PubMed Health⌕ Search

Biomedical subjects

R N Shoffner

Publications and source records attributed to R N Shoffner.

35 records · Page 2Linked to original sources

Sister chromatid exchange in chromosomes of cattle (Bos taurus).

Lymhocytes from clinically healthy Holstein animals (8 males and 23 females) were cultured in media containing 5-bromodeoxyuridine (10 microgram/ml) for two cycles of deoxyribonucleic acid replication (48 h). The exchange of sister chromatids per cell varied from 1 to 16 with a mean of 5.4 and a standard deviation of 2.1 in 603 differentially stained metaphase chromosome spreads. The major fraction of exchanges in the X chromosome were located in the region of the subcentromeric G negative bands q1 and q2. When the cells were pulse labeled with tritium labeled thymidine (1 muCi/ml) for the last 6 h of the cell cycle, the rate of exchange was higher in the late replicating X chromosome (facultative heterochromatin) in comparison to its homologue (active X). This study characterizes the yield of sister chromatid exchange in lymphocytes exposed to a given amount of 5-bromodeoxyuridine in a population of normal individuals so that it may be used as a standard for 1) a diagnostic tool in pathological conditions and 2) as an assay of chromosome stability in relation to environmental hazards.

Animals↗

Intersexes and sex determination in chickens.

Chickens sexed as females in commercial flocks show a low frequency of intersex individuals. Gross anatomical examination of the intersexes revealed malformed gonads. Histological examination proved that these gonads were not ovotestes but were composed of testicular tissues. Karyotype analysis of 15 intersex individuals showed 13 of them to be 3A-ZZW triploids (normal females are 2A-ZW) while the other 2 were mosaic for male and female karyotypes. Red blood cell volume accurately reflects the ploidy level and is suggested for use in screening for polyploids. Intersex triploids may develop parthenogenetically or from fertilization between reduced and unreduced gametes.

Animals↗

Estimating meiotic disjunction frequencies in chicken translocation heterozygotes based on embryonic mortality.

Chickens heterozygous for a chromosomal translocation [MN t(1;4)] were intercrossed and the progeny were analyzed for their chromosome complement. A ratio of 1 homozygous translocation carrier to 4 heterozygous translocation carriers to 1 homozygous standard chromosome carrier was noted (n = 520), rather than the 1:2:1 ratio expected from Mendelian segregation. The excess of heterozygous carriers was apparently caused by union of complementary duplication/deficient gametes. Embryonic death occurred in 68% of fertile zygotes. This finding fits very closely to expectations if alternate and adjacent meiotic disjunctions occurred at equal frequencies. As alternate disjunction frequencies increase from 0.5 to 1.0 in inter se matings, the proportion of inviable zygotes among fertilized ova will decrease from 0.625 to 0 and the proportion of translocation heterozygotes among viable progeny will decrease from 0.667 to 0.5. In instances where alternate and adjacent disjunction occur at equal frequency, preferential recovery of translocation carriers will occur. This may contribute to chromosomal diversity within a species, and possibly lead to speciation.

Animals↗

Mapping of the growth hormone gene by in situ hybridization to chicken chromosome 1.

In situ hybridization of a tritium-labeled chicken growth hormone cDNA to 62 chicken metaphase chromosome spreads was examined by analysis of silver grain distribution. A total of 554 chromosomally located grains were recorded. There was a highly significant P value for the association of silver grains to the long arm of chromosome 1. The chicken growth hormone gene can be assigned to chromosomal G-band region 1q4 because 41.3% of silver grains on chromosome 1q were located in this region.

Animals↗