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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 | 130081.XP_005709383.1 |
| PFAMs | TPR_1,TPR_14,TPR_16,TPR_19,TPR_6,TPR_8 |
| Max annot lvl | 2759|Eukaryota |
| KEGG ko | ko:K12869 |
| KEGG Pathway | ko03040,map03040 |
| KEGG Module | M00355 |
| Evalue | 2.03e-36 |
| EggNOG OGs | COG0457@1|root,KOG1124@2759|Eukaryota |
| Description | cellular component assembly |
| COG category | O |
| BRITE | ko00000,ko00001,ko00002,ko03036,ko03041 |
Relationships
This mRNA is a part of the following gene feature(s):
The following start_codon feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| Ggra11066.t1.start1 | Ggra11066.t1.start1 | Gracilaria gracilis GNS1m male | start_codon | tig00000207_pilon 27030..27032 + |
The following CDS feature(s) are a part of this mRNA:
The following exon feature(s) are a part of this mRNA:
The following stop_codon feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| Ggra11066.t1.stop1 | Ggra11066.t1.stop1 | Gracilaria gracilis GNS1m male | stop_codon | tig00000207_pilon 30189..30191 + |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
mRNA sequence >Ggra11066.t1 ID=Ggra11066.t1|Name=Ggra11066.t1|organism=Gracilaria gracilis GNS1m male|type=mRNA|length=1054bp MTVSPPASSQSPSALYYCYVARSCFVPPVMPNRAQHVALSSQCNAAVTRA LGPHGNRTFVNGYSNLFFRSDSIWSPSFDSHRGDPVGNSGGTEFGGSGNG NWGLGDNNSFSTFPGGTLEYGRRRVRDEQSANPVASLTLPPLASQFTPPP LVSSFEASSFMPSSSPQTTEFLGPRSLPTPSECVQWRASRFPNAYNTVTS SALSPSSADQNSTVTPSKLKPPSVSRAASEPSVGVRRRKRSSDSRSPKYN NVQRKPDQGRGPPPRSNKPYSKHNGQQFQSKVRRQVRTIFERAKEEERNG NLNEARILLRQCLDLDKQDSHSWLALARLESKAGGVSIRNLRNNNQNDND SEHHSNPPSAARGTEIARSIFKLGLEECPNSIHLIQAWAVLEHRCGNRDT ARELFARGLALEPDNPYVSQAWGLLEQRVGNTDKARELFRQTVSLRPHPE VCAAWAVLEAREGNIQHARDLYQKGLRACRTAGNQSSAAIFRSWAEMEER VGDLPKARELLNKAIATQPRMTEAYVALARLEARRRGTTRAVELMRAAAS LSPKPPASVFNAWAQIEWTCCGRVDEARRLLREGHDCHPSDPAILQSLGT LEERCGNPEEAKRLFYTSVCARPTAPAFVAWALLEEKDGNLDEAKRLFEE ALSTDALHGAAYNAYGMMEARRGCLNDARAVYERGLKAHASASVWHGYGQ LELKQGRNPDRARDLFRLGVGQTREDTSFIWHSWGMLELQQRQVREARRV FRDALKRYPRNSRVLVGAALAHAASCIHTLSQEKEAVDFFKRAVGADPTH AHAWQAWGVFELRRGRPDAAQALFRRGLRLCPSHGALWQAWGVLETSRGN FSKARQLYQKGAQACPAHVHLFQAWACMEVRSGNIDKARKLLDHALELDA AHGAVWTAYGLLEARQGTLAKARQNFTTGIRRSPHHAPLYRAFGQTESSA GNYERARQLFQEGLRVDPQHAPLYHAYAQFEAMLGNVTALSGLKKQAEEF FGSEAQAVQVLKSGEPELDPEVIESSDEILEGKYSAMVTPMELALDGVDV YDK* back to topspliced messenger RNA >Ggra11066.t1 ID=Ggra11066.t1|Name=Ggra11066.t1|organism=Gracilaria gracilis GNS1m male|type=mRNA|length=3162bp|location=Sequence derived from alignment at tig00000207_pilon:27030..30191+ (Gracilaria gracilis GNS1m male)|Notes=Excludes all bases but those of type(s): exon.
