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G Brem

Publications and source records attributed to G Brem.

At least 73 records · Page 4Linked to original sources

Mitochondrial D-loop sequence variation among the 16 maternal lines of the Lipizzan horse breed.

Mitochondrial DNA from 49 Lipizzan horses representing 16 maternal lines from the original stud at Lipica was used for SSCP analysis and DNA sequencing. The SSCP analysis of the 444 bp long fragment of the D-loop region extending from the tRNA(Pro) gene to the central conserved sequence block revealed three distinct groups of SSCP patterns. Both ends of the D-loop region (378 bp and 310 bp), which are considered as the most variable regions within the mammalian mitochondrial DNA, were sequenced. According to 49 polymorphic sites identified within the both parts of the D-loop region, the 16 maternal lines were grouped into 13 distinct mitochondrial haplotypes. The minimal difference between two different haplotype DNA sequences was one nucleotide and the maximal 24 nucleotides. The inheritance of mitochondrial haplotypes was stable and no sequence variation potentially attributable to mutation within maternal line was observed. Considerable DNA sequence similarity of Lipizzan mitochondrial haplotypes with the haplotypes from other breeds was observed. Phylogenetic analysis of the sequence data revealed a dendrogram with three separated branches, supporting the historical data about the multiple origin of the Lipizzan breed.

Animals↗

Pregnancy rate after ultrasound-guided follicle aspiration in nonlactating cows from different breeds.

Thirty-six cows (21 Simmental, 5 Holstein-Frisian, 5 Brown Swiss and 5 Charolais) with high genetic superiority were punctured by ultrasound-guided follicle aspiration within the last 18 months for 503 times under equal conditions. Follicle aspiration was done twice per week. Most of the donor cows suffered from several disturbances of fertility. On average, 5 oocytes per session were collected. After in vitro maturation (IVM), fertilisation (IVF) and culture (IVC), 0.8 embryos per puncture session were transferred. After evaluation of the embryos by morphological criteria, these embryos were transferred to heifers that were oestrus synchronised (2.0 ml Estrumate i.m.) seven days after onset of oestrus. On day 21 after onset of oestrus the progesterone level in plasma was determined by radioimmunoassay. The pregnancy control was performed by ultrasound on day 35. After transfer of 397 embryos (to synchronised heifers), 125 pregnancies were established. Comparison of the different breeds and donor cows revealed significant differences in the number of oocytes recovered, embryos produced and pregnancies established. Transfer of embryos with insufficient morphological quality resulted in increased rates of embryonic loss between day 21 and day 35.

Animals↗

Overgrowth of skin in growth hormone transgenic mice depends on the presence of male gonads.

Growth hormone has been shown to possess stimulatory effects on various connective tissues. We observed that skin growth in male rat phosphoenolpyruvate carboxykinase-bovine growth hormone transgenic mice (serum growth hormone levels: 740-1940 ng per ml) is progressive with age, resulting in an "oversized coat" phenotype with a marked increase in absolute and relative skin weight and surface area, and in thickness of the dermis. Histologic changes include severe dermal fibrosis and replacement of subdermal adipose tissue by fibrous tissue. Apart from an increase in skin surface area, these changes were not noted in female transgenic mice, arguing for a specific interaction of growth hormone with male sex hormones. To clarify this point, 6 wk old male transgenic mice and control mice were castrated and compared with their noncastrated counterparts in parameters of skin growth at an age of 8 mo. The skin weight of castrated transgenic mice was smaller (p < 0.01) than that of intact transgenic mice both absolutely and relative to body weight. The relative skin weight of castrated transgenic mice was in the same range as in intact and castrated control mice. Absolute and relative skin area of castrated transgenic mice was greater (p < 0. 001 and p < 0.05) than in controls but lower than in intact transgenic mice (p < 0.001 and p < 0.05). When compared with control mice, intact transgenic mice displayed an increase (p < 0.01) in the thickness of dermis. In castrated transgenic mice the thickness of the dermis was in the same range as in control mice. Our findings demonstrate a specific interaction of growth hormone with male sex hormones resulting in a marked stimulation of skin growth.

Androgens↗

Distribution of dinucleotide microsatellites in the Drosophila melanogaster genome.

Microsatellites, a special class of repetitive DNA, have become one of the most popular genetic markers. The progress of various genome projects has made it possible to study the genomic distribution of microsatellites and to evaluate the potential influence of several parameters on their genesis. We report the distribution of dinucleotide microsatellites in the genome of Drosophila melanogaster. When considering only microsatellites with five or more repeat units, the average length of dinucleotide repeats in D. melanogaster is 6.7 repeats. We tested a wide range of parameters which could potentially influence microsatellite density, and we did not detect a significant influence of recombination rate, number of exons, or total length of coding sequence. In concordance with the neutral expectation for the origin of microsatellites, a significant positive correlation between AT content and (AT/TA)n microsatellite density was detected. While this pattern may indicate that microsatellite genesis is a random process, we also found evidence for a nonrandom distribution of microsatellites. Average microsatellite density was higher on the X chromosome, but extreme heterogeneity was observed between different genomic regions. Such a clumping of microsatellites was also evident on a more local scale, as 38.9% of the contiguous sequences analyzed showed a deviation from a random distribution of microsatellites.

Animals↗

Effects of serum starvation and re-cloning on the efficiency of nuclear transfer using bovine fetal fibroblasts.

The developmental potential of bovine fetal fibroblasts was evaluated using nuclear transfer. Fibroblasts from a 37-day-old fetus were fused to enucleated oocytes before activation. Nuclei of starved (cultured for 8 days in medium containing 0.5% serum) fibroblasts supported the development of reconstructed embryos to the blastocyst stage significantly better than those of non-starved fibroblasts (39% versus 20%; P < 0.05). When nuclear transfer morulae derived from starved or non-starved fibroblasts were used for re-cloning, the proportion of blastocysts (52 and 55%, respectively) obtained with these embryonic nuclei was significantly higher than it was with fibroblast nuclei used in the first round of nuclear transfer (P < 0.05 and P < 0.001, respectively). After transfer of blastocysts derived from non-starved and starved fibroblasts, respectively, 33% (1/3) and 78% (7/9) of recipients were pregnant on day 30 as assessed by ultrasonography. On day 90, the corresponding pregnancy rates were 33% (1/3) and 63% (5/8). Two live male twin calves, derived from non-starved fibroblasts, were delivered by Caesarean section at day 281 of gestation. This study demonstrates a positive effect of serum starvation on the efficiency of nuclear transfer using bovine fetal fibroblasts. The efficiency of nuclear transfer could be further increased by recloning.

Animals↗

[Xenotransplantation. Possibilities of animal breeding].

The pig is the most likely donor organism for xenotransplantation of organs to humans. However, since this constellation is discordant, hyperacute rejection needs to be overcome. This review summarises current strategies of genetically modifying pigs for xenotransplantation. Limitations of the classical method of DNA-microinjection and new perspectives arising from the possibility of cloning animals from cultured cells are discussed.

Animals↗

Cardiac specific expression of the green fluorescent protein during early murine embryonic development.

We demonstrate the establishment of transgenic mice, where the expression of the green fluorescent protein (GFP) is under control of the human cardiac alpha-actin promoter. These mice display cardiac specific GFP expression already during early embryonic development. Prominent GFP fluorescence was observed at the earliest stage of the murine heart anlage (E8). Cardiomyocytes of different developmental stages proved GFP positive, but the intensity varied between cells. We further show that contractions of single GFP positive cardiomyocytes can be monitored within the intact embryo. At later stages of embryonic development, the skeletal musculature was also GFP positive, in line with the known expression pattern of cardiac alpha-actin. The tissue specific labeling of organs is a powerful new tool for embryological as well as functional investigations in vivo.

Actins↗

Nuclear transfer in mammals: recent developments and future perspectives.

A clone can be defined as a set of genetically identical animals. Small clones of two or occasionally up to four identical animals can be obtained by embryo splitting or blastomere separation. Embryo cloning by nuclear transfer involves the transfer of genetic material from a donor cell (karyoplast) to the cytoplasm of an oocyte or zygote from which the genetic material has been removed (cytoplast). In farm animals, metaphase II oocytes are most widely used as cytoplasts. There are now many factors known to influence the efficiency of embryo cloning by nuclear transfer. These include stage of development and cell cycle of donor cells, the choice of the recipient cell, the methods for activation of oocytes, the cell cycle coordination between donor cell and recipient cytoplast, and the method for fusion between nuclear donor and recipient cytoplast. Recent progress in cloning embryos and animals from cultured cells of embryonic, fetal, or adult origin offers a wide spectrum of potential applications of nuclear transfer, such as the unlimited multiplication of elite embryos or animals from selected matings and the potential for precise genetic modification of farm animals for gene farming or xenotransplantation.

Animals↗

A microsatellite-based multilocus phylogeny of the Drosophila melanogaster species complex.

Uncovering the genealogy of closely related species remains a major challenge for phylogenetic reconstruction. It is unlikely that the phylogeny of a single gene will represent the phylogeny of a species as a whole [1], but DNA sequence data across a large number of loci can be combined in order to obtain a consensus tree [2]. Long sequences are needed, however, to minimize the effect of (infrequent) base substitutions, and sufficient individuals must be sequenced per species to account for intraspecific polymorphisms, an overwhelming task using current DNA sequencing technology. By contrast, microsatellites are easy to type [3], allowing the analysis of many loci in multiple individuals. Despite their successful use in mapping [4,5], behavioural ecology [6] and population genetics [7], their usefulness for the phylogenetic reconstruction of closely related taxa has never been demonstrated, even though microsatellites are often conserved across species [8-10]. One drawback to microsatellite use is their high mutation rate (10(-4)-10(-2)), combined with an incomplete understanding of their mutation patterns. Many microsatellites are available for Drosophila melanogaster, and they are distributed throughout the genome [11]. Most can be amplified in the D. melanogaster species complex [12,13] and have low mutation rates [14, 15]. We show that microsatellite-specific distance measurements [16] correlate with other multilocus distances, such as those obtained from DNA-DNA hybridization data. Thus microsatellites may provide an ideal tool for building multilocus phylogenies. Our phylogenetic reconstruction of the D. melanogaster complex provides strong evidence that D. sechellia arose first, followed by a split between D. simulans and D. mauritiana.

Animals↗

Tubal transfer of bovine embryos: a simple endoscopic method reducing long-term exposure of in vitro produced embryos.

Although numerous trials had shown the need to define a procedure to get free access to the bovine oviduct, there was no adequate report of a technique which was accepted for the routine transfer of early tubal-stage embryos. We have now report an endoscopically mediated transvaginal method for transferring embryos into the oviduct. The in vitro produced embryos were loaded into a curved glass capillary tube which was connected to a perfusor tube plus 1-mL syringe. The capillary tube was directly inserted via the infundibulum into the ampulla. After first having checked the ovaries for the presence of a corpus luteum the embryos were deposited under visual guidance in about 20 to 50 microL medium. Twenty-four Simmental and Brown Swiss heifers received 26 embryos and 9 animals became pregnant, of which 7 recipients delivered 8 live calves. With practice, the time used for endoscopic transfer was reduced to less than 10 min. The results demonstrate that the described technique is suitable for practical application. Especially for the early transfer of IVP-derived embryos this technique might be advantageous. In conclusion, this method is also of great potential interest for the recovery of tubal-stage embryos and for the in vivo culture of embryos followed by conventional flushing at Day 7.

Animals↗

Comparison of ultrasound-guided vs laparoscopic transvaginal ovum pick-up (OPU) in simmental heifers.

Transvaginal ovum pick-up (OPU) offers several advantages over standard embryo transfer procedures. For a systematic comparison of the ultrasound-guided (U-OPU) and the laparoscopic OPU (L-OPU) method, groups of Simmental heifers were subjected to 1 of the 2 OPU-methods for 8 wk (15 sessions) followed by a treatment-free interval of 11 wk and then another 8-wk period of OPU using the alternative method. Parameters that were evaluated included the number of follicles aspirated, number and morphology of recovered cumulus-oocyte complexes (COCs), and developmental capacity of oocytes after in vitro maturation (IVM) and fertilization (IVF). Blood samples were also taken from the donors twice a wk for progesterone measurement. To evaluate effects of long-term OPU on subsequent fertility of donors, all heifers (n = 14) were inseminated during the first natural estrus after the OPU experiment. The proportion of Class I oocytes was significantly (P < 0.001) higher after U-OPU than after L-OPU (38.7% vs 21.0%). Following IVM/IVF, this difference in oocyte quality was reflected by the cleavage rate (U-OPU: 58.1%; L-OPU: 52.1%; P < 0.05) and the rate of development to morulae and blastocysts (U-OPU: 27.1%; L-OPU: 13.9%; P < 0.001). Among other factors, the greater changes in vacuum pressure during L-OPU vs U-OPU might be responsible for the difference in oocyte quality. This problem may be overcome by a more flexible system for regulating the vacuum. Progesterone levels were higher during the L-OPU than the U-OPU periods. Seven donors (50%) were diagnosed pregnant by ultrasonography on Day 28 and by palpation per rectum on Day 42.

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A functional eukaryotic promoter is contained within the first intron of the hGH-N coding region.

Human growth hormone is frequently used as a reporter gene in studies addressing the regulation of eukaryotic promoters. Here we present evidence that the first intron of the hGH-N coding region contains a novel eukaryotic promoter which is able to direct the expression of hGH-N and luciferase reporter genes. The corresponding transcriptional initiation site is located downstream of the splice acceptor site of exon 2. This internal hGH-N promoter can interfere with the transcriptional control elements of a promoter linked to the hGH-N coding region and thereby complicate the interpretation of data obtained with hGH-N as a reporter gene.

