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[Inheritance of coat color in the mole vole (Ellobius talpinus Pallas)].

Based on the ecological features of the mole vole, family analysis of the inheritance of coat color was performed with the use of material collected in a wild population. Analysis of coat color in parents and offspring has demonstrated that the offspring segregation into black and nonblack animals after crosses of different types agrees with the hypothesis on the monogenic inheritance of these color variations. Black mole voles are homozygous for the recessive allele (genotype aa). Homozygotes for the dominant allele (AA) are brown. Heterozygotes (Aa) may be brown or have transitional color. The mean frequency of brown coat color in heterozygotes is 0.509 and is very variable. The higher the color intensity in black elements of parent coat color, the more is the offspring coat color saturated with these elements.

Animals↗

Quantitative analysis of eumelanin and pheomelanin in humans, mice, and other animals: a comparative review.

The color of hair, skin, and eyes in animals mainly depends on the quantity, quality, and distribution of the pigment melanin, which occurs in two types: black to brown eumelanin and yellow to reddish pheomelanin. Microanalytical methods to quantify the amounts of eumelanin and pheomelanin in biological materials were developed in 1985. The methods are based on the chemical degradation of eumelanin to pyrrole-2,3,5-tricarboxylic acid and of pheomelanin to aminohydroxyphenylalanine isomers, which can be analyzed and quantitated by high performance liquid chromatography. This review summarizes and compares eumelanin and pheomelanin contents in various pigmented tissues obtained from humans, mice, and other animals. These methods have become valuable tools to study the functions of melanin, the control of melanogenesis, and the actions and interactions of pigmentation genes. The methods have also found applications in many clinical studies. High levels of pheomelanin are found only in yellow to red hairs of mammals and in red feathers of birds. It remains an intriguing question why lower vertebrates such as fishes do not synthesize pheomelanin. Detectable levels of pheomelanin are detected in human skin regardless of race, color, and skin type. However, eumelanin is always the major constituent of epidermal melanin, and the skin color appears to be determined by the quantity of melanin produced but not by the quality.

Animals↗

Association between personal use of hair dyes and lymphoid neoplasms in Europe.

Hair dyes have been evaluated as possibly being mutagenic and carcinogenic in animals. Studies of the association between human cancer risk and use of hair dyes have yielded inconsistent results. The authors evaluated the risk of lymphoid malignancies associated with personal use of hair dyes. The analysis included 2,302 incident cases of lymphoid neoplasms and 2,417 hospital- or population-based controls from the Czech Republic, France, Germany, Ireland, Italy, and Spain (1998-2003). Use of hair dyes was reported by 74% of women and 7% of men. Lymphoma risk among dye users was significantly increased by 19% in comparison with never use (odds ratio (OR) = 1.19, 95% confidence interval (CI): 1.00, 1.41) and by 26% among persons who used hair dyes 12 or more times per year (OR = 1.26, 95% CI: 1.00, 1.60; p for linear trend = 0.414). Lymphoma risk was significantly higher among persons who had started coloring their hair before 1980 (OR = 1.37, 95% CI: 1.09, 1.72) and persons who had used hair dyes only before 1980 (OR = 1.62, 95% CI: 1.10, 2.40). Personal use of hair dyes is associated with a moderate increