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1 graphic histories, artificial selection, and crossbreeding.
2                                           By crossbreeding 2.3 kb Col 1a1-Cre mice with Fam20C (flox/
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
5             Transgenic mice were produced by crossbreeding animals of the pUR288 transgenic C57BL/6 a
6                                        Using crossbreeding approaches to selectively restore or overe
7                                           By crossbreeding Asah1(fl/fl)/Podo(Cre) mice with Smpd1(-/-
8                 Eosinophilia was provoked by crossbreeding Atg5eo mice with Il5 (IL-5) overexpressing
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
14                                              Crossbreeding experiments with Alox15 knockout mice conf
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/
18                               We did this by crossbreeding human IAPP transgenic mice with RIP-Tag mi
19                                              Crossbreeding is a cornerstone of modern livestock impro
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
23                                              Crossbreeding of Apob(27.6/27.6) and Apob(38.9/38.9) pro
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-
26                                              Crossbreeding of CysBKO mice with either CysC-overexpres
27                                              Crossbreeding of PGC-1alpha knockout (KO) mice with HD k
28                                              Crossbreeding of Tg(flk:mCherry) fish, which allows visu
29 significantly, the offspring produced by the crossbreeding of these two lines, the progeny (whose gen
30                                              Crossbreeding of UCHL1-eGFP and hSOD1(G93A) lines genera
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
34                                         This crossbreeding resulted in the generation of PLB/cTnI, PL
35  farms; and using such alternative breeds in crossbreeding schemes may be recommended.
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
42                      We also discovered that crossbreeding the two CAM models (double CAM alpha(1)A/B
43 wel resection, an effect that was rescued by crossbreeding these mice with epidermal growth factor tr
44                                              Crossbreeding to MMTV-transforming growth factor (TGF)-a
45 ecific LKB1-knockout (LKB1(endo-/-)) mice by crossbreeding vascular endothelial-cadherin-Cre mice wit
46                                        After crossbreeding with EIIa-cre transgenic mice, recombinati
47                                        After crossbreeding with female mice of the EIIa-cre strain, t
48 to cardiac pressure overload stimulation and crossbreeding with mice containing cardiac-specific tran
49      UCP2-/- mice were exposed to obesity by crossbreeding with ob/ob mice and by long-term high-fat
50                                           By crossbreeding WT/D213A-Tg mice with Dmp1 knock-out (Dmp1