACAGGCCTCCTGGACAACCTAGGTCAGTGGTTCGTACCCCTCAATGGAAGACCTTGCCACCATTATGGGGAACCCTCCATGCTTTCAGGTGGGGGCGCGTCCTCTGGCCAATCCTCCACACAGCGGAGGGGCCTGCCCCTGCCCTTGCCCCCCCCCCTAGGTATTTACGCCTCGACCGAACCCCCCCACCACCCTGTGCACGGCGTCACCGACCACCCTCGCCGCCCCCCTTATACGCGCGCCCACGCCCGTGCGTTTTTCGCATCCTCTGCCCCTCCTCCAATACCTCCTTTTTCGCGCCAGCCCCCCTCTGACCCCACCCCTGCCACCCTCACGCCCCGCACAGCCACACCCCACCGCGTCACGTACTCCCTTCCAGCCACCTACACGCGCATCGTGCGCGGCTGCCGCCGCTCCTCACATCGGCGGGCTCGCGCGCGTCTGCCATTCCCCATACACCCACC
7 no hit cp7 GCGGNNNAAATGTCACAGCTGTGATCAGATCGTTNCGCTCGTATTATCTAGTGATGGCCTGACTGCAGNANTTCGGCACGAGGNGAGCCTTCTGGACATTGTAATTTATTGTTCCTGTTCATAAAAGGNGATGAATGTTACACATAGAAGCAGTTACAGGTGCTTGCGAAGGAACTTCAGCTGCCTGTTTACTTGTGAAGAAGCCTGGTACCCAACGGACAGACCACAGCTCTGGAGCGTACTCGTACAGGCAATACCCCGAATGCCCATGGATTTCTGACTGTGACTTTTGCTATTTGCTATTGACCACAGCCGCACGCGTGTCGATCCAATGACGCTCGCCCTCACCAAACAACAAGAACCTGTCTTGTGAGACACTACCTCATACTCGAGGCTTGAGCCTCCGACACCCACCTCTCTGTAACTGGGCAATGTGACACTTTGTCCCTCTCATCTCCCATTTCCATTACAAACTAATGATCTGGGACGGCGCGCCGCTCCCAACATGGCTCAAACCTGCGACNCCTCGCCGCCCCCACTGTGAATACACTCATTCGCCCACTTCGGCTCGTGCCCTCCCAAACTCCCAATATTCCCTTCTTTTTATTTCTTTAACCTTCACAACGACTACGTGGGGTGTGGAGCGGCGCAATCTCCCGCCCACCGCACATATGCTAATATTACACCTACAACCCGGTTCGTTGGTTCCTAACTTCTCGCCTCTCTTGCCGCCCTCCCCCCCCTCTCCCCTCTGGGCCTATGCGCAATCTCTATACTCCTTTCTCGCGCCCTTCCACAAGCATAGCCCATACGTCTCTCCCCTCTCGTCACGCCACTCTTTTTGTACATGCACCTCCCCTCTCACGTCGTATATGCCTTCTGCCCCTCGGTCCGTACCCTCTATCACTCACCTCCTCCATCTGTCCTCTCTCCTCCGCTTCACACTTCTATCTTTCCCTATCTCACTCATCATACTTCTCGCCACTTCNCTGACTCATCGTGCCCGCCTATCTCCCCCCCTTTACCTCTCACGTCCCCCCTTACTCAAATGTCCCGTAGCGTCCCTCTCCGTCCGTCGATACTCACCGCTCTTCTTTCTGTCTCTTCCATGCCTACCTACGACCTTCGACCTATCTCCCCGCGCTTCTGTATCCCCTCTCCTCCTATTCGATCTCCGTCAGCATCCACGATCCCGCGTGTCGTGCCCTCTTCCTAGACATCTTCCCGCCTCCCTCGCTCACTCTCCTACACTCTCATGACGTCTCTGCCTCGTCTCCCCCCGCTACTCCGACCTCACCCTCTATGCCTGTTGATCTTCCCTCTCCATCACTCTTTGTACCTTCGTTCCGTCTATCTCTACCATCCCTACTCTGCTCAATACATTATTCCTCAAGTCTCCCACCTCCTCACGCGTGTCCGACCTCTATGTCGATCGCTAATTGCTACTCTTCTCGCTCGCTCGTGATGCACTGCGCTCCTATCTCCTCTCTTGCCCCAATGAACGTATTCGCATCCTCTCTCGTCGTCCTTACACTCCTTAGTCCCTGCTCGCCATCATCTCTGTTCCACATTCGTCCCCGCTCGTCTACTCACGCTCGTTCTATGTTACATCGATCACTTCCTCTACATCTATCTCACGCTCTCC