ATGACTGTGAGCCCGCCAGCTTCGTCGCAGAGCCCTTCCGCGTTGTACTA CTGCTATGTGGCCAGGTCCTGCTTCGTGCCCCCCGTCATGCCCAACCGCG CGCAACATGTGGCGCTCTCTTCACAATGCAATGCCGCTGTGACGCGCGCG TTGGGGCCTCATGGAAATCGCACCTTTGTCAACGGTTACAGTAACCTCTT CTTCCGCTCGGATAGTATCTGGTCGCCCAGCTTTGATTCGCACCGTGGAG ATCCGGTGGGCAACTCTGGTGGCACCGAGTTTGGCGGCTCGGGTAATGGT AACTGGGGTCTGGGTGACAACAATTCTTTCTCCACCTTCCCGGGTGGTAC TTTGGAGTATGGTCGTCGACGCGTGCGCGATGAACAGAGTGCGAATCCCG TTGCTTCACTCACGCTTCCTCCTCTTGCTTCGCAGTTCACCCCGCCTCCG CTTGTGTCTTCGTTTGAAGCATCTTCGTTTATGCCCAGTTCTTCCCCGCA AACTACAGAGTTTCTTGGTCCCAGGTCTCTCCCTACCCCAAGTGAATGCG TACAGTGGAGAGCCTCACGTTTCCCCAACGCCTATAATACCGTCACCTCC TCTGCGTTGTCCCCTTCTTCGGCCGACCAAAACTCTACTGTCACTCCTAG CAAACTCAAGCCGCCCAGCGTGTCCAGGGCCGCGTCCGAACCCTCGGTTG GTGTGCGAAGAAGAAAACGCTCTTCTGATTCACGCTCCCCAAAGTACAAC AATGTCCAGAGAAAGCCCGATCAAGGTCGTGGCCCCCCACCCAGATCGAA CAAACCCTACTCGAAGCACAACGGGCAGCAGTTTCAGAGCAAGGTTCGCC GTCAAGTACGCACCATCTTCGAACGCGCCAAGGAAGAAGAGAGGAACGGT AACCTTAACGAAGCACGCATCTTGCTGCGTCAATGTCTTGATCTTGATAA ACAGGACAGTCATTCATGGCTGGCGCTTGCAAGGCTGGAGTCCAAGGCTG GCGGTGTCTCAATACGCAACTTGCGTAACAATAACCAAAACGACAACGAT TCGGAACATCACTCTAACCCTCCGAGCGCCGCTCGTGGTACTGAGATCGC TCGCTCAATATTTAAACTTGGGCTTGAAGAATGTCCAAATAGTATCCATC TCATCCAGGCGTGGGCTGTTCTGGAGCATCGATGCGGAAATCGTGACACG GCGCGGGAGCTGTTTGCGAGAGGTCTGGCTCTGGAACCCGACAACCCGTA TGTGAGTCAGGCGTGGGGTTTATTGGAACAGAGGGTTGGCAACACAGACA AAGCGAGAGAGTTGTTCCGGCAGACCGTGTCTTTGAGACCGCATCCAGAG GTTTGTGCAGCGTGGGCTGTTCTGGAAGCTAGGGAGGGCAATATCCAGCA CGCCAGGGATTTGTACCAGAAAGGGCTCAGGGCGTGCAGGACCGCAGGCA ACCAGTCATCTGCCGCCATCTTTAGATCCTGGGCGGAAATGGAAGAAAGA GTGGGTGATCTCCCTAAAGCTCGCGAGCTTCTCAACAAGGCCATCGCTAC GCAGCCACGAATGACCGAAGCCTATGTTGCGCTTGCACGTCTGGAGGCGA GAAGAAGGGGTACGACCAGAGCTGTAGAGTTGATGCGTGCTGCCGCATCC TTGTCCCCTAAGCCTCCTGCTTCAGTGTTCAATGCTTGGGCCCAGATTGA ATGGACTTGTTGTGGTCGTGTTGATGAAGCGCGTAGGCTTTTAAGGGAAG GTCATGATTGTCATCCATCAGATCCTGCTATTCTGCAGAGCCTTGGAACG CTCGAAGAACGGTGTGGGAATCCAGAGGAAGCAAAGAGGCTCTTCTATAC CAGCGTATGTGCGCGGCCGACTGCTCCTGCCTTCGTCGCGTGGGCGTTGC