Animals↗

Genetic variation in functionally important domains of the bovine mtDNA control region.

DNA sequences of the mitochondrial control region (CR) of 32 unrelated Austrian cattle were analysed in order to determine the extent of variability in functionally important domains. Using sequencing of PCR products, allele-specific PCR (AS-PCR) and primer introduced restriction analysis (PIRA), 43 differences were observed. They included 33 transitions, five transversions, one deletion and four differences in the number of consecutive cytosines. Twenty-three of these polymorphisms have not been reported before. In addition, we analysed all available European cattle sequences for this region. The transcriptional start sites, the conserved sequence block CSB 1 and both binding sites for the mitochondrial transcription factor mtTFA were highly conserved. We found a transition in each of the inter-specifically conserved Mt4 and Mt5 elements, three nucleotide substitutions in the termination-associated sequence TAS-A and six polymorphisms in the conserved sequence block CSB 2+3, a region which has been implicated in mitochondrial RNA processing.

Animals↗

Composition of parental mitochondrial DNA in cloned bovine embryos.

We have investigated parental mitochondrial DNA (mtDNA) in cloned bovine embryos obtained by intraspecific cytoplast-blastomere fusion. Analysis of two-cell to blastocyst stage embryos revealed that in contrast to the exclusion of paternal (sperm) mtDNA during sexual inheritance in the cytoplast-blastomere fusion complexes, there was mixing and co-existence of parental mtDNA. The mixing of mtDNA was non-balanced with the minority deriving from the blastomere. The constant content of mtDNA during embryogenesis until the blastocyst stage suggesting an absence of mtDNA replication was shown for conventional 'in vitro fertilised' (IVF) embryos and for cloned embryos. The ratio of parental mtDNA was in accordance with the estimated quantitative participation of mtDNA from the fusion partners.

Animals↗

Non-balanced mix of mitochondrial DNA in cloned cattle produced by cytoplast-blastomere fusion.

We have investigated the transmission of parental mitochondrial DNA (mtDNA) in three clones of born cattle obtained by intraspecific cytoplast-blastomere fusion. Using allele-specific TaqMan PCR a low level transmission of blastomere mtDNA (DB mtDNA) into the cloned offspring was detected, thereby generating a heteroplasmic population of mtDNA. The amount of DB mtDNA was 13% and 18% in two animals of a clone which derived from a 24-cell morula and 0.6% and 0.4% in two calves of clonal origin derived from a 92-cell morula. These values are in accordance with the tendency expected for neutral mtDNA segregation that the fewer cell divisions that have occurred in the donor embryo, the higher the amount of DB mtDNA. We also found a strong decrease of DB mtDNA which was about three orders of magnitude in the third clone derived from a 52-cell morula stage.

Animals↗

A reliable procedure for differential staining of in vitro produced bovine blastocysts: comparison of tissue culture medium 199 and Ménézo's B2 medium.

A reliable double-dye technique has been established for counting the number of inner cell mass and trophectoderm cells of in vitro produced bovine blastocysts. The latter were first incubated in a 1:2 dilution of a rabbit antiserum raised against a mixture of recombinant bovine interferon tau and serum containing medium conditioned by in vitro produced trophoblastic vesicles for 45 min at 39 degrees C. Subsequently, the blastocysts were incubated in a 5% (v/v) solution of guinea pig complement in phosphate-buffered saline containing 50 micrograms/ml propidium iodide for 45 min at 39 degrees C. Then the blastocysts were transferred to ice-cold absolute ethanol containing 25 micrograms/ml bisbenzimide and evaluated under a fluorescence microscope. Since trophectoderm cells were permeabilised by antibody-mediated complement lysis, they were stained by propidium iodide (red or pink). Bisbenzimide can enter lysed and non-lysed cells and therefore stained also inner cell mass cells (blue) which had been protected from complement lysis by trophectoderm cells. This modified procedure proved to be very reliable for differential cell staining of bovine blastocysts produced under various culture conditions. A comparison of blastocysts produced in Ménézo's B2 vs. TCM 199 media (both supplemented with 10% serum from cows at oestrus) revealed significant (P < 0.01) differences in total cell numbers (119 +/- 24 vs. 84 +/- 10; mean +/- SD) and in the numbers of trophectoderm cells (79 +/- 19 vs. 57 +/- 8) and inner cells mass cells (40 +/- 7 vs. 26 +/- 5) between the two culture systems. The modified staining procedure presented here is a valuable tool for evaluating the quality of in vitro produced bovine blastocysts and for improving of culture conditions.

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