8 no hit cp8 CGCGCNNNNATATGCAGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGCACGAGGCCGGGGTCCGCGGCGACGTCGGCTACCCACCCGACCCGTCTTGTAACACGGACCAAGGAGTCTAGCACGCGCGCGAGTCGTCGNCTCGCGCGAAAGCCCGCGCCGCCACAGNCCCGCGCCCCGCACGCCCCCGCCATGTCCGACACGTTCGTGCACACCAGCGCCGAGATCTGTGCCAAGCACCTAATAGAGAACACGTTCGTTCTCCTTCTCGCAACACATGCCGCCCTTGGTTCCTCACCGCTCCGCACGCCACCCCTCTTCCACGCATCGCCCTCCCACCTCCTCCTTCCCCCCGCGAGTGTCCCTCTTCTCTCTTCCTTCCCGCATCTCCTCTCCTCTCTCCCGTCCGTTCGTCCACTTCTAGTCTCCCTTTGCTCCTCCCGTCCCCCATCTGTCTCCCTCCCCCCCCCCTTTCCTCCGCCCCCCCCGTCTCCCGCCCGCTCCCCCTCCTCTATCTGACGCCGCGCTTGCTCCCCTTCTGCGTCCTTCCCCCCTCTCCCCGATAAGCCCCTCCTCGTCTTTCTCTCTTCCCTCGTCGTCTCTCACCCTCGCTCCATCTCTCCTCTCGGATGCGCTCCTCCTCCTACCCTCCTCCCTCGCTCGTCATCCTTCCCATCGCCCACTTCTCGCCTTTTATCCAACCACGTTATCCACGTCCATCATCCCTCCCCTCTTCCCTCACTCCTCCTTGCCCACGCGATCTCCCCTCTCGTCCTCCCCCTCTCTTCTCCTCTCCTCTTCGCCTACTTCGTGCTCCTCGCCTCCGCCCCCCGTTCTCTCCGATCTGGCTTACGCCGTCTCTCGCCCTCTGCTGCCCCTGTCTCATGCTCCCCCTCCCGCTGGCGATCCTCGTCTCTCCCGACGCCCTAGCTCCCGCTCTCGCCTCCCTGGTGCTCACTCCCGATCCTTCCACCCTGTCTTCTCAGTCTATCTCCCCCACCGTCTTCACTTCAGTCCATTATCCCGTCGCATCTAATCCTTCTCTGCCCTCTCTCCTCCTGCCTTCTGCGCTCCCATTCCTCTGCCGACACTGCTCTTCCTCCCACGCTCCTACGCTCTCTCTCTCCGCGACCACTCTCTCCTCCCTGTGATATGTTACCGTCCTCTCCCTCCTGAGCCCCTCCCCTCTTGCTTCCCTCCCTTGCTCCTCTCTCGTCCGCTCACTCGCCTCCTCGTCTTCTCCTCGTCCGTCATCTTCTCCCCCACTTCTCCCCCTGTCCTTTTCTCTCCCTCTTCCCCTTCTGATCGGCTCGCCTACCCCCCTCCCCG
9 acetyl-Coenzyme A dehydrogenase long-chain Acyl Coenzyme A cp9 ACGGGNAGCAGCGTGAGCTCACGGNGCGCCGTGTGANATAGATACCACCCCGAGTGAGGAGGTCGAACGANCGCCTTTTAGAACTGAACTTATAGCCCTGCTGTACCAGGCGAGGAGAGCTACACGAAGAGCGACGGTACCTGTTTCTTGGTAAGGAGCTGACTGACATCTGTTCTCATGTAGAAAATCTCGCGGGACCACCACATCTATCCAGGAGAGCGCCACGATATTCTTCCAGGACGAAGCGCTGTCTTTCCATGCAGAATGGGAGAAGGATGGCCACGTGAGCAGAGAGCTCTGGGAAAAAGCTGGACAGCAAGGCTTGCTGCGTGATGCTATTGCTGAGAAACATGGAGGCATTGTAGCGGATATTCTCTCCTCAACTGGGGGCTGGGAGGAGCACATGTACGCTCACTGTACCGGGCCACGAATTAACCTCCATTTCGATATAAGTCATGCCCTCACATGTAAACCATGGCGCCGAAGAACAAAACTACGCTTTATTCCTCACACGGTTGCAGGCCAGTGCATAGGGGCTCTTGTGCTGACGGAGCCCTGGGCTTGCACCGACTCTCCCGGAGATCCGGCCTATCGCGCACACGAGGCGGGGGACTGGGATTTTTTTGTGGGGCACACTTTCTTCCCTAACGTCGGCGGTGTGTTCCCCGTAATTCGCCTTCGCCTACACCCCCCCGCGCTCCTCTGTCTCGCCGCGCGCGACTGACGCCCTTCGCGGCAGACCCGATCCTTCCCGTCGTTCTCGCCGTCTCTCGCCCTCCTACGCCCGCTGCTTGCGCGTCGCTCTCGTCCTCTCCGCACTTCGCTCCCGTCCCTCTGCTCTTCGCCTTCTCCCTCTCCCTCCCCCTGCCATCCCCTCACGGTCTCTCCCTTCCGCTCCCTTCGTCTCCTCTCTCTCCCCCCTTCCCGCCCCCCAATCGACCTTCCTGATGCCTTCCCCGCTCCCCCCCATTTCTCCCCGCCTCCCTGTATCATCGGTTCTCGTCCTCCTCCCGCCTCCGGAGTGTCCCGGCATCTCTCTCCGGCTGTCCCCGCGTGTTTGGCCCCCTAAGCCTTGCTGCACTTCTCTCTCGCTCGTCTGTCTCACGTCTCGCTGTCGCCA
