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Alignments
The following features are aligned
Analyses
This mRNA is derived from or has results from the following analyses
Properties
| Property Name | Value |
| Seed ortholog | 112098.XP_008607426.1 |
| PFAMs | RRM_1 |
| Max annot lvl | 2759|Eukaryota |
| KEGG ko | ko:K13126 |
| KEGG Pathway | ko03013,ko03015,ko03018,map03013,map03015,map03018 |
| Evalue | 2.76e-06 |
| EggNOG OGs | KOG0123@1|root,KOG0123@2759|Eukaryota |
| Description | RNA binding |
| COG category | J |
| BRITE | ko00000,ko00001,ko03019,ko03041 |
Relationships
This mRNA is a part of the following gene feature(s):
The following stop_codon feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| Ggra9523.t1.stop1 | Ggra9523.t1.stop1 | Gracilaria gracilis GNS1m male | stop_codon | tig00000873_pilon 436199..436201 - |
The following CDS feature(s) are a part of this mRNA:
The following exon feature(s) are a part of this mRNA:
The following start_codon feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| Ggra9523.t1.start1 | Ggra9523.t1.start1 | Gracilaria gracilis GNS1m male | start_codon | tig00000873_pilon 439412..439414 - |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
mRNA sequence >Ggra9523.t1 ID=Ggra9523.t1|Name=Ggra9523.t1|organism=Gracilaria gracilis GNS1m male|type=mRNA|length=1072bp MVNEHAERDAEWSHDRLRDPRPGKKPRLSVPDEPPISPRSAPPPPPAGGS GGGGGGADPPVPRILLANLDYNTTEHDIDDFFRAAGVDVKRVSLVKVSPG NRVNGNAYVYVLDLRSVDVALDLDGAEFRGRKLRVSTMPEDQRTVCVRGM PRPSSEKDVRELFRGCSIVDARSRPVKGGPPDMNTWFVDFADEDSFRRAL DKDRSLPGLTICIATAQGRGTPRTREYRDNALPPDGDRRGAPGRDDRFRD DRYRDEPPRDDRARDRDDRPHRDDRAPRDDRLRDERGLEGRDSADRHPER SRDEVDRHGRDEYDRRTRNESPKRYDRRADGDRNGDVGNGFSSRARGHSR SRSPPARFERERRYDRHEYDRRDRRGAGYDDAYDRHRDRRYSPDYYRDRE YERDYDRRDRYRRDYDGRYERDYHRRDRDYGRDYRRESRGGSRYDREQAD PRYDRERKMDPPLDPAVTTVLTNLPFCEDRERVVDTLARTLEDLNDALRI KEITPVGRRCGACIVVFRDEDSYSKALAMNSITISTRKVNILPLEVPSVA RVQKLQPGFVPEDIIDDMRRNYGVESLYIKLKQSDQLLLGIEDSRFLVRL LDIDGRPLLHSRYATVSYIPSRNHANDMGGRSRRSPHDDFSGPGGRGGGG GRDRDGRDDEEGPPDRRRFDGGDRERRESGNDHQRRDGDREARGYNGREE WRVQFVGPHDRIEERLVKNALSHIGLKELNVIPIDDCTVEVHGGNSHDKT MREVLDLPNARLPSAISLRGLTARPSSSSLKKRPLSLPQPRSGHDDDGTC AKKVKRSEDTPSSGKVPTSLQAALTDRFYVSPMTPPPGETSIVKGKKGTP DPELPQICERLESLRSAITGRGSKDGDGQNYADFCGNLKSLCEPQVLKYT TRENTDPLPPVVWTGTLSKGSKAACNGYLVLRSTQGEEYVKKAVAAIPTD VKVEFRGRFDDETFDHLLTSEAVVVVVKAQEEENSGMDSTPTDKRAPRSR EYFKGILQSLRNKQRLGIGRYVWEGQKYLSLCIPPNPYVFKKLRLPWRYQ DFTGHDSLLLVVGPKSASQKK* back to topspliced messenger RNA >Ggra9523.t1 ID=Ggra9523.t1|Name=Ggra9523.t1|organism=Gracilaria gracilis GNS1m male|type=mRNA|length=3216bp|location=Sequence derived from alignment at tig00000873_pilon:436199..439414- (Gracilaria gracilis GNS1m male)|Notes=Excludes all bases but those of type(s): exon.
