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D Roschlau

Publications and source records attributed to D Roschlau.

5 recordsLinked to original sources

Sex determination in cattle based on simultaneous amplification of a new male-specific DNA sequence and an autosomal locus using the same primers.

A PCR-based method for sex determination of bovine DNA samples and embryo biopsies is presented. Using only one primer pair both the male-specific sequence FBNY (127 bp) and a sex-independent control PCR-fragment, the microsatellite marker FBN17 (136-140 bp) are generated in the same PCR reaction. Synteny mapping assigned the male-specific sequence to bovine chromosome Y (BTA Y), whereas FBN17 was mapped to bovine chromosome 2. Localisation of FBNY on BTA Y was confirmed by fluorescence in hybridisation of two BAC clones containing the male-specific sequence. There was no amplification of the male-specific target sequence FBNY in sheep, pig, goat, mice, man, and several wild species of the tribe Bovini. The bovine male-specific fragment was detected in dilutions containing as little as 10 pg genomic DNA and in blastomeres from embryo biopsies. The PCR assay presented here does require neither restriction endonuclease digestion of the PCR product nor additional nested PCR steps. Owing to the advantage of parallel amplification of the autosomal locus FBN17 no additional control fragment is necessary to detect PCR failure. The results of sex determination in embryo biopsies using FBNY were in agreement with the outcome from a reference assay used in commercial breeding programs.

Animals↗

Quantification of Y chromosome bearing spermatozoa of cattle using in situ hybridization.

An easy assay for quantification of Y chromosome-bearing sperm (Y-sperm) is needed, especially to monitor sperm separation techniques. In the present study a tritiated bovine male-specific DNA fragment was tested for identification of Y-sperm by in situ hybridization. A protocol for in situ hybridization to bovine sperm was developed and used to study the proportion of Y-sperm of 12 bulls. The usefulness of the method in optimization of sperm separation procedures is illustrated through analysis of fractions of sperm separated by Percoll density gradient centrifugation.

Animals↗

Gene transfer experiments in cattle.

Various methods for gene transfer in cattle are described. Four vectors containing (1) the bovine papilloma virus DNA, (2) the alcohol dehydrogenase gene of Drosophila melanogaster, and the human (3) and the bovine (4) growth hormone gene were used for gene injection in bovine zygotes. The period between 78 and 82 h after prostaglandin treatment was determined as the optimum time for collection of bovine zygotes. A total of 802 eggs was obtained from 74 successfully superovulated heifers. The foreign DNA was injected into the pronuclei of 156 (Construct 1), 130 (Construct 2), 62 (Construct 3) and 250 (Construct 4) centrifuged zygotes. An average number of 12 zygotes per recipient heifer was transferred into one oviduct. The eggs were recovered after 14 days (Constructs 1 and 2) for analysis or after 7 days (Constructs 3 and 4) respectively for transfer into final recipients. After the transfer into 23 recipient heifers of 43 embryos (Construct 4), 14 calves were born and 1 fetal monster was isolated. According to dot-blot hybridization the total rate of efficiency of gene transfer was 3.2%, 6.9%, and 0.8% for Constructs 1, 2 and 4, respectively.

Animals↗

[Fat metabolism in growth-selected laboratory mice].

The object of the present study was to characterize the selection-conditioned differentiation of the biological performance of laboratory mice having been selected for 13 generations at the age of 6 weeks to body mass (Du-6) as well as simultaneously to body mass and high physical capacity (Du-6 + LB) by parameters of fat metabolism. The improved physical capacity with unchanged body composition (Du-6 + LB) coincides with increasing activity of dehydrogenases supplying NADPH (glucose-6-phosphate-dehydrogenase, 6-phosphate-gluconate-dehydrogenase, NADP-malate-dehydrogenase, NADP-isocitrate-dehydrogenase) in the liver. The doubling of the fat content of the body (Du-6) was accompanied by a significant increase of the G-6-PDH- and fatty-acid synthetase activity in the fatty tissue. Furthermore, the growth-selected animals showed an intensified transformation of 14C-glucose substrate in the lipids of the epididymal fatty tissues occurring especially at the selection age (42nd day) as well as at the earlier date of ontogenesis (32nd day). The insulin stimulation capacity of the fat cells as to the glucose incorporation, however, remained unchanged.

Adipose Tissue↗

Selection for different growth parameters in laboratory mice and its correlated effects on body composition and organ weights.

Body composition and organ weights were determined in male mice sampled from 4 different lines of a selection experiment: DU-6P (selected for high protein amount), DU-6 (selected for high body weight), DU-6 + LB (selected for an index combining body weight and endurance fitness) and DU-K (unselected control line). Selection was carried out under the conditions of ad libitum feeding and standardization of litter size at birth. In all 3 selection lines a significant direct selection response was shown. While fat in lines DU-6P and DU-6 + LB remained normal, it increased after selection for body weight (DU-6) significantly. Up to generation 13 the average increase of fat was 0.32% per generation. Investigations on 28 to 80 days old mice showed, that males of this line were fatter before, at and after the age of selection (42 days). After 9 generations the body weight of selected mice was significantly increased by 23 to 29%. The absolute organ weights of hearts, livers and kidneys were also significantly higher, while the relative weights of hearts and kidneys decreased. The relative liver weights were in the selected lines higher, but only the difference DU-6 vs. DU-K was significant.

Animals↗