Viewing data for Gazella leptoceros


Scientific name Gazella leptoceros
Common name Rhim gazelle
Maximum lifespan 14.60 years (Gazella leptoceros@AnAge)

Total mtDNA (size: 16439 bases) GC AT G C A T
Base content (bases) 6382 10057 4201 2181 4485 5572
Base content per 1 kb (bases) 388 612 256 133 273 339
Base content (%) 38.8% 61.2%
Total protein-coding genes (size: 11338 bases) GC AT G C A T
Base content (bases) 4435 6903 3090 1345 3184 3719
Base content per 1 kb (bases) 391 609 273 119 281 328
Base content (%) 39.1% 60.9%
D-loop: No data available for this section.
Total tRNA-coding genes (size: 1510 bases) GC AT G C A T
Base content (bases) 551 959 318 233 424 535
Base content per 1 kb (bases) 365 635 211 154 281 354
Base content (%) 36.5% 63.5%
Total rRNA-coding genes (size: 2527 bases) GC AT G C A T
Base content (bases) 973 1554 536 437 588 966
Base content per 1 kb (bases) 385 615 212 173 233 382
Base content (%) 38.5% 61.5%
12S rRNA gene (size: 954 bases) GC AT G C A T
Base content (bases) 387 567 218 169 211 356
Base content per 1 kb (bases) 406 594 229 177 221 373
Base content (%) 40.6% 59.4%
16S rRNA gene (size: 1573 bases) GC AT G C A T
Base content (bases) 586 987 318 268 377 610
Base content per 1 kb (bases) 373 627 202 170 240 388
Base content (%) 37.3% 62.7%

ATP6 (size: 681 bases) GC AT G C A T
Base content (bases) 259 422 184 75 200 222
Base content per 1 kb (bases) 380 620 270 110 294 326
Base content (%) 38.0% 62.0%
ATP8 (size: 201 bases) GC AT G C A T
Base content (bases) 69 132 54 15 53 79
Base content per 1 kb (bases) 343 657 269 75 264 393
Base content (%) 34.3% 65.7%
COX1 (size: 1545 bases) GC AT G C A T
Base content (bases) 628 917 378 250 476 441
Base content per 1 kb (bases) 406 594 245 162 308 285
Base content (%) 40.6% 59.4%
COX2 (size: 684 bases) GC AT G C A T
Base content (bases) 269 415 169 100 182 233
Base content per 1 kb (bases) 393 607 247 146 266 341
Base content (%) 39.3% 60.7%
COX3 (size: 784 bases) GC AT G C A T
Base content (bases) 342 442 231 111 226 216
Base content per 1 kb (bases) 436 564 295 142 288 276
Base content (%) 43.6% 56.4%
CYTB (size: 1140 bases) GC AT G C A T
Base content (bases) 469 671 320 149 306 365
Base content per 1 kb (bases) 411 589 281 131 268 320
Base content (%) 41.1% 58.9%
ND1 (size: 956 bases) GC AT G C A T
Base content (bases) 364 592 249 115 280 312
Base content per 1 kb (bases) 381 619 260 120 293 326
Base content (%) 38.1% 61.9%
ND2 (size: 1042 bases) GC AT G C A T
Base content (bases) 381 661 299 82 273 388
Base content per 1 kb (bases) 366 634 287 79 262 372
Base content (%) 36.6% 63.4%
ND3 (size: 346 bases) GC AT G C A T
Base content (bases) 148 198 104 44 93 105
Base content per 1 kb (bases) 428 572 301 127 269 303
Base content (%) 42.8% 57.2%
ND4 (size: 1378 bases) GC AT G C A T
Base content (bases) 538 840 382 156 401 439
Base content per 1 kb (bases) 390 610 277 113 291 319
Base content (%) 39.0% 61.0%
ND4L (size: 297 bases) GC AT G C A T
Base content (bases) 111 186 76 35 90 96
Base content per 1 kb (bases) 374 626 256 118 303 323
Base content (%) 37.4% 62.6%
ND5 (size: 1821 bases) GC AT G C A T
Base content (bases) 687 1134 504 183 515 619
Base content per 1 kb (bases) 377 623 277 100 283 340
Base content (%) 37.7% 62.3%
ND6 (size: 528 bases) GC AT G C A T
Base content (bases) 190 338 154 36 111 227
Base content per 1 kb (bases) 360 640 292 68 210 430
Base content (%) 36.0% 64.0%

ATP6 (size: 681 bases)
Amino acid sequence:
Amino acid frequencies:
Glycine (Gly, G)
n = 11 (4.87%)
Alanine (Ala, A)
n = 17 (7.52%)
Serine (Ser, S)
n = 14 (6.19%)
Threonine (Thr, T)
n = 23 (10.18%)
Cysteine (Cys, C)
n = 0 (0%)
Valine (Val, V)
n = 12 (5.31%)
Leucine (Leu, L)
n = 44 (19.47%)
Isoleucine (Ile, I)
n = 23 (10.18%)
Methionine (Met, M)
n = 13 (5.75%)
Proline (Pro, P)
n = 13 (5.75%)
Phenylalanine (Phe, F)
n = 12 (5.31%)
Tyrosine (Tyr, Y)
n = 2 (0.88%)
Tryptophan (Trp, W)
n = 3 (1.33%)
Aspartic acid (Asp, D)
n = 1 (0.44%)
Glutamic acid (Glu, E)
n = 3 (1.33%)
Asparagine (Asn, N)
n = 12 (5.31%)
Glutamine (Gln, Q)
n = 9 (3.98%)
Histidine (His, H)
n = 6 (2.65%)
Lysine (Lys, K)
n = 4 (1.77%)
Arginine (Arg, R)
n = 4 (1.77%)
Codon statistics:
AUU AUC AUA CUU CUC CUA CUG UUA CAA CAG GUU GUC GUA GUG UUU UUC
18 5 12 10 3 21 1 9 9 0 2 2 8 0 8 4
AUG UGU UGC GCU GCC GCA GCG GGU GGC GGA GGG CCU CCC CCA CCG ACU
1 0 0 4 6 7 0 1 3 4 3 4 5 4 0 4
ACC ACA ACG UCU UCC UCA UCG AGU AGC UAU UAC UGG UUG AAU AAC CAU
4 13 2 3 1 5 0 0 5 0 2 0 0 4 8 0
CAC GAA GAG GAU GAC AAA AAG CGU CGC CGA CGG AGA AGG UAA UAG UGA
6 3 0 1 0 3 1 1 1 2 0 0 0 1 0 3
Codons with 1st base G Codons with 1st base C Codons with 1st base A Codons with 1st base U
44 67 80 36
Codons with 2nd base G Codons with 2nd base C Codons with 2nd base A Codons with 2nd base U
23 62 38 104
Codons with 3rd base G Codons with 3rd base C Codons with 3rd base A Codons with 3rd base U
8 55 104 60
ATP8 (size: 201 bases)
Amino acid sequence: MPQLDTSTWLTMILSMFLVLFIIFQLKISKHNFYHNPEPTSAKTLKQSTPWETKWTKIYLPLSLPL*
Amino acid frequencies:
Glycine (Gly, G)
n = 0 (0%)
Alanine (Ala, A)
n = 1 (1.52%)
Serine (Ser, S)
n = 6 (9.09%)
Threonine (Thr, T)
n = 8 (12.12%)
Cysteine (Cys, C)
n = 0 (0%)
