Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TATCTCAACGGTCAAAAAACTCGAAAAGTAAAAAAAGAACAAGAAGAGGTGAAGTGAGGAGAGAGAAAAACGATCAGAAAGTGAGAAAGATGAGCCGGAGAAGATCGGGGAAAGCAAAGCCGAAGAAGCAGAAACAAGATCAGGCAATAAAATGGCGTAGGAATCAGAAGAAATCGGAACAACCGACAGAAATAGTGAAGAAGGAGAAGTGTGAAGAAGGTGAAAAAACTCGGTTTTTTGGTTGCTATCTATTGACATCTCTCAGCCCTCGTTTCAAGGGTCATTCTTATATTGGGTCCGTTTTAATTTTTTACTTTAATTTCATGTTCTACAAATTTTACAAGTTTTGAATTTCTGGATATCCATTTTCGTTGATTAAATTTGAAAAAATAATGAACAAATTAGGTTTACTGTGAATCCAAAGCGACGGATTAGGCAACATAATGGGGAAATTACTAGCGGCGCTTTCAGGACGAAGAAGAAGCGTCCATGGGAAATGGTTCTTTGCATTCATGGTTTTCCAACTAATGTTGCTGCTCTTCAGGTTATCACTTTTTTCTTTTTTTATCCTTATAAATTACCCCCTTCTATTTGCTTTATTGATCATTAAGTTTGAAGTATAAATCATTATTATGAGTAAATCATAAATGGGATTTTCTTGAATTGAATCGGTGGATATAATTTGAGTTGTTTATTGCAAGATTGAATTTTGGTTATGATGTTTTTATTGAATTTGGGGTGGATAATTTGTGTGGTTGATTCCAAGATTGCATTTTGATTGTGATATTTTATTGAGTTGGGGGGTAAATTTGTTTGGTTTATTGCAAGATTTAATTTTGGTGACTATCTTTCATTAAATTGAGCGAATTTTCGGGTTTAATTGCTTGGTCTATTGCAAGATAGCATTTTGATGATGATCATTCATCGAAACAGTGGATTGCTCTTTTGATTATCTTAGTCTGGTTCATTGCAAGATTGCTCTTTTGATTATGACTTTACCCAATTGTAATTGCTTTTTCTTCTCATTTGCTCTGTTAATTTGGAGATCGCCCTGTAAAATTTTGTTTTTTTAATATATATTCTTCATGTATTCCTCAAGATATTTTTTCTTTTCATTTCTCCAATTTTGGTTGGTGTTGCAGTTTGAATGGGCATGGCAACATCCTAGAGAGTCAGTAGCAGTACGAGAGGCGGCTGCGAGCTTTAAAACCCTCGGAGGACTTGCCAACAAAATCAAACTTGCACTCACTATGCTTACTCTCCACTCTTGGCAAAGGTATAATATATTTTTCTTGTCGTTATGTTTCAGATCGTTTTAAATGATCCATTCAATTTCAATCTAATGTAGTAATGCTATGCTGAAACTAAAGAGTTTGAGTTGTGTTGTATTTTCAGTATGAACCTCAGAGTTAGTTTCTTCTCTACAAAGTATATGAAGCACGCTGCTGGGTGTCCAAGCTTGCCTCCCCATATGAAGCTCCATTTTTGTTCAATGGATGAGCTCCCTTGTTATGAGGATATTGACCAAACTTACGGTTGTGAGGATGGTGATGACTTAGACTCAACTAATAGTGAAGTTATGGCCAGCTGTTCTGATGACAGAATAGAATCTTTGTCTGATGGTTCAATGGAGATGAATCCTTCTTCAATTCATGTTCAAAACTTTACTGTACAAAAATCAGCTGATAACATCTTAGAAGAGGATTTCATAGGCATTGGTGGGCCATTGGAGAATGAGTCATCATTGATGATGGGCGCGCTGGAGGATCATATACAACCACTGCATCAATTTCCTGTTGATGTTAGTGGCTCTACTCTGAACACCTCGAATGAGCAGTTGCGACATTGTGAAGAGATCTGGACTGAGGATGTTAGAGCCTCTTTCCCGGAATTAGAGGAACGTATACAATATATTGGTGGCATTTATGCTTCTGAGAATGAGGTGTTTCCTGTTCTTGAGGAAAATTATTCTTCTGGTGACTTGCCTGCTGATGTTACTGCCCATGTTGAGAATGATTTGAGTGAGTGTTCAACACCTGGAAAAGAAATTAGGCCCAAGAAGCTGAGAGGTTCTTCCCCTATAATAGAAGAGCGTATACAGCCATTTCAGCAAGCTGGTTCTTCAGAGAGAGAACAATCTTCAATGGTCGATTTTGCCAAGAAAGACGAAATAACATGTATAGTAATCGATGATATCAGCGACAAACCAACAAGGGTTCAATCGCCTATTAGATTTGCCAATATTGTTTGGCCATTTTCTAATGAGGGGATTGAGGTTATAGAACTTTGTACGCCTTCACCTGACTATAGAATCGCTGTAGGTAGCAAGAAAAGAAGAGCTGCCAGTGATATAATTGACCTGACTGGATCACCTTGTTTTATCCAACTGTAGAATGTTGAAATGCTTTCGTTGGATACCTAATCATCTACTTATGGGAATTCCTCTTCTTGAAAAGCCGGCATTGCTTGCTCTGTCATCATTCAGCCTGGGTAAGAGATGAAAGTTGTGTCCTCAAACTCACCTTGTTCTTCCTTGACATCAGCATGTTCGGAACATAATCCTCAACCATCAATAATGGTCTCATTATCCATCCATCTGGTGTGTTCCATTTCTTAGAGGTTTGTCAAATTTCATTTATTTAATTATTGTCTTAGCATGTAATGGTCCTAGAATACCCGTTGTATTACAGAATAAAGTGTGTAAATAGTTCCAAATATGTAATAATGAAATTTTTTAATTAATAATCACCGTGTCTAATTTTAAAAAATACAAGTAATTAATTAAAGACCTTGTTATATTTTATTGTGTATGTAGTCACACAAAAACTAATTACAATCGTTTAGGATAATCCTCTGAAATTAACTTGAAATGGTGGTCAAAAGTTGAGATGATCAATAATACACCTCTAGTTGTGCTTGTCATTGTGGTAAACTTAAAAGCTTAAGGGGCCTGTGGTAAATAAGTATATAAGAAGCTCAGGGGGCCTGCACTTGTGCAGCAAAGATATAAGAATCTCTTATTGGGGCAATGTTAAAGATGGCAAGGAGAGCTGTTGAGCTGTGTTTATTCAACTCCTGGGGAGTGTGGGGTATGTCTGTGTTTTCTGTGGAAGGGAGGGAGCCTTGTACCTTTCTTTGAGAGAATTTGACATGTTAGACTTGACAATAGTTTTACCCGACCTCATAAGTCATAACTCCTTCAGACGTGCCCACAAAAATTAGGCTATTCAACTCTATTTTCGACCCTAATATCTGAAATAACCCCCAAATAATAACTCAAAAGCAACCAGAAAACCGGCTTTAATCTAAATTAATCAGACCCAAATCCAAATCTCAGCCCACCGGCGTGGCACTGGAAAATAAATAAAA TATCTCAACGGTCAAAAAACTCGAAAAGTAAAAAAAGAACAAGAAGAGGTGAAGTGAGGAGAGAGAAAAACGATCAGAAAGTGAGAAAGATGAGCCGGAGAAGATCGGGGAAAGCAAAGCCGAAGAAGCAGAAACAAGATCAGGCAATAAAATGGCGTAGGAATCAGAAGAAATCGGAACAACCGACAGAAATAGTGAAGAAGGAGAAGTGTGAAGAAGGTGAAAAAACTCGGTTTTTTGGTTGCTATCTATTGACATCTCTCAGCCCTCGTTTCAAGGGTCATTCTTATATTGGGTTTACTGTGAATCCAAAGCGACGGATTAGGCAACATAATGGGGAAATTACTAGCGGCGCTTTCAGGACGAAGAAGAAGCGTCCATGGGAAATGGTTCTTTGCATTCATGGTTTTCCAACTAATGTTGCTGCTCTTCAGTTTGAATGGGCATGGCAACATCCTAGAGAGTCAGTAGCAGTACGAGAGGCGGCTGCGAGCTTTAAAACCCTCGGAGGACTTGCCAACAAAATCAAACTTGCACTCACTATGCTTACTCTCCACTCTTGGCAAAGTATGAACCTCAGAGTTAGTTTCTTCTCTACAAAGTATATGAAGCACGCTGCTGGGTGTCCAAGCTTGCCTCCCCATATGAAGCTCCATTTTTGTTCAATGGATGAGCTCCCTTGTTATGAGGATATTGACCAAACTTACGGTTGTGAGGATGGTGATGACTTAGACTCAACTAATAGTGAAGTTATGGCCAGCTGTTCTGATGACAGAATAGAATCTTTGTCTGATGGTTCAATGGAGATGAATCCTTCTTCAATTCATGTTCAAAACTTTACTGTACAAAAATCAGCTGATAACATCTTAGAAGAGGATTTCATAGGCATTGGTGGGCCATTGGAGAATGAGTCATCATTGATGATGGGCGCGCTGGAGGATCATATACAACCACTGCATCAATTTCCTGTTGATGTTAGTGGCTCTACTCTGAACACCTCGAATGAGCAGTTGCGACATTGTGAAGAGATCTGGACTGAGGATGTTAGAGCCTCTTTCCCGGAATTAGAGGAACGTATACAATATATTGGTGGCATTTATGCTTCTGAGAATGAGGTGTTTCCTGTTCTTGAGGAAAATTATTCTTCTGGTGACTTGCCTGCTGATGTTACTGCCCATGTTGAGAATGATTTGAGTGAGTGTTCAACACCTGGAAAAGAAATTAGGCCCAAGAAGCTGAGAGGTTCTTCCCCTATAATAGAAGAGCGTATACAGCCATTTCAGCAAGCTGGTTCTTCAGAGAGAGAACAATCTTCAATGGTCGATTTTGCCAAGAAAGACGAAATAACATGTATAGTAATCGATGATATCAGCGACAAACCAACAAGGGTTCAATCGCCTATTAGATTTGCCAATATTGTTTGGCCATTTTCTAATGAGGGGATTGAGGTTATAGAACTTTGTACGCCTTCACCTGACTATAGAATCGCTGTAGGTAGCAAGAAAAGAAGAGCTGCCAGTGATATAATTGACCTGACTGGATCACCTTGTTTTATCCAACTGTAGAATGTTGAAATGCTTTCGTTGGATACCTAATCATCTACTTATGGGAATTCCTCTTCTTGAAAAGCCGGCATTGCTTGCTCTGTCATCATTCAGCCTGGGTAAGAGATGAAAGTTGTGTCCTCAAACTCACCTTGTTCTTCCTTGACATCAGCATGTTCGGAACATAATCCTCAACCATCAATAATGGTCTCATTATCCATCCATCTGGTGTGTTCCATTTCTTAGAGGTTTGTCAAATTTCATTTATTTAATTATTGTCTTAGCATGTAATGGTCCTAGAATACCCGTTGTATTACAGAATAAAGTGTGTAAATAGTTCCAAATATGTAATAATGAAATTTTTTAATTAATAATCACCGTGTCTAATTTTAAAAAATACAAGTAATTAATTAAAGACCTTGTTATATTTTATTGTGTATGTAGTCACACAAAAACTAATTACAATCGTTTAGGATAATCCTCTGAAATTAACTTGAAATGGTGGTCAAAAGTTGAGATGATCAATAATACACCTCTAGTTGTGCTTGTCATTGTGGTAAACTTAAAAGCTTAAGGGGCCTGTGGTAAATAAGTATATAAGAAGCTCAGGGGGCCTGCACTTGTGCAGCAAAGATATAAGAATCTCTTATTGGGGCAATGTTAAAGATGGCAAGGAGAGCTGTTGAGCTGTGTTTATTCAACTCCTGGGGAGTGTGGGGTATGTCTGTGTTTTCTGTGGAAGGGAGGGAGCCTTGTACCTTTCTTTGAGAGAATTTGACATGTTAGACTTGACAATAGTTTTACCCGACCTCATAAGTCATAACTCCTTCAGACGTGCCCACAAAAATTAGGCTATTCAACTCTATTTTCGACCCTAATATCTGAAATAACCCCCAAATAATAACTCAAAAGCAACCAGAAAACCGGCTTTAATCTAAATTAATCAGACCCAAATCCAAATCTCAGCCCACCGGCGTGGCACTGGAAAATAAATAAAA ATGAGCCGGAGAAGATCGGGGAAAGCAAAGCCGAAGAAGCAGAAACAAGATCAGGCAATAAAATGGCGTAGGAATCAGAAGAAATCGGAACAACCGACAGAAATAGTGAAGAAGGAGAAGTGTGAAGAAGGTGAAAAAACTCGGTTTTTTGGTTGCTATCTATTGACATCTCTCAGCCCTCGTTTCAAGGGTCATTCTTATATTGGGTTTACTGTGAATCCAAAGCGACGGATTAGGCAACATAATGGGGAAATTACTAGCGGCGCTTTCAGGACGAAGAAGAAGCGTCCATGGGAAATGGTTCTTTGCATTCATGGTTTTCCAACTAATGTTGCTGCTCTTCAGTTTGAATGGGCATGGCAACATCCTAGAGAGTCAGTAGCAGTACGAGAGGCGGCTGCGAGCTTTAAAACCCTCGGAGGACTTGCCAACAAAATCAAACTTGCACTCACTATGCTTACTCTCCACTCTTGGCAAAGTATGAACCTCAGAGTTAGTTTCTTCTCTACAAAGTATATGAAGCACGCTGCTGGGTGTCCAAGCTTGCCTCCCCATATGAAGCTCCATTTTTGTTCAATGGATGAGCTCCCTTGTTATGAGGATATTGACCAAACTTACGGTTGTGAGGATGGTGATGACTTAGACTCAACTAATAGTGAAGTTATGGCCAGCTGTTCTGATGACAGAATAGAATCTTTGTCTGATGGTTCAATGGAGATGAATCCTTCTTCAATTCATGTTCAAAACTTTACTGTACAAAAATCAGCTGATAACATCTTAGAAGAGGATTTCATAGGCATTGGTGGGCCATTGGAGAATGAGTCATCATTGATGATGGGCGCGCTGGAGGATCATATACAACCACTGCATCAATTTCCTGTTGATGTTAGTGGCTCTACTCTGAACACCTCGAATGAGCAGTTGCGACATTGTGAAGAGATCTGGACTGAGGATGTTAGAGCCTCTTTCCCGGAATTAGAGGAACGTATACAATATATTGGTGGCATTTATGCTTCTGAGAATGAGGTGTTTCCTGTTCTTGAGGAAAATTATTCTTCTGGTGACTTGCCTGCTGATGTTACTGCCCATGTTGAGAATGATTTGAGTGAGTGTTCAACACCTGGAAAAGAAATTAGGCCCAAGAAGCTGAGAGGTTCTTCCCCTATAATAGAAGAGCGTATACAGCCATTTCAGCAAGCTGGTTCTTCAGAGAGAGAACAATCTTCAATGGTCGATTTTGCCAAGAAAGACGAAATAACATGTATAGTAATCGATGATATCAGCGACAAACCAACAAGGGTTCAATCGCCTATTAGATTTGCCAATATTGTTTGGCCATTTTCTAATGAGGGGATTGAGGTTATAGAACTTTGTACGCCTTCACCTGACTATAGAATCGCTGTAGGTAGCAAGAAAAGAAGAGCTGCCAGTGATATAATTGACCTGACTGGATCACCTTGTTTTATCCAACTGTAG MSRRRSGKAKPKKQKQDQAIKWRRNQKKSEQPTEIVKKEKCEEGEKTRFFGCYLLTSLSPRFKGHSYIGFTVNPKRRIRQHNGEITSGAFRTKKKRPWEMVLCIHGFPTNVAALQFEWAWQHPRESVAVREAAASFKTLGGLANKIKLALTMLTLHSWQSMNLRVSFFSTKYMKHAAGCPSLPPHMKLHFCSMDELPCYEDIDQTYGCEDGDDLDSTNSEVMASCSDDRIESLSDGSMEMNPSSIHVQNFTVQKSADNILEEDFIGIGGPLENESSLMMGALEDHIQPLHQFPVDVSGSTLNTSNEQLRHCEEIWTEDVRASFPELEERIQYIGGIYASENEVFPVLEENYSSGDLPADVTAHVENDLSECSTPGKEIRPKKLRGSSPIIEERIQPFQQAGSSEREQSSMVDFAKKDEITCIVIDDISDKPTRVQSPIRFANIVWPFSNEGIEVIELCTPSPDYRIAVGSKKRRAASDIIDLTGSPCFIQL Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following exon feature(s) are a part of this mRNA:
The following five_prime_UTR feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following three_prime_UTR feature(s) are a part of this mRNA:
Homology
BLAST of Spo17196.1 vs. NCBI nr
Match: gi|902237432|gb|KNA24796.1| (hypothetical protein SOVF_012410 [Spinacia oleracea]) HSP 1 Score: 989.9 bits (2558), Expect = 1.500e-285 Identity = 491/491 (100.00%), Postives = 491/491 (100.00%), Query Frame = 1
BLAST of Spo17196.1 vs. NCBI nr
Match: gi|731349388|ref|XP_010685968.1| (PREDICTED: uncharacterized protein LOC104900278 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 604.0 bits (1556), Expect = 2.400e-169 Identity = 327/511 (63.99%), Postives = 385/511 (75.34%), Query Frame = 1
BLAST of Spo17196.1 vs. NCBI nr