10 tyrosine 3-monooxgenase/tryptophan 5-monooxgenase activation cp10 CACGGGGNNAAAGACAGXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGCACGAGGCCGTCACCGCCGCAGCAGCGCCAGGAGCCGCCGCCTCCTCCTCCTCTTTCCTCCTCCTCCTTCTCCTCTTTCCTCCTCCTCCTCCCGCAGCCCGCAGCCTCCGCGCCCTTTCCCCTCCCGGCCCCGCGAAGATGGTGGACCGCGAGCAGCTGGTGCAGAAGGCCCGGCTGGCCGAGCAAGCCGAGCGCTACGACGACATGGCGGCCGCCATGAAGAACGTGACAGAACTGAACGAGCCTCTGTCCAACGAAGAGAGGAACCTTCTCTCTGTCGCCTACAAGAATGTTGTGGGGGCACGGCGCTCGTCCTGGCGAGTCATCAGCAGCATCGAGCAGAAGACCTCAGCTGATGGCAATGAGAAGAAGATCGAGATGGTACGGGCCTACCGTGAGAAAATCGAGAAGGAGTTGGAAGCCGTGTGCCAGGACGTGCTGAGCCTGCTGGACAACTACCTGATCAAGAACTGCAGCGAGACGCAGTACGAGAGCAAAGTCTTCTACCTGAAGATGAAAGGNGACTATTACCGCTACCTGGCCCGAGGGGCCACCGGCGAGAAGAGGGCGACCGTGGTGGAGCCTTCGGAGAAGGCCTACAGCGAGGCCCACGAGAACAGCAAGGAACACATGCAGCCGACCCACCCCAATCGGCTCGGCCTGGGGCTCAACAACTCCGTTTTCTAATACGAAATCCAGAACGCCCCCGGAGCAGCCTGGCACCTGGCCAAAGAGGCGGTCGAAGAACCCATTGCCGAACTGGAACCCTCAAAGAGACTCCTACAAGAATAACGGTCATATGCAGTTCTCGTGAAACCAAACCTCTGGAAACAATAGNAGACACAAGTGGAAAGCAAATAAACCCAAAGCGGGGCCACGCCGCCAAATGCGCTTTTTTTCCACAGGGCTGGCCGTCGCTCTTGATCTCCCAAACCTTCGCCATACCCCATCTCACTACACCTGTGTCGGCGTACAGCCGTAGCGGCCCC
11 SYTF_HUMAN Synaptotagmin XV (SytXV) (Chr10Syt) cp11 TACGGGGNNATACTGCXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGCACGAGGGGCAGGGCGGATGGAGGCGAGCAGAGCGAGGAGCCCGAGCACCCATGCCCGTAACTGCATACTTGCTCTGGAAGAAGCTCTGCCTTGCATATTCTTACCAAGAGCTCCCTAATACTGTCAAAACAACACCTGTGAATGCCATCTTGCAAGACCAGTCATCTTCTGAAATTCAACCAAAAAGCACAAGATCCAAAAGCATCCCATTTATAATACCACCAACACTGCATGGGCGAGACTGGATTAACCTGACAAATGAAGAACAAATTCAGGAAGACAATAACTCCTGCATGACTCCCCAGTCTGGGCCACGGTCATCATTTCATTCTTTGGCTGGAGCTTACATTGTAGGGACCGTCAACCCAGAGCTGTACAAGTTTCCTGAAGACAAGAGTGAGACCGACTTTCCTGAAGGCAACATTGGCCGTCTCTGGTTCTCTGTAGAATATAAACAAGCATCCGAAAGGCTCCTCATCTCCTTGATCAAAGCCAGGAAGCTGCAGCCTCCTGCTGATTCCTGCAGTCCCTTTGTGAAAATCTACCTGCTGCCTGATGAAAGATGCTACCTGCAGGCTAAAGTAAAGCGGAAAACCCTTAATCCACAGTTTGAGGAAAACTTTGGTTTCCAGGTTTCAGGAAAACAATGCTTCAGAAGACTCTGAAGTTTCTGGGTTAATATGGTGGAAAACCAAAAGCCCCCCACCCTCCTAAGGCCCAGTCATTTTTCCCACTGGAAAAAAGACACCTTTAACTGGATGACCGGCAAAAGTACTCCGAATGGGAGAAGACACGTGAAAGGAAAAAAACCTAAAGGACCTCCCCCTCAAAAGAATTGGGGGAAATCCCCAGTTTTTTCCCTTTAGGTTAACAATAGAACTACCCCGGGGGGCCGTTTTAACTGGGGGGTGGGTCTTTGGAGCGCTCAGGGGGTGATTAAAGGGTTCCAAGCAATGTAGAACCCCGCGAAGCTCTCATCGACNATCGTCCCAGAGCCTCCCTTTCTGACGACCTCCCGCTCATCGTCGTCGCCCACTCCTCNACGTACGATCCCTTGCTGTCTCGGATTCCCCCCCATCCCCGCAGCATCTCCGACCCCTCTTTGGTCTATCCCGCTATACCGTTAAAGCCGTTCTATCTTTCACTGCCCAACGCCTCATCGCCTGCCGCCGAATCGTTCTATCTCCGATCGCCGCC
12 similar to tubulin-folding protein TBCE [Rattus norvegicus] cp12 CACGGGGNNATATGTTACXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGCACGAGGCAGGGATCCTAAATTACAGCAGGAAGAGCACCCTCCTTACGTGAAATCAATGTCATTAGGCAGTATTTTAGAACACGCTATTGACCTTTATCAACATGAAGTATTTTATTGCTAAATTACCTAATTTTAACTCACTTTAGAACTTTCGTAGGACAGTTTCAGTTCCGAACCAGGAATTCTAAGTAGGCGATAGAGCAATCCTTTGACCCTTTGAATAGTCATGGACTCTGAAAAAGGGAGGTGTCGGGAAAAAGTTATTAGAAAAATGCTGCTACCACGGAGCTGTACTGCTTTTTCAGCTATACTTGCTCATAGCAACAGAGAAAGGCTGTACTGCTGCTTCAGTTCTAACACTGCAATAACGTATTTTGTACCTGAAATGATAACTGCTAACATCAAGTTGAAAATGGTTTAATCTCTGGTGGATCAGACAGGACGCTACCATGTTTTAAGGTGTGGATCCCACGTACCANACTGAAGTGTTACGGCTTCATAATTTACCTTTGAGTTTGAATTTACTCCACGCTAAAACCAAGTGACCTTTGGGACACGTACCAGGCAGGTTTGATGCTGGCAGCTGCCACCCATTCCTTCAAGTTCTCGTACCTTGAATCGGCTTTCCCAGCACAACTATCACTGTGGACCCCATGCCCTTCCTACCAGTAAGTGCTTGTAACTTAACCAGGCCCCCAGCAGTCTGCCAGCAGAAGCGGTACAGCCGGTTCTATTATGAAAGCAGGTACCCTGGGGGGATATCTTTTATACTGAATCTCGGCCTGGGGGAAGAACCGGCAGTTCCCTCCAGGGGCGCACCCGGCTCGCCACACACCTCACCCGNAAAACCAACACACCCCCCACTTCCCCTTCTTTTGGAGCGTTCATCTCNCGGCCCCAGGANTTGCGGGCCACTCNTGCCACGCCCCAACCGTGGTCTCTACACACAATCTCTTCTTTCATCACCCTCTCTCGCAAACGCCCGCCCCACTTCCCCGCAATCTGATGCCCCCTCGNGACACCACAATGTCCCTCCTCTCCNGACCNNCGANACCCCCCCCCCTCCCACTCTTCCGCGGCGCCCCCCGGTCCCCCCTCTCACCCTTGGGGNCTCCG
13 Hypothetical protein CBG04553 [Caenorhabditis briggsae] cp13 GCTGGNNNAGATGTGGAGCTGTXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGCACGAGGCACAGNAGCTCGNTGATGCGTAGTGCTGCTGCCCGCGTACCTAATGCTCGTCGACGCATGCCTGTGCAGCGAGGACCGTTCGCAGCTTATGAACGCTCCAGTGCCTGTAGATGAGATAGCCAAGTGTAACTCACGGTACATGCTGCGCAGGACAGGCTCAGATCCGAACCAGTGATTCGAAGCCACTGATAGAGCAAGCCTTTGACCCTTGGCAAAACAGGAAGACTGAGCAGGAACGCGTCCATACCGGTGGTTGGAAAGTCAGCCAACCTGCGAGTCTGCCATGACACGAGAGTGACACTCACTCAGACTGCGCGAGTTGGAAAATTTCTGTCAGGACGATGTGCCTGATGCCCCATCTGATTGTCACATCTCATGCCCGTTCACATGACAGCCATGTCTCAGTGCTACAGATCGTCCCAGTACAGGAGTGTCCGCCAGAAGCATACAGCGCGGTGAACTCCCCCCACCTCCCGCAGAAAACTCCGGAAGCCCATGGCGGGCATGGATGCCTAGGCGGAAGCCCCCTAGAACTGGCTTTTGCGCCAAGGAGGGGGAAATCTGCCGGATGGGGAAAACCGGAAAATTTTTCGGCCCTGGTTGTGCTTTTGAGGGACCCCCCCAACCCCTGGGGGGCTCAAGTGGGGCCCCACCTAAGGAACCCTCCCCCACCCCGGGGGGGAGGGAGGAGAGAACTTTTTTCGGGGGTTTTTCTTCTCTTGAAAGGAGATCCTCTCAAATGGATGGGGGGGTTTTCACGGAATTCCCCTCCCCAATAACCCCCCAAATCCGGGGGTTTTTTGGCTCGGGGGACCCGGCCCTCTCTCCAAAGGGGGAACCCCCGCGCTATTCCGACAATTATTAAAAACCCCCCGCGGGGGAACCCATTGGGGAAAAGGGGGGGCCCCATCTTTTTATATATCGGGGGGGGGGCACAAGAGGTATCACCCAACACGGCTCCACTGGACCCCAGATATCTCTCGCGCGCAATCCCGCTAACGCCACTCAACCGTCCTGGGCTCCACCCCCGCCCTCTGGTGGCGTGAAATCCCATGGCCCTCCCTCCCACATCAACCTCCAAACTAAACGTCTTGCGCCTCACTTCTGGCTCCGCCACATTACTTTCGACTGCCCC
14 SWI/SNF-related matrix-associated actin-dependent regulator of cp14 ATGTTTACTGAGGCGTCACGGCGCGCGTTAACAGTGATCCCTCGCTGAGAGTTCGACAGGCGCCGCCGTCTCCGCTCCGNACCCGACCCGTATATGAGAGGCCCAGCCCGCTCCGCCTCCGCGCCGCCCCGGATACCGCCCGATGNGGCCTTCAGGAGCGCAGTACCAGCGTCCTGGGATGCCTCCAGCCAGCCGCATGCCCATGGCAGGGCTGCAGGTGGAACCTCCAGGAGCACCCCAATATGGAGCAGAATCCCCTCTGCGACCCGGCCTGCCCCAGTCCATGATGGACCCCTTAGGAAGCGCCTGCTGGCTCCCAGTCACAGGCACCCATGGCCACCCAGAGGAGAGGGGTGAAAAGGAGGAAGATGCCTGACAAGGTCCTGGCACAAAAGGATCCGGGAAACTTGTCCCAAGAAATCCCAAGGCCTACATGGAACCTTCCTCGGCCTTGGAACGCAAGGCTGGAACCAAACCAATCGCTTCGAAAGAAGATGAAGAATTAAAAAGCCAATAGGAAACCACTGACGCAAAAGCGGAAGCTGAAGAATAACATTTTCAACACTTTCACCCCGGCCAAGGAAAAAGAGAAGGTGGTGAACGTTTGGCCCTCTGGAAACTACGGGGGGAGGGGAAACTGCTGGAGGAACCCAGCAGGCAGAAGAAGAAGGTTCTCCTCCTTTTTAAGAAGCCTGGAATTGACTGGACAAGAGCTGGAAGGCCAAAAACAATTGTGGAAGGGACGTTACCAGACCAGAGAAGAGGTTCAGGAACGCCGCGAGCAAGGAAGGATTGTGTAGTGACCACAAAAAAATGCCTCTGTGCGTGGGCACAACGCAATAGGTGGTATAGCAATGGAGCAAGAATCGAGCTGCGATAGCGGCTTGACAAATGGTCGCCCATAAAAATTGGGCGACAAGCTTATCGGC
15 no hit cp15 TACGTNNNATATGTCAGAGCTGTGCTCGCAGCGCGGGNNCGTCTGNTCTATAAGTATCGCATCGCCTCGACTGCAGGAGTTCGAGACGAGGNCCAACAGCTCGCTCCTGCGTAGTGCTGCTGACCGGGCCTAAGCTCGACGCACTGTGCTGTGAGCGAGGACCGATCCGGTCATGACGCTCCAGGCTGAGATATGACGCGATGCTGGACCGGCCCTGACAGCTGTGACGCTACCCTGACCAAGGTTTGCGTCTTGAACTTCAGCCAATGCATCTGGAACCATGACGGCCACGCAGAAGGTACTCTTGAGAGCGGAGACTGACAATAGACACCTTCCAATGCCAATGATGGACACTGATGGACCCGAAATTAGTCTGGGAACTAATGCTGCGCATTAAGATTATCGAGCACTCTGCAACGTCGCGGGCATGCTGTGAGACATAGACACACAAGATACGGGCACTACAACATTGATGCACCTGCAGAAATGCTCCGGAGCTGACAGCTTTGTGACAAAATAAAGGTCATTCAAGTGACCACTCAAAAAAAAAAAAAAAAAAAAAACTTCGAGGGGGGGGGGCCCCGGGAACCCCACATTCCGCCCCTAATAGTGGAGGTCGGAAATTACAAATTTAACTGGGCCCGGCCGGGTTTTAAAAACGGGCCGGGGACTGGGGAAAAAACCCCTGGGCGGGTTAACCCCAACCTTTAAACGGGCCCTGTTAAGGAAAATTTCCCCCTTTTTCGCCCAGGTTGGGCGGAAAAAAACGAAAAAAAGGCCCCCGCCCCGATTCGCCCTTTTCCAAAAAATTGCCCAACCCTGAAAGGGCAAATGGCAAAATGGTAAGGCCGTATAATTTGGTAAAAATCGGCGTAACTTTTTTAAAAACCAGTCCTTTTTTACCCCACGGCGGAAACCGGGACTACCTCTATAATCCAAAGAAACCCGGGTAGGTGTTCGCCTTCTCACCTCTGACCATCTTCCACTTTCCTCGTGCGCCTCCTCAACGCGTACACCTTTCGCGCGATACTCCTCCGCCACATCCCTCTTCCCTGCTATCG
16 no hit cp16 AGGGGGGGNNTAAGCAGCGCGCTXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXATTCGGCACGAGGCGGAAAGCCTGAGGGGACGGCGGAGGCATCGCCCCGGCGCTTGCCTCTCTCGNGTATCCCCTGAGGAAAGCCGGCCGCGAGGCGTTCCCGGGCTTTTGTTGGTGAACCTTCTGACTGGTTTACAAGTTCACCTCCGGCCGTCGTGCCGCGGCAGAGCGCGNACGNAGCGGGCCGGGACNCGACGAGGCACGGCGAGTAGCAGCATCCTTCAGATCGCGCTGCACTAATAGCAAGGTTAACAGACGCGGGGTGACGGGCTTGTGGTGTCGNGGAGNCGNNNNNNCCTGCCTNNCNCCCCCCCNNCCNTTNNNCCNNCCNTCNNNNNNNNNNCTNNNNNNTCCTTCTCTNNNNTTCCNTNCNNNTNTNNNCTTCTTCTCNNNNNNNNNCCCNNNNTNNNCCNCTNNNTNNNNNNNCCCCCTNTTTNNNNNNNNNCTCNCNNNNNNNNNTNTTTNCCCNTCCCTTNNCCCCCTNTNCCCNNNNNCCCCCCCCTNNNNNNNCNTCCNNNCCNTNNNNTTTNTNNNNNNNNNNNNNNNNNNTTTNTTNTNNNNNNCCTTCNNNNNTNNTNNNTGCCGCTCTCCCNTNNCCCCCCTNCCNCCGCTNCCTCCCCGTNNNNGCNTCCCTCCCNCCCCCTCCCTTTCCNCCCTGTCCCTTNNCCCCNCCCCNTCTCNCNTTNNNNNCCCNNTGGCNNNTNCCTCCCNNNCCCTTCNGCCTCCCNTTCGGCCCCNCCNNCTCTCCCNNNCCNCGTTTTCCCTNNCNCNCCNTCTTTCTCTCNCTCCCCCTGTTCNNCGCCTCNCCTCGCTCCCTCCCCTTTCCGCCNCNTNCCCCGNNNCNNGTCCCNNNNTTNNTCCGNGCCCTNCTCNTCCCCCCTGTGCCC
17 no hit cp17 AGGGTATGAGTGAGTCCGGGCGGCGTAAAATGATCCCGCTGAGAATTGACGAGGCCGGCGACTTCCGTCGCCCCGCTCTCAGCATGACAGGCTTACTCAATTGAAGACGCGACACACCTGACTTAGCTCGCGCACACTGATGTATGCCGTTCTAAGCTCTACAGCCGTTTTTCAGACAGGGAAGACAGAACAGTCATACTGAAAATATGGTATTACACCTACTCAAAAAGCAGTTGCAATGAAATACCCTAGATAGGTGGGGACTGCAACTACACGATCATACCAAGGAGAGAGGAAACTGATCAGCTTCTAAACCAAGGTAGAAGAAGGAATGAAGGAAACTTTTTCAATGGCAATCTGGAAAAGGGGTAAAAAACGGATTGGCCCAGCCCATTTCTGAAAAGGAGGGGGTCATTCGATAGGATAACTGGCCCCCACGGCTTGATGGGCCGCTTGGGTAAAAGTACGAACATAAAATGAAGGTTGTTTAATAAGGAGAATCACCCTTTTCGAAACATAAAATCTGCATTCAAACCGGTTGGAATATTCTATTCTAGGGGGAGGTAACTGCAAAAGGACCGGCATAACTGGCATATGGGCGGGAAGGAAACTCCTGCAAAAGGCTACCTGAGGGGGAGGGCCTTCCCCGNGCCCGCCCTCCTCCGCTCCCCCCCCCCCGGTCCCCTCCCTCCTCCCCGCCCCCCCCTCCCCCCTGCCCCCCCTGCGGTGTCGCTCTCCCTCCCCCTCTCCCCGCCGCTCTTTCGCTCTCCCGCCCCGGCCCGCGCGCCCCTTCCCCTCCGCCCCCTGTCGTGGCCCCCTGGGCCGCCGCCTGGCGGCCTCCCCCTNCTCGCCGTCCTTGCCTCTTCGCGCCGCGCG