Valine (Val, V)
n = 1 (1.52%)
Leucine (Leu, L)
n = 11 (16.67%)
Isoleucine (Ile, I)
n = 5 (7.58%)
Methionine (Met, M)
n = 3 (4.55%)
Proline (Pro, P)
n = 6 (9.09%)
Phenylalanine (Phe, F)
n = 4 (6.06%)
Tyrosine (Tyr, Y)
n = 2 (3.03%)
Tryptophan (Trp, W)
n = 3 (4.55%)
Aspartic acid (Asp, D)
n = 1 (1.52%)
Glutamic acid (Glu, E)
n = 2 (3.03%)
Asparagine (Asn, N)
n = 2 (3.03%)
Glutamine (Gln, Q)
n = 3 (4.55%)
Histidine (His, H)
n = 2 (3.03%)
Lysine (Lys, K)
n = 6 (9.09%)
Arginine (Arg, R)
n = 0 (0%)
Codon statistics:
AUU AUC AUA CUU CUC CUA CUG UUA CAA CAG GUU GUC GUA GUG UUU UUC
3 2 2 2 1 4 1 2 3 0 1 0 0 0 1 3
AUG UGU UGC GCU GCC GCA GCG GGU GGC GGA GGG CCU CCC CCA CCG ACU
1 0 0 0 0 1 0 0 0 0 0 1 2 3 0 0
ACC ACA ACG UCU UCC UCA UCG AGU AGC UAU UAC UGG UUG AAU AAC CAU
1 6 1 1 0 3 1 0 1 2 0 1 1 0 2 0
CAC GAA GAG GAU GAC AAA AAG CGU CGC CGA CGG AGA AGG UAA UAG UGA
2 2 0 0 1 6 0 0 0 0 0 0 0 1 0 2
Codons with 1st base G Codons with 1st base C Codons with 1st base A Codons with 1st base U
5 19 25 18
Codons with 2nd base G Codons with 2nd base C Codons with 2nd base A Codons with 2nd base U
4 20 19 24
Codons with 3rd base G Codons with 3rd base C Codons with 3rd base A Codons with 3rd base U
6 15 35 11
COX1 (size: 1545 bases)
Amino acid sequence:
Amino acid frequencies:
Glycine (Gly, G)
n = 47 (9.14%)
Alanine (Ala, A)
n = 40 (7.78%)
Serine (Ser, S)
n = 30 (5.84%)
Threonine (Thr, T)
n = 38 (7.39%)
Cysteine (Cys, C)
n = 1 (0.19%)
Valine (Val, V)
n = 37 (7.2%)
Leucine (Leu, L)
n = 60 (11.67%)
Isoleucine (Ile, I)
n = 38 (7.39%)
Methionine (Met, M)
n = 33 (6.42%)
Proline (Pro, P)
n = 28 (5.45%)
Phenylalanine (Phe, F)
n = 42 (8.17%)
Tyrosine (Tyr, Y)
n = 19 (3.7%)
Tryptophan (Trp, W)
n = 17 (3.31%)
Aspartic acid (Asp, D)
n = 16 (3.11%)
Glutamic acid (Glu, E)
n = 9 (1.75%)
Asparagine (Asn, N)
n = 19 (3.7%)
Glutamine (Gln, Q)
n = 6 (1.17%)
Histidine (His, H)
n = 17 (3.31%)
Lysine (Lys, K)
n = 9 (1.75%)
Arginine (Arg, R)
n = 8 (1.56%)
Codon statistics:
AUU AUC AUA CUU CUC CUA CUG UUA CAA CAG GUU GUC GUA GUG UUU UUC
25 13 28 11 6 23 5 14 6 0 11 6 19 1 22 20
AUG UGU UGC GCU GCC GCA GCG GGU GGC GGA GGG CCU CCC CCA CCG ACU
5 0 1 14 9 17 0 9 9 23 6 5 15 8 0 7
ACC ACA ACG UCU UCC UCA UCG AGU AGC UAU UAC UGG UUG AAU AAC CAU
12 18 1 9 5 12 1 0 3 8 11 2 1 8 11 5
CAC GAA GAG GAU GAC AAA AAG CGU CGC CGA CGG AGA AGG UAA UAG UGA
12 7 2 9 7 9 0 1 1 5 1 0 0 1 0 15
Codons with 1st base G Codons with 1st base C Codons with 1st base A Codons with 1st base U
149 104 140 122
Codons with 2nd base G Codons with 2nd base C Codons with 2nd base A Codons with 2nd base U
76 133 96 210
Codons with 3rd base G Codons with 3rd base C Codons with 3rd base A Codons with 3rd base U
25 141 205 144
COX2 (size: 684 bases)
Amino acid sequence:
Amino acid frequencies:
Glycine (Gly, G)
n = 8 (3.52%)
Alanine (Ala, A)
n = 9 (3.96%)
Serine (Ser, S)
n = 21 (9.25%)
Threonine (Thr, T)
n = 17 (7.49%)
Cysteine (Cys, C)
n = 2 (0.88%)
Valine (Val, V)
n = 12 (5.29%)
Leucine (Leu, L)
n = 34 (14.98%)
Isoleucine (Ile, I)
n = 18 (7.93%)
Methionine (Met, M)
n = 16 (7.05%)
Proline (Pro, P)
n = 13 (5.73%)
Phenylalanine (Phe, F)
n = 6 (2.64%)
Tyrosine (Tyr, Y)
n = 11 (4.85%)
Tryptophan (Trp, W)
n = 5 (2.2%)
Aspartic acid (Asp, D)
n = 10 (4.41%)
Glutamic acid (Glu, E)
n = 15 (6.61%)
Asparagine (Asn, N)
n = 5 (2.2%)
Glutamine (Gln, Q)
n = 6 (2.64%)
Histidine (His, H)
n = 7 (3.08%)
Lysine (Lys, K)
n = 6 (2.64%)
Arginine (Arg, R)
n = 6 (2.64%)
Codon statistics:
AUU AUC AUA CUU CUC CUA CUG UUA CAA CAG GUU GUC GUA GUG UUU UUC
12 6 13 5 2 18 4 3 6 0 5 1 4 2 5 1
AUG UGU UGC GCU GCC GCA GCG GGU GGC GGA GGG CCU CCC CCA CCG ACU
3 1 1 0 4 5 0 0 3 3 2 1 3 7 2 4
ACC ACA ACG UCU UCC UCA UCG AGU AGC UAU UAC UGG UUG AAU AAC CAU
1 11 1 4 4 8 0 1 4 5 6 0 2 1 4 2
CAC GAA GAG GAU GAC AAA AAG CGU CGC CGA CGG AGA AGG UAA UAG UGA
5 12 3 4 6 5 1 0 2 4 0 0 0 1 0 5
Codons with 1st base G Codons with 1st base C Codons with 1st base A Codons with 1st base U
54 61 67 46
Codons with 2nd base G Codons with 2nd base C Codons with 2nd base A Codons with 2nd base U
26 55 61 86
Codons with 3rd base G Codons with 3rd base C Codons with 3rd base A Codons with 3rd base U
20 53 105 50
COX3 (size: 784 bases)
Amino acid sequence:
Amino acid frequencies:
Glycine (Gly, G)
n = 20 (7.69%)
Alanine (Ala, A)
n = 15 (5.77%)
Serine (Ser, S)
n = 19 (7.31%)
Threonine (Thr, T)
n = 23 (8.85%)
Cysteine (Cys, C)
n = 2 (0.77%)
Valine (Val, V)
n = 17 (6.54%)
Leucine (Leu, L)
n = 32 (12.31%)
Isoleucine (Ile, I)
n = 13 (5.0%)
Methionine (Met, M)
n = 10 (3.85%)
Proline (Pro, P)
n = 12 (4.62%)
Phenylalanine (Phe, F)
n = 24 (9.23%)
Tyrosine (Tyr, Y)
n = 11 (4.23%)
Tryptophan (Trp, W)
n = 12 (4.62%)
Aspartic acid (Asp, D)
n = 3 (1.15%)
Glutamic acid (Glu, E)
n = 8 (3.08%)
Asparagine (Asn, N)
n = 10 (3.85%)
Glutamine (Gln, Q)
n = 7 (2.69%)
Histidine (His, H)
n = 16 (6.15%)
Lysine (Lys, K)
n = 2 (0.77%)
Arginine (Arg, R)
n = 5 (1.92%)
Codon statistics:
AUU AUC AUA CUU CUC CUA CUG UUA CAA CAG GUU GUC GUA GUG UUU UUC
4 9 9 10 5 8 2 7 7 0 4 6 7 0 10 14
AUG UGU UGC GCU GCC GCA GCG GGU GGC GGA GGG CCU CCC CCA CCG ACU
1 1 1 4 6 5 0 4 9 7 0 2 6 4 0 2
ACC ACA ACG UCU UCC UCA UCG AGU AGC UAU UAC UGG UUG AAU AAC CAU