TTGAAGAAAAAGACGGTAACCTCGATGAGGCAAAGCGTCTTTTTGAAGAA GCCTTGAGCACAGATGCTTTGCATGGTGCTGCATATAACGCATACGGCAT GATGGAGGCTAGACGGGGATGTCTGAACGACGCGAGAGCTGTGTACGAGA GAGGATTGAAAGCCCATGCGTCGGCTTCCGTTTGGCACGGCTACGGCCAG CTTGAGCTGAAACAGGGAAGAAACCCTGATCGTGCTCGAGATCTATTTCG GCTGGGAGTAGGCCAGACGCGAGAAGACACTTCTTTCATATGGCATTCAT GGGGAATGCTAGAACTTCAACAACGTCAAGTCCGAGAGGCTCGAAGGGTA TTCCGCGATGCACTTAAGCGATACCCCCGGAATTCGAGGGTACTTGTGGG AGCTGCGCTTGCACATGCAGCATCATGCATACACACTCTTTCCCAAGAGA AGGAAGCAGTCGATTTCTTCAAACGTGCAGTTGGGGCTGATCCAACTCAT GCCCACGCGTGGCAAGCCTGGGGTGTGTTCGAGCTACGTCGAGGTCGCCC GGATGCTGCCCAGGCATTGTTTAGACGGGGTCTAAGGTTGTGTCCCTCTC ATGGAGCACTGTGGCAGGCTTGGGGTGTGTTGGAAACTTCCCGTGGAAAC TTCAGCAAAGCTCGTCAGTTGTACCAGAAGGGTGCGCAGGCATGTCCCGC GCATGTTCATTTGTTTCAGGCATGGGCATGTATGGAGGTCAGATCGGGAA ACATCGACAAAGCCCGGAAGCTGTTGGACCACGCTCTCGAATTGGATGCC GCTCATGGTGCCGTCTGGACTGCATATGGATTATTGGAAGCGCGGCAAGG AACCTTGGCCAAAGCTCGACAAAATTTTACGACTGGTATTCGTCGATCTC CTCACCACGCTCCGTTGTATAGGGCATTCGGTCAAACCGAGTCTAGCGCT GGAAACTACGAGAGGGCTAGACAACTGTTCCAAGAAGGTCTTCGTGTCGA CCCGCAACACGCTCCATTATACCACGCTTATGCACAATTTGAAGCGATGC TCGGAAACGTCACGGCACTCAGTGGGTTAAAGAAGCAAGCCGAGGAATTC TTCGGGTCTGAAGCTCAGGCCGTTCAGGTATTGAAGAGCGGCGAACCAGA ACTGGATCCTGAAGTCATTGAAAGCTCTGATGAAATCTTGGAAGGAAAGT ACTCAGCCATGGTTACCCCAATGGAGCTCGCATTAGACGGAGTTGACGTT TACGATAAGTAG back to topprotein sequence of Ggra11066.t1 >Ggra11066.t1 ID=Ggra11066.t1|Name=Ggra11066.t1|organism=Gracilaria gracilis GNS1m male|type=polypeptide|length=1054bp
MTVSPPASSQSPSALYYCYVARSCFVPPVMPNRAQHVALSSQCNAAVTRA LGPHGNRTFVNGYSNLFFRSDSIWSPSFDSHRGDPVGNSGGTEFGGSGNG NWGLGDNNSFSTFPGGTLEYGRRRVRDEQSANPVASLTLPPLASQFTPPP LVSSFEASSFMPSSSPQTTEFLGPRSLPTPSECVQWRASRFPNAYNTVTS SALSPSSADQNSTVTPSKLKPPSVSRAASEPSVGVRRRKRSSDSRSPKYN NVQRKPDQGRGPPPRSNKPYSKHNGQQFQSKVRRQVRTIFERAKEEERNG NLNEARILLRQCLDLDKQDSHSWLALARLESKAGGVSIRNLRNNNQNDND SEHHSNPPSAARGTEIARSIFKLGLEECPNSIHLIQAWAVLEHRCGNRDT ARELFARGLALEPDNPYVSQAWGLLEQRVGNTDKARELFRQTVSLRPHPE VCAAWAVLEAREGNIQHARDLYQKGLRACRTAGNQSSAAIFRSWAEMEER