ATGGTGAACGAACACGCCGAGCGCGACGCCGAGTGGTCGCACGACCGTCT GCGTGACCCGCGCCCAGGCAAGAAGCCGCGGCTGTCCGTGCCGGATGAGC CGCCCATATCGCCGCGCTCCGCCCCGCCGCCGCCGCCGGCCGGCGGCAGC GGTGGCGGTGGCGGTGGGGCTGACCCGCCCGTGCCGCGCATTCTGTTGGC CAACCTGGACTACAACACCACGGAACATGATATCGACGACTTCTTCCGTG CCGCTGGCGTCGACGTCAAGCGCGTGTCCCTGGTCAAGGTTTCGCCGGGC AATCGCGTCAATGGAAACGCTTATGTGTACGTGCTTGACTTGCGTTCGGT CGATGTCGCGCTTGATTTGGATGGCGCCGAGTTCCGTGGACGCAAGCTCA GAGTGTCCACTATGCCGGAGGATCAGCGTACCGTGTGCGTGCGCGGTATG CCGCGTCCGTCCAGTGAGAAGGATGTGCGCGAGCTCTTCCGTGGATGTAG CATTGTGGACGCGCGCTCCAGACCGGTTAAAGGAGGCCCGCCGGATATGA ATACTTGGTTCGTCGACTTTGCAGACGAGGATTCGTTCAGAAGGGCCCTT GACAAGGACCGTTCGTTGCCTGGACTCACCATTTGCATTGCCACCGCTCA GGGTCGCGGTACGCCGAGGACTAGAGAGTATCGTGATAATGCTTTGCCGC CAGATGGTGACAGACGCGGTGCGCCTGGTCGGGATGATCGCTTTCGTGAT GATCGTTATCGCGATGAACCGCCTCGTGATGACAGGGCGAGGGATAGAGA TGACCGCCCCCATCGCGACGACAGAGCGCCGCGTGATGATCGTCTGAGAG ACGAACGTGGCCTTGAGGGAAGAGACTCGGCAGACCGTCACCCGGAGCGC TCGAGAGATGAAGTGGACCGTCATGGCAGGGATGAGTATGATAGACGAAC GAGAAATGAATCGCCCAAACGTTATGACCGTCGTGCTGATGGCGACCGTA ATGGCGACGTTGGAAATGGCTTTTCGTCCAGGGCTAGGGGTCATAGTCGC TCTCGCTCTCCGCCTGCTCGTTTTGAGCGTGAGCGACGCTACGATCGACA TGAGTATGATCGTCGTGACCGCCGTGGCGCCGGCTATGATGACGCGTACG ATCGTCATCGCGACCGTCGTTACTCGCCCGACTACTACCGCGACCGCGAA TATGAACGCGATTATGATAGGAGAGACCGCTATCGCCGCGATTATGATGG CAGGTATGAACGCGACTACCATCGCCGTGACAGGGACTATGGACGCGACT ACCGACGTGAGTCGCGCGGAGGGAGTCGCTACGACCGTGAACAGGCTGAT CCCCGATATGACCGTGAGAGGAAAATGGACCCGCCTCTCGACCCTGCTGT CACTACCGTGTTGACCAACCTGCCGTTCTGTGAGGACCGTGAACGTGTCG TAGATACGCTCGCTCGTACTCTAGAGGACCTGAATGATGCGTTGAGGATC AAGGAAATCACGCCAGTCGGCAGACGCTGCGGCGCCTGTATTGTAGTGTT CCGTGATGAGGACTCGTACTCGAAGGCGCTGGCCATGAACTCCATCACGA TCAGTACCCGGAAGGTGAACATCTTGCCGTTGGAAGTCCCTTCGGTGGCA AGAGTGCAGAAGCTTCAGCCGGGTTTTGTCCCGGAAGATATCATTGACGA CATGCGTCGTAACTACGGCGTCGAGTCTCTTTACATCAAACTCAAGCAGT CTGACCAATTGTTGCTTGGTATCGAGGACTCGCGCTTCTTGGTTCGCCTG CTGGACATTGACGGTAGGCCTCTGCTTCACTCTCGTTATGCGACTGTGTC GTACATCCCCAGCCGCAACCATGCGAATGACATGGGTGGCCGTTCTCGCC GATCTCCACATGATGACTTTAGTGGGCCAGGCGGCCGAGGTGGCGGTGGT