comparison test-data/output_list.fa @ 5:706fe8139955 draft

"planemo upload for repository https://github.com/ARTbio/tools-artbio/tree/master/tools/fetch_fasta_from_ncbi commit b5ef783237b244d684e26b1ed1cc333a8305ce3e"
author artbio
date Tue, 16 Mar 2021 23:26:58 +0000
parents
children
comparison
equal deleted inserted replaced
4:c667d0ee39f5 5:706fe8139955
1 >NM_140329.3_Drosophila_melanogaster_Gcn5_acetyltransferase_(Gcn5),_mRNA
2 ATCATTGCGCACAGCAAGTGGGCAAACTCGTTGTATCGCTTGTGAAATTTAAGGAAAAGTACACTTTGTT
3 CAAAACTAACGAAGAGAATCGCAATATCTGCCGATCTTGGAATGTCTGGTGGTCCATCCATAACGATAAA
4 AAGCCAACCAATCGATGGTAACAACACGGGCAACGCTGCGGCGCAACAGCAGCAGCAGGCAGCGAATGGC
5 GCAGCAACCGCTGGTGCATCTGGAGCCGCTGGCAGCGCCCAGAATCCAGGACACGGAGGAGCTGCGTCCG
6 GCGCTGGCAGTGTGCCGGCAGAGGGAACGCGCCAGAACAGCCTACAGCGCATTCAGCAGCGAAAGCAAAA
7 GGTCTTCAATCTGCCCGTGCCACAGAAACTGGCCAAATTGTCGATGTATTCCGCCTGCCAGTCTGAGGGA
8 TGCCGTTGCACCGGCTGGAAGACACCGCAGGAAAATCGCCACCGTGACGTCGAGTCCTCCTACTGTCCGG
9 AGTTCAACGAGGAGTGCCGCAACACCAGCTGTCGCCATTCGCTGAGATCGCACATAGCCCATCTGGACAA
10 TATATCCAGTTCCAGCATGAACGAGCTACTGGGCGCCATTATAGACATGGAGAACCTATTCATGTCCATG
11 CAGCGCGTCGAGGACGAGGACACCAAGAAGGTGTACCAGTACCTCTTCCGTTTGCTGCGCCAGTGCGTCC
12 TCACGCGCCAGCAGGCGGTCATCCGGGGTCCTCTCGGCGATCCACCATTCGAGACGCCGTGCATCACCAA
13 GGCTGTGCTCTCGTTGGTCTTCTACAAGTACAATCACCTGAGCACGCCTGAACTCCAAACCATGACCGAG
14 GTGGCCAAGACGTTCTTGAACTTTCTGAACCACTACAACTTTGAATCGCCGTCGACCAGGAGAGGAGATC
15 TCACCCACGAGGATGCCTCTAACTACAAAATCAACTACACCAGGTGGTTGGTGTTCTGCCACGTGCCCGC
16 CTTCTGTAACTCCCTGCGCCAATGTGAAACGTCCCTAGTGTTTGGACGAACGCTCCTGCGCACCGTTTTC
17 CAGTGCATGTCGCAGCAGCTGAAAAAGAAGTGCATCTCCGAGCGGGATCGCTTTCCCGAGGACAAGCGTT
18 CGATCATCACGCTGATGCCGAAGTTTTTGGAAACGCTTCGCGCCGAATTGCTCAAGGATGATTCGCCCAT
19 CTGGGATACCAGCTACCGCCCGTCAAATTCCTTTGTCATCCAGCAGAGAAAGCGTAACCAGGAGGTGGCA
20 AATGTACCCATTGGTCCCAGTGCAGCAAGCATTGGTGGAAACAAGAGGACCAGTGTGGGTGAACCGCTCC
21 ACAAGCGAATCAAAAAGGAGCCCACCGATCGTCCAAGCAGTGAGAATTTGGATGACCTGCCTGCGGATGT
22 AGTAATGCGCGCCATGAAATCGGTGTCCGAGTCGAAGACCACCAACAAAGCGGAAATTCTCTTTCCGGTT
23 AATGTGTCGCGGGATGAGAACGTCAAGGCGGAGGAGCAGAAGCGAGCCATTGAGTTCCATGTGGTGGGCA
24 ATTCGCTGACCAAACCGGTGGACAAGCAGACTGTTTTGTGGCTACTGGGCCTGCAGCTCGTATTTGCCTA
25 TCAGCTACCCGAGATGCCGCGCGAGTACATCAGCCAGTTGGTTTTCGACACCAAGCACAAAACACTGGCG
26 CTCATCAAGGAAAACCAACCCATCGGCGGCATCTGTTTCCGCCCGTTTCCGTCGCAAGGCTTCACCGAGA
27 TCGTTTTCTGCGCGGTCACCATGTCGGAACAAGTTAAGGGCTATGGCACGCACTTGATGAACCACTTGAA
28 GGACTACAGCATACAGAGGGGTATCAAGCATCTGCTCACATTCGCCGATTGCGATGCCATCGGGTACTTC
29 AAGAAGCAGGGTTTCTCCAAGGACATCAAATTGGCGCGACCAGTTTATGCGGGCTACATCAAGGAGTACG
30 ATAGTGCTACTCTCATGCACTGCGAGCTGCATCCAAGCATTGTGAACACGCAGTTCATAGCTGTAATTCG
31 CAGTCAGAGCGAGATTCTGAAGGAGCTGATCGCACAGCGCCACAACGAGGTGCAGAAAGTAAGACCCGGC
32 TTGACTTGCTTCAAGGAGGGCCTGCCCGTGATTCCCGTGGAATCGATTCCTGGTCTGCGGGAGATCGGTT
33 GGAAGCCGCAAAATCGTCCGGCGCGCTCATCGCGACCCCTCGAGGAATCCACCGATCCGGAGAAGCTGGC
34 CACGTCCTTTGCATCCGTGCTGCAATCCGTGCGCCAGCACACCACCGCCTGGCCCTTCCTGCGCCCGGTG
35 ACCGCGGCCGAAGTTCCGGACTACTACGATCACATTAAATATCCCATGGACCTGAAGACCATGGGCGAGC
36 GCCTGAAGAAGGGTTACTACCAAACGCGCCGCCTGTTCATGGCGGACATGGCGCGCATTTTCTCCAACTG
37 TCGGTTCTACAATTCGCCCGACACCGAGTATTATCGGTGTGCCAACTCCCTGGAGCGCTACTTCCAGACC
38 AAGATGCGCGAGCTGGGGCTGTGGGACAAATGATGCAGTGATTCCGAGGAGCCCTGCATAAGGCCGAACA
39 TTTAATCGAACTAAATTATTATATTAATTCTATTTATTTTTAGAATTCTCCCCAGCTAAAGAAAAACCCA
40 TATAGTTAGTTTGTCGTTATAGATACTTAGGTTAAGCTCAGTGTGTCCGTCTTGTTCACAGACGCGTTGT
41 GTCTTTGGGAAGAATAAATCAGATCTATCGCCTACTCATT
42 >AI520300.1_LD40419.5prime_LD_Drosophila_melanogaster_embryo_pOT2_Drosophila_melanogaster_cDNA_clone
43 GCAAACTCGTTGTATCGCTTGTGAAATTTAAGGAAAAGTACACTTTGTTCAAAACTAACGAAGAGAATCG
44 CAATATCTGCCGATCTTGGAATGTCTGGTGGTCCATCCATAACGATAAAAAGCCAACCAATCGATGGTAA
45 CAACACGGGCAACGCTGCGGCGCAACAGCAGCAGCAGGCAGCGAATGGCGCAGCAACCGCTGGTGCATCT
46 GGAGCCGCTGGCAGCGCCCAGAATCCAGGACACGGAGGAGCTGCGTCCGGCGCTGGCAGTGTGCCGGCAG
47 AGGGAACGCGCCAGAACAGCCTACAGCGCATTCAGCAGCGAAAGCAAAAGGTCTTCAATCTGCCCGTGCC
48 ACAGAAACTGGCCAAATTGTCGATGTATTCCGCCTGCCAGTCTGAGGGATGCCGTTGCACCGGCTGGAAG
49 ACACCGCAAGAAAATCGGCACCGTGACGTCGAGTCCTCCTACTGTCCGGAGTTCAACGAGGAGTGCCGCA
50 ACACCAGCTGTCGCCATTCGCTGAGATCGCACATAGCCCATCTGGACAATATATCCAGTTCCAGCATGAA
51 CGAGCTACTGGGCGCCATTATAGACATGGAGAACCTATTCATGTCCATGCAGCGCGTCCAGGACGAAGA
52 >AI519932.1_LD39784.5prime_LD_Drosophila_melanogaster_embryo_pOT2_Drosophila_melanogaster_cDNA_clone
53 CAGCAAGTGGGCAAACTCGTTGTATCGCTTGTGAAATTTAAGGAAAAGTACACTTTGTTCAAAACTAACG
54 AAGAGAATCGCAATATCTGCCGATCTTGGAATGTCTGGTGGTCCATCCATAACGATAAAAAGCCAACCAA
55 TCGATGGTAACAACACGGGCAACGCTGCGGCGCAACAGCAGCAGCAGGCAGCGAATGGCGCAGCAACCGC
56 TGGTGCATCTGGAGCCGCTGGCAGCGCCCAGAATCCAGGACACGGAGGAGCTGCGTCCGGCGCTGGCAGT
57 GTGCCGGCAGAGGGAACGCGCCAGAACAGCCTACAGCGCATTCAGCAGCGAAAGCAAAAGGTCTTCAATC
58 TGCCCGTGCCACAGAAACTGGCCAAATTGTCGATGTATTCCGCCTGCCAGTCTGAGGGATGCCGTTGCAC
59 CGGCTGGAAGACACCGCAGGAAAATCGCCACCGTGACGTCGAGTCCTCCTACTGTCCGGAGTTCAACGAG
60 GAGTGCCGCAACACCAGCTGTCGCCATTCGCTGAGATCGCACATAGCCCATCTGGACAATATATCCAGTT
61 CCAGCATGAACGAGCTACTGGGCGCCATTATAGACATGGAGAACCTATTCATGTCCATGCAGCGCGTTGA
62 GGACGAAGACAC
63 >AI519914.1_LD39759.5prime_LD_Drosophila_melanogaster_embryo_pOT2_Drosophila_melanogaster_cDNA_clone
64 CAGCAGGTGGGCAAACTCGGTGTATCGCTTGTGAAATTTAAGGAAACGTACACTTTGTTCAAAACTAACG
65 AAGAGAATCGCAATATCTGCCGATCTTGGAATGGCTGGCGGTCCATCCATAACGATCAAAAGCCAACCAA
66 TCGATGGTAACAACACGGGCAACGCTGCGGCGCAACAGCATCAGCAGGCAGCGAATGGCGCACCAACCGA
67 TGGTGCATCTGGAGCCGCTGGCAGCGCCCAGAATCCATGACACGGAGGAGCTGCGTCCGGCGCTGGCAGC
68 GTGCCGGCAGAGGGAACGCGCCAGAACAGCCTACAGCGCATTCAGCACCGAAAGCACAAGGTCTTCAATC
69 TGCCCGTGCCACAGAAACTGCGCCAAATTGTCGATGTATTCCGCCTGCCACTCTGAAGGATGCCGTTGCA
70 CCGGCTGGAAGACACCGCACGAAAATCGCCACCGAGACGTGGAGTCCTCCTACTGTCCGGAGT
71 >AI519268.1_LD38790.5prime_LD_Drosophila_melanogaster_embryo_pOT2_Drosophila_melanogaster_cDNA_clone
72 ATTTGATGTCCTTGGAGAAACCCTGCTTCTTGAAGTACCCGATGGCATCGCAATCGGCGAATGTGAGCAG
73 ATGCTTGATACCCCTCTGTATGCTGTAGTCCTTCAAGTGGTTCATCAAGTGCGTGCCATAGCCCTTAACT
74 TGTTCCGACATGGTGACCGCGCAGAAAACGATCTCGGTGAAGCCTTGCGACGGAAACGGGCGGAAACAGA
75 TGCCGCCGATGGGTTGGTTTTCCTTGATGAGCGCCAGTGTTTTGTGCTTGGTGTCGAAAACCAACTGGCT
76 GATGTACTCGCGCGGCATCTCGGGTAGCTGATAGGCAAATACGAGCTGCAGGCCCAGTAGCCACAAAACA
77 GTCTGCTTGTCCACCGGTTTGGTCAGCGAATTGCCCACCACATGGAACTCAATGGCTCGCTTCTGCTCCT
78 CCGCCTTGACGTTCTCATCCCGCGACACATTAACCGGAAAGAGAATTTCCGCTTTGTTGGTGGTCTTCGA
79 CTCGGACACCGATTTCATGGCGCGCATTACTACATCCGCAGGCAGGTCATCCAAATTCTCACTGCTTGGA
80 CGATCGGTGGGCTCCTTTTTGATTCGC
81 >AI456262.1_LD36152.5prime_LD_Drosophila_melanogaster_embryo_pOT2_Drosophila_melanogaster_cDNA_clone
82 AGGAAAAGTACACTTTGTTCAAAACTAACGAAGAGAATCGCAATATCTGCCGATCTTGGAATGTCTGGTG
83 GTCCATCCATAACGATAAAAAGCCAACCAATCGATGGTAACAACACGGGCAACGCTGCGGCGCAACAGCA
84 GCAGCAGGCAGCGAATGGCGCAGCAACCGCTGGTGCATCTGGAGCCGCTGGCAGCGCCCAGAATCCAGGA
85 CACGGAGGAGCTGCGTCCGGCGCTGGCAGTGTGCCGGCAGAGGGAACGCGCCAGAACAGCCTACAGCGCA
86 TTCAGCAGCGAAAGCAAAAGGTCTTCAATCTGCCCGTGCCACAGAAACTGGCCAAATTGTCGATGTATTC
87 CGCCTGCCAGTCTGAGGGATGCCGTTGCACCGGCTGGAAGACACCGCAGGAAAATCGCCACCGTGACGTC
88 GAGTCCTCCTACTGTCCGGAGTTCAACGAGGAGTGCCGCAACACCAGCTGTCGCCATTCGCTGAGATCGC
89 ACATAGCCCATCTGGACAATATATCCAGTTCCAGCATGAACGAGCTACTGGGCGCCATTATAGACATGGA
90 GAACCTATTCATGTCCATGCAGCGCGTCGAGGACGAGGACACCAAG
91 >AI456802.1_LD36935.5prime_LD_Drosophila_melanogaster_embryo_pOT2_Drosophila_melanogaster_cDNA_clone
92 CAGCAAGTGGGCAAACTCGTTGTATCGCTTGTGAAATTTAAGGAAAAGTACACTTTGTTCAAAACTAACG
93 AAGAGAATCGCAATATCTGCCGATCTTGGAATGTCTGGTGGTCCATCCATAACGATAAAAAGCCAACCAA
94 TCGATGGTAACAACACGGGCAACGCTGCGGCGCAACAGCAGCAGCAGGCAGCGAATGGCGCAGCAACCGC
95 TGGTGCATCTGGAGCCGCTGGCAGCGCCCAGAATCCAGGACACGGAGGAGCTGCGTCCGGCGCTGGCAGT
96 GTGCCGGCAGAGGGAACGCGCCAGAACAGCCTACAGCGCATTCAGCAGCGAAAGCAAAAGGTCTTCAATC
97 TGCCCGTGCCACAGAAACTGGCCAAATTGTCGATGTATTCCGCCTGCCAGTCTGAGGGATGCCGTTGCAC
98 CGGCTGGAAGACACCGCAGGAAAATCGCCACCGTGACGTCGAGTCCTCCTACTGTCCGGAGTTCAACGAG
99 GAGTGCCGCAACACCAGCTGTCGCCATTCGCTGAGATCGCACATAGCCCATCTGGACAATATATCCAGTT
100 CCAGCATGAACGAGCTACTGGGCGCCATTATAGACATGGAGAACCTATTCATGTCCATGCAGCGC
101 >AI456789.1_LD36919.5prime_LD_Drosophila_melanogaster_embryo_pOT2_Drosophila_melanogaster_cDNA_clone
102 AGAATCGCAATATCTGCCGATCTTGGAATGTCTGGTGGTCCATCCATAACGATAAAAAGCCAACCAATCG
103 ATGGTAACAACACGGGCAACGCTGCGGCGCAACAGCAGCAGCAGGCAGCGAATGGCGCAGCAACCGCTGG
104 TGCATCTGGAGCCGCTGGCAGCGCCCAGAATCCAGGACACGGAGGAGCTGCGTCCGGCGCTGGCAGTGTG
105 CCGGCAGAGGGAACGCGCCAGAACAGCCTACAGCGCATTCAGCAGCGAAAGCAAAAGGTCTTCAATCTGC
106 CCGTGCCACAGAAACTGGCCAAATTGTCGATGTATTCCGCCTGCCAGTCTGAGGGATGCCGTTGCACCGG
107 CTGGAAGACACCGCAGGAAAATCGCCACCGTGACGTCGAGTCCTCCTACTGTCCGGAGTTCAACGAGGAG
108 TGCCGCAACACCAGCTGTCGCCATTCGCTGAGATCGCACATAGCCCATCTGGACAATATATCCAGTTCCA
109 GCATGAACGAGCTACTGGGCGCCATTATAGACATGGAGAACCTATTCATGTCCATGCAGCGCGTCGAGGA
110 CGAGGACACCAAG
111 >AI295627.1_LP09312.5prime_LP_Drosophila_melanogaster_larval-early_pupal_pOT2_Drosophila_melanogaste
112 GAGATCTCACCCACGAGGATGCCTCTAACTACAAAATCAACTACACCAGGTGGTTGGTGTTCTGCCACGT
113 GCCCGCCTTCTGTAACTCCCTGCGCCAATGTGAAACGTCCCTAGTGTTTGGACGAACGCTCCTGCGCACC
114 GTTTTCCAGTGCATGTCGCAGCAGCTGAAAAAGAAGTGCATCTCCGAGCGGGATCGCTTTCCCGAGGACA
115 AGCGTTCGATCATCACGCTGATGCCGAAGTTTTTGGAAACGCTTCGCGCCGAATTGCTCAAGGATGATTC
116 GCCCATCTGGGATACCAGCTACCGCCCGTCAAATTCCTTTGTCATCCAGCAGAGAAAGCGTAACCAGGAG
117 GTGGCAAATGTACCCATTGGTCCCAGTGCAGCAAGCATTGGTGGAAACAAGAGGACCAGTGTGGGTGAAC
118 CGCTCCACAAGCGAATCAAAAAGGAGCCCACCGATCGTCCAAGCAGTGAGAATTTGGATGACCTGCCTGC
119 GGATGTAGTAATGCGCGCCATGAAATCGGTGTCCGAGTCGAAGACCACCAACAAAGCGGAAATTCTCTTT
120 CCGGTTAATGTGTCGCGGGATGAGAACGTCAAG
121 >AI292458.1_GH15365.5prime_GH_Drosophila_melanogaster_head_pOT2_Drosophila_melanogaster_cDNA_clone_G
122 CAAACTCGTTGTATCGCTTGTGAAATTTAAGGAAAAGTACACTTTGTTCAAAACTAACGAAGAGAATCGC
123 AATATCTGCCGATCTTGGAATGTCTGGTGGTCCATCCATAACGATAAAAAGCCAACCAATCGATGGTAAC
124 AACACGGGCAACGCTGCGGCGCAACAGCAGCAGCAGGCAGCGAATGGCGCAGCAACCGCTGGTGCATCTG
125 GAGCCGCTGGCAGCGCCCAGAATCCAGGACACGGAGGAGCTGCGTCCGGCGCTGGCAGTGTGCCGGCAGA
126 GGGAACGCGCCAGAACAGCCTACAGCGCATTCAGCAGCGAAAGCAAAAGGTCTTCAATCTGCCCGTGCCA
127 CAGAAACTGGCCAAATTGTCGATGTATTCCGCCTGCCAGTCTGAGGGATGCCGTTGCACCGGCTGGAAGA
128 CACCGCAGGAAAATCGCCACCGTGACGTCGAGTCCTCCTACTGTCCGGAGTTCAACGAGGAGTGCCGCAA
129 CACCAGCTGTCGCCATTCGCTGAGATCGCACATAGCCCATCTGGACAATATATCCAGTTCCAGCATGAAC
130 GAGCTACTGTGCGCCATTATAGACATGGAGAACCTATTCATGTNCATGCAGCGCGTCGAGGACGAGGACA
131 CC
132 >AA540999.1_LD20744.5prime_LD_Drosophila_melanogaster_embryo_BlueScript_Drosophila_melanogaster_cDNA
133 GCAAACTCGTTGTATCGCTTGTGAAATTTAAGGAAAAGTACACTTTGTTCAAAACTAACGAAGAGAATCG
134 CAATATCTGCCGATCTTGGAATGTCTGGTGGTCCATCCATAACGATAAAAAGCCAACCAATCGATGGTAA
135 CAACACGGGCAACGCTGCGGCGCAACAGCAGCAGCAGGCAGCGAATGGCGCACAACCGCTGGTGCATCTG
136 GAGCCGCTGGCAGGCCCAGAATCCAGGACACGGAGGAGCTGCGTCCGGCGCTGGCAGTGTGCCGGCAGAG
137 GGAACGCGCCAGAACAGCCTACAGCGCATTCAGCAGCGAAAGCAAAAGGTCTTCAATCTGCCCGTGCCAC
138 AGAAACTGGCCAAATTGTCGATGTATTCCGCCTGCCAGTCTGAGGGATGCCGTTGCACCGGCTGGAAGAC
139 ACCGCAGGAAAATCGCCACCGTGACGTCGAGTCCTCCTACTGTCCGGAGTTCAACGAGGAGTGCCGCAAC
140 ACCAGCTGTCGCCATTCGCTGAGATCGCACATAGCCCATCTGGACAATATATCCAGTTTCAGCATGAACG
141 AGCTACTGGGCGCCATTATAGACATGGAGA
142 >KX804674.1_Synthetic_construct_clone_BS09434_Gcn5-PA_(Gcn5)_gene,_complete_cds
143 GAAGTTATCAGTCGTCATGTCTGGTGGTCCATCCATAACGATAAAAAGCCAACCAATCGATGGTAACAAC
144 ACGGGCAACGCTGCGGCGCAACAGCAGCAGCAGGCAGCGAATGGCGCAGCAACCGCTGGTGCATCTGGAG
145 CCGCTGGCAGCGCCCAGAATCCAGGACACGGAGGAGCTGCGTCCGGCGCTGGCAGTGTGCCGGCAGAGGG
146 AACGCGCCAGAACAGCCTACAGCGCATTCAGCAGCGAAAGCAAAAGGTCTTCAATCTGCCCGTGCCACAG
147 AAACTGGCCAAATTGTCGATGTATTCCGCCTGCCAGTCTGAGGGATGCCGTTGCACCGGCTGGAAGACAC
148 CGCAGGAAAATCGCCACCGTGACGTCGAGTCCTCCTACTGTCCGGAGTTCAACGAGGAGTGCCGCAACAC
149 CAGCTGTCGCCATTCGCTGAGATCGCACATAGCCCATCTGGACAATATATCCAGTTCCAGCATGAACGAG
150 CTACTGGGCGCCATTATAGACATGGAGAACCTATTCATGTCCATGCAGCGCGTCGAGGACGAGGACACCA
151 AGAAGGTGTACCAGTACCTCTTCCGTTTGCTGCGCCAGTGCGTCCTCACGCGCCAGCAGGCGGTCATCCG
152 GGGTCCTCTCGGCGATCCACCATTCGAGACGCCGTGCATCACCAAGGCTGTGCTCTCGTTGGTCTTCTAC
153 AAGTACAATCACCTGAGCACGCCTGAACTCCAAACCATGACCGAGGTGGCCAAGACGTTCTTGAACTTTC
154 TGAACCACTACAACTTTGAATCGCCGTCGACCAGGAGAGGAGATCTCACCCACGAGGATGCCTCTAACTA
155 CAAAATCAACTACACCAGGTGGTTGGTGTTCTGCCACGTGCCCGCCTTCTGTAACTCCCTGCGCCAATGT
156 GAAACGTCCCTAGTGTTTGGACGAACGCTCCTGCGCACCGTTTTCCAGTGCATGTCGCAGCAGCTGAAAA
157 AGAAGTGCATCTCCGAGCGGGATCGCTTTCCCGAGGACAAGCGTTCGATCATCACGCTGATGCCGAAGTT
158 TTTGGAAACGCTTCGCGCCGAATTGCTCAAGGATGATTCGCCCATCTGGGATACCAGCTACCGCCCGTCA
159 AATTCCTTTGTCATCCAGCAGAGAAAGCGTAACCAGGAGGTGGCAAATGTACCCATTGGTCCCAGTGCAG
160 CAAGCATTGGTGGAAACAAGAGGACCAGTGTGGGTGAACCGCTCCACAAGCGAATCAAAAAGGAGCCCAC
161 CGATCGTCCAAGCAGTGAGAATTTGGATGACCTGCCTGCGGATGTAGTAATGCGCGCCATGAAATCGGTG
162 TCCGAGTCGAAGACCACCAACAAAGCGGAAATTCTCTTTCCGGTTAATGTGTCGCGGGATGAGAACGTCA
163 AGGCGGAGGAGCAGAAGCGAGCCATTGAGTTCCATGTGGTGGGCAATTCGCTGACCAAACCGGTGGACAA
164 GCAGACTGTTTTGTGGCTACTGGGCCTGCAGCTCGTATTTGCCTATCAGCTACCCGAGATGCCGCGCGAG
165 TACATCAGCCAGTTGGTTTTCGACACCAAGCACAAAACACTGGCGCTCATCAAGGAAAACCAACCCATCG
166 GCGGCATCTGTTTCCGCCCGTTTCCGTCGCAAGGCTTCACCGAGATCGTTTTCTGCGCGGTCACCATGTC
167 GGAACAAGTTAAGGGCTATGGCACGCACTTGATGAACCACTTGAAGGACTACAGCATACAGAGGGGTATC
168 AAGCATCTGCTCACATTCGCCGATTGCGATGCCATCGGGTACTTCAAGAAGCAGGGTTTCTCCAAGGACA
169 TCAAATTGGCGCGACCAGTTTATGCGGGCTACATCAAGGAGTACGATAGTGCTACTCTCATGCACTGCGA
170 GCTGCATCCAAGCATTGTGAACACGCAGTTCATAGCTGTAATTCGCAGTCAGAGCGAGATTCTGAAGGAG
171 CTGATCGCACAGCGCCACAACGAGGTGCAGAAAGTAAGACCCGGCTTGACTTGCTTCAAGGAGGGCCTGC
172 CCGTGATTCCCGTGGAATCGATTCCTGGTCTGCGGGAGATCGGTTGGAAGCCGCAAAATCGTCCGGCGCG
173 CTCATCGCGACCCCTCGAGGAATCCACCGATCCGGAGAAGCTGGCCACGTCCTTTGCATCCGTGCTGCAA
174 TCCGTGCGCCAGCACACCACCGCCTGGCCCTTCCTGCGCCCGGTGACCGCGGCCGAAGTTCCGGACTACT
175 ACGATCACATTAAATATCCCATGGACCTGAAGACCATGGGCGAGCGCCTGAAGAAGGGTTACTACCAAAC
176 GCGCCGCCTGTTCATGGCGGACATGGCGCGCATTTTCTCCAACTGTCGGTTCTACAATTCGCCCGACACC
177 GAGTATTATCGGTGTGCCAACTCCCTGGAGCGCTACTTCCAGACCAAGATGCGCGAGCTGGGGCTGTGGG
178 ACAAATGAAAGCATTCTAGACCAT
179 >KX802381.1_Synthetic_construct_clone_BS30101_Gcn5-RA_(Gcn5)_gene,_complete_cds
180 GAAGTTATCAGTCGACATGTCTGGTGGTCCATCCATAACGATAAAAAGCCAACCAATCGATGGTAACAAC
181 ACGGGCAACGCTGCGGCGCAACAGCAGCAGCAGGCAGCGAATGGCGCAGCAACCGCTGGTGCATCTGGAG
182 CCGCTGGCAGCGCCCAGAATCCAGGACACGGAGGAGCTGCGTCCGGCGCTGGCAGTGTGCCGGCAGAGGG
183 AACGCGCCAGAACAGCCTACAGCGCATTCAGCAGCGAAAGCAAAAGGTCTTCAATCTGCCCGTGCCACAG
184 AAACTGGCCAAATTGTCGATGTATTCCGCCTGCCAGTCTGAGGGATGCCGTTGCACCGGCTGGAAGACAC
185 CGCAGGAAAATCGCCACCGTGACGTCGAGTCCTCCTACTGTCCGGAGTTCAACGAGGAGTGCCGCAACAC
186 CAGCTGTCGCCATTCGCTGAGATCGCACATAGCCCATCTGGACAATATATCCAGTTCCAGCATGAACGAG
187 CTACTGGGCGCCATTATAGACATGGAGAACCTATTCATGTCCATGCAGCGCGTCGAGGACGAGGACACCA
188 AGAAGGTGTACCAGTACCTCTTCCGTTTGCTGCGCCAGTGCGTCCTCACGCGCCAGCAGGCGGTCATCCG
189 GGGTCCTCTCGGCGATCCACCATTCGAGACGCCGTGCATCACCAAGGCTGTGCTCTCGTTGGTCTTCTAC
190 AAGTACAATCACCTGAGCACGCCTGAACTCCAAACCATGACCGAGGTGGCCAAGACGTTCTTGAACTTTC
191 TGAACCACTACAACTTTGAATCGCCGTCGACCAGGAGAGGAGATCTCACCCACGAGGATGCCTCTAACTA
192 CAAAATCAACTACACCAGGTGGTTGGTGTTCTGCCACGTGCCCGCCTTCTGTAACTCCCTGCGCCAATGT
193 GAAACGTCCCTAGTGTTTGGACGAACGCTCCTGCGCACCGTTTTCCAGTGCATGTCGCAGCAGCTGAAAA
194 AGAAGTGCATCTCCGAGCGGGATCGCTTTCCCGAGGACAAGCGTTCGATCATCACGCTGATGCCGAAGTT
195 TTTGGAAACGCTTCGCGCCGAATTGCTCAAGGATGATTCGCCCATCTGGGATACCAGCTACCGCCCGTCA
196 AATTCCTTTGTCATCCAGCAGAGAAAGCGTAACCAGGAGGTGGCAAATGTACCCATTGGTCCCAGTGCAG
197 CAAGCATTGGTGGAAACAAGAGGACCAGTGTGGGTGAACCGCTCCACAAGCGAATCAAAAAGGAGCCCAC
198 CGATCGTCCAAGCAGTGAGAATTTGGATGACCTGCCTGCGGATGTAGTAATGCGCGCCATGAAATCGGTG
199 TCCGAGTCGAAGACCACCAACAAAGCGGAAATTCTCTTTCCGGTTAATGTGTCACGGGATGAGAACGTCA
200 AGGCGGAGGAGCAGAAGCGAGCCATTGAGTTCCATGTGGTGGGCAATTCGCTGACCAAACCGGTGGACAA
201 GCAGACTGTTTTGTGGCTACTGGGCCTGCAGCTCGTATTTGCCTATCAGCTACCCGAGATGCCGCGCGAG
202 TACATCAGCCAGTTGGTTTTCGACACCAAGCACAAAACACTGGCGCTCATCAAGGAAAACCAACCCATCG
203 GCGGCATCTGTTTCCGCCCGTTTCCGTCGCAAGGCTTCACCGAGATCGTTTTCTGCGCGGTCACCATGTC
204 GGAACAAGTTAAGGGCTATGGCACGCACTTGATGAACCACTTGAAGGACTACAGCATACAGAGGGGTATC
205 AAGCATCTGCTCACATTCGCCGATTGCGATGCCATCGGGTACTTCAAGAAGCAGGGTTTCTCCAAGGACA
206 TCAAATTGGCGCGACCAGTTTATGCGGGCTACATCAAGGAGTACGATAGTGCTACTCTCATGCACTGCGA
207 GCTGCATCCAAGCATTGTGAACACGCAGTTCATAGCTGTAATTCGCAGTCAGAGCGAGATTCTGAAGGAG
208 CTGATCGCACAGCGCCACAACGAGGTGCAGAAAGTAAGACCCGGCTTGACTTGCTTCAAGGAGGGCCTGC
209 CCGTGATTCCCGTGGAATCGATTCCTGGTCTGCGGGAGATCGGTTGGAAGCCGCAAAATCGTCCGGCGCG
210 CTCATCGCGACCCCTCGAGGAATCCACCGATCCGGAGAAGCTGGCCACGTCCTTTGCATCCGTGCTGCAA
211 TCCGTGCGCCAGCACACCACCGCCTGGCCCTTCCTGCGCCCGGTGACCGCGGCCGAAGTTCCGGACTACT
212 ACGATCACATTAAATATCCCATGGACCTGAAGACCATGGGCGAGCGCCTGAAGAAGGGTTACTACCAAAC
213 GCGCCGCCTGTTCATGGCGGACATGGCGCGCATTTTCTCCAACTGTCGGTTCTACAATTCGCCCGACACC
214 GAGTATTATCGGTGTGCCAACTCCCTGGAGCGCTACTTCCAGACCAAGATGCGCGAGCTGGGGCTGTGGG
215 ACAAATGAAAGCTTTCTAGACCAT
216 >AF029776.1_Drosophila_melanogaster_histone_acetyltransferase_GCN5_(Gcn5)_mRNA,_complete_cds
217 GCAAGTGGGCAAACTCGTTGTATCGCTTGTGAAATTTAAGGAAAAGTACACTTTGTTCAAAACTAACGGA
218 GAGAATCGCAATATCTGCCGATCTTGGAATGTCTGGTGGTCCATCCATAACGATAAAAAGCCAACCAATC
219 GATGGTAACAACACGGGCAACGCTGCGGCGCAACAGCAGCAGCAGGCAGCGAATGGCGCAGCAACCGCTG
220 GTGCATCTGGAGCCGCTGGCAGCGCCCAGAATCCAGGACACGGAGGAGCTGCGTCCGGCGCTGGCAGTGT
221 GCCGGCAGAGGGAACGCGCCAGAACAGCCTACAGCGCATTCAGCAGCGAAAGCAAAAGGTTTTCAATCTG
222 CCCGTGCCACAGAAACTGGCCAAATTGTCGATGTATTCCGCCTGCCAGTCTGAGGGATGCCGTTGCACCG
223 GATGGAAGACACCGCAGGAAAATCGCCACCGTGACGTTGAGTCCTCCTACTGTCCGGAGTTCAACGAGGA
224 GTGCCGCAACACCAGCTGTCGCCATTCGCTGAGATCGCACATAGCCCATCTGGACAATATATCCAGTTCC
225 AGCATGAACGAGCTACTGGGCGCCATTATAGACATGGAGAACCTATTCATGTCCATGCAGCGCGTCGAGG
226 ACGAGGACACCAAGAAGGTGTACCAGTACCTCTTCCGTTTGCTGCGCCAGTGCGTCCTCACGCGCCAGCA
227 GGCGGTCATCCGGGGTCCACTCGGCGATCCACCATTCGAGACGCCGTGCATCACCAAGGCAGTGCTCTCG
228 TTGGTCTTCTACAAGTACAATCACCTGAGCACGCCTGAACTCCAAACCATGACCGAGGTGGCCAAGACGT
229 TCTTGAACTTTCTGAACCACTACAACTTTGAATCGCCGTCGACCAGGAGAGGAGATCTCACCCACGAGGA
230 TGCCTCTAACTACAAAATCAACTACACCAGGTGGTTGGTGTTCTGCCACGTGCCCGCCTTCTGTAACTCC
231 CTGCGCCAATGTGAAACGTCCCTAGTGTTTGGACGAACGCTCCTGCGCACCGTTTTCCAGTGCGTGTCGC
232 AGCAGCTGAAAAAGAAGTGCATCTCCGAGCGGGATCGATTTCCCGAGGACAAGCGTTCGATTATCACGCT
233 GATGCCGAAATTTCTGGAAACGCTTCGCGCCGAATTGCTCAAAGATGATTCGCCCATCTGGGATACCAGC
234 TACCGCCCATCAAATTCCTTTGTCATCCAGCAGAGAAAACGTAATCAGGAGGTGGCAAGTGTACCCATTG
235 GTCCCAGTGCAGCAAGCATTGGTGGAAACAAGAGGACCAGTGTGGGTGAACCGCTCCACAAGCGAATCAA
236 AAAGGAGCCCACCGATCGTCCAAGCAGTGAGAATTTGGATGACCTGCCTGCGGATGTAGTTATGCGCGCC
237 ATGAAATCGGTGTCCGAGTCGAAGACCACCAACAAAGCGGAAATTCTCTTTCCGGTTAATGTGTCGCGGG
238 ATGAGAACGTCAAGGCGGAGGAGCAGAAGCGAGCCATTGAGTTCCATGTGGTGGGCAACTCGCTGACCAA
239 ACCGGTGGACAAGCAGACTGTTTTGTGGCTACTGGGCCTGCAGCTCGTATTTGCCTATCAGCTACCCGAG
240 ATGCCGCGCGAGTACATCAGCCAGTTGGTCTTCGACACCAAGCACAAAACACTGGCGCTCATCAAGGAAA
241 ACCAACCCATCGGCGGCATCTGCTTCCGCCCGTTTCCGTCGCAGGGATTCACCGAGATCGTTTTCTGCGC
242 GGTCACCATGTCGGAACAAGTTAAGGGCTATGGCACGCACTTGATGAACCACTTGAAGGACTACAGCATA
243 CAGAGGGGTATCAAGCATCTGCTCACATTCGCCGATTGCGATGCCATCGGGTACTTCAAGAAGCAGGGTT
244 TCTCCAAGGACGTCAAATTGGCGCGACCAGTTTATGCGGGCTACATCAAGGAGTACGATAGTGCTACTCT
245 CATGCACTGCGAGCTGCATCCAAGCATTGTGAACACGCAGTTCATAGCTGTAATTCGCAGTCAGAGCGAG
246 ATTCTGAAGGAGCTGATCGCACAGCGCCACAACGAGGTGCAGAAAGTAAGACCCGGCTTGACTTGCTTCA
247 AGGAGGGCCTGCCCGTGATTCCCGTGGAATCGATTCCTGGTCTGCGGGAGATCGGTTGGAAGCCGCAAAA
248 TCGTCCGGCGCGCTCATCGCGACCCCTCGAGGAATCCACCGATCCGGAGAAGCTGGCCACGTCCTTTGCA
249 TCCGTGCTGCAATCCGTGCGCCAGCACACCACCGCCTGGCCCTTCCTGCGCCCGGTGACCGCGGCAGAAG
250 TTCCGGACTACTACGATCACATTAAATATCCCATGGACCTGAAGACCATGGGCGAGCGCCTGAAGAAGGG
251 TTACTACCAAACGCGCCGCCTGTTCATGGCGGACATGGCGCGCATTTTCTCCAACTGTCGGTTCTACAAT
252 TCGCCCGACACCGAGTATTATCGGTGTGCCAACTCCCTGGAGCGCTACTTCCAGACCAAGATGCGCGAGC
253 TGGGGCTGTGGGACAAATGATGCAGTGATTCCGAGGAGCCCTGCATAAGGCCGAACATTTAATCGAACTA
254 AAATATTATATTAATTCTATTTATTTTTAGAATTCTCTCCAGCTAAAGAAAAACCCGTATAGTTAGTTTG
255 TCGTTATAGATACTTAGGTTAAGATCAGTGCGTCCGTCTTGTTCACAGACGCGTTGTGTCTTTGGGAAGA
256 ATAAATCAGATCTATCGCCTACTCATTAACCACGAAAAAAAAAAAAAAA