VGDLPKARELLNKAIATQPRMTEAYVALARLEARRRGTTRAVELMRAAAS LSPKPPASVFNAWAQIEWTCCGRVDEARRLLREGHDCHPSDPAILQSLGT LEERCGNPEEAKRLFYTSVCARPTAPAFVAWALLEEKDGNLDEAKRLFEE ALSTDALHGAAYNAYGMMEARRGCLNDARAVYERGLKAHASASVWHGYGQ LELKQGRNPDRARDLFRLGVGQTREDTSFIWHSWGMLELQQRQVREARRV FRDALKRYPRNSRVLVGAALAHAASCIHTLSQEKEAVDFFKRAVGADPTH AHAWQAWGVFELRRGRPDAAQALFRRGLRLCPSHGALWQAWGVLETSRGN FSKARQLYQKGAQACPAHVHLFQAWACMEVRSGNIDKARKLLDHALELDA AHGAVWTAYGLLEARQGTLAKARQNFTTGIRRSPHHAPLYRAFGQTESSA GNYERARQLFQEGLRVDPQHAPLYHAYAQFEAMLGNVTALSGLKKQAEEF FGSEAQAVQVLKSGEPELDPEVIESSDEILEGKYSAMVTPMELALDGVDV YDK* back to topmRNA from alignment at tig00000207_pilon:27030..30191+ Legend: start_codonpolypeptideCDSexonstop_codon Hold the cursor over a type above to highlight its positions in the sequence below. >Ggra11066.t1 ID=Ggra11066.t1|Name=Ggra11066.t1|organism=Gracilaria gracilis GNS1m male|type=mRNA|length=3162bp|location=Sequence derived from alignment at tig00000207_pilon:27030..30191+ (Gracilaria gracilis GNS1m male) ATGACTGTGAGCCCGCCAGCTTCGTCGCAGAGCCCTTCCGCGTTGTACTA
CTGCTATGTGGCCAGGTCCTGCTTCGTGCCCCCCGTCATGCCCAACCGCG
CGCAACATGTGGCGCTCTCTTCACAATGCAATGCCGCTGTGACGCGCGCG
TTGGGGCCTCATGGAAATCGCACCTTTGTCAACGGTTACAGTAACCTCTT
CTTCCGCTCGGATAGTATCTGGTCGCCCAGCTTTGATTCGCACCGTGGAG
ATCCGGTGGGCAACTCTGGTGGCACCGAGTTTGGCGGCTCGGGTAATGGT
AACTGGGGTCTGGGTGACAACAATTCTTTCTCCACCTTCCCGGGTGGTAC
TTTGGAGTATGGTCGTCGACGCGTGCGCGATGAACAGAGTGCGAATCCCG
TTGCTTCACTCACGCTTCCTCCTCTTGCTTCGCAGTTCACCCCGCCTCCG
CTTGTGTCTTCGTTTGAAGCATCTTCGTTTATGCCCAGTTCTTCCCCGCA
AACTACAGAGTTTCTTGGTCCCAGGTCTCTCCCTACCCCAAGTGAATGCG
TACAGTGGAGAGCCTCACGTTTCCCCAACGCCTATAATACCGTCACCTCC
TCTGCGTTGTCCCCTTCTTCGGCCGACCAAAACTCTACTGTCACTCCTAG
CAAACTCAAGCCGCCCAGCGTGTCCAGGGCCGCGTCCGAACCCTCGGTTG
GTGTGCGAAGAAGAAAACGCTCTTCTGATTCACGCTCCCCAAAGTACAAC
AATGTCCAGAGAAAGCCCGATCAAGGTCGTGGCCCCCCACCCAGATCGAA
CAAACCCTACTCGAAGCACAACGGGCAGCAGTTTCAGAGCAAGGTTCGCC
GTCAAGTACGCACCATCTTCGAACGCGCCAAGGAAGAAGAGAGGAACGGT
AACCTTAACGAAGCACGCATCTTGCTGCGTCAATGTCTTGATCTTGATAA
