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1                          We describe a novel caprine AAV (AAV-Go.1) capsid with unique biological pro
2  the impact of H. contortus infection on the caprine abomasal microbiome.
3                  Our comparative analysis of caprine age and sex structures and related evidence reve
4                            Comparison of the caprine and bovine cDNAs reveals that 96.3% of the nucle
5    beta-Lactoglobulin (betalg) proteins from caprine and bovine milk are sequentially and structurall
6  their ability to suppress the expression of caprine and bovine prion protein (PrP).
7 e analyzed genotype data generated using the caprine and ovine 50K SNP BeadChips from Barki goats and
8  syntenic segment to bovine chromosome 12 on caprine and ovine chromosomes 12 and 10, respectively, p
9    At 75 degrees C/15 s, plasmin activity in caprine and ovine milk decreased (69-75%, p<0.05), while
10 curring large animal (canine, feline, ovine, caprine, and bovine) models been so essential for unders
11 on in a sample of 28 closely related bovine, caprine, and ovine family members that are expressed onl
12 coinfected with a small-ruminant lentivirus (caprine arthritis encephalitis virus-Cork strain) and Pr
13 us, Jembrana disease virus, visna virus, and caprine arthritis encephalitis virus.
14 the gp135 glycoprotein of the small ruminant caprine arthritis-encephalitis (CAEV) and visna lentivir
15 face glycoproteins (SU) of the 63 isolate of caprine arthritis-encephalitis lentivirus (CAEV-63).
16 35 of the lentiviruses maedi-visna virus and caprine arthritis-encephalitis virus (CAEV) and human im
17 ntiviruses ovine maedi-visna virus (MVV) and caprine arthritis-encephalitis virus (CAEV) cause enceph
18                                          The caprine arthritis-encephalitis virus (CAEV) long termina
19  experimentally infected with the lentivirus caprine arthritis-encephalitis virus (CAEV) were evaluat
20 ovirus (CMV) immediate early promoter or the caprine arthritis-encephalitis virus long terminal repea
21 ike prototypical lentiviruses like visna and caprine arthritis-encephalitis viruses, which are mainly
22                 The complete sequence of the caprine beta-mannosidase cDNA coding region has been det
23 the mutation and that obligate carriers in a caprine beta-mannosidosis colony were heterozygous.
24 ined, and a mutation that is associated with caprine beta-mannosidosis has been identified.
25 ore conformational flexibility compared with caprine betalg.
26  analyzed an extensive database of published caprine biometric data spanning the Epipaleolithic throu
27 erimental conditions optimized for SRM 955c (caprine blood) are not valid for human blood samples as
28 ied values in the analysis of NIST SRM 955c (Caprine Blood) Level 3 and the certified human hairs IAE
29          Adult stem cells were isolated from caprine bone marrow, expanded in culture, and transduced
30 c databases, known US genes were identified (caprine, bovine, porcine, water buffalo), and new US cod
31 fically amplified small amounts of ovine and caprine BSE agent which had been mixed into a range of s
32  < 0.05) after 24 hours' implantation in the caprine carotid artery.
33  allergen and the adulteration of high-value caprine dairy products with lower-value bovine milk prod
34 lls (PBMC) and the sera, respectively, of Tc caprine demonstrated the successful expression of human
35 le of discriminating between wild bovids and caprine domesticates.
36          Asikli was an independent center of caprine domestication and thus supports the multiple ori
37 tes the initial conditions and trajectory of caprine domestication at Asikli Hoyuk, which preserves a
38 l viruses like the hepatitis E virus and the caprine encephalitis virus, and in mRNAs such as those c
39 ld mammalian herbivores, domestic cattle and caprines, fish, and birds.
40 d workload and greater mobility required for caprine herding and other resource acquisition activitie
41 herpesvirus 1, alcelaphine herpesvirus 2 and caprine herpesvirus 2, may be part of a separate clade w
42 d an economy based on cereal agriculture and caprine husbandry, but there is still little information
43                                  Recombinant caprine IFN-gamma (rCaIFN-gamma) secreted by transfected
44        The predicted aa sequence homology of caprine IFN-gamma and the corresponding ovine, bovine an
45 2, and 0.66 ng mL(-1) for bovine, ovine, and caprine IgGs, respectively, which are lower than those o
46                 Age-sex distributions of the caprines in upper Level 4 indicate selective manipulatio
47                                              Caprine interferon-gamma (IFN-gamma) cDNA was cloned fro
48 f is strongly conserved across the ovine and caprine lentiviruses, implying a critical functional rol
49 d to collect blood from ruminants, primarily caprines, likely for the production of sausages in a man
50  few centuries to an exceptional emphasis on caprines (mainly sheep).
51                                              Caprine management at Asikli segued through three viable
52  evidence demonstrate an emergent process of caprine management that was highly experimental in natur
53 8.3%) indicating strong interactions between caprine milk casein micelles and pollen polyphenols.
54 lative frequency of appearance was higher in caprine milk for the majority of identified terpenes.
55  fatty acid and terpene profile of ovine and caprine milk from animals raised under a semi-extensive
56 ed in the majority of the examined ovine and caprine milk samples suggesting that its presence could
57 ad better nutritional value in comparison to caprine milk that had an enriched terpene profile than o
58 nd elastase activities in bovine, ovine, and caprine milk, compared to non-dried raw milk counterpart
59 variation of polyamine content, in ovine and caprine milk, from indigenous Greek breeds.
60  retinyl oleate is the prevalent form in the caprine milk.
61  both n-6 and n-3 fatty acids in relation to caprine milk.
62 ed here was to develop a subacute to chronic caprine model of melioidosis and to characterize the pro
63  characterized the MHC isoforms in different caprine muscles using sodium dodecyl sulphate glycerol g
64                      As a small ungulate, Tc caprine offers the advantages of low cost and quick esta
65  current study, goats were infected with the caprine pathogen Mycoplasma mycoides subsp. capri or an
66 e classifier to automate pain recognition in caprine patients in hospital settings, evaluating differ
67                                   Contagious caprine pleuropneumonia (CCPP) is a highly contagious di
68  capripneumoniae (causal agent of contagious caprine pleuropneumonia [CCPP]), against which M375 anti
69 ntigen in the serum of goats with contagious caprine pleuropneumoniae (CCPP).
70  PadA was able to activate bovine, ovine and caprine Plg, but not human Plg.
71  Stabling was one of the early mechanisms of caprine population isolation, a precondition to domestic
72                                          The caprine reference sequence of this gene was completed an
73      The second mode paired modest levels of caprine reproduction on site with continued recruitment
74   Spermidine was the prevailing polyamine in caprine samples, reaching levels up to 4.41 mumol/l on t
75  novel biological agents such as hyperimmune caprine serum are being developed based on new insights
76 thod allowing us to detect bovine, ovine and caprine species and authenticate Greek PDO Feta cheese.
77 Mycoplasma capricolum, an organism infecting caprine species.
78                    Large bovine and roe deer/caprine tracks were found in at least five horizons of t
79                             Sheep and goats (caprines) were domesticated in Southwest Asia in the ear
80 he (87)Sr/(86)Sr in tooth enamel of domestic caprines whose mobility was monitored using GPS tracking
81              Furthermore, immunization of Tc caprine with inactivated influenza A (H7N9) viruses foll
82 ered with animal strains, such as bovine and caprine, with similarity identities ranging from 89.1 to