18 TTHY_CHICK Transthyretin precursor (Prealbumin) (TBPA) cp18 AGGGGGATATGAGTGAGCTCACCGGTGCGGCGTCTAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXGCACGAGGAACAGAATGGCCTTTCACTCTACTCTTCTTGTTTTCTTAGCTGGACTGGTATTTCTCTCCGAAGCTGCACCACTGGTCTCCCATGGCTCTGTTGATTCCAAATGCCCTCTCATGGTGAAAGTGCTGGATGCAGTCAGAGGAAGTCCTGCAGCTAACGTAGCTGTTAAAGTCTTTAANAAGGCTGCAGATGGAACCTGGCAGGACTTTGCTACTGGGAAAACCACAGAGTTCGGTGAAATCCATGAGCTCACAACAGAAGAACAGTTTGTAGAAGGAGTATACAGAGTTGAGTTTGACACCAGTTCTTACTGGAAGGGACTTGGCCTTTCCCCATTCCATGAATATGCTGATGGGGGGTTCACTGCTAATGATTCTGGCCACCGCCATTATACCATCGCTGCTCTTCTCAAGCCCTTCTCTTACTCANCAACTGCTGGTGGCAGTGATCCCCAGAAATGAAAACATACTGGCAATAGATATATATACCCCTCTCTGCTAAGACTAATAAAGGTTTTTAAGAGGAAGGGTTTTTCGATTGNTAATGCAAAACCTTTTGCTACATTAATCGGTAATCTGCTCTCACCTTCGAACCCCGCCACCAATTCCNTAACACGCANNANNCCGGCACTTCCTTTCAANCCCNGCCNNNCCCNNNTTACCTTCCTGGGCCGNGCCCGGTCCTACCCNTCTGCGCTCCNCNCGNNCCNNNNNATCACNCCCNTCGCCCGGGNCTTTNNCTCNCCCGNNCCNGCCCANCCCNNNCCTGCGCCNCCCCCCNTTCGNNNGCGNNCCCCCCCGCCNNNGGCNCCNNCCCCCNNTCCGNCNNCCCCCCNCTCNCTCCCCNCCACCCNCNCCCCNCCCGCCTNNNCGCCNNCCCCAATTCCCACCTCCGCCCCCNNNCGCGCCGNCNCCCCNTCCTCCCGTCCCCGNGCTGTCCGGACGNGCGCGCTCCCGNCCTCCGCCCTCCTCCCTGATCACTTCCGCACCTACCACTATGCCNNNCCCCCCGCTTCGCCCCCCTCCCCCC
19 CYT_CHICK Cystatin precursor (Egg-white cystatin) cp19 AGGGGTTGAAAGCTGAGCTCCACGGTGCGCCGTCTAAACTAGGATCCCCCGGCTGCAGGAATTCGGCACGAGGGGCAGGAGCTCGGTGTTGCGTAGTGCTGCTGGCCGCGGCCCTAATGCTCGTCGGCGCTGTCCTGTGCAGCGAGGACCGCTCCCGGCTCCTGAGGGCTCCAGTGCCTGTAGATGAGAACGACGAGGGCTTGCAGCGGGCCCTGCAGTTCGCCATGGCCGAGTACAACAGGGCCAGCAACGATAAGTACTCCAGCCGGGTGGTGCGGGTCATCAGCGCCAAGCGGCAGCTCGTGTCTGGAATCAAGTACATCCTGCAGGTTGAGATTGGTCGGACAACTTGCCCCAAGTCATCAGGTGATCTCCAGAGCTGCGAATTCCACGATGAGCCAGAGATGGCTAAGTATACCACATGCACCTTTGTAGTGTACAGTATTCCTTGGCTAAACCAAATTAAACTGCTGGAAAGCAAGTGCCAGTAAGCCTCTCTTGGCTCCAGCAGTGACCAGCAACCAGNTACTTGGAGGAAAAAAGAAGCAATAACATGAATTGAGATGGATTGTATCGCTGCCTGTTAACTCATACTTCTGTACGCTTGTGCTATGCANGTAAAACTATGTAATCTTACTATAGAGCACAGTACGATCTCGACTTTATTTTTCCTCTTTGNAGNTATAATTTTGGAGGAACTGGTTTGCCTTCTCGCAACTTTTCCAATAAAGCACTTCCAGTGTCAGAAATGAAAATGAATTTGTGTCCCTATAAGTGACTACTGGAACATTAAAACTCATTCATCATTACAAAAAAAAAAAAACTCGAGGGGGCGCCCGTCCCCAATTCGCCTATGGGAGCGCATTACAATCCTGGCCCGCGTTTAACACGCGTGACTGAAAAACCCTGCTTTCCCATCTAATCCGCTGACACCATCTCCTTTCCGCACCTGACAAAAGAAGAGAGCCCGCCCGATCCCTTTCCCACTATCGTCACCCCATGCCGAAGTCACTCGTTNTTTCATTTTTTAAACTCCCGTTATTCTACGACTATTTTATTCTATACCTGCTGACTCCTCTCACCTTAATCCCGTAACACCTCGTAGGTGCCC
