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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 | 5759.rna_EHI_024610-1 |
| PFAMs | Chorein_N,VPS13 |
| Max annot lvl | 554915|Amoebozoa |
| Evalue | 1.14e-06 |
| EggNOG OGs | COG5043@1|root,KOG1809@2759|Eukaryota,3XFWJ@554915|Amoebozoa |
| Description | Vacuolar sorting-associated protein 13, N-terminal |
| COG category | U |
Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following stop_codon feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| Gcaud2718.t1.stop1 | Gcaud2718.t1.stop1 | Gracilaria caudata M_176_S67 male | stop_codon | NODE_409_length_26400_cov_4.606408 589..591 - |
The following CDS feature(s) are a part of this mRNA:
The following exon feature(s) are a part of this mRNA:
The following intron feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| Gcaud2718.t1.intron1 | Gcaud2718.t1.intron1 | Gracilaria caudata M_176_S67 male | intron | NODE_409_length_26400_cov_4.606408 598..733 - |
The following start_codon feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| Gcaud2718.t1.start1 | Gcaud2718.t1.start1 | Gracilaria caudata M_176_S67 male | start_codon | NODE_409_length_26400_cov_4.606408 3749..3751 - |
Sequences
The following sequences are available for this feature:
mRNA sequence >Gcaud2718.t1 ID=Gcaud2718.t1|Name=Gcaud2718.t1|organism=Gracilaria caudata M_176_S67 male|type=mRNA|length=1009bp MGIFQNLVVDALARHFPRLRESLRVNLLRGKLHLEDVDVAPSFLILNNMP LQINKGKIGSLAVQVPWTKLYSSPIRAQADDFRLSLSEVPFPSSQQAVFD AFASESDNEKKRQLAEGERGKSPLSRILTRILPMLLDRFELDIKNVTIEL KFASGQTGIIRLNELSTKPTPQSANRGDLDKLIVASGFSFTITSETTHPT LCLSETSVSFNATFRGGAWDIDLNMPNFKLEVDYLFPHFLNALTARSSHW RIAHLHQRPNEAVADNPRAWFQYIVRRVTSSFCKRRIYFSEDTVRRKARS FVKYKELHVKRLRRIADNDESIQVLELERSLGADAILIIRDQARKHALAD EVSSFATRDWLGWALFGTEVSQEQEQVAEELKHSLTVAKFGQASSGAQEV SELSTTWAKIRLGINIPFFRITIADQFSNLSLCLKATSMQAELDSSLESY NGSLCIESATLVDGEKHIWIGDPGDSAHRHFLKEGQKPCFLVLKLYKLGY ENKVTRSLRIQSSRAEIDFVTEEGFERMRRIVAFAKSMRFASSAADDENS ELPRTRTIKTTEVENAVQVKTYVDVARFTLLVMNAVQQPQNSSLDICCTL SDVYAEIEGGDNENALRRGKLEISGHHHLSTTKHSKETTMARCSEWSEKS KFFQVTTTVNIETKENRVELNLVDGEGFLDLPSTTPFVNSLFSTRRQFLM KVLPEFDDGFQDEITARRGIHAHQNITYVLKAPSVDFSLRDSDEEGNLTE AARLKLGGMRYETEGWRYHMIRAQHLEIYESLYRDSILLAGFEIAFDAIQ REGYGMTFQRMESDVEKLSVSVSVQGLSKMSSIVDHAFEGLQIPLRNEIT IQGKQHRDQTSFEYDTQPTASFSVRLRRTILRCAGYDVRIQSTFENILLL RQDKTLTGFLDNLEVKDTSDMSSDYKTVLRCTVPQEDTSPRRRPVSFVTS NRTSNVQVSALQVVWLKTINSSISRIYESFNSTVRDIHAKVSGSLATTGL KEGASGVK* back to topspliced messenger RNA >Gcaud2718.t1 ID=Gcaud2718.t1|Name=Gcaud2718.t1|organism=Gracilaria caudata M_176_S67 male|type=mRNA|length=3027bp|location=Sequence derived from alignment at NODE_409_length_26400_cov_4.606408:589..3751- (Gracilaria caudata M_176_S67 male)|Notes=Excludes all bases but those of type(s): exon.