GGACGAGACAGGGATGGTCGTGACGATGAGGAAGGCCCACCGGATCGTCG CCGCTTTGACGGTGGCGATCGCGAACGTCGCGAGAGTGGCAATGACCATC AAAGACGCGATGGCGATCGTGAAGCCCGTGGGTACAATGGCAGAGAAGAG TGGCGCGTTCAGTTTGTCGGACCGCATGACCGAATTGAAGAACGTCTTGT GAAGAATGCCCTTTCGCACATCGGCTTGAAGGAGCTAAATGTCATCCCAA TCGATGACTGTACCGTTGAGGTGCACGGTGGAAACAGCCATGATAAGACG ATGCGAGAGGTTCTTGACCTGCCAAACGCAAGGCTTCCGTCCGCCATAAG TTTGAGAGGTTTAACTGCTCGTCCTTCGTCTTCTTCTCTCAAGAAACGGC CGCTTTCACTGCCACAGCCGCGGTCTGGCCACGATGACGATGGAACGTGT GCAAAGAAAGTGAAACGCTCTGAAGATACCCCTAGCAGCGGTAAGGTTCC CACTTCTCTTCAAGCAGCGTTAACTGACCGCTTTTATGTGTCGCCCATGA CTCCTCCGCCTGGAGAAACTTCAATCGTGAAGGGGAAGAAGGGAACGCCC GACCCCGAGTTGCCGCAGATATGCGAACGACTTGAGTCTCTTCGCTCTGC GATTACCGGTCGTGGCTCCAAGGATGGCGACGGGCAGAACTATGCCGATT TTTGCGGCAATCTGAAAAGCCTGTGTGAACCTCAGGTGTTGAAGTATACC ACCAGGGAGAACACCGATCCACTTCCGCCTGTAGTATGGACTGGTACGCT GTCGAAAGGCTCGAAGGCGGCTTGCAACGGCTACCTGGTGCTTCGATCGA CACAGGGGGAGGAATATGTGAAGAAAGCTGTCGCGGCGATCCCAACAGAC GTGAAAGTGGAGTTTCGAGGTAGGTTTGATGATGAAACATTTGATCACTT GTTGACGTCAGAGGCCGTGGTTGTAGTGGTGAAGGCACAGGAAGAGGAGA ACAGTGGTATGGACTCTACGCCGACGGACAAGAGGGCGCCAAGGAGCAGG GAATACTTTAAGGGCATACTTCAATCTCTGCGCAACAAGCAGCGTCTTGG AATCGGACGTTATGTGTGGGAGGGTCAAAAGTACTTGAGCTTGTGCATTC CACCCAATCCTTACGTATTCAAGAAGCTGCGTCTGCCGTGGCGTTACCAG GATTTCACTGGGCATGATTCACTTCTTCTTGTCGTGGGTCCGAAATCGGC GTCGCAGAAGAAGTGA back to topprotein sequence of Ggra9523.t1 >Ggra9523.t1 ID=Ggra9523.t1|Name=Ggra9523.t1|organism=Gracilaria gracilis GNS1m male|type=polypeptide|length=1072bp
MVNEHAERDAEWSHDRLRDPRPGKKPRLSVPDEPPISPRSAPPPPPAGGS GGGGGGADPPVPRILLANLDYNTTEHDIDDFFRAAGVDVKRVSLVKVSPG NRVNGNAYVYVLDLRSVDVALDLDGAEFRGRKLRVSTMPEDQRTVCVRGM PRPSSEKDVRELFRGCSIVDARSRPVKGGPPDMNTWFVDFADEDSFRRAL DKDRSLPGLTICIATAQGRGTPRTREYRDNALPPDGDRRGAPGRDDRFRD DRYRDEPPRDDRARDRDDRPHRDDRAPRDDRLRDERGLEGRDSADRHPER SRDEVDRHGRDEYDRRTRNESPKRYDRRADGDRNGDVGNGFSSRARGHSR SRSPPARFERERRYDRHEYDRRDRRGAGYDDAYDRHRDRRYSPDYYRDRE YERDYDRRDRYRRDYDGRYERDYHRRDRDYGRDYRRESRGGSRYDREQAD PRYDRERKMDPPLDPAVTTVLTNLPFCEDRERVVDTLARTLEDLNDALRI