Match: gi|743897055|ref|XP_011041810.1| (PREDICTED: uncharacterized protein LOC105137678 [Populus euphratica]) HSP 1 Score: 282.0 bits (720), Expect = 2.100e-72 Identity = 154/312 (49.36%), Postives = 199/312 (63.78%), Query Frame = 1
BLAST of Spo17196.1 vs. NCBI nr
Match: gi|460402944|ref|XP_004246967.1| (PREDICTED: uncharacterized protein LOC101267927 [Solanum lycopersicum]) HSP 1 Score: 275.8 bits (704), Expect = 1.500e-70 Identity = 127/178 (71.35%), Postives = 151/178 (84.83%), Query Frame = 1
BLAST of Spo17196.1 vs. NCBI nr
Match: gi|565391169|ref|XP_006361297.1| (PREDICTED: structure-specific endonuclease subunit SLX1 [Solanum tuberosum]) HSP 1 Score: 274.6 bits (701), Expect = 3.300e-70 Identity = 147/266 (55.26%), Postives = 183/266 (68.80%), Query Frame = 1
BLAST of Spo17196.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RZ54_SPIOL (Structure-specific endonuclease subunit SLX1 homolog OS=Spinacia oleracea GN=SOVF_012410 PE=3 SV=1) HSP 1 Score: 989.9 bits (2558), Expect = 1.100e-285 Identity = 491/491 (100.00%), Postives = 491/491 (100.00%), Query Frame = 1
BLAST of Spo17196.1 vs. UniProtKB/TrEMBL
Match: A0A0J8BZJ5_BETVU (Structure-specific endonuclease subunit SLX1 homolog OS=Beta vulgaris subsp. vulgaris GN=BVRB_7g175710 PE=3 SV=1) HSP 1 Score: 604.0 bits (1556), Expect = 1.600e-169 Identity = 327/511 (63.99%), Postives = 385/511 (75.34%), Query Frame = 1
BLAST of Spo17196.1 vs. UniProtKB/TrEMBL
Match: K4CSN5_SOLLC (Structure-specific endonuclease subunit SLX1 homolog OS=Solanum lycopersicum PE=3 SV=1) HSP 1 Score: 275.8 bits (704), Expect = 1.000e-70 Identity = 127/178 (71.35%), Postives = 151/178 (84.83%), Query Frame = 1
BLAST of Spo17196.1 vs. UniProtKB/TrEMBL
Match: M1BVG2_SOLTU (Structure-specific endonuclease subunit SLX1 homolog OS=Solanum tuberosum GN=PGSC0003DMG400020864 PE=3 SV=1) HSP 1 Score: 274.6 bits (701), Expect = 2.300e-70 Identity = 147/266 (55.26%), Postives = 183/266 (68.80%), Query Frame = 1
BLAST of Spo17196.1 vs. UniProtKB/TrEMBL
Match: V4M5R6_EUTSA (Structure-specific endonuclease subunit SLX1 homolog OS=Eutrema salsugineum GN=EUTSA_v10016841mg PE=3 SV=1) HSP 1 Score: 270.8 bits (691), Expect = 3.300e-69 Identity = 143/276 (51.81%), Postives = 190/276 (68.84%), Query Frame = 1