ATGGGCATTTTTCAGAACCTGGTCGTGGACGCCCTAGCCCGTCATTTTCC ACGCCTCCGCGAGTCTTTGCGCGTAAATCTGCTGCGTGGAAAACTGCACT TAGAAGATGTTGACGTTGCGCCCTCCTTTCTGATCCTGAACAACATGCCG CTGCAAATCAACAAGGGGAAGATAGGCAGTCTCGCTGTACAAGTGCCTTG GACAAAGTTATACTCATCTCCAATCCGAGCCCAAGCTGACGACTTTCGAT TATCGTTGTCGGAGGTTCCATTTCCATCTTCACAGCAAGCCGTGTTTGAT GCTTTTGCATCCGAGTCCGACAATGAGAAAAAGCGACAACTTGCTGAAGG GGAAAGAGGGAAGAGCCCACTTTCGCGCATACTAACCCGAATCCTTCCCA TGCTTTTGGATCGCTTTGAGCTCGATATAAAGAATGTGACTATTGAGCTT AAGTTCGCCTCTGGTCAAACTGGAATAATTCGTCTCAACGAACTGTCCAC GAAACCTACCCCTCAATCTGCGAACCGTGGTGATCTAGATAAGCTTATAG TTGCGTCTGGCTTTTCGTTCACCATAACTTCGGAAACAACACACCCAACT TTATGCTTATCAGAAACTTCTGTATCCTTCAATGCGACGTTCAGAGGTGG CGCTTGGGACATAGATCTCAATATGCCGAATTTTAAGCTGGAGGTAGACT ACCTCTTCCCACACTTCCTGAATGCACTTACAGCAAGATCATCGCATTGG CGTATCGCTCACTTGCATCAACGTCCCAATGAAGCTGTCGCGGACAATCC AAGAGCCTGGTTTCAGTATATTGTTCGTCGCGTGACTTCGTCCTTTTGCA AGCGTAGAATTTACTTTTCGGAGGATACGGTTCGTCGTAAAGCAAGGAGT TTTGTCAAATACAAAGAATTGCATGTGAAGCGTCTACGGAGGATCGCAGA TAACGACGAATCAATCCAAGTTCTTGAACTAGAGCGATCTCTCGGAGCAG ATGCAATCCTAATCATACGAGATCAGGCTAGAAAACATGCGCTCGCTGAT GAGGTTTCTTCATTTGCTACTCGTGATTGGCTGGGGTGGGCGCTATTTGG AACTGAAGTATCTCAGGAGCAAGAACAAGTAGCAGAAGAACTGAAGCATT CCCTCACAGTAGCGAAATTTGGACAAGCGAGCTCTGGTGCTCAGGAGGTG TCAGAACTGTCAACGACGTGGGCGAAGATAAGGCTTGGAATCAATATCCC GTTCTTTCGTATAACGATTGCAGATCAATTCAGTAATTTGAGCCTTTGCC TTAAAGCTACGTCTATGCAGGCGGAGTTGGATTCTTCTCTAGAATCGTAC AACGGCTCGCTGTGTATCGAGAGTGCAACATTAGTGGACGGAGAAAAGCA TATATGGATTGGAGATCCCGGTGATAGTGCCCACCGACATTTCCTGAAGG AAGGACAGAAACCTTGCTTCCTGGTGTTAAAACTGTACAAGCTTGGATAC GAGAACAAGGTCACAAGATCGCTCCGAATCCAGTCTTCCAGAGCCGAAAT TGACTTCGTTACGGAAGAAGGTTTTGAGCGCATGAGGCGGATTGTTGCGT TTGCTAAGAGTATGCGATTCGCATCTAGTGCCGCGGATGACGAAAATAGT GAACTTCCGAGAACCAGGACCATAAAGACAACAGAAGTCGAAAATGCAGT CCAAGTCAAAACGTACGTTGATGTTGCCAGATTCACTTTGCTGGTGATGA ATGCTGTTCAGCAACCTCAGAATTCTTCTTTGGACATCTGTTGCACTCTC TCGGACGTTTACGCCGAAATCGAAGGCGGAGATAACGAAAATGCTTTGCG