KEITPVGRRCGACIVVFRDEDSYSKALAMNSITISTRKVNILPLEVPSVA RVQKLQPGFVPEDIIDDMRRNYGVESLYIKLKQSDQLLLGIEDSRFLVRL LDIDGRPLLHSRYATVSYIPSRNHANDMGGRSRRSPHDDFSGPGGRGGGG GRDRDGRDDEEGPPDRRRFDGGDRERRESGNDHQRRDGDREARGYNGREE WRVQFVGPHDRIEERLVKNALSHIGLKELNVIPIDDCTVEVHGGNSHDKT MREVLDLPNARLPSAISLRGLTARPSSSSLKKRPLSLPQPRSGHDDDGTC AKKVKRSEDTPSSGKVPTSLQAALTDRFYVSPMTPPPGETSIVKGKKGTP DPELPQICERLESLRSAITGRGSKDGDGQNYADFCGNLKSLCEPQVLKYT TRENTDPLPPVVWTGTLSKGSKAACNGYLVLRSTQGEEYVKKAVAAIPTD VKVEFRGRFDDETFDHLLTSEAVVVVVKAQEEENSGMDSTPTDKRAPRSR EYFKGILQSLRNKQRLGIGRYVWEGQKYLSLCIPPNPYVFKKLRLPWRYQ DFTGHDSLLLVVGPKSASQKK* back to topmRNA from alignment at tig00000873_pilon:436199..439414- Legend: polypeptideCDSexonstart_codonstop_codon Hold the cursor over a type above to highlight its positions in the sequence below. >Ggra9523.t1 ID=Ggra9523.t1|Name=Ggra9523.t1|organism=Gracilaria gracilis GNS1m male|type=mRNA|length=3216bp|location=Sequence derived from alignment at tig00000873_pilon:436199..439414- (Gracilaria gracilis GNS1m male) ATGGTGAACGAACACGCCGAGCGCGACGCCGAGTGGTCGCACGACCGTCT
GCGTGACCCGCGCCCAGGCAAGAAGCCGCGGCTGTCCGTGCCGGATGAGC
CGCCCATATCGCCGCGCTCCGCCCCGCCGCCGCCGCCGGCCGGCGGCAGC
GGTGGCGGTGGCGGTGGGGCTGACCCGCCCGTGCCGCGCATTCTGTTGGC
CAACCTGGACTACAACACCACGGAACATGATATCGACGACTTCTTCCGTG
CCGCTGGCGTCGACGTCAAGCGCGTGTCCCTGGTCAAGGTTTCGCCGGGC
AATCGCGTCAATGGAAACGCTTATGTGTACGTGCTTGACTTGCGTTCGGT
CGATGTCGCGCTTGATTTGGATGGCGCCGAGTTCCGTGGACGCAAGCTCA
GAGTGTCCACTATGCCGGAGGATCAGCGTACCGTGTGCGTGCGCGGTATG
CCGCGTCCGTCCAGTGAGAAGGATGTGCGCGAGCTCTTCCGTGGATGTAG
CATTGTGGACGCGCGCTCCAGACCGGTTAAAGGAGGCCCGCCGGATATGA
ATACTTGGTTCGTCGACTTTGCAGACGAGGATTCGTTCAGAAGGGCCCTT
GACAAGGACCGTTCGTTGCCTGGACTCACCATTTGCATTGCCACCGCTCA
GGGTCGCGGTACGCCGAGGACTAGAGAGTATCGTGATAATGCTTTGCCGC
CAGATGGTGACAGACGCGGTGCGCCTGGTCGGGATGATCGCTTTCGTGAT
GATCGTTATCGCGATGAACCGCCTCGTGATGACAGGGCGAGGGATAGAGA
TGACCGCCCCCATCGCGACGACAGAGCGCCGCGTGATGATCGTCTGAGAG
ACGAACGTGGCCTTGAGGGAAGAGACTCGGCAGACCGTCACCCGGAGCGC
TCGAGAGATGAAGTGGACCGTCATGGCAGGGATGAGTATGATAGACGAAC
