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Biomedical subjects

R G McDaniel

Publications and source records attributed to R G McDaniel.

10 recordsLinked to original sources

Cytoplasmic genetic effects and growth of hybrid mice.

Variation in cellular biochemical functions controlled by cytoplasmic genes was studied in relation to phenotypic differences between progeny of reciprocal hybrid female mice. Least squares procedures were used to test for differences in mitochondrial respiratory metabolism and in capacity for ATP synthesis, and differences in growth of progeny of hybrid dams. Under identical nuclear influences, mitochondria of A/J and C57BL/6J cytoplasms differed (P less than .10 to P less than .01) from those of BALB/cJ cytoplasm in energy conservation. No differences were detected in mitochondrial efficiency between BALB/cJ cytoplasm evaluated in different nuclear environments. Three-way cross progeny of C57BL/6J x BALB/cJ reciprocal hybrid females mated to DBA/2J males differed (P less than .05) in litter weight at weaning and 1 wk and 2 wk postweaning. The F2 progeny of reciprocal C57BL/6J x BALB/cJ dams and F2 and three-way cross progeny of reciprocal A/J x BALB/cJ dams did not differ in weight at any age measured. Across all genotypes of dam, rank correlations of mitochondrial traits with F2 litter weights were nonsignificant. Observed variation in mitochondrial functions partially controlled by cytoplasmic genes did not limit mouse growth under these experimental conditions.

Adenosine Triphosphate

Mitochondrial respiratory metabolism and performance of cattle.

Two groups of cows were sampled to study variation of mitochondrial metabolism. The first group included 10 lactating and five gestating Holstein cows, representing available phenotypic extremes for milk yield. The second group included 13 Angus, 13 Brangus and 13 Hereford cows, representing available extremes within breeds for growth breeding value ratios. Consistently poor mitochondrial samples were obtained from gestating cows; these were excluded from analyses. Linear correlations of Holstein mitochondrial respiratory activities with sire-predicted difference for milk and milk fat ranged from -.35 to .15. Correlations of dam and cow indices and cow yields for milk with acceptor-stimulated mitochondrial respiration, oxidative phosphorylation efficiency (adenosine diphosphate:oxygen ratio [ADP:O ratio]) and adenosine triphosphate (ATP) synthesis rate were .25 to .48, consistently higher than for milk fat, -.06 to .17. No differences among beef breeds in mitochondrial respiration rates, coupling of respiration to phosphorylation, ADP:O ratio or ATP synthesis rate were detected by repeated measures analyses of variance. No patterns were evident among correlations of the mitochondrial characteristics and growth and milk traits in beef cattle. These initial findings indicate that variability in the mitochondrial respiratory activities measured has less relation to weaning and yearling growth traits of beef cattle than to milk yield of Holstein cattle.

Animals

Hepatic mitochondrial activity in two breeds of chicken.

Respiration rates and efficiencies of oxidative phosphorylation of hepatic mitochondria from mature Hubbard White Mountain Cross broiler and White Leghorn layer hens were compared. Broiler hen mitochondria consistently tended to exhibit higher succinate-supported State 3 respiration rate, respiratory control ratio, and ratio of adenosine diphosphate to oxygen, although breed differences were not statistically significant. Within-breed variation in mitochondrial activity was not associated with body weight or egg production. Hepatic tissue of broiler hens yielded significantly more protein in the mitochondrial fraction than tissue of layer hens. In vitro mitochondrial mixtures representing equal wet tissue weights from each breed showed mitochondrial activity intermediate between the two breeds.

Animals

Histones and histone-DNA ratios in diploid and polyploid cottons.

Histones are nuclear proteins which repress gene transcription and modify chromosome structure. They are remarkably conservative in structure throughout a wide evolutionary array of plants and animals; however, quantitative histone differences have been detected by cytological means in species having extra chromosomes. The purpose of this study was to: 1) isolate and characterize the histones of several Gossypium species and 2) relate differences to known differences in vigor, ploidy level, and genome constitution or size. Histones extracted from isolated nuclei of leaf tissues were characterized by electrophoresis on polyacrylamide gels into 14 subfractions of the five major histone classes. The subfractions were identified by various means including co-electrophoresis with known histone standards. Densitometric analysis revealed only slight quantitative differences in subfraction ratios between species. Histone-DNA ratios were significantly higher in the pentaploid species. This observed increase is considered a result of genome imbalance. These data support the premise that histones may function as generalized gene deactivators in plant species having multiple genomes.

Diploidy