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1  conservation of the seven Cbfa sites in the Gallus and human BSP promoters, suggest that suppressor
2 es for two species of Perdix, two species of Gallus, and Lagopus lagopus and L. mutus also indicate a
3 volvement of Cbfa sites in expression of the Gallus BSP gene.
4                 Responsiveness of the 1.2-kb Gallus BSP promoter to Cbfa factors Cbfa1, Cbfa2, and Cb
5  the developing optic tectum of the chicken (Gallus domesticus) and performed in ovo retroviral trans
6                            The chick embryo (Gallus domesticus) is one of the most important model sy
7 estigated in soil and chicken feed, chicken (Gallus domesticus) tissues, eggs on 0, 7, and 14 days af
8 nical nociceptors of monoarthritic chickens (Gallus domesticus) were studied by recording the electri
9                                    Chickens (Gallus domesticus) were trained on a multiple alternativ
10 y hepatocyte cultures prepared from chicken (Gallus domesticus), Pekin duck (Anas platyrhynchos domes
11  rods in cone dominant retinas from chicken (Gallus domesticus), turkey (Meleagris gallopavo), and pi
12                                      GEISHA (Gallus Expression In Situ Hybridization Analysis) is an
13 idopsis, Oryza sativa (rice), Drosophila and Gallus gallus (chicken).
14                                              Gallus gallus (Gg) laforin is more stable in vitro than
15  Bos taurus, Rattus norvegicus, Danio rerio, Gallus gallus and Arabidopsis thaliana).
16 ith zebra finch Taeniopygia guttata, chicken Gallus gallus and the green anole lizard Anolis caroline
17 to those of the inner centromere proteins of Gallus gallus and Xenopus laevis, which are mitotic phos
18 nce in sensitivity between domestic chicken (Gallus gallus domesticus) and common tern (Sterna hirund
19  one such behavior, the crowing of chickens (Gallus gallus domesticus) and Japanese quail (Coturnix c
20                                     Chicken (Gallus gallus domesticus) is today one of the most wides
21                In domestic leghorn chickens (Gallus gallus domesticus) sexual maturation brings about
22 n of a specific neuronal circuit in chicken (Gallus gallus domesticus) with that of the GFP quail.
23 tica, Equus caballus, Oryctolagus cuniculus, Gallus gallus domesticus, Meleagris gallopavo and Coturn
24  male reproductive senescence in feral fowl, Gallus gallus domesticus, where socially dominant males
25 cine site ligands with tubulin isolated from Gallus gallus erythrocytes (CeTb), which is approximatel
26 o sex determination of the domestic chicken (Gallus gallus f. dom.) already at day 3.5 of egg incubat
27 er and a partial cDNA for DNA POL gamma from Gallus gallus have been cloned.
28 thaliana ubiquitin-conjugating enzyme, and a Gallus gallus mRNA zipcode-binding protein.
29               This indicator is based on the Gallus gallus voltage-sensitive phosphatase with the pho
30                                          The Gallus gallus Z chromosome provides a useful opportunity
31 d, epithelial beta-defensins of the chicken (Gallus gallus) and turkey (Meleagris gallopavo), respect
32  microsatellite markers against the chicken (Gallus gallus) and zebra finch (Taeniopygia guttata) gen
33 alis), zebrafish (Danio rerio), and chicken (Gallus gallus) and, using phylogenetic analysis, identif
34              We investigated LD in chickens (Gallus gallus) at the highest resolution to date for bro
35 on under native regulatory control in chick (Gallus gallus) embryos, our findings show that SHH is un
36 multi-photon time-lapse microscopy of chick (Gallus gallus) embryos, we reveal a medio-lateral cell i
37    Here, a detailed analysis of the chicken (Gallus gallus) genome identified 10 clade B serpin genes
38 l rearrangements between it and the chicken (Gallus gallus) genome, revealing a surprisingly high num
39 is orthologous to the human and the chicken (Gallus gallus) HDAC3 genes.
40 in a single generation of a broiler breeder (Gallus gallus) pedigree dam line.
41  specifically expressed in distinct chicken (Gallus gallus) photoreceptor subtypes, we developed fluo
42  peptides (QCAT protein) from several chick (Gallus gallus) skeletal muscle proteins and features for
43  the use of bovine (Bos taurus) and poultry (Gallus gallus) specific primers that amplify small fragm
44 dius alimentum), and the non-native chicken (Gallus gallus) suggests that anthropogenic loss of the f
45 ical MHC class I genes found in the chicken (Gallus gallus) that have sequence homology to the mammal
46   Here we trained 4-day-old domestic chicks (Gallus gallus) to respond to stimuli depicting multiple
47 aring significant homology with the chicken (Gallus gallus) VgR and particularly the Drosophila melan
48                                      Chicks (Gallus gallus) were raised in either a 12-hour light-dar
49 tsynaptic targets in the tectum of chickens (Gallus gallus) with neural tracers and performed an ultr
50  fasciatus), frog (Xenopus laevis), chicken (Gallus gallus), chameleon (Anolis carolinensis), goat (C
51 us leucas), toadfish (Opsanus tau), chicken (Gallus gallus), hagfish (Myxine glutinosa), horseshoe cr
52                                 In chickens (Gallus gallus), NL is a well-studied model system for ac
53 hus mykiss), frog (Xenopus laevis), chicken (Gallus gallus), rat (Rattus norvegicus), mouse (Mus musc
54                                 In chickens (Gallus gallus), three pathways arise from nucleus lamina
55  lymphopoiesis, such as that of the chicken (Gallus gallus).
56 low-frequency cochlear regions of the chick (Gallus gallus).
57  auditory telencephalon of an avian species (Gallus gallus).
58  SON neurons in NL was examined in chickens (Gallus gallus).
59 e typical avian model, the domestic chicken (Gallus gallus).
60 barn owl (Tyto alba) and the domestic chick (Gallus gallus).
61 of sexual size dimorphism in red junglefowl (Gallus gallus).
62  connections of Imc were examined in chicks (Gallus gallus).
63 ed partial cDNA clone for SSDP from chicken (Gallus gallus).
64                                      Chicks (Gallus gallus, Cornell K Strain) were raised either unde
65                                     Chicken, Gallus gallus, is a valuable species both as a food sour
66 ncluding Caenorhabditis elegans, Drosophila, Gallus gallus, Mus musculus, and Homo sapiens.
67 licate seminatural groups of red junglefowl, Gallus gallus, polyandry eroded variance in male mating
68 model organisms: Homo sapiens, Mus musculus, Gallus gallus, Rattus norvegicus, Arabidopsis thaliana,
69 be the draft genome sequence of the chicken, Gallus gallus, the first species sequenced that is both
70  proteome of the polyandrous Red junglefowl, Gallus gallus, the wild species that gave rise to the do
71  bulbs to the caudal end of the brainstem in Gallus gallus.
72 ion of UCN3 mRNA in a sauropsid-the chicken, Gallus gallus.
73 mic and other information about the chicken, Gallus gallus.
74 and expression of DNase II from the chicken, Gallus gallus.
75 ated RNase A ribonucleases from the chicken, Gallus gallus.
76 raft genome sequence of the red jungle fowl, Gallus gallus.
77  of unprecedented sophistication in the fowl Gallus gallus.
78                                              Gallus GBrowse provides online access to genomic and oth
79                         These tools make the Gallus GBrowse server a valuable resource for researcher
80  the avian ciliary ganglion, we identified 6 Gallus genes by their homology in structure to mouse lyn
81 abditis elegans, Drosophila melanogaster, G. gallus, Homo sapiens, Mus musculus or Rattus norvegicus
82 genes and Gene Ontology (GO) terms, links to Gallus In Situ Hybridization Analysis (GEISHA), Unigene
83     Expression of the endogenous BSP gene in Gallus osteoblasts was similarly downregulated by forced
84  melanogaster, and the C-terminal half of G. gallus, respectively.
85 after the three genera diverged but prior to Gallus speciation.

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