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1 is highly conserved in man, mouse, and fish (Fugu rubripes).
2 ate species (human, mouse, rat, chicken, and Fugu rubripes).
3 nstream of the wnt-1 gene in the pufferfish (Fugu rubripes).
4  of a non-human vertebrate (the teleost fish Fugu rubripes).
5 ation of the complement component C4 gene in Fugu rubripes.
6 from the reference genome of the pufferfish, Fugu rubripes.
7 isation of two top1 genes in the pufferfish, Fugu rubripes.
8 mologous genes from the Japanese pufferfish, Fugu rubripes.
9 gest homology to the sushi-ichi element from Fugu rubripes.
10 b of genomic DNA of the Japanese pufferfish, Fugu rubripes.
11  from the genome of the Japanese pufferfish, Fugu rubripes.
12 ne in the compact model vertebrate genome of Fugu rubripes.
13 f the TSC2 gene in human and the pufferfish, Fugu rubripes.
14 identified in mammals and in the puffer fish Fugu rubripes.
15 d characterization of a Japanese pufferfish, Fugu rubripes achaete-scute homolog 1, Fash1.
16 ormone ethylene, have recently been found in Fugu rubripes and Homo sapiens.
17 A sequence of the APP gene in the pufferfish Fugu rubripes and Tetraodon fluviatilis, respectively.
18 ene in the compact genomes of the pufferfish Fugu rubripes and Tetraodon nigroviridis.
19  in more detail, we searched the pufferfish (Fugu rubripes) and zebrafish (Danio rerio) genomes for G
20 amprey (Petromyzon marinus), the pufferfish (Fugu rubripes), and the frog (Xenopus laevis).
21 this locus between human, mouse, pufferfish (Fugu rubripes), and, in part, zebrafish (Danio rerio).
22 cterized the genomic structure of DRADA from Fugu rubripes, and compared the protein sequences of DRA
23 enes in the compact genome of the pufferfish Fugu rubripes, and examine the phylogenetic relationship
24 us of this unusual locus in the puffer fish, Fugu rubripes, and identified two INK4 genes using degen
25 ates, the mouse and the Japanese puffer fish Fugu rubripes, and investigated the genomic organization
26 enorhabiditus elegans, Arabidopsis thaliana, Fugu rubripes, and Toxoplasma gondii.
27 yces cerevisiae, Drosophila melanogaster and Fugu rubripes appear to lack NARG2 orthologs.
28 FATPs are found in such diverse organisms as Fugu rubripes, Caenorhabditis elegans, Drosophila melano
29  to the wnt1 gene of the Japanese pufferfish Fugu rubripes confirms the compact structure of the geno
30 e compact genome of the Japanese pufferfish (Fugu rubripes) containing portions of three genes that h
31                              The puffer fish Fugu rubripes (Fugu) has a compact genome approximately
32                                              Fugu rubripes (Fugu) has one of the smallest recorded ve
33                The genome of the pufferfish, Fugu rubripes (Fugu) is compact.
34 ed 60 kb of genomic DNA from the puffer fish Fugu rubripes (Fugu) that includes the CFTR gene.
35       For example, genes from the pufferfish Fugu rubripes generally contain one or more introns that
36 quence is conserved in the mouse, bovine and Fugu rubripes genes.
37                                    The draft Fugu rubripes genome was released in 2002, at which time
38  7q36 chromosomal region and the pufferfish (Fugu rubripes) genome.
39  then compared mouse, human, and pufferfish (Fugu rubripes) genomic sequences, and identified a conse
40                      The Japanese pufferfish Fugu rubripes has a 400 Mb genome with high gene density
41 he beta-amyloid precursor protein (APP) from Fugu rubripes has been completely sequenced.
42                        The compact genome of Fugu rubripes has been sequenced to over 95% coverage, a
43                            The puffer fish ( Fugu rubripes ) has a compact genome of 400 Mbp which is
44 lood coagulation scheme for the puffer fish, Fugu rubripes, has been reconstructed on the basis of or
45        The compact genome of the pufferfish, Fugu rubripes, has proven a valuable tool in comparative
46 esting preliminary data from analysis of the Fugu rubripes homolog of APP has shown an unusually high
47 ned and sequenced 60 kb from the pufferfish (Fugu rubripes) lck locus.
48 are conserved in human-pufferfish, Takifugu (Fugu) rubripes, or ultraconserved in human-mouse-rat.
49 d 65% identity to the human and puffer fish (Fugu rubripes) p55 sequences, respectively.
50 h Caenorhabditis elegans and the puffer fish Fugu rubripes, suggesting that this eIF-2alpha kinase pl
51  a putative CB2 ortholog in the puffer fish (Fugu rubripes T012234) suggests it may encode a CBR othe
52 ied the Hox gene clusters of a teleost fish, Fugu rubripes, to test the possibility that Hox organiza
53                  A putative IFN from puffer, Fugu rubripes, was also found when zfIFN was used to sea

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