AAGGGGAAAACTGGAAATATCGGGACATCATCATTTGTCCACAACGAAGC ATTCTAAGGAGACAACAATGGCTCGATGCTCCGAATGGAGTGAGAAGTCT AAGTTTTTTCAAGTCACTACGACAGTCAATATTGAAACAAAAGAAAATCG AGTGGAACTGAATTTAGTAGATGGTGAAGGGTTTCTTGATTTACCCAGCA CAACTCCATTCGTTAACTCCTTGTTTAGTACAAGGCGTCAATTTCTCATG AAAGTGCTCCCAGAATTTGATGATGGTTTCCAAGATGAGATTACTGCAAG ACGAGGAATTCATGCCCACCAGAATATCACCTATGTGTTGAAAGCGCCAT CGGTAGACTTCAGCCTTCGAGATTCTGATGAAGAAGGTAACTTAACTGAA GCGGCGAGGCTGAAATTGGGAGGTATGAGGTATGAGACAGAAGGATGGCG ATATCATATGATCCGAGCTCAACACTTAGAAATATATGAATCGCTGTATC GCGACTCTATCCTTCTTGCGGGTTTTGAGATTGCATTTGATGCGATTCAA CGTGAGGGCTATGGAATGACGTTTCAACGGATGGAGTCTGATGTTGAAAA ACTAAGCGTATCAGTTTCGGTACAAGGTCTATCAAAGATGTCCTCCATTG TGGACCATGCTTTCGAAGGCCTCCAAATCCCATTGCGCAACGAGATTACT ATTCAGGGAAAACAACACCGAGACCAAACCTCATTTGAATATGACACACA ACCAACTGCGTCATTTTCAGTTCGGCTCAGAAGAACGATACTTAGATGTG CAGGATATGATGTCCGTATCCAGTCAACTTTTGAAAATATTCTACTTCTT CGTCAAGACAAGACGCTAACTGGCTTCCTTGACAATCTCGAAGTCAAGGA CACTAGTGATATGTCTTCCGATTACAAAACGGTTCTAAGATGCACAGTTC CACAAGAAGATACCTCTCCACGTCGAAGACCTGTTTCGTTCGTGACATCA AACCGCACAAGTAACGTTCAAGTCTCAGCATTGCAGGTAGTTTGGCTGAA AACTATCAACTCAAGCATATCACGAATCTATGAATCATTTAATAGTACCG TAAGGGACATTCATGCAAAGGTCAGCGGTTCTCTGGCTACCACTGGGTTA AAGGAGGGCGCTTCAGGGGTCAAGTGA back to topprotein sequence of Gcaud2718.t1 >Gcaud2718.t1 ID=Gcaud2718.t1|Name=Gcaud2718.t1|organism=Gracilaria caudata M_176_S67 male|type=polypeptide|length=1009bp
MGIFQNLVVDALARHFPRLRESLRVNLLRGKLHLEDVDVAPSFLILNNMP LQINKGKIGSLAVQVPWTKLYSSPIRAQADDFRLSLSEVPFPSSQQAVFD AFASESDNEKKRQLAEGERGKSPLSRILTRILPMLLDRFELDIKNVTIEL KFASGQTGIIRLNELSTKPTPQSANRGDLDKLIVASGFSFTITSETTHPT LCLSETSVSFNATFRGGAWDIDLNMPNFKLEVDYLFPHFLNALTARSSHW RIAHLHQRPNEAVADNPRAWFQYIVRRVTSSFCKRRIYFSEDTVRRKARS FVKYKELHVKRLRRIADNDESIQVLELERSLGADAILIIRDQARKHALAD EVSSFATRDWLGWALFGTEVSQEQEQVAEELKHSLTVAKFGQASSGAQEV SELSTTWAKIRLGINIPFFRITIADQFSNLSLCLKATSMQAELDSSLESY NGSLCIESATLVDGEKHIWIGDPGDSAHRHFLKEGQKPCFLVLKLYKLGY ENKVTRSLRIQSSRAEIDFVTEEGFERMRRIVAFAKSMRFASSAADDENS ELPRTRTIKTTEVENAVQVKTYVDVARFTLLVMNAVQQPQNSSLDICCTL SDVYAEIEGGDNENALRRGKLEISGHHHLSTTKHSKETTMARCSEWSEKS KFFQVTTTVNIETKENRVELNLVDGEGFLDLPSTTPFVNSLFSTRRQFLM KVLPEFDDGFQDEITARRGIHAHQNITYVLKAPSVDFSLRDSDEEGNLTE AARLKLGGMRYETEGWRYHMIRAQHLEIYESLYRDSILLAGFEIAFDAIQ REGYGMTFQRMESDVEKLSVSVSVQGLSKMSSIVDHAFEGLQIPLRNEIT IQGKQHRDQTSFEYDTQPTASFSVRLRRTILRCAGYDVRIQSTFENILLL RQDKTLTGFLDNLEVKDTSDMSSDYKTVLRCTVPQEDTSPRRRPVSFVTS NRTSNVQVSALQVVWLKTINSSISRIYESFNSTVRDIHAKVSGSLATTGL KEGASGVK* back to topmRNA from alignment at NODE_409_length_26400_cov_4.606408:589..3751- Legend: polypeptideCDSexonstart_codonintronstop_codon Hold the cursor over a type above to highlight its positions in the sequence below. >Gcaud2718.t1 ID=Gcaud2718.t1|Name=Gcaud2718.t1|organism=Gracilaria caudata M_176_S67 male|type=mRNA|length=3163bp|location=Sequence derived from alignment at NODE_409_length_26400_cov_4.606408:589..3751- (Gracilaria caudata M_176_S67 male) ATGGGCATTTTTCAGAACCTGGTCGTGGACGCCCTAGCCCGTCATTTTCC
ACGCCTCCGCGAGTCTTTGCGCGTAAATCTGCTGCGTGGAAAACTGCACT
TAGAAGATGTTGACGTTGCGCCCTCCTTTCTGATCCTGAACAACATGCCG
CTGCAAATCAACAAGGGGAAGATAGGCAGTCTCGCTGTACAAGTGCCTTG
GACAAAGTTATACTCATCTCCAATCCGAGCCCAAGCTGACGACTTTCGAT
TATCGTTGTCGGAGGTTCCATTTCCATCTTCACAGCAAGCCGTGTTTGAT
GCTTTTGCATCCGAGTCCGACAATGAGAAAAAGCGACAACTTGCTGAAGG
GGAAAGAGGGAAGAGCCCACTTTCGCGCATACTAACCCGAATCCTTCCCA
TGCTTTTGGATCGCTTTGAGCTCGATATAAAGAATGTGACTATTGAGCTT
AAGTTCGCCTCTGGTCAAACTGGAATAATTCGTCTCAACGAACTGTCCAC
GAAACCTACCCCTCAATCTGCGAACCGTGGTGATCTAGATAAGCTTATAG
TTGCGTCTGGCTTTTCGTTCACCATAACTTCGGAAACAACACACCCAACT
TTATGCTTATCAGAAACTTCTGTATCCTTCAATGCGACGTTCAGAGGTGG
CGCTTGGGACATAGATCTCAATATGCCGAATTTTAAGCTGGAGGTAGACT
ACCTCTTCCCACACTTCCTGAATGCACTTACAGCAAGATCATCGCATTGG
CGTATCGCTCACTTGCATCAACGTCCCAATGAAGCTGTCGCGGACAATCC
AAGAGCCTGGTTTCAGTATATTGTTCGTCGCGTGACTTCGTCCTTTTGCA
AGCGTAGAATTTACTTTTCGGAGGATACGGTTCGTCGTAAAGCAAGGAGT
TTTGTCAAATACAAAGAATTGCATGTGAAGCGTCTACGGAGGATCGCAGA
TAACGACGAATCAATCCAAGTTCTTGAACTAGAGCGATCTCTCGGAGCAG
ATGCAATCCTAATCATACGAGATCAGGCTAGAAAACATGCGCTCGCTGAT
GAGGTTTCTTCATTTGCTACTCGTGATTGGCTGGGGTGGGCGCTATTTGG
AACTGAAGTATCTCAGGAGCAAGAACAAGTAGCAGAAGAACTGAAGCATT
CCCTCACAGTAGCGAAATTTGGACAAGCGAGCTCTGGTGCTCAGGAGGTG
TCAGAACTGTCAACGACGTGGGCGAAGATAAGGCTTGGAATCAATATCCC
GTTCTTTCGTATAACGATTGCAGATCAATTCAGTAATTTGAGCCTTTGCC
TTAAAGCTACGTCTATGCAGGCGGAGTTGGATTCTTCTCTAGAATCGTAC
AACGGCTCGCTGTGTATCGAGAGTGCAACATTAGTGGACGGAGAAAAGCA
TATATGGATTGGAGATCCCGGTGATAGTGCCCACCGACATTTCCTGAAGG
AAGGACAGAAACCTTGCTTCCTGGTGTTAAAACTGTACAAGCTTGGATAC
GAGAACAAGGTCACAAGATCGCTCCGAATCCAGTCTTCCAGAGCCGAAAT
TGACTTCGTTACGGAAGAAGGTTTTGAGCGCATGAGGCGGATTGTTGCGT
TTGCTAAGAGTATGCGATTCGCATCTAGTGCCGCGGATGACGAAAATAGT
GAACTTCCGAGAACCAGGACCATAAAGACAACAGAAGTCGAAAATGCAGT
CCAAGTCAAAACGTACGTTGATGTTGCCAGATTCACTTTGCTGGTGATGA
ATGCTGTTCAGCAACCTCAGAATTCTTCTTTGGACATCTGTTGCACTCTC
TCGGACGTTTACGCCGAAATCGAAGGCGGAGATAACGAAAATGCTTTGCG
AAGGGGAAAACTGGAAATATCGGGACATCATCATTTGTCCACAACGAAGC
ATTCTAAGGAGACAACAATGGCTCGATGCTCCGAATGGAGTGAGAAGTCT
AAGTTTTTTCAAGTCACTACGACAGTCAATATTGAAACAAAAGAAAATCG
AGTGGAACTGAATTTAGTAGATGGTGAAGGGTTTCTTGATTTACCCAGCA
CAACTCCATTCGTTAACTCCTTGTTTAGTACAAGGCGTCAATTTCTCATG
AAAGTGCTCCCAGAATTTGATGATGGTTTCCAAGATGAGATTACTGCAAG
ACGAGGAATTCATGCCCACCAGAATATCACCTATGTGTTGAAAGCGCCAT
CGGTAGACTTCAGCCTTCGAGATTCTGATGAAGAAGGTAACTTAACTGAA
GCGGCGAGGCTGAAATTGGGAGGTATGAGGTATGAGACAGAAGGATGGCG
ATATCATATGATCCGAGCTCAACACTTAGAAATATATGAATCGCTGTATC
GCGACTCTATCCTTCTTGCGGGTTTTGAGATTGCATTTGATGCGATTCAA
CGTGAGGGCTATGGAATGACGTTTCAACGGATGGAGTCTGATGTTGAAAA
ACTAAGCGTATCAGTTTCGGTACAAGGTCTATCAAAGATGTCCTCCATTG
TGGACCATGCTTTCGAAGGCCTCCAAATCCCATTGCGCAACGAGATTACT
ATTCAGGGAAAACAACACCGAGACCAAACCTCATTTGAATATGACACACA
ACCAACTGCGTCATTTTCAGTTCGGCTCAGAAGAACGATACTTAGATGTG
CAGGATATGATGTCCGTATCCAGTCAACTTTTGAAAATATTCTACTTCTT
CGTCAAGACAAGACGCTAACTGGCTTCCTTGACAATCTCGAAGTCAAGGA
CACTAGTGATATGTCTTCCGATTACAAAACGGTTCTAAGATGCACAGTTC
CACAAGAAGATACCTCTCCACGTCGAAGACCTGTTTCGTTCGTGACATCA