10 11 0 2 5 8 0 1 3 7 4 1 0 3 7 4
CAC GAA GAG GAU GAC AAA AAG CGU CGC CGA CGG AGA AGG UAA UAG UGA
12 8 0 0 3 2 0 0 1 3 1 0 0 0 0 11
Codons with 1st base G Codons with 1st base C Codons with 1st base A Codons with 1st base U
63 65 62 71
Codons with 2nd base G Codons with 2nd base C Codons with 2nd base A Codons with 2nd base U
43 65 57 96
Codons with 3rd base G Codons with 3rd base C Codons with 3rd base A Codons with 3rd base U
5 101 97 58
CYTB (size: 1140 bases)
Amino acid sequence:
Amino acid frequencies:
Glycine (Gly, G)
n = 24 (6.33%)
Alanine (Ala, A)
n = 28 (7.39%)
Serine (Ser, S)
n = 23 (6.07%)
Threonine (Thr, T)
n = 26 (6.86%)
Cysteine (Cys, C)
n = 4 (1.06%)
Valine (Val, V)
n = 17 (4.49%)
Leucine (Leu, L)
n = 60 (15.83%)
Isoleucine (Ile, I)
n = 40 (10.55%)
Methionine (Met, M)
n = 15 (3.96%)
Proline (Pro, P)
n = 22 (5.8%)
Phenylalanine (Phe, F)
n = 24 (6.33%)
Tyrosine (Tyr, Y)
n = 15 (3.96%)
Tryptophan (Trp, W)
n = 12 (3.17%)
Aspartic acid (Asp, D)
n = 11 (2.9%)
Glutamic acid (Glu, E)
n = 6 (1.58%)
Asparagine (Asn, N)
n = 17 (4.49%)
Glutamine (Gln, Q)
n = 6 (1.58%)
Histidine (His, H)
n = 12 (3.17%)
Lysine (Lys, K)
n = 9 (2.37%)
Arginine (Arg, R)
n = 8 (2.11%)
Codon statistics:
AUU AUC AUA CUU CUC CUA CUG UUA CAA CAG GUU GUC GUA GUG UUU UUC
14 26 13 12 10 31 2 5 6 0 5 5 7 0 11 13
AUG UGU UGC GCU GCC GCA GCG GGU GGC GGA GGG CCU CCC CCA CCG ACU
2 0 4 2 6 19 1 3 4 16 1 1 5 15 1 0
ACC ACA ACG UCU UCC UCA UCG AGU AGC UAU UAC UGG UUG AAU AAC CAU
6 20 0 2 5 12 0 1 3 5 10 0 0 6 11 6
CAC GAA GAG GAU GAC AAA AAG CGU CGC CGA CGG AGA AGG UAA UAG UGA
6 6 0 3 8 6 3 0 0 8 0 1 0 0 0 12
Codons with 1st base G Codons with 1st base C Codons with 1st base A Codons with 1st base U
86 103 112 79
Codons with 2nd base G Codons with 2nd base C Codons with 2nd base A Codons with 2nd base U
53 95 76 156
Codons with 3rd base G Codons with 3rd base C Codons with 3rd base A Codons with 3rd base U
10 122 177 71
ND1 (size: 956 bases)
Amino acid sequence:
Amino acid frequencies:
Glycine (Gly, G)
n = 12 (3.79%)
Alanine (Ala, A)
n = 28 (8.83%)
Serine (Ser, S)
n = 23 (7.26%)
Threonine (Thr, T)
n = 20 (6.31%)
Cysteine (Cys, C)
n = 1 (0.32%)
Valine (Val, V)
n = 15 (4.73%)
Leucine (Leu, L)
n = 54 (17.03%)
Isoleucine (Ile, I)
n = 30 (9.46%)
Methionine (Met, M)
n = 20 (6.31%)
Proline (Pro, P)
n = 22 (6.94%)
Phenylalanine (Phe, F)
n = 21 (6.62%)
Tyrosine (Tyr, Y)
n = 12 (3.79%)
Tryptophan (Trp, W)
n = 9 (2.84%)
Aspartic acid (Asp, D)
n = 3 (0.95%)
Glutamic acid (Glu, E)
n = 11 (3.47%)
Asparagine (Asn, N)
n = 12 (3.79%)
Glutamine (Gln, Q)
n = 7 (2.21%)
Histidine (His, H)
n = 3 (0.95%)
Lysine (Lys, K)
n = 7 (2.21%)
Arginine (Arg, R)
n = 8 (2.52%)
Codon statistics:
AUU AUC AUA CUU CUC CUA CUG UUA CAA CAG GUU GUC GUA GUG UUU UUC
19 11 17 7 7 29 1 9 7 0 4 0 11 0 16 5
AUG UGU UGC GCU GCC GCA GCG GGU GGC GGA GGG CCU CCC CCA CCG ACU
3 0 1 4 5 18 1 1 4 7 0 4 7 9 2 1
ACC ACA ACG UCU UCC UCA UCG AGU AGC UAU UAC UGG UUG AAU AAC CAU
6 13 0 1 5 13 0 1 3 5 7 0 1 4 8 0
CAC GAA GAG GAU GAC AAA AAG CGU CGC CGA CGG AGA AGG UAA UAG UGA
3 9 2 0 3 5 2 0 1 7 0 0 0 0 0 9
Codons with 1st base G Codons with 1st base C Codons with 1st base A Codons with 1st base U
69 84 93 72
Codons with 2nd base G Codons with 2nd base C Codons with 2nd base A Codons with 2nd base U
34 89 55 140
Codons with 3rd base G Codons with 3rd base C Codons with 3rd base A Codons with 3rd base U
12 76 163 67
ND2 (size: 1042 bases)
Amino acid sequence:
Amino acid frequencies:
Glycine (Gly, G)
n = 14 (4.05%)
Alanine (Ala, A)
n = 18 (5.2%)
Serine (Ser, S)
n = 27 (7.8%)
Threonine (Thr, T)
n = 42 (12.14%)
Cysteine (Cys, C)
n = 0 (0%)
Valine (Val, V)
n = 10 (2.89%)
Leucine (Leu, L)
n = 56 (16.18%)
Isoleucine (Ile, I)
n = 38 (10.98%)
Methionine (Met, M)
n = 38 (10.98%)
Proline (Pro, P)
n = 19 (5.49%)
Phenylalanine (Phe, F)
n = 13 (3.76%)
Tyrosine (Tyr, Y)
n = 8 (2.31%)
Tryptophan (Trp, W)
n = 10 (2.89%)
Aspartic acid (Asp, D)
n = 2 (0.58%)
Glutamic acid (Glu, E)
n = 6 (1.73%)
Asparagine (Asn, N)
n = 17 (4.91%)
Glutamine (Gln, Q)
n = 10 (2.89%)
Histidine (His, H)
n = 5 (1.45%)
Lysine (Lys, K)
n = 11 (3.18%)
Arginine (Arg, R)
n = 3 (0.87%)
Codon statistics:
AUU AUC AUA CUU CUC CUA CUG UUA CAA CAG GUU GUC GUA GUG UUU UUC
17 21 36 5 10 32 0 9 9 1 2 4 4 0 8 5
AUG UGU UGC GCU GCC GCA GCG GGU GGC GGA GGG CCU CCC CCA CCG ACU
2 0 0 3 9 6 0 0 5 9 0 1 6 12 0 3
ACC ACA ACG UCU UCC UCA UCG AGU AGC UAU UAC UGG UUG AAU AAC CAU
16 23 0 3 10 13 0 0 1 3 5 0 0 5 12 1
CAC GAA GAG GAU GAC AAA AAG CGU CGC CGA CGG AGA AGG UAA UAG UGA
4 6 0 0 2 10 1 0 0 3 0 0 0 0 0 10
Codons with 1st base G Codons with 1st base C Codons with 1st base A Codons with 1st base U
50 84 147 66
Codons with 2nd base G Codons with 2nd base C Codons with 2nd base A Codons with 2nd base U
28 105 59 155
Codons with 3rd base G Codons with 3rd base C Codons with 3rd base A Codons with 3rd base U
4 110 182 51
ND3 (size: 1042 bases)
Amino acid sequence:
Amino acid frequencies:
Glycine (Gly, G)
n = 14 (4.05%)
Alanine (Ala, A)
n = 18 (5.2%)
Serine (Ser, S)
n = 27 (7.8%)
Threonine (Thr, T)
n = 42 (12.14%)
Cysteine (Cys, C)
n = 0 (0%)
Valine (Val, V)
n = 10 (2.89%)
Leucine (Leu, L)
n = 56 (16.18%)
Isoleucine (Ile, I)
n = 38 (10.98%)
Methionine (Met, M)