ACAGGACAGTCATTCATGGCTGGCGCTTGCAAGGCTGGAGTCCAAGGCTG
GCGGTGTCTCAATACGCAACTTGCGTAACAATAACCAAAACGACAACGAT
TCGGAACATCACTCTAACCCTCCGAGCGCCGCTCGTGGTACTGAGATCGC
TCGCTCAATATTTAAACTTGGGCTTGAAGAATGTCCAAATAGTATCCATC
TCATCCAGGCGTGGGCTGTTCTGGAGCATCGATGCGGAAATCGTGACACG
GCGCGGGAGCTGTTTGCGAGAGGTCTGGCTCTGGAACCCGACAACCCGTA
TGTGAGTCAGGCGTGGGGTTTATTGGAACAGAGGGTTGGCAACACAGACA
AAGCGAGAGAGTTGTTCCGGCAGACCGTGTCTTTGAGACCGCATCCAGAG
GTTTGTGCAGCGTGGGCTGTTCTGGAAGCTAGGGAGGGCAATATCCAGCA
CGCCAGGGATTTGTACCAGAAAGGGCTCAGGGCGTGCAGGACCGCAGGCA
ACCAGTCATCTGCCGCCATCTTTAGATCCTGGGCGGAAATGGAAGAAAGA
GTGGGTGATCTCCCTAAAGCTCGCGAGCTTCTCAACAAGGCCATCGCTAC
GCAGCCACGAATGACCGAAGCCTATGTTGCGCTTGCACGTCTGGAGGCGA
GAAGAAGGGGTACGACCAGAGCTGTAGAGTTGATGCGTGCTGCCGCATCC
TTGTCCCCTAAGCCTCCTGCTTCAGTGTTCAATGCTTGGGCCCAGATTGA
ATGGACTTGTTGTGGTCGTGTTGATGAAGCGCGTAGGCTTTTAAGGGAAG
GTCATGATTGTCATCCATCAGATCCTGCTATTCTGCAGAGCCTTGGAACG
CTCGAAGAACGGTGTGGGAATCCAGAGGAAGCAAAGAGGCTCTTCTATAC
CAGCGTATGTGCGCGGCCGACTGCTCCTGCCTTCGTCGCGTGGGCGTTGC
TTGAAGAAAAAGACGGTAACCTCGATGAGGCAAAGCGTCTTTTTGAAGAA
GCCTTGAGCACAGATGCTTTGCATGGTGCTGCATATAACGCATACGGCAT
GATGGAGGCTAGACGGGGATGTCTGAACGACGCGAGAGCTGTGTACGAGA
GAGGATTGAAAGCCCATGCGTCGGCTTCCGTTTGGCACGGCTACGGCCAG
CTTGAGCTGAAACAGGGAAGAAACCCTGATCGTGCTCGAGATCTATTTCG
GCTGGGAGTAGGCCAGACGCGAGAAGACACTTCTTTCATATGGCATTCAT
GGGGAATGCTAGAACTTCAACAACGTCAAGTCCGAGAGGCTCGAAGGGTA
TTCCGCGATGCACTTAAGCGATACCCCCGGAATTCGAGGGTACTTGTGGG
AGCTGCGCTTGCACATGCAGCATCATGCATACACACTCTTTCCCAAGAGA
AGGAAGCAGTCGATTTCTTCAAACGTGCAGTTGGGGCTGATCCAACTCAT
GCCCACGCGTGGCAAGCCTGGGGTGTGTTCGAGCTACGTCGAGGTCGCCC
GGATGCTGCCCAGGCATTGTTTAGACGGGGTCTAAGGTTGTGTCCCTCTC
ATGGAGCACTGTGGCAGGCTTGGGGTGTGTTGGAAACTTCCCGTGGAAAC
TTCAGCAAAGCTCGTCAGTTGTACCAGAAGGGTGCGCAGGCATGTCCCGC
GCATGTTCATTTGTTTCAGGCATGGGCATGTATGGAGGTCAGATCGGGAA
ACATCGACAAAGCCCGGAAGCTGTTGGACCACGCTCTCGAATTGGATGCC
GCTCATGGTGCCGTCTGGACTGCATATGGATTATTGGAAGCGCGGCAAGG
AACCTTGGCCAAAGCTCGACAAAATTTTACGACTGGTATTCGTCGATCTC
CTCACCACGCTCCGTTGTATAGGGCATTCGGTCAAACCGAGTCTAGCGCT