AACCGCACAAGTAACGTTCAAGTCTCAGCATTGCAGGTAGTTTGGCTGAA
AACTATCAACTCAAGCATATCACGAATCTATGAATCATTTAATAGTACCG
TAAGGGACATTCATGCAAAGGTCAGCGGTTCTCTGGCTACCACTGGGTTA
AAGGAGGGCGCTTCAGGGGTGCGTCAGACTTCTACGTCTGGACCATTAAC
GATACAGGGATGGGATCTCACACTTATATTTCCTCTTTCTCGGACAAACC
ACGAAGCTGTGTGTATCAGTTCATCTCACATAACTGCGACCCTCTCTCCT
AAAGGTCAAGTGA back to topCoding sequence (CDS) from alignment at NODE_409_length_26400_cov_4.606408:589..3751- >Gcaud2718.t1 ID=Gcaud2718.t1|Name=Gcaud2718.t1|organism=Gracilaria caudata M_176_S67 male|type=CDS|length=3027bp|location=Sequence derived from alignment at NODE_409_length_26400_cov_4.606408:589..3751- (Gracilaria caudata M_176_S67 male) ATGGGCATTTTTCAGAACCTGGTCGTGGACGCCCTAGCCCGTCATTTTCC ACGCCTCCGCGAGTCTTTGCGCGTAAATCTGCTGCGTGGAAAACTGCACT TAGAAGATGTTGACGTTGCGCCCTCCTTTCTGATCCTGAACAACATGCCG CTGCAAATCAACAAGGGGAAGATAGGCAGTCTCGCTGTACAAGTGCCTTG GACAAAGTTATACTCATCTCCAATCCGAGCCCAAGCTGACGACTTTCGAT TATCGTTGTCGGAGGTTCCATTTCCATCTTCACAGCAAGCCGTGTTTGAT GCTTTTGCATCCGAGTCCGACAATGAGAAAAAGCGACAACTTGCTGAAGG GGAAAGAGGGAAGAGCCCACTTTCGCGCATACTAACCCGAATCCTTCCCA TGCTTTTGGATCGCTTTGAGCTCGATATAAAGAATGTGACTATTGAGCTT AAGTTCGCCTCTGGTCAAACTGGAATAATTCGTCTCAACGAACTGTCCAC GAAACCTACCCCTCAATCTGCGAACCGTGGTGATCTAGATAAGCTTATAG TTGCGTCTGGCTTTTCGTTCACCATAACTTCGGAAACAACACACCCAACT TTATGCTTATCAGAAACTTCTGTATCCTTCAATGCGACGTTCAGAGGTGG CGCTTGGGACATAGATCTCAATATGCCGAATTTTAAGCTGGAGGTAGACT ACCTCTTCCCACACTTCCTGAATGCACTTACAGCAAGATCATCGCATTGG CGTATCGCTCACTTGCATCAACGTCCCAATGAAGCTGTCGCGGACAATCC AAGAGCCTGGTTTCAGTATATTGTTCGTCGCGTGACTTCGTCCTTTTGCA AGCGTAGAATTTACTTTTCGGAGGATACGGTTCGTCGTAAAGCAAGGAGT TTTGTCAAATACAAAGAATTGCATGTGAAGCGTCTACGGAGGATCGCAGA TAACGACGAATCAATCCAAGTTCTTGAACTAGAGCGATCTCTCGGAGCAG ATGCAATCCTAATCATACGAGATCAGGCTAGAAAACATGCGCTCGCTGAT GAGGTTTCTTCATTTGCTACTCGTGATTGGCTGGGGTGGGCGCTATTTGG AACTGAAGTATCTCAGGAGCAAGAACAAGTAGCAGAAGAACTGAAGCATT CCCTCACAGTAGCGAAATTTGGACAAGCGAGCTCTGGTGCTCAGGAGGTG