n = 38 (10.98%)
Proline (Pro, P)
n = 19 (5.49%)
Phenylalanine (Phe, F)
n = 13 (3.76%)
Tyrosine (Tyr, Y)
n = 8 (2.31%)
Tryptophan (Trp, W)
n = 10 (2.89%)
Aspartic acid (Asp, D)
n = 2 (0.58%)
Glutamic acid (Glu, E)
n = 6 (1.73%)
Asparagine (Asn, N)
n = 17 (4.91%)
Glutamine (Gln, Q)
n = 10 (2.89%)
Histidine (His, H)
n = 5 (1.45%)
Lysine (Lys, K)
n = 11 (3.18%)
Arginine (Arg, R)
n = 3 (0.87%)
Codon statistics:
AUU AUC AUA CUU CUC CUA CUG UUA CAA CAG GUU GUC GUA GUG UUU UUC
17 21 36 5 10 32 0 9 9 1 2 4 4 0 8 5
AUG UGU UGC GCU GCC GCA GCG GGU GGC GGA GGG CCU CCC CCA CCG ACU
2 0 0 3 9 6 0 0 5 9 0 1 6 12 0 3
ACC ACA ACG UCU UCC UCA UCG AGU AGC UAU UAC UGG UUG AAU AAC CAU
16 23 0 3 10 13 0 0 1 3 5 0 0 5 12 1
CAC GAA GAG GAU GAC AAA AAG CGU CGC CGA CGG AGA AGG UAA UAG UGA
4 6 0 0 2 10 1 0 0 3 0 0 0 0 0 10
Codons with 1st base G Codons with 1st base C Codons with 1st base A Codons with 1st base U
50 84 147 66
Codons with 2nd base G Codons with 2nd base C Codons with 2nd base A Codons with 2nd base U
28 105 59 155
Codons with 3rd base G Codons with 3rd base C Codons with 3rd base A Codons with 3rd base U
4 110 182 51
ND4 (size: 1378 bases)
Amino acid sequence:
Amino acid frequencies:
Glycine (Gly, G)
n = 17 (3.71%)
Alanine (Ala, A)
n = 29 (6.33%)
Serine (Ser, S)
n = 39 (8.52%)
Threonine (Thr, T)
n = 34 (7.42%)
Cysteine (Cys, C)
n = 3 (0.66%)
Valine (Val, V)
n = 16 (3.49%)
Leucine (Leu, L)
n = 92 (20.09%)
Isoleucine (Ile, I)
n = 40 (8.73%)
Methionine (Met, M)
n = 37 (8.08%)
Proline (Pro, P)
n = 20 (4.37%)
Phenylalanine (Phe, F)
n = 25 (5.46%)
Tyrosine (Tyr, Y)
n = 17 (3.71%)
Tryptophan (Trp, W)
n = 13 (2.84%)
Aspartic acid (Asp, D)
n = 3 (0.66%)
Glutamic acid (Glu, E)
n = 9 (1.97%)
Asparagine (Asn, N)
n = 23 (5.02%)
Glutamine (Gln, Q)
n = 11 (2.4%)
Histidine (His, H)
n = 10 (2.18%)
Lysine (Lys, K)
n = 11 (2.4%)
Arginine (Arg, R)
n = 10 (2.18%)
Codon statistics:
AUU AUC AUA CUU CUC CUA CUG UUA CAA CAG GUU GUC GUA GUG UUU UUC
22 18 27 10 15 47 6 13 11 0 4 4 7 1 10 15
AUG UGU UGC GCU GCC GCA GCG GGU GGC GGA GGG CCU CCC CCA CCG ACU
10 0 3 5 9 15 0 3 4 7 3 5 8 7 0 3
ACC ACA ACG UCU UCC UCA UCG AGU AGC UAU UAC UGG UUG AAU AAC CAU
10 20 1 8 10 8 1 3 9 6 11 1 1 6 17 3
CAC GAA GAG GAU GAC AAA AAG CGU CGC CGA CGG AGA AGG UAA UAG UGA
7 8 1 1 2 10 1 2 1 6 1 0 0 0 0 12
Codons with 1st base G Codons with 1st base C Codons with 1st base A Codons with 1st base U
74 129 157 99
Codons with 2nd base G Codons with 2nd base C Codons with 2nd base A Codons with 2nd base U
55 110 84 210
Codons with 3rd base G Codons with 3rd base C Codons with 3rd base A Codons with 3rd base U
27 143 198 91
ND4L (size: 297 bases)
Amino acid sequence:
Amino acid frequencies:
Glycine (Gly, G)
n = 4 (4.08%)
Alanine (Ala, A)
n = 8 (8.16%)
Serine (Ser, S)
n = 10 (10.2%)
Threonine (Thr, T)
n = 6 (6.12%)
Cysteine (Cys, C)
n = 3 (3.06%)
Valine (Val, V)
n = 6 (6.12%)
Leucine (Leu, L)
n = 22 (22.45%)
Isoleucine (Ile, I)
n = 5 (5.1%)
Methionine (Met, M)
n = 12 (12.24%)
Proline (Pro, P)
n = 1 (1.02%)
Phenylalanine (Phe, F)
n = 4 (4.08%)
Tyrosine (Tyr, Y)
n = 4 (4.08%)
Tryptophan (Trp, W)
n = 0 (0%)
Aspartic acid (Asp, D)
n = 1 (1.02%)
Glutamic acid (Glu, E)
n = 2 (2.04%)
Asparagine (Asn, N)
n = 5 (5.1%)
Glutamine (Gln, Q)
n = 2 (2.04%)
Histidine (His, H)
n = 2 (2.04%)
Lysine (Lys, K)
n = 0 (0%)
Arginine (Arg, R)
n = 1 (1.02%)
Codon statistics:
AUU AUC AUA CUU CUC CUA CUG UUA CAA CAG GUU GUC GUA GUG UUU UUC
5 0 11 0 5 9 2 6 1 1 1 0 4 1 1 3
AUG UGU UGC GCU GCC GCA GCG GGU GGC GGA GGG CCU CCC CCA CCG ACU
1 1 2 0 3 5 0 0 1 3 0 1 0 0 0 0
ACC ACA ACG UCU UCC UCA UCG AGU AGC UAU UAC UGG UUG AAU AAC CAU
3 3 0 1 4 4 0 0 1 1 3 0 0 2 3 1
CAC GAA GAG GAU GAC AAA AAG CGU CGC CGA CGG AGA AGG UAA UAG UGA
1 2 0 0 1 0 0 0 0 1 0 0 0 1 0 0
Codons with 1st base G Codons with 1st base C Codons with 1st base A Codons with 1st base U
21 22 29 27
Codons with 2nd base G Codons with 2nd base C Codons with 2nd base A Codons with 2nd base U
9 24 17 49
Codons with 3rd base G Codons with 3rd base C Codons with 3rd base A Codons with 3rd base U
5 30 50 14
ND5 (size: 1821 bases)
Amino acid sequence:
Amino acid frequencies:
Glycine (Gly, G)
n = 28 (4.62%)
Alanine (Ala, A)
n = 40 (6.6%)
Serine (Ser, S)
n = 45 (7.43%)
Threonine (Thr, T)
n = 59 (9.74%)
Cysteine (Cys, C)
n = 5 (0.83%)
Valine (Val, V)
n = 17 (2.81%)
Leucine (Leu, L)
n = 89 (14.69%)
Isoleucine (Ile, I)
n = 59 (9.74%)
Methionine (Met, M)
n = 42 (6.93%)
Proline (Pro, P)
n = 26 (4.29%)
Phenylalanine (Phe, F)
n = 46 (7.59%)
Tyrosine (Tyr, Y)
n = 23 (3.8%)
Tryptophan (Trp, W)
n = 12 (1.98%)
Aspartic acid (Asp, D)
n = 11 (1.82%)
Glutamic acid (Glu, E)
n = 11 (1.82%)
Asparagine (Asn, N)
n = 35 (5.78%)
Glutamine (Gln, Q)
n = 18 (2.97%)
Histidine (His, H)
n = 9 (1.49%)
Lysine (Lys, K)
n = 23 (3.8%)
Arginine (Arg, R)
n = 8 (1.32%)
Codon statistics:
AUU AUC AUA CUU CUC CUA CUG UUA CAA CAG GUU GUC GUA GUG UUU UUC
32 27 42 14 14 48 3 10 18 0 4 4 9 0 17 29
AUG UGU UGC GCU GCC GCA GCG GGU GGC GGA GGG CCU CCC CCA CCG ACU
0 2 3 7 13 20 0 1 12 14 1 6 10 10 0 11
ACC ACA ACG UCU UCC UCA UCG AGU AGC UAU UAC UGG UUG AAU AAC CAU
19 27 2 9 10 13 1 1 11 12 11 2 0 12 23 1
CAC GAA GAG GAU GAC AAA AAG CGU CGC CGA CGG AGA AGG UAA UAG UGA