GGAAACTACGAGAGGGCTAGACAACTGTTCCAAGAAGGTCTTCGTGTCGA
CCCGCAACACGCTCCATTATACCACGCTTATGCACAATTTGAAGCGATGC
TCGGAAACGTCACGGCACTCAGTGGGTTAAAGAAGCAAGCCGAGGAATTC
TTCGGGTCTGAAGCTCAGGCCGTTCAGGTATTGAAGAGCGGCGAACCAGA
ACTGGATCCTGAAGTCATTGAAAGCTCTGATGAAATCTTGGAAGGAAAGT
ACTCAGCCATGGTTACCCCAATGGAGCTCGCATTAGACGGAGTTGACGTT
TACGATAAGTAG back to topCoding sequence (CDS) from alignment at tig00000207_pilon:27030..30191+ >Ggra11066.t1 ID=Ggra11066.t1|Name=Ggra11066.t1|organism=Gracilaria gracilis GNS1m male|type=CDS|length=3162bp|location=Sequence derived from alignment at tig00000207_pilon:27030..30191+ (Gracilaria gracilis GNS1m male) ATGACTGTGAGCCCGCCAGCTTCGTCGCAGAGCCCTTCCGCGTTGTACTA CTGCTATGTGGCCAGGTCCTGCTTCGTGCCCCCCGTCATGCCCAACCGCG CGCAACATGTGGCGCTCTCTTCACAATGCAATGCCGCTGTGACGCGCGCG TTGGGGCCTCATGGAAATCGCACCTTTGTCAACGGTTACAGTAACCTCTT CTTCCGCTCGGATAGTATCTGGTCGCCCAGCTTTGATTCGCACCGTGGAG ATCCGGTGGGCAACTCTGGTGGCACCGAGTTTGGCGGCTCGGGTAATGGT AACTGGGGTCTGGGTGACAACAATTCTTTCTCCACCTTCCCGGGTGGTAC TTTGGAGTATGGTCGTCGACGCGTGCGCGATGAACAGAGTGCGAATCCCG TTGCTTCACTCACGCTTCCTCCTCTTGCTTCGCAGTTCACCCCGCCTCCG CTTGTGTCTTCGTTTGAAGCATCTTCGTTTATGCCCAGTTCTTCCCCGCA AACTACAGAGTTTCTTGGTCCCAGGTCTCTCCCTACCCCAAGTGAATGCG TACAGTGGAGAGCCTCACGTTTCCCCAACGCCTATAATACCGTCACCTCC TCTGCGTTGTCCCCTTCTTCGGCCGACCAAAACTCTACTGTCACTCCTAG CAAACTCAAGCCGCCCAGCGTGTCCAGGGCCGCGTCCGAACCCTCGGTTG GTGTGCGAAGAAGAAAACGCTCTTCTGATTCACGCTCCCCAAAGTACAAC AATGTCCAGAGAAAGCCCGATCAAGGTCGTGGCCCCCCACCCAGATCGAA CAAACCCTACTCGAAGCACAACGGGCAGCAGTTTCAGAGCAAGGTTCGCC GTCAAGTACGCACCATCTTCGAACGCGCCAAGGAAGAAGAGAGGAACGGT AACCTTAACGAAGCACGCATCTTGCTGCGTCAATGTCTTGATCTTGATAA ACAGGACAGTCATTCATGGCTGGCGCTTGCAAGGCTGGAGTCCAAGGCTG GCGGTGTCTCAATACGCAACTTGCGTAACAATAACCAAAACGACAACGAT TCGGAACATCACTCTAACCCTCCGAGCGCCGCTCGTGGTACTGAGATCGC TCGCTCAATATTTAAACTTGGGCTTGAAGAATGTCCAAATAGTATCCATC TCATCCAGGCGTGGGCTGTTCTGGAGCATCGATGCGGAAATCGTGACACG GCGCGGGAGCTGTTTGCGAGAGGTCTGGCTCTGGAACCCGACAACCCGTA TGTGAGTCAGGCGTGGGGTTTATTGGAACAGAGGGTTGGCAACACAGACA