GAGAAATGAATCGCCCAAACGTTATGACCGTCGTGCTGATGGCGACCGTA
ATGGCGACGTTGGAAATGGCTTTTCGTCCAGGGCTAGGGGTCATAGTCGC
TCTCGCTCTCCGCCTGCTCGTTTTGAGCGTGAGCGACGCTACGATCGACA
TGAGTATGATCGTCGTGACCGCCGTGGCGCCGGCTATGATGACGCGTACG
ATCGTCATCGCGACCGTCGTTACTCGCCCGACTACTACCGCGACCGCGAA
TATGAACGCGATTATGATAGGAGAGACCGCTATCGCCGCGATTATGATGG
CAGGTATGAACGCGACTACCATCGCCGTGACAGGGACTATGGACGCGACT
ACCGACGTGAGTCGCGCGGAGGGAGTCGCTACGACCGTGAACAGGCTGAT
CCCCGATATGACCGTGAGAGGAAAATGGACCCGCCTCTCGACCCTGCTGT
CACTACCGTGTTGACCAACCTGCCGTTCTGTGAGGACCGTGAACGTGTCG
TAGATACGCTCGCTCGTACTCTAGAGGACCTGAATGATGCGTTGAGGATC
AAGGAAATCACGCCAGTCGGCAGACGCTGCGGCGCCTGTATTGTAGTGTT
CCGTGATGAGGACTCGTACTCGAAGGCGCTGGCCATGAACTCCATCACGA
TCAGTACCCGGAAGGTGAACATCTTGCCGTTGGAAGTCCCTTCGGTGGCA
AGAGTGCAGAAGCTTCAGCCGGGTTTTGTCCCGGAAGATATCATTGACGA
CATGCGTCGTAACTACGGCGTCGAGTCTCTTTACATCAAACTCAAGCAGT
CTGACCAATTGTTGCTTGGTATCGAGGACTCGCGCTTCTTGGTTCGCCTG
CTGGACATTGACGGTAGGCCTCTGCTTCACTCTCGTTATGCGACTGTGTC
GTACATCCCCAGCCGCAACCATGCGAATGACATGGGTGGCCGTTCTCGCC
GATCTCCACATGATGACTTTAGTGGGCCAGGCGGCCGAGGTGGCGGTGGT
GGACGAGACAGGGATGGTCGTGACGATGAGGAAGGCCCACCGGATCGTCG
CCGCTTTGACGGTGGCGATCGCGAACGTCGCGAGAGTGGCAATGACCATC
AAAGACGCGATGGCGATCGTGAAGCCCGTGGGTACAATGGCAGAGAAGAG
TGGCGCGTTCAGTTTGTCGGACCGCATGACCGAATTGAAGAACGTCTTGT
GAAGAATGCCCTTTCGCACATCGGCTTGAAGGAGCTAAATGTCATCCCAA
TCGATGACTGTACCGTTGAGGTGCACGGTGGAAACAGCCATGATAAGACG
ATGCGAGAGGTTCTTGACCTGCCAAACGCAAGGCTTCCGTCCGCCATAAG
TTTGAGAGGTTTAACTGCTCGTCCTTCGTCTTCTTCTCTCAAGAAACGGC
CGCTTTCACTGCCACAGCCGCGGTCTGGCCACGATGACGATGGAACGTGT
GCAAAGAAAGTGAAACGCTCTGAAGATACCCCTAGCAGCGGTAAGGTTCC
CACTTCTCTTCAAGCAGCGTTAACTGACCGCTTTTATGTGTCGCCCATGA
CTCCTCCGCCTGGAGAAACTTCAATCGTGAAGGGGAAGAAGGGAACGCCC
GACCCCGAGTTGCCGCAGATATGCGAACGACTTGAGTCTCTTCGCTCTGC
GATTACCGGTCGTGGCTCCAAGGATGGCGACGGGCAGAACTATGCCGATT
TTTGCGGCAATCTGAAAAGCCTGTGTGAACCTCAGGTGTTGAAGTATACC
ACCAGGGAGAACACCGATCCACTTCCGCCTGTAGTATGGACTGGTACGCT
GTCGAAAGGCTCGAAGGCGGCTTGCAACGGCTACCTGGTGCTTCGATCGA
CACAGGGGGAGGAATATGTGAAGAAAGCTGTCGCGGCGATCCCAACAGAC
GTGAAAGTGGAGTTTCGAGGTAGGTTTGATGATGAAACATTTGATCACTT
GTTGACGTCAGAGGCCGTGGTTGTAGTGGTGAAGGCACAGGAAGAGGAGA
ACAGTGGTATGGACTCTACGCCGACGGACAAGAGGGCGCCAAGGAGCAGG
GAATACTTTAAGGGCATACTTCAATCTCTGCGCAACAAGCAGCGTCTTGG
AATCGGACGTTATGTGTGGGAGGGTCAAAAGTACTTGAGCTTGTGCATTC
CACCCAATCCTTACGTATTCAAGAAGCTGCGTCTGCCGTGGCGTTACCAG
GATTTCACTGGGCATGATTCACTTCTTCTTGTCGTGGGTCCGAAATCGGC
GTCGCAGAAGAAGTGA back to topCoding sequence (CDS) from alignment at tig00000873_pilon:436199..439414- >Ggra9523.t1 ID=Ggra9523.t1|Name=Ggra9523.t1|organism=Gracilaria gracilis GNS1m male|type=CDS|length=3216bp|location=Sequence derived from alignment at tig00000873_pilon:436199..439414- (Gracilaria gracilis GNS1m male) ATGGTGAACGAACACGCCGAGCGCGACGCCGAGTGGTCGCACGACCGTCT GCGTGACCCGCGCCCAGGCAAGAAGCCGCGGCTGTCCGTGCCGGATGAGC CGCCCATATCGCCGCGCTCCGCCCCGCCGCCGCCGCCGGCCGGCGGCAGC GGTGGCGGTGGCGGTGGGGCTGACCCGCCCGTGCCGCGCATTCTGTTGGC CAACCTGGACTACAACACCACGGAACATGATATCGACGACTTCTTCCGTG CCGCTGGCGTCGACGTCAAGCGCGTGTCCCTGGTCAAGGTTTCGCCGGGC AATCGCGTCAATGGAAACGCTTATGTGTACGTGCTTGACTTGCGTTCGGT CGATGTCGCGCTTGATTTGGATGGCGCCGAGTTCCGTGGACGCAAGCTCA GAGTGTCCACTATGCCGGAGGATCAGCGTACCGTGTGCGTGCGCGGTATG CCGCGTCCGTCCAGTGAGAAGGATGTGCGCGAGCTCTTCCGTGGATGTAG CATTGTGGACGCGCGCTCCAGACCGGTTAAAGGAGGCCCGCCGGATATGA ATACTTGGTTCGTCGACTTTGCAGACGAGGATTCGTTCAGAAGGGCCCTT GACAAGGACCGTTCGTTGCCTGGACTCACCATTTGCATTGCCACCGCTCA GGGTCGCGGTACGCCGAGGACTAGAGAGTATCGTGATAATGCTTTGCCGC CAGATGGTGACAGACGCGGTGCGCCTGGTCGGGATGATCGCTTTCGTGAT GATCGTTATCGCGATGAACCGCCTCGTGATGACAGGGCGAGGGATAGAGA TGACCGCCCCCATCGCGACGACAGAGCGCCGCGTGATGATCGTCTGAGAG ACGAACGTGGCCTTGAGGGAAGAGACTCGGCAGACCGTCACCCGGAGCGC TCGAGAGATGAAGTGGACCGTCATGGCAGGGATGAGTATGATAGACGAAC GAGAAATGAATCGCCCAAACGTTATGACCGTCGTGCTGATGGCGACCGTA ATGGCGACGTTGGAAATGGCTTTTCGTCCAGGGCTAGGGGTCATAGTCGC TCTCGCTCTCCGCCTGCTCGTTTTGAGCGTGAGCGACGCTACGATCGACA TGAGTATGATCGTCGTGACCGCCGTGGCGCCGGCTATGATGACGCGTACG ATCGTCATCGCGACCGTCGTTACTCGCCCGACTACTACCGCGACCGCGAA TATGAACGCGATTATGATAGGAGAGACCGCTATCGCCGCGATTATGATGG CAGGTATGAACGCGACTACCATCGCCGTGACAGGGACTATGGACGCGACT ACCGACGTGAGTCGCGCGGAGGGAGTCGCTACGACCGTGAACAGGCTGAT