8 10 1 2 9 22 1 1 3 4 0 0 0 1 0 10
Codons with 1st base G Codons with 1st base C Codons with 1st base A Codons with 1st base U
107 140 230 130
Codons with 2nd base G Codons with 2nd base C Codons with 2nd base A Codons with 2nd base U
65 158 131 253
Codons with 3rd base G Codons with 3rd base C Codons with 3rd base A Codons with 3rd base U
11 206 258 132
ND6 (size: 528 bases)
Amino acid sequence:
Amino acid frequencies:
Glycine (Gly, G)
n = 26 (14.86%)
Alanine (Ala, A)
n = 6 (3.43%)
Serine (Ser, S)
n = 11 (6.29%)
Threonine (Thr, T)
n = 9 (5.14%)
Cysteine (Cys, C)
n = 1 (0.57%)
Valine (Val, V)
n = 23 (13.14%)
Leucine (Leu, L)
n = 18 (10.29%)
Isoleucine (Ile, I)
n = 17 (9.71%)
Methionine (Met, M)
n = 10 (5.71%)
Proline (Pro, P)
n = 3 (1.71%)
Phenylalanine (Phe, F)
n = 14 (8.0%)
Tyrosine (Tyr, Y)
n = 10 (5.71%)
Tryptophan (Trp, W)
n = 4 (2.29%)
Aspartic acid (Asp, D)
n = 4 (2.29%)
Glutamic acid (Glu, E)
n = 8 (4.57%)
Asparagine (Asn, N)
n = 4 (2.29%)
Glutamine (Gln, Q)
n = 1 (0.57%)
Histidine (His, H)
n = 0 (0%)
Lysine (Lys, K)
n = 5 (2.86%)
Arginine (Arg, R)
n = 1 (0.57%)
Codon statistics:
AUU AUC AUA CUU CUC CUA CUG UUA CAA CAG GUU GUC GUA GUG UUU UUC
16 1 1 0 0 0 1 11 0 1 11 0 5 7 13 1
AUG UGU UGC GCU GCC GCA GCG GGU GGC GGA GGG CCU CCC CCA CCG ACU
9 1 0 4 0 1 1 12 1 2 11 3 0 0 0 5
ACC ACA ACG UCU UCC UCA UCG AGU AGC UAU UAC UGG UUG AAU AAC CAU
0 3 1 5 0 1 1 4 0 8 2 2 6 4 0 0
CAC GAA GAG GAU GAC AAA AAG CGU CGC CGA CGG AGA AGG UAA UAG UGA
0 0 8 4 0 2 3 1 0 0 0 0 0 1 0 2
Codons with 1st base G Codons with 1st base C Codons with 1st base A Codons with 1st base U
67 6 49 54
Codons with 2nd base G Codons with 2nd base C Codons with 2nd base A Codons with 2nd base U
36 25 33 82
Codons with 3rd base G Codons with 3rd base C Codons with 3rd base A Codons with 3rd base U
51 5 29 91
Total protein-coding genes (size: 11403 bases)
Amino acid sequence:
Amino acid frequencies:
Glycine (Gly, G)
n = 214 (5.63%)
Alanine (Ala, A)
n = 251 (6.61%)
Serine (Ser, S)
n = 276 (7.27%)
Threonine (Thr, T)
n = 317 (8.35%)
Cysteine (Cys, C)
n = 23 (0.61%)
Valine (Val, V)
n = 185 (4.87%)
Leucine (Leu, L)
n = 599 (15.77%)
Isoleucine (Ile, I)
n = 330 (8.69%)
Methionine (Met, M)
n = 256 (6.74%)
Proline (Pro, P)
n = 191 (5.03%)
Phenylalanine (Phe, F)
n = 243 (6.4%)
Tyrosine (Tyr, Y)
n = 137 (3.61%)
Tryptophan (Trp, W)
n = 104 (2.74%)
Aspartic acid (Asp, D)
n = 68 (1.79%)
Glutamic acid (Glu, E)
n = 96 (2.53%)
Asparagine (Asn, N)
n = 164 (4.32%)
Glutamine (Gln, Q)
n = 89 (2.34%)
Histidine (His, H)
n = 89 (2.34%)
Lysine (Lys, K)
n = 96 (2.53%)
Arginine (Arg, R)
n = 63 (1.66%)
Codon statistics:
AUU AUC AUA CUU CUC CUA CUG UUA CAA CAG GUU GUC GUA GUG UUU UUC
189 141 217 89 86 281 29 102 85 4 55 32 86 12 127 116
AUG UGU UGC GCU GCC GCA GCG GGU GGC GGA GGG CCU CCC CCA CCG ACU
39 7 16 48 77 122 4 34 55 98 27 35 69 82 5 43
ACC ACA ACG UCU UCC UCA UCG AGU AGC UAU UAC UGG UUG AAU AAC CAU
91 173 10 48 61 102 5 12 48 64 73 9 12 56 108 23
CAC GAA GAG GAU GAC AAA AAG CGU CGC CGA CGG AGA AGG UAA UAG UGA
66 78 18 24 44 83 13 6 11 43 3 1 0 7 0 95
Codons with 1st base G Codons with 1st base C Codons with 1st base A Codons with 1st base U
814 917 1224 844
Codons with 2nd base G Codons with 2nd base C Codons with 2nd base A Codons with 2nd base U
465 975 746 1613
Codons with 3rd base G Codons with 3rd base C Codons with 3rd base A Codons with 3rd base U
190 1094 1655 860

>NC_020708.1 Gazella leptoceros isolate CYTO mitochondrion, complete genome
GTTAATGTAGCTTAAATACAAAGCAAGGCACTGAAAATGCCTAGATGAGTATATTTACTCCATAAACACA
TAGGTTTGGTCCCAGCCTTTCTGTTAACTTTTAGTAAACGTACACATGCAAGCATCCACGTTCCAGTGAG
AATGCCCTTCAGGTCAACAAGACCAAAAGGAGCGGGTATCAAGCACACACCCGTAGCTCATGACACCTTG
CTCAACCACACCCCCACGGGAGACAGCAGTGACAAAAATTAAGCCATAAACGAAAGTTTGACTAAGTTAT
ACTAATTAGGGTTGGTAAATCTCGTGCCAGCCACCGCGGTCATACGATTAACCCAAGCTAACAGAAGCAC
GGCGTAAAATGTGTTTAAGCACCACACTAAATAGAGTTAAACTAAAATTAAGCCGTAAAAAGCCCTAATT
TTAATAAAAATAAACGACGAAAGTAACTCTAAAATAGCTGACACACTATAGCTAAGATCCAAACTGGGAT
TAGATACCCCACTATGCTTAGCCCTAAACACAAATAATTACATAAACAAAATTATTCGCCAGAGCACTAC
CGGCAACAGCCTAAAACTCAAAGGACTTGGCGGTGCTTTATATCCTTCTAGAGGAGCCTGTTCTATAATC
GATAAACCCCGATAAACCTCACCAGTCCTTGCTAATACAGTCTATATACCGCCATCTTCAGCAAACCCTA
AAAAGGAATAAAAGTAAGCACAATCATAAGACATAAAAACGTTAGGTCAAGGTGTAACCTATGGATTGGA
AAGAAATGGGCTACATTTTCTATCTCAAGAAAACATAATACGAAAGTTGCTATGAAACTAGCAACCAAAG
GAGGATTTAGTAGTAAACTAAGAATAGAGTGCTTAGTTGAATCAGGCCATGAAGCACGCACACACCGCCC
GTCACCCTCCTCGAGTAACTAAAACACACTTAAATATATTTAACGCACTAATCACATGAGAGGAGACAAG
TCGTAACAAGGTAAGCATACTGGAAAGTGTGCTTGGATAAACCAAGACATAGCTTAAACAAAGCATCTAG
TTTACACCTAGAAGATTCCATACACTATGAATGTCTTGAACTATACCTAGCCCAAGTTTTTTGCCATAAA
CCTAATAATTAAAATAGACTAAATCAAAACATTTACCCCTGGATTAAAGTATAGGAGATAGAAATTCTAA
AATGGCGCGATAGAGAAAGTACCGCAAGGGAATGATGAAAGAAAAATTATCAAAGTACAAAAAAGCAAAG
ATTACCCCTTGTACCTTTTGCATAATGAATTAACTAGTAGAAACTTAACAAAATGAATTTTAGCTAAGTA
ACCCGAAACCAGACGAGCTACTTATGAACAGTTAATTAAGAACCAACTCATCTATGTAGCAAAATAGTGA
GAAGATTTATAAGTAGAGGTGAAACGCCTAACGAGCCTGGTGATAGCTGGTTGTCCAGAAAATGAATATC
AGTTCAGCTTTAAAGATACCAAAAATACAAACAAATTTACTGTATCTTTAAAAGTTAGTCTAAAAAGGTA
CAGCCTTTTAGAAATGGGTACAACCTTAACTAGAGAGTAAGATCAAATAAAACCATAGTAGGCCTAAAAG
CAGCCATCAATTAAGAAAGCGTTAAAGCTCAACAATTAAAAACCATTTAATTCCATCAACAAATTAACCA
