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1 graphic histories, artificial selection, and crossbreeding.
3 ptor-deficient (Ldlr(-)(/)(-)) background by crossbreeding Abca1(fl/fl)Abcg1(fl/fl)Ldlr(-/-) mice wit
4 ency (TFPI(+/-)/apoE(-/-)) were generated by crossbreeding, and they were analyzed for atherosclerosi
9 ted a double mutant line of stg-BDNF mice by crossbreeding BDNF-overexpressing transgenics with stg m
10 breeding, which, in addition to conventional crossbreeding, can all facilitate accelerated integratio
11 tion experienced by the genomes subjected to crossbreeding carried out over the last few generations,
12 double-deficient (LDLr-/- Cat L-/-) mice by crossbreeding Cat L-null (Cat L-/-) and LDLr-deficient (
13 OTI transgenic reporter mice were created by crossbreeding DsRed-expressing B6.Nagy mice with B6.OTI
15 population of Pacific oysters and classical crossbreeding experiments, we compare the segregation ra
16 t not CD18(-/-)CD62P(-/-), mice generated by crossbreeding failed to thrive, reaching a maximum body
17 BP5 knockdown mouse model was established by crossbreeding Fkbp5(flox/flox) mice with Myh6(MerCreMer/
20 We studied new lines of mice generated by crossbreeding mice that express slow skeletal troponin I
21 e-targeted VEGF deficient mice (mVEGF-/-) by crossbreeding mice that selectively express Cre recombin
22 induced organ growth, elimination of p53, by crossbreeding MT-hGHRH mice to p53-deficient mice, did n
24 cribe the generation of FRDA mouse models by crossbreeding of both lines of human FXN YAC transgenic
25 (hLAL) in Lipa(-/-) mice was established by crossbreeding of CCSP-driven rtTA transgene and (TetO)7-
29 significantly, the offspring produced by the crossbreeding of these two lines, the progeny (whose gen
31 nalysis of the simultaneous effect of Jersey crossbreeding on productivity, health, fertility paramet
32 Hnrnpf knockout (KO) mice were generated by crossbreeding Pax8-Cre mice with floxed Hnrnpf mice on a
33 utant mouse model (PLN-/-/RyR2-R4496C+/-) by crossbreeding PLN-KO mice with catecholaminergic polymor
36 elial-specific Stat3 knockout mouse model by crossbreeding Stat3(floxed/KO) and Tie2-Cre(ERT2) mice.
37 TLs have been identified in association with crossbreeding strains of mice or rats with variable susc
38 ects, although playing a significant role in crossbreeding systems, cannot be modeled under such a pr
39 hypercholesterolemia and atherosclerosis by crossbreeding the apolipoprotein E (apoE)-deficient mous
40 sing/D2 receptor deficient mice generated by crossbreeding the D2 knockout mice and the D1 transgenic
41 ge-specific deletion of Rac1 or Rac1/Rac2 by crossbreeding the Mx-Cre or Lck-Cre transgenic mice with
43 wel resection, an effect that was rescued by crossbreeding these mice with epidermal growth factor tr
45 ecific LKB1-knockout (LKB1(endo-/-)) mice by crossbreeding vascular endothelial-cadherin-Cre mice wit
48 to cardiac pressure overload stimulation and crossbreeding with mice containing cardiac-specific tran