20 similar to proteasome 26S non-ATPase subunit 3 [Rattus norvegicus] cp20 ACCCGGGGNNATACGAAGCTXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXCTCTGGAGGACATCAAAGAGCACGTGAAGCAGCTGCAGAAGGCCGTGGCGGGGAAGGAGCCGCGTTACGTCCTGAGGGCGCTGCGGCCGCTGCCCTCCACCTCCCGCCGCCTCAACGCCAACGTGCTCCATAAGGCCGTCAACGGCTTCTTCACCTCCAACGGCGCCGTGCGCGATTTCCTCCTCGACTTCCTAGAGGAGCCCATGGACACAGAGGCTGAGCTGCAGTTTCGCCCGCGCATGGGGAAGGCCGCCTCAGCCCCTCTGCTGCCAGAAGCGTAGACTTACCTGCAGCTGCTCCTCGCTATCTACCTGATGACCAGCATGCGNTACCCCGAGGCTCACAAAGTGTCTGACGACCTGATGCACCNGATCAGNTTCCAGACACGCCGTTCCCTCGGACCTGTGGTCGCCCACGTCCTATACTATCACTCCCCCACCTATGAATCCCCCTATACACTTCGCTGTGCCTCATGTCTCCTCTCCTCCACCCCGCGCGTTCGNGGCTACAGCCATCGCTCCGGCCCACGCGCTCCCATCACGGCGCCTCAGACCTCACTCGCCTTGCCTCAACACCCTTGTCTTCCGCCCTGAGCGTTCACTTTATACTTTTTCGTCGTTCACTGTTATGCCTTTCTGATCGCTGAGTGCTTAGTCGTCTGCCACGTTTTTTACACGCGTCGTACCCTCCTACCCCATACGCCTTCTCCCTTACCCTCATCGTCTCACCTTGCCCCCCTCCCTCCCCTCACCCTCTCCGTTTCCTATCGGCTGCCGACCGTTTCCCTACCCCTCCCCCATTCCACGTCCNTTACTCGCCTACTANTCCGCCGCCTCCCNTCGTTTTATCCCTGATCGTTTGCTCCACCTTCNTCTTTCCCTCTGCATTGCTTGCTTCCTCNTCTCACNCTCCACTNTACCGCCCTTCCTCGCCTGCCTGACTGCTTCTGCCCCNGCGCTTCGACCCCACCATCTCGCGCGTCACTTTGACCTCTCCTGCCGATTCCCCACGTCGCTAGGTCCCTATTCGTCCACCCCTCCTTTTCGTCCTCCTTTCTCCGTCCTTCGTTCGACTTCCTCGCACTCTCCCTTTCCTCTCCGCTCCTATCNCGCCGTTAATTCGACCTGTTCTCCNCCTCCACGTCCAGTCCNATTCTTGGTCTTCTCTTTCCTTCTCCCGCCGCGCCCCCTTCGTTTCCTACCTGCCCCCNCCCCGGGCCTCGCCCCCCTCTTCCCGTCCCCCTCCTCCGCCTTATTTTCCCCACCCTCTCCGATTCCTCATCTCGATTCGCCTCCTTTGTTCNCCTGCTTTTCTCCTGCAGCCCCNTCCTACTTCCTCCAGCTTCCCCCATTCTTCCCCATCCACTCCGTCANTCCTCTTCCTTTCATCGCACCCGAANCGTCTCTTTCTATCCGCCCGCCTTATGTCATCGGCCGTCTTGCATGATCTCATCTCCCTCATCCCTCGATCTGTCTCCCCAGACCTCACCCGTTCGACTTCTCCCCCCCCCCTCATCCCCTGCTCGTTTGAGTTGAATCCCCGCCCCCCACTACTCTCTCCCTCCCCCCCTATCNTCCTCTCCCTCCGCCTCCTTCCCCTCACATTCCCTCCTCTTCTCTTCTCCCCCGCCCCTCTCTGTTCGCCC

Total number of rows: 8084

Table truncated, full table size 6459 Kbytes.




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