AAGCGAGAGAGTTGTTCCGGCAGACCGTGTCTTTGAGACCGCATCCAGAG GTTTGTGCAGCGTGGGCTGTTCTGGAAGCTAGGGAGGGCAATATCCAGCA CGCCAGGGATTTGTACCAGAAAGGGCTCAGGGCGTGCAGGACCGCAGGCA ACCAGTCATCTGCCGCCATCTTTAGATCCTGGGCGGAAATGGAAGAAAGA GTGGGTGATCTCCCTAAAGCTCGCGAGCTTCTCAACAAGGCCATCGCTAC GCAGCCACGAATGACCGAAGCCTATGTTGCGCTTGCACGTCTGGAGGCGA GAAGAAGGGGTACGACCAGAGCTGTAGAGTTGATGCGTGCTGCCGCATCC TTGTCCCCTAAGCCTCCTGCTTCAGTGTTCAATGCTTGGGCCCAGATTGA ATGGACTTGTTGTGGTCGTGTTGATGAAGCGCGTAGGCTTTTAAGGGAAG GTCATGATTGTCATCCATCAGATCCTGCTATTCTGCAGAGCCTTGGAACG CTCGAAGAACGGTGTGGGAATCCAGAGGAAGCAAAGAGGCTCTTCTATAC CAGCGTATGTGCGCGGCCGACTGCTCCTGCCTTCGTCGCGTGGGCGTTGC TTGAAGAAAAAGACGGTAACCTCGATGAGGCAAAGCGTCTTTTTGAAGAA GCCTTGAGCACAGATGCTTTGCATGGTGCTGCATATAACGCATACGGCAT GATGGAGGCTAGACGGGGATGTCTGAACGACGCGAGAGCTGTGTACGAGA GAGGATTGAAAGCCCATGCGTCGGCTTCCGTTTGGCACGGCTACGGCCAG CTTGAGCTGAAACAGGGAAGAAACCCTGATCGTGCTCGAGATCTATTTCG GCTGGGAGTAGGCCAGACGCGAGAAGACACTTCTTTCATATGGCATTCAT GGGGAATGCTAGAACTTCAACAACGTCAAGTCCGAGAGGCTCGAAGGGTA TTCCGCGATGCACTTAAGCGATACCCCCGGAATTCGAGGGTACTTGTGGG AGCTGCGCTTGCACATGCAGCATCATGCATACACACTCTTTCCCAAGAGA AGGAAGCAGTCGATTTCTTCAAACGTGCAGTTGGGGCTGATCCAACTCAT GCCCACGCGTGGCAAGCCTGGGGTGTGTTCGAGCTACGTCGAGGTCGCCC GGATGCTGCCCAGGCATTGTTTAGACGGGGTCTAAGGTTGTGTCCCTCTC ATGGAGCACTGTGGCAGGCTTGGGGTGTGTTGGAAACTTCCCGTGGAAAC TTCAGCAAAGCTCGTCAGTTGTACCAGAAGGGTGCGCAGGCATGTCCCGC GCATGTTCATTTGTTTCAGGCATGGGCATGTATGGAGGTCAGATCGGGAA ACATCGACAAAGCCCGGAAGCTGTTGGACCACGCTCTCGAATTGGATGCC GCTCATGGTGCCGTCTGGACTGCATATGGATTATTGGAAGCGCGGCAAGG AACCTTGGCCAAAGCTCGACAAAATTTTACGACTGGTATTCGTCGATCTC CTCACCACGCTCCGTTGTATAGGGCATTCGGTCAAACCGAGTCTAGCGCT GGAAACTACGAGAGGGCTAGACAACTGTTCCAAGAAGGTCTTCGTGTCGA CCCGCAACACGCTCCATTATACCACGCTTATGCACAATTTGAAGCGATGC TCGGAAACGTCACGGCACTCAGTGGGTTAAAGAAGCAAGCCGAGGAATTC TTCGGGTCTGAAGCTCAGGCCGTTCAGGTATTGAAGAGCGGCGAACCAGA ACTGGATCCTGAAGTCATTGAAAGCTCTGATGAAATCTTGGAAGGAAAGT ACTCAGCCATGGTTACCCCAATGGAGCTCGCATTAGACGGAGTTGACGTT TACGATAAGTAG back to top
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