ACTCCTAGACCCACTACTGGACTATTCTATTAAGAAATAGAAGCAATAATGTTAATATGAGTAACAAGAA
ACAACTTCTCCCCGCATAAGTTTAAGTCAGTACCTGATAATACCCTGACTATTAACAGTAAATAAAAATA
ACCCAAAAATAAACAATTTATACACCATACTGTTAATCCAACACAGGAGTGCACCCAGGAAAGATTAAAA
GAAGTAAAAGGAACTCGGCAAACACAAACCCCGCCTGTTTACCAAAAACATCACCTCCAGCATTCCCAGT
ATTGGAGGCACTGCCTGCCCAGTGACAAACGTTAAACGGCCGCGGTATCCTGACCGTGCAAAGGTAGCAT
AATCATTTGTTCTTTAAATAAGGACTTGTATGAATGGCCACACGAGGGTTTTACTGTCTCTTACTTCCAA
TCAGTGAAATTGACCTTCCCGTGAAGAGGCGGGAATAAGAAAATAAGACGAGAAGACCCTATGGAGCTTT
AACTAGTTAGCTTAAAGAAAAAAAAACTTTACCACCAAGGGATAACACTAATCTCAATAAACTAACAGTT
TCGGTTGGGGTGACCTCGGAGAATAAAAAATCCTCCGAGCGATTTTAAAAACGAGACACACAAGTCAAAT
TGAACTATCGCTCATTGATCCAAAAATTTGATCAACGGAAAAAGTTACCCTAGGGATAACAGCGCAATCC
TATTCAAGAGTCCATATCGACAATAGGGTTTACGACCTCGATGTTGGATCAGGACACCCCGATGGTGCAA
CCGCTATCAAAGGTTCGTTTGTTCAACGATTAAAGTCCTACGTGATCTGAGTTCAGACCGGAGTAATCCA
GGTCGGTTTCTATCTATTATGAATTTCTCCCAGTACGAAAGGACAAGAGAAATAAGGCCAACCTCAAAAA
CGCGCCTTAAATTAATTAATGACTCCGTCTCAATTAAACCTACAAACAAGACCTGCCCTAGAAAAGGGCT
TAGTTAAGGTGGCAGAGCCCGGTAATTGCGTAAAACTTAAACCTTTATACTCAGAGATTCAAATCCTCTC
CTTAACAAAATGTTTATAGTAAATATTCTAATATTAATTATTCCTATCTTATTAGCTGTAGCGTTTCTCA
CCTTAGTTGAACGAAAAGTTCTAGGCTACATACAATTTCGAAAGGGTCCAAACGTTGTAGGCCCGTACGG
CCTACTCCAACCAATCGCAGACGCAATTAAACTTTTTATTAAAGAACCACTACGACCCGCAACATCCTCT
ATTTCAATATTTATTCTTGCACCCATCCTAGCTCTAAGCCTTGCCCTAACCATATGAATTCCCCTACCCA
TGCCTTATCCCCTTATCAACATGAACTTAGGAGTTTTATTTATACTAGCCATATCAAGTCTAGCTGTATA
CTCAATTCTATGATCAGGATGAGCTTCCAACTCAAAATACGCACTTATTGGAGCCTTGCGAGCAGTAGCA
CAAACAATCTCATACGAAGTAACACTAGCCATTATTCTCCTATCAGTACTCCTAATAAACGGATCCTTTA
CTCTCTCCACACTAATTATTACACAAGAACAAGTATGAATAATCTTTCCAGCATGACCACTAGCAATAAT
ATGATTTATCTCAACACTGGCAGAGACAAACCGAGCACCATTTGACCTTACCGAAGGAGAGTCAGAATTA
GTATCAGGCTTTAATGTAGAATATGCAGCAGGACCATTTGCCCTATTCTTTATAGCAGAATATGCAAATA
TTATTATAATAAATATCTTTACAACAACCCTATTCCTAGGAGCATTCCACAACCCATATATACCGGAACT
CTACACAATTAACTTTACCATCAAGTCACTATTACTTACAATTACCTTCCTATGAATTCGAGCATCCTAC
CCTCGATTTCGCTATGACCAACTAATACACCTACTATGAAAAAGCTTCCTACCCCTAACACTAGCACTAT
GCATATGACACGTATCATTACCCATCCTCCTATCAAGCATCCCTCCACAAACATAAGAAATATGTCTGAT
AAAAGAGTTACTTTGATAGAGTAAATAATAGAGGTTCAAGCCCTCTTATTTCTAGAACTATAGGAATTGA
ACCTACTCCTAAGAACCCAAAACTCTTCGTGCTCCCAAATACACCAAATTCTAACAGTAAGGTCAGCTAA
TTAAGCTATCGGGCCCATACCCCGAAAATGTTGGTTTATACCCTTCCCGTACTAATAAATCCAATTACCT
TTATCATTATCTTAACAACCGTCCTACTCGGAACCATCATTGTTATAATCAGCTCCCACTGATTACTCAT
CTGAATTGGATTTGAAATAAACATGCTCGCCATCATCCCTATTATAATAAATAAGCACAATCCACGAGCC
ACAGAAGCATCAACTAAATACTTTCTTACCCAGTCAACAGCCTCAATACTATTAATAATAGCCGTAATCA
TCAACCTAATATTCTCAGGCCAATGAACCGTAATAGAACTATTTAACCCAACAGCCTCCATACTAATAAC
CATAGCCCTTGCTATAAAATTAGGAATAGCTCCATTTCACTTCTGAGTCCCAGAAGTAACACAAGGCATC
CCCCTATCCTCCGGCCTAATTCTACTCACATGACAAAAACTAGCACCAATATCCGTCCTCTACCAAATTT
CCACATCCATCAACCTAGACCTAATCCTAACCCTATCCATCCTATCAATTTCAATTGGAGGCTGAGGAGG
ACTAAACCAAACCCAACTACGAAAAATTATAGCCTATTCATCAATTGCCCACATAGGCTGAATAACAGCA
GTACTACTCTACAACCCCACCATAACACTATTAAACCTAATCATTTATATTATCATAACCTCCACCATAT
TTATACTATTTATAGCTAACTCAACTACAACCACCCTATCACTATCACATACATGAAACAAAACACCCAT
CATAACAATCCTAGTTCTCGCCACCCTCTTATCAATAGGAGGACTCCCCCCACTATCAGGATTCATACCA
AAATGAATAATCATTCAAGAAATAACAAAAAATGACAACATCATCTTACCAACCCTAATAGCAATTACAG
CACTACTAAACCTATACTTCTATATACGACTTACATACTCTACAGCACTTACAATATTCCCCTCTACAAA
CAATATAAAAATGAAATGACAATTTCCCATTACAAAACAAATAACCCTCCTACCAACAATAGTCACATTA
TCCACTATACTATTACCACTTACACCAATCCTATCTATTCTAGAATAGGAATTTAGGTTACATAGACCAA
GAGCCTTCAAAGCCCTAAGCAAGTATAATTTACTTAATTCCTGATAAGGACTGCAAGATTACATCTTACA
TCAACTGAACGCAAATCAACCGCTTTAATTAAGCTAAGTCCTCACTAGATTGGTGGGCTCCACCCCCACG
AAGTTTTAGTTAACAGCTAAATACCCTAACACACTGGCTTCAATCTACTTCTCCCGCCGCGAGAAAAAAA
AGGCGGGAGAAGCCCCGGCAGAATTGAAGCTGCTTCTTTGAATTTGCAATTCAATATGTTAATTCACCAC
GAGGCCTGGTAAAAAGAGGAATCAAACCCCTGTCTTTAGATTTACAGTCTAATGCTTACTCAGCCATTTT
ACCTATGTTCATCAACCGCTGATTATTTTCAACCAACCATAAAGATATTGGTACCCTATACCTCCTATTT
GGTGCCTGAGCTGGTATAGTAGGAACCGCTTTAAGCTTACTAATCCGTGCTGAATTAGGTCAACCCGGAA
CTTTACTCGGAGACGATCAAATTTATAATGTAGTCGTAACCGCACATGCATTTGTAATAATTTTCTTTAT
AGTAATACCCATCATAATTGGAGGATTTGGCAATTGACTAGTTCCCCTGATAATCGGTGCCCCCGATATA
GCATTTCCCCGAATAAACAATATAAGCTTTTGACTTCTCCCTCCCTCTTTTCTATTGCTTCTAGCATCTT
CTATAGTTGAAGCAGGAGCAGGAACAGGCTGAACCGTCTACCCTCCCCTAGCAGGCAACCTAGCTCACGC
AGGTGCTTCAGTAGACCTGACCATTTTCTCTCTTCACCTAGCAGGTGTCTCCTCAATTTTAGGCGCCATC
AACTTTATTACAACAATTATTAATATGAAACCTCCCGCAATATCGCAATATCAAACCCCCTTATTTGTAT
GATCTGTTCTAATTACCGCTGTACTTCTACTCCTTTCACTTCCCGTACTAGCTGCCGGCATTACAATACT
TCTAACAGACCGAAACTTAAATACAACTTTCTTTGACCCAGCAGGAGGAGGAGATCCAATCCTATATCAA
CATCTGTTCTGATTCTTCGGACACCCTGAAGTGTATATTCTAATCCTACCCGGATTCGGGATGATTTCCC
ACATCGTTACCTACTACTCAGGAAAAAAAGAACCATTCGGGTATATAGGAATAGTATGAGCCATGATGTC
CATTGGGTTTTTAGGATTTATTGTATGAGCTCACCATATATTTACAGTCGGAATAGACGTTGATACACGA
GCCTACTTCACATCAGCTACTATAATTATTGCTATCCCAACTGGGGTAAAAGTTTTCAGCTGACTGGCTA
CGCTTCATGGAGGTAACATTAAATGGTCACCCGCTATAATATGAGCACTAGGCTTTATTTTCCTCTTTAC
AGTTGGAGGCTTAACTGGAATCGTTCTAGCCAACTCTTCTCTTGACATTGTTCTCCACGATACATACTAT
GTAGTCGCACACTTCCACTATGTATTATCAATAGGAGCTGTATTTGCCATTATAGGGGGATTCGTACACT
GATTCCCACTATTTTCAGGCTATACCCTTAATGATACATGAGCTAAAATTCACTTTGCAATTATATTTGT
AGGTGTAAACATAACTTTCTTCCCACAACACTTCTTAGGGCTATCCGGAATACCACGACGATACTCTGAT
TACCCCGATGCCTACACAATATGAAACACTATCTCATCTATAGGCTCATTCATCTCACTAACAGCAGTTA
TATTAATAATTTTCATCATTTGAGAAGCATTTGCATCCAAACGGGAAGTCCTAACCGTAGACCTTACCAC