TCAGAACTGTCAACGACGTGGGCGAAGATAAGGCTTGGAATCAATATCCC GTTCTTTCGTATAACGATTGCAGATCAATTCAGTAATTTGAGCCTTTGCC TTAAAGCTACGTCTATGCAGGCGGAGTTGGATTCTTCTCTAGAATCGTAC AACGGCTCGCTGTGTATCGAGAGTGCAACATTAGTGGACGGAGAAAAGCA TATATGGATTGGAGATCCCGGTGATAGTGCCCACCGACATTTCCTGAAGG AAGGACAGAAACCTTGCTTCCTGGTGTTAAAACTGTACAAGCTTGGATAC GAGAACAAGGTCACAAGATCGCTCCGAATCCAGTCTTCCAGAGCCGAAAT TGACTTCGTTACGGAAGAAGGTTTTGAGCGCATGAGGCGGATTGTTGCGT TTGCTAAGAGTATGCGATTCGCATCTAGTGCCGCGGATGACGAAAATAGT GAACTTCCGAGAACCAGGACCATAAAGACAACAGAAGTCGAAAATGCAGT CCAAGTCAAAACGTACGTTGATGTTGCCAGATTCACTTTGCTGGTGATGA ATGCTGTTCAGCAACCTCAGAATTCTTCTTTGGACATCTGTTGCACTCTC TCGGACGTTTACGCCGAAATCGAAGGCGGAGATAACGAAAATGCTTTGCG AAGGGGAAAACTGGAAATATCGGGACATCATCATTTGTCCACAACGAAGC ATTCTAAGGAGACAACAATGGCTCGATGCTCCGAATGGAGTGAGAAGTCT AAGTTTTTTCAAGTCACTACGACAGTCAATATTGAAACAAAAGAAAATCG AGTGGAACTGAATTTAGTAGATGGTGAAGGGTTTCTTGATTTACCCAGCA CAACTCCATTCGTTAACTCCTTGTTTAGTACAAGGCGTCAATTTCTCATG AAAGTGCTCCCAGAATTTGATGATGGTTTCCAAGATGAGATTACTGCAAG ACGAGGAATTCATGCCCACCAGAATATCACCTATGTGTTGAAAGCGCCAT CGGTAGACTTCAGCCTTCGAGATTCTGATGAAGAAGGTAACTTAACTGAA GCGGCGAGGCTGAAATTGGGAGGTATGAGGTATGAGACAGAAGGATGGCG ATATCATATGATCCGAGCTCAACACTTAGAAATATATGAATCGCTGTATC GCGACTCTATCCTTCTTGCGGGTTTTGAGATTGCATTTGATGCGATTCAA CGTGAGGGCTATGGAATGACGTTTCAACGGATGGAGTCTGATGTTGAAAA ACTAAGCGTATCAGTTTCGGTACAAGGTCTATCAAAGATGTCCTCCATTG TGGACCATGCTTTCGAAGGCCTCCAAATCCCATTGCGCAACGAGATTACT ATTCAGGGAAAACAACACCGAGACCAAACCTCATTTGAATATGACACACA ACCAACTGCGTCATTTTCAGTTCGGCTCAGAAGAACGATACTTAGATGTG CAGGATATGATGTCCGTATCCAGTCAACTTTTGAAAATATTCTACTTCTT CGTCAAGACAAGACGCTAACTGGCTTCCTTGACAATCTCGAAGTCAAGGA CACTAGTGATATGTCTTCCGATTACAAAACGGTTCTAAGATGCACAGTTC CACAAGAAGATACCTCTCCACGTCGAAGACCTGTTTCGTTCGTGACATCA AACCGCACAAGTAACGTTCAAGTCTCAGCATTGCAGGTAGTTTGGCTGAA AACTATCAACTCAAGCATATCACGAATCTATGAATCATTTAATAGTACCG TAAGGGACATTCATGCAAAGGTCAGCGGTTCTCTGGCTACCACTGGGTTA AAGGAGGGCGCTTCAGGGGTCAAGTGA back to top
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