BLAST of Spo17196.1 vs. ExPASy Swiss-Prot
Match: SLX1_RAT (Structure-specific endonuclease subunit SLX1 OS=Rattus norvegicus GN=Slx1b PE=2 SV=1) HSP 1 Score: 127.5 bits (319), Expect = 4.100e-28 Identity = 63/144 (43.75%), Postives = 87/144 (60.42%), Query Frame = 1
BLAST of Spo17196.1 vs. ExPASy Swiss-Prot
Match: SLX1_BOVIN (Structure-specific endonuclease subunit SLX1 OS=Bos taurus GN=SLX1A PE=2 SV=1) HSP 1 Score: 126.3 bits (316), Expect = 9.000e-28 Identity = 63/143 (44.06%), Postives = 84/143 (58.74%), Query Frame = 1
BLAST of Spo17196.1 vs. ExPASy Swiss-Prot
Match: SLX1_MOUSE (Structure-specific endonuclease subunit SLX1 OS=Mus musculus GN=Slx1b PE=2 SV=1) HSP 1 Score: 125.6 bits (314), Expect = 1.500e-27 Identity = 63/144 (43.75%), Postives = 87/144 (60.42%), Query Frame = 1
BLAST of Spo17196.1 vs. ExPASy Swiss-Prot
Match: SLX1_HUMAN (Structure-specific endonuclease subunit SLX1 OS=Homo sapiens GN=SLX1A PE=1 SV=1) HSP 1 Score: 120.2 bits (300), Expect = 6.500e-26 Identity = 61/144 (42.36%), Postives = 83/144 (57.64%), Query Frame = 1
BLAST of Spo17196.1 vs. ExPASy Swiss-Prot
Match: SLX1_NEMVE (Structure-specific endonuclease subunit SLX1 homolog OS=Nematostella vectensis GN=v1g174298 PE=3 SV=1) HSP 1 Score: 119.0 bits (297), Expect = 1.400e-25 Identity = 61/142 (42.96%), Postives = 88/142 (61.97%), Query Frame = 1
BLAST of Spo17196.1 vs. TAIR (Arabidopsis)
Match: AT2G30350.2 (Excinuclease ABC, C subunit, N-terminal) HSP 1 Score: 243.0 bits (619), Expect = 3.700e-64 Identity = 124/215 (57.67%), Postives = 153/215 (71.16%), Query Frame = 1
BLAST of Spo17196.1 vs. TAIR (Arabidopsis)
Match: AT5G43210.1 (Excinuclease ABC, C subunit, N-terminal) HSP 1 Score: 52.8 bits (125), Expect = 7.200e-7 Identity = 33/101 (32.67%), Postives = 48/101 (47.52%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo17196.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo17196.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo17196.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo17196.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 2
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
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