AACAAATTTAGAGTGGCTAAATGGATGCCCTCCCCCATACCACACATTTGAAGAGCCCACATACGTTAAC
CTGAAATAAGAAAGGAAGGAATCGAACCCCCTACTATTGGTTTCAAGCCAACACCATAACCACTATGTCT
TTCTTAATAAAATAAGATGTTAGTAAAATATTACATAACCTTGTCAAGGTTAAATTACAGGTGAAAACCC
CGTACATCTTGTATGGCATATCCCATACAACTAGGGTTTCAAGACGCAACATCACCTATTATAGAAGAGC
TACTGCACTTTCACGACCATACTTTAATGATCGTTTTTCTAATTAGCTCTCTAGTGCTTTACGTTATCTC
ACTTATGCTAACAACAAAATTAACGCACACTAGCACAATAGATGCACAAGAAGTAGAAACAATTTGAACT
ATTCTACCAGCCATTATCCTGATCCTAATCGCCCTCCCATCTCTACGCATTCTATACATAATAGATGAAA
TTAATAACCCGTCTCTTACAGTAAAAACTATAGGGCATCAATGATACTGAAGTTATGAGTATACAGACTA
CGAAGACCTAAGCTTCGACTCCTACATAATTCCAACATCAGAACTAAAGCCAGGAGAACTACGACTACTA
GAAGTAGATAACCGAGTTGTTTTGCCCATAGAGATAACAATTCGAATATTGATCTCTTCCGAAGACGTGC
TTCACTCATGAGCCGTACCCTCCCTAGGACTAAAAACAGATGCAATTCCAGGCCGCCTGAACCAAACAAC
CCTTATATCAGCCCGACCAGGCCTGTATTACGGCCAATGTTCAGAAATTTGCGGATCAAACCACAGCTTT
ATACCAATTGTTCTCGAACTAGTCCCGCTAAAATATTTTGAAAAATGATCCGCATCAATATTATAAGATC
ATCAAGAAGCTAAGTAAGCATTAACCTTTTAAGTTAAAGACTGAGGACATAGTACCCTCCTTGATGACAT
GCCACAACTAGACACATCAACATGGCTCACAATAATCCTGTCGATATTCTTAGTTCTTTTTATTATTTTC
CAACTAAAAATTTCAAAACACAACTTCTATCACAACCCAGAACCAACATCTGCAAAAACACTAAAACAAA
GCACCCCCTGAGAAACAAAATGAACGAAAATCTATTTGCCTCTTTCATTACCCCTATAATTCTAGGCCTT
CCCCTCGTTACCCTCATTGTCCTATTCCCTAGCCTATTATTTCCAACATCAAACCGACTAATAAATAACC
GTCTTATCTCTCTTCAACAATGAGTACTTCAACTTGTATCAAAACAAATAATAAGCATCCACAACCCCAA
GGGGCAAACATGAGCACTTATACTGATATCCTTAATTATATTTATTGGGTCAACAAACTTACTAGGCCTA
CTACCCCACTCTTTTACACCAACCACACAACTATCAATAAACCTAGGTATAGCCATTCCCCTATGAGCAG
GAGCTGTAATCACGGGCTTCCGCAACAAAACTAAAGCATCACTTGCCCACTTTTTACCACAAGGAACACC
CACCCCTCTAATCCCTATACTAGTAATTATCGAAACTATTAGCCTATTTATTCAACCAGTAGCCCTCGCA
GTACGACTAACAGCCAATATTACAGCAGGACACCTATTAATTCACCTAATTGGAGGGGCTACATTAGCAC
TAATAAATATTAGCACTACAACGGCTCTTATTACATTTATTATTCTAGTTTTACTAACAATTCTTGAATT
CGCAGTAGCTATAATTCAAGCCTACGTATTTACTCTTTTAGTCAGCCTATACTTACACGATAACACATAA
TGACACACCAAACTCACGCCTACCACATAGTAAACCCCAGTCCCTGACCCCTTACAGGAGCACTATCCGC
TCTCCTAATAACATCCGGTTTAATCATATGATTCCACTTTAACTCAACAACCCTACTTATACTTGGCCTA
ACAACAAATATACTTACTATATATCAATGATGACGAGACGTAGTCCGGGAAAGCACCTTTCAAGGTCACC
ATACCCCAAATGTCCAAAAAGGCTTACGCTATGGAATAATCCTTTTTATCATTTCAGAAGTTTTATTCTT
TACCGGATTTTTCTGAGCATTCTATCACTCAAGCCTTGCTCCCACACCTGAACTAGGCGGCTGCTGACCT
CCAACAGGCATCAACCCACTTAACCCCTTAGAAGTTCCACTACTCAACACATCTGTCCTTTTAGCTTCAG
GAGTCTCCATTACCTGAGCCCATCACAGCCTTATAGAAGGAAATCGAAACCACATACTACAAGCCCTGTT
CATTACCATCGCACTGGGTGTATACTTCACATTACTCCAAGCCTCAGAATACTATGAAGCACCCTTTACC
ATCTCAGACGGTGTCTATGGCTCAACCTTCTTTGTAGCTACAGGATTCCACGGCCTCCATGTTATCATTG
GATCCACCTTCTTAATCGTATGTTTTTTCCGACAACTAAAATTTCACTTCACCTCCAACCACCATTTCGG
CTTTGAAGCAGCCGCCTGATACTGACACTTCGTAGACGTCGTATGGCTTTTCCTCTATGTTTCTATCTAT
TGATGAGGCTCATATTCTTTTAGTATTAATAAGTACAACTGACTTCCAATCAGTTAGTTTCGGTCCAATC
CGAAAAAGAATAATAAACCTAATATTAGCCCTCCTAACCAACCTTACTCTAGCCACACTGCTCGTTACCA
TCGCATTCTGACTCCCCCAGATAAATGCATATTCAGAGAAAACAAGCCCATACGAATGTGGATTTGACCC
TATAGGATCCGCCCGCCTCCCCTTTTCCATGAAATTTTTCCTAGTAGCCATCACATTCCTCCTATTTGAC
CTAGAAATTGCATTACTCCTACCACTACCATGAGCCTCACAAACAACGAGCTTAAGCACAATACTTACTA
TAGCTCTCCTCCTAATTTTTCTACTAGCCGCGAGCTTAGCCTATGAATGAACCCAAAAAGGACTTGAATG
AACTGAATATGGTATTTAGTTTAAATAAAATAAATGATTTCGACTCATTAGATTATGACTTAACTCATAA
CTACCAAATGTCCCTCGTGTATATAAACATTATAACAGCATTCGCAGTATCTCTCACAGGACTATTAATA
TACCGATCCCACCTAATATCATCCCTCCTATGCCTAGAAGGAATAATACTATCACTGTTCATTATAGCCA
CCTTAATAATTCTAAACTCACATTTTACCCTGGCCAGCATAATACCTATTATTCTATTAGTATTCGCAGC
CTGTGAAGCAGCACTAGGCTTATCCCTATTAGTTATAGTATCAAATACATACGGAACCGACTACGTACAG
AATCTCAACCTCTTACAATGCTAAAATACATTTTTCCTACAATAATGCTCATACCCCTGACCTGATTATC
AAAAAGTAGTATAATTTGAATTAACTCTACATCACATAGCCTAATAATCAGCTTCACAAGCCTGCTTCTC
ATAAACCAATTCAACGATAATAGCCTTAACTTTTCACTAATCTTCTTCTCGGACGCCCTATCTACACCTC
TACTAATCCTAACCATATGACTCCTCCCTCTAATACTAATAGCTAGTCAACACCATCTATCAAAAGAGAA
CTTGACTCGAAAAAAGCTATTTATTACAATACTAATTCTATTACAACTATTCCTAATCATGACATTTACC
GCCATAGAATTAATCTTCTTTTATATCTTATTTGAAGCAACCCTAGTCCCAACACTCATTATTATTACCC
GATGAGGAAATCAAACAGAACGCCTAAACGCCGGCCTTTACTTCCTATTTTATACACTAACAGGGTCCCT
GCCCCTATTAGTAGCACTAATTTATATTCAAAATACAGCAGGATCCCTAAACTTCCTAATCCTCCAATAC
TGAGTGCAACCAATACTCAACTCCTGATCTAACGTTTTCATATGACTAGCATGCATGATAGCTTTTATGG
TAAAAATACCCCTATATGGTCTTCACCTCTGACTACCCAAAGCACACGTAGAAGCTCCCATTGCAGGGTC
CATAGTTCTTGCAGCAATCCTGCTAAAACTAGGAGGATACGGAATACTACGGGTTACACTCTTCCTAAAC
CCAGTAACCGAATTCATAGCATACCCATTCATTATATTATCCCTATGAGGTATAATTATAACTAGCTCAA
TCTGCCTCCGTCAAACAGACCTAAAATCACTCATTGCATATTCCTCCGTCAGCCACATAGCACTTGTTAT
CGTAGCTATCCTTATTCAAACACCCTGAAGCTATATGGGAGCCACCGCCTTAATAATCGCCCATGGTCTT
ACATCCTCCATACTTTTCTGCCTAGCAAACTCTAACTACGAACGAATTCACAGCCGAACAATAATCTTAG
CCCGTGGCCTACAAATATTTCTTCCACTAATGGCAGCCTGATGGCTCCTAGCAAGCCTAACTAATCTAGC
CCTGCCTCCAACAATCAATCTAATTGGAGAACTATTTGTAGTCATGTCAACCTTCTCTTGATCTAACATT
ACAATTGTCCTAATGGGGTTAAACATAGTAATTACCGCTCTATACTCTCTCTACATACTAATTACAACGC
AACGAGGCAAATACACCTACCACATCAACAACATCTTACCTTCATTCACACGAGAAAATGCACTCATGTC
CCTGCACATTCTACCCTTACTACTCCTATCTCTAAACCCAAAAATCATCTTAGGCCCCTTATACTGTAAA
TATAGTTTAAAAAAAACATTAGATTGTGGATCTAATAACAGAAGCTCATCACCTTCTTATTTACCGAAAA
AGTATGCAAGAACTGCTAACTCTATGCCTCCATGTCTAACAGCATGGCTTTTTCAAACTTTTAAAGGATA
GGAGTTATCCGTTGGCCTTAGGAGCCAAAAAATTGGTGCAACTCCAAATAAAAGTAATAAATATATTTTC
CTCCTTCACGCTAATAACCCTACTCTTATTAACTATCCCCATTATAATAACAAGCTCTGACACCTATAAA
ACCCTCAACTACCCACTCTACGTAAAAACAACTATCTCATGCGCCTTCCTTACTAGCATAATCCCCACTA