CCCCGATATGACCGTGAGAGGAAAATGGACCCGCCTCTCGACCCTGCTGT CACTACCGTGTTGACCAACCTGCCGTTCTGTGAGGACCGTGAACGTGTCG TAGATACGCTCGCTCGTACTCTAGAGGACCTGAATGATGCGTTGAGGATC AAGGAAATCACGCCAGTCGGCAGACGCTGCGGCGCCTGTATTGTAGTGTT CCGTGATGAGGACTCGTACTCGAAGGCGCTGGCCATGAACTCCATCACGA TCAGTACCCGGAAGGTGAACATCTTGCCGTTGGAAGTCCCTTCGGTGGCA AGAGTGCAGAAGCTTCAGCCGGGTTTTGTCCCGGAAGATATCATTGACGA CATGCGTCGTAACTACGGCGTCGAGTCTCTTTACATCAAACTCAAGCAGT CTGACCAATTGTTGCTTGGTATCGAGGACTCGCGCTTCTTGGTTCGCCTG CTGGACATTGACGGTAGGCCTCTGCTTCACTCTCGTTATGCGACTGTGTC GTACATCCCCAGCCGCAACCATGCGAATGACATGGGTGGCCGTTCTCGCC GATCTCCACATGATGACTTTAGTGGGCCAGGCGGCCGAGGTGGCGGTGGT GGACGAGACAGGGATGGTCGTGACGATGAGGAAGGCCCACCGGATCGTCG CCGCTTTGACGGTGGCGATCGCGAACGTCGCGAGAGTGGCAATGACCATC AAAGACGCGATGGCGATCGTGAAGCCCGTGGGTACAATGGCAGAGAAGAG TGGCGCGTTCAGTTTGTCGGACCGCATGACCGAATTGAAGAACGTCTTGT GAAGAATGCCCTTTCGCACATCGGCTTGAAGGAGCTAAATGTCATCCCAA TCGATGACTGTACCGTTGAGGTGCACGGTGGAAACAGCCATGATAAGACG ATGCGAGAGGTTCTTGACCTGCCAAACGCAAGGCTTCCGTCCGCCATAAG TTTGAGAGGTTTAACTGCTCGTCCTTCGTCTTCTTCTCTCAAGAAACGGC CGCTTTCACTGCCACAGCCGCGGTCTGGCCACGATGACGATGGAACGTGT GCAAAGAAAGTGAAACGCTCTGAAGATACCCCTAGCAGCGGTAAGGTTCC CACTTCTCTTCAAGCAGCGTTAACTGACCGCTTTTATGTGTCGCCCATGA CTCCTCCGCCTGGAGAAACTTCAATCGTGAAGGGGAAGAAGGGAACGCCC GACCCCGAGTTGCCGCAGATATGCGAACGACTTGAGTCTCTTCGCTCTGC GATTACCGGTCGTGGCTCCAAGGATGGCGACGGGCAGAACTATGCCGATT TTTGCGGCAATCTGAAAAGCCTGTGTGAACCTCAGGTGTTGAAGTATACC ACCAGGGAGAACACCGATCCACTTCCGCCTGTAGTATGGACTGGTACGCT GTCGAAAGGCTCGAAGGCGGCTTGCAACGGCTACCTGGTGCTTCGATCGA CACAGGGGGAGGAATATGTGAAGAAAGCTGTCGCGGCGATCCCAACAGAC GTGAAAGTGGAGTTTCGAGGTAGGTTTGATGATGAAACATTTGATCACTT GTTGACGTCAGAGGCCGTGGTTGTAGTGGTGAAGGCACAGGAAGAGGAGA ACAGTGGTATGGACTCTACGCCGACGGACAAGAGGGCGCCAAGGAGCAGG GAATACTTTAAGGGCATACTTCAATCTCTGCGCAACAAGCAGCGTCTTGG AATCGGACGTTATGTGTGGGAGGGTCAAAAGTACTTGAGCTTGTGCATTC CACCCAATCCTTACGTATTCAAGAAGCTGCGTCTGCCGTGGCGTTACCAG GATTTCACTGGGCATGATTCACTTCTTCTTGTCGTGGGTCCGAAATCGGC GTCGCAGAAGAAGTGA back to top
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