TAATATTCATTTACACAGGACAAGAAATAGTTATCTCAAACTGACACTGACTAACCATTCAAACCCTTAA
ACTTTCACTCAGTTTTAAAATAGACTACTTCTCAATAATATTTGTCCCAGTAGCATTATTTGTCACATGA
TCTATTATAGAATTCTCCATATGATATATATACTCAGACCCTCACATCAACCAATTCTTTAAATATCTTC
TTCTTTTCCTAATTACAATACTCATTCTTGTAACTGCAAATAACTTATTCCAACTATTCATTGGCTGAGA
AGGAGTCGGAATTATATCATTTCTACTCATTGGATGGTGGTATGGACGAGCAGACGCAAACACAGCAGCC
CTACAAGCAATCCTATATAACCGCATTGGTGACATTGGATTTATCCTAGCAATAGCTTGATTCTTAGTAA
ACCTCAATACCTGAGACCTCCAACAAATTTTTATACTAAACCCAAACAATTCTAATCTACCCCTAATAGG
CCTTACACTAGCTGCAACTGGAAAATCCGCACAATTCGGCCTACACCCATGACTACCCTCCGCAATAGAA
GGCCCTACCCCTGTATCAGCACTACTTCACTCAAGCACAATAGTAGTAGCAGGCATTTTCCTACTAATCC
GTTTCTACCCACTAACAGAAAATAACAAATTTGCCCAATCCATTATACTATGCCTAGGGGCCATTACCAC
TCTATTCACAGCAATATGCGCCCTGACCCAAAACGATATCAAAAAAATCGTTGCTTTCTCTACATCCAGC
CAACTAGGCCTCATAATAGTAACAATTGGCATTAACCAACCCTACCTAGCATTTCTTCACATCTGTACCC
ATGCTTTTTTCAAAGCCATACTATTCATATGTTCCGGCTCCATTATTCACAGCCTAAATGATGAACAAGA
CATCCGAAAAATAGGAGGCCTATTCAAAGCCATACCATTCACCACAACAGCCCTAATTATTGGCAGCCTT
GCACTAACAGGAATACCCTTCCTTACTGGATTTTACTCCAAAGACCTAATCATTGAAGCCGCCAATACGT
CGTATACCAACGCCTGAGCCCTCCTAATAACACTAATCGCTACCTCTTTCACAGCTATCTACAGCACCCG
AATTATCTTTTTTGCACTCCTAGGACAACCCCGATTCCCAACCCTAATTATTATCAATGAAAACAACCCC
TTCCTAATTAACTCAATTAAACGCCTGCTAATCGGAAGCCTTTTCGCAGGATTTATCATTTCTAACAATA
TCCCTCCAATAACAGTCCCCCAAATAACTATACCCTATTACCTAAAAACTATAGCCCTAGCAGTTACAAT
CTTAGGCTTTATATTAGCACTAGAAATTAGCAACACAACCTATAACCTAAAATTCAAGTATCCATCAAAC
GCTTTCAAATTTTCTAATCTCCTAGGATATTACCCTACAATCATACACCGCCTAACACCTTATATAAACC
TAACAATAAGCCAAAAATCAGCAACCTCTATCCTAGACCTAATCTGACTAGAAAACATTTTACCAAAAAC
CACTTCACTAATCCAAATAAAAATATCAACCACAGTTACAAACCAAAAAGGCCTAATCAAACTGTATTTC
CTCTCTTTCTTAATCACAATTCTCGTAAGCACAATTTTACTTAATTTCCACGAGTAATCTCCATAATCAC
CACAACACCAATCAATAAAGATCAACCAGTCACAATAACTAATCAAGTACCATAACTGTATAAAGCCGCA
ATCCCCATAGCCTCCTCACTAAAAAACCCAGAATCCCCCGTATCATAAATAACCCAATCCCCTAAACCAT
TGAACTTAAATACAATCTCCACCTCTTTATCTTTCAATACATAATAAACCATCAAAAACTCCATTAACAG
ACCAGTAATAAATGCCCCCAAAACAATCTTATTAGAAACCCAAATCTCAGGATACTGCTCAGTAGCCATA
GCTGTTGTATAACCAAAAACTACCATCATGCCCCCCAAATAGATTAAAAAAACCATTAAACCTAAAAAAG
ATCCACCAAAATTTAATACAATACCACAACCAACCCCACCACTCACAATTAACCCCAACCCCCCATAAAT
AGGCGAAGGCTTTGAAGAAAACCCCACAAAACCAACCACAAAAATAACACTTAAAATAAATACAATGTAT
GTTATCATTATTCTCGCATGGAATCTAACCACGACTAATGATATGAAAAACCATCGTTGTCATTCAACTA
CAAGAACATTAATGATCAACACCCGAAAGACCCACCCACTTATAAAAATTGTAAACAACGCATTCATTGA
CCTTCCAGCTCCATCAAATATCTCATCATGATGAAACTTTGGCTCCCTCCTAGGTATCTGCTTAATTCTA
CAAATCCTAACAGGTCTATTCCTAGCAATGCACTACACAGCCGATACAGCAACAGCATTCTCTTCCGTCA
CCCATATCTGCCGAGATGTCAACTACGGCTGAATCATCCGATATATACATGCAAATGGAGCATCCATATT
CTTTATCTGCCTTTTTATACATGTAGGACGAGGCCTCTACTATGGATCATACACATTCTTAGAAACATGA
AATATCGGAGTAATTCTTCTATTTGCAACAATAGCTACAGCACTTATAGGTTACGTCCTACCATGAGGAC
AAATATCCTTTTGAGGAGCAACAGTTATCACAAACCTCCTCTCAGCAATCCCATATATCGGCACAAACCT
AGTAGAATGAATCTGAGGAGGATTCTCAGTAGATAAAGCAACACTTACCCGATTTTTTGCCTTCCACTTT
ATTCTTCCATTCATCATTGCGGCCCTCGCCATAGTTCACTTATTATTCCTTCATGAAACAGGATCCAACA
ACCCCACAGGAATCTCATCAGACGCAGACAAAATTCCATTTCATCCCTACTATACCATCAAGGACATTCT
AGGAGCACTACTACTAATTCTAGTTCTTACACTCCTAGTTCTATTCTCACCGGACCTACTCGGAGACCCA
GACAATTACACACCAGCAAATCCACTCAACACACCCCCACACATCAAACCTGAATGATACTTCCTATTCG
CATACGCAATCCTCCGATCAATTCCCAACAAGCTAGGAGGAGTCCTAGCCCTAGTCCTATCAATTCTAAT
CTTAATCCTTATACCCCTACTACATACATCTAAACAACGAAGCATAATATTTCGACCAATCAGCCAATGC
CTATTCTGAATCCTAGTAGCAGACCTGCTAACACTTACATGAATCGGAGGGCAACCAGTTGAACACCCAT
ACATCATTATCGGACAACTAGCATCAATCATATATTTTCTACTTATTCTAGTACTGATACCAGCAGCCAG
TACCATTGAAAATAGCCTCCTAAAATGAAGACAAGTCTTTGTAGTACATTAAATATACTGGTCTTGTAAA
CCAGAGAAGGAGAACAAGCAACCTCCCTAAGACTTCAAGGAAGAAGCCATAGCCCCACTATCAACACCCA
AAGCTGAAGTTCTATTTAAACTATTCCCTGAAAGACTATCAATATAGCTCCATAAACGCGAAGAGCAATA
TCAGCATTAAATTTGCCAATACTTTTAAAAATTAATACAAGCCTACCACTTTAAAGCCTTATAAAACATT
TATACAATAACCTAAGACACCCCCCCCCCCCGGAAAGGAACATTGTATTAATGTATTAAGGACATGATAT
GTATATAGTACATTAAATGATTGTCCACATGCATATAAGCAAGTACATGAAAATTTAATGTACATTAGAC
ATAATATGTTTGAAATACATTAACACAATTTGACCCCTACATACCCAAACAGGGGCAGTATACTTATTAA
CAGTACATAGCACATTAGATGTTTAAACGTACATGGCACATCTAAGTCAAAAAAATTCTCGTCAACATGC
GTATCCTGCCCCCTAGATCACGAGCTTAATCACCATGCCGCGTGAAACCAGCAACCCGCTTGGCAGGGAT
CCGTCTTCTTGTCTTGCGCCCATGAATCGTGGGGGTAGCTATAAATTGAACTTTAAGAGACATCTGGTTC
TTTCTTCAGGGCCATCTCACCTAAAATCGCCCACTCTTTCCTCTTAAATAAGACATCTCGATGGACTAGT
GACTAATCAGCCCATGCTCACACATAACTGTGCTGTCATACATTTGGTATTTTTTTATTTTGGGGGTTGC
TTGGACTCAGCTATGGCCGTCAAAGGCCCCGACCCGGAGCATAAATTGTAGCTGGACTTAACTGCATCTT
GAGCACCAGCATAATGGTAGGCACGAGCATCATAATTAATGGAGCAACAGACATTACAGTCAATGAAAGC
ATGGATATAATAGTCAATGGTAGCAGGACATAAAACAATATATCCCCCTCTTCTTCCTTTTTTCCCCCTA
TATATTTACCACCCCTTTTAACCCACTTTCCCCTAGATACTAAACTAAACTTACCCTATTTCCAACACTC
AAACAAGCACTCTGCCCAAGGTCAATATATAAGTGCCTGGTCCGCCTTCATACCTAATA


Contact: Vadim E. Fraifeld, MD, PhD

Head: Lab for the Biology of Aging, The Shraga Segal Department of Microbiology, Immunology and Genetics, Faculty of Health Sciences, Ben-Gurion University of the Negev
P.O. Box 653, Beer-Sheva 8410501, Israel

Email:
How to cite us:

If you would like to cite this database please use:
Toren D, Barzilay T, Tacutu R, Lehmann G, Muradian KK, Fraifeld VE. MitoAge: a database for comparative analysis of mitochondrial DNA, with a special focus on animal longevity. Nucleic Acids Res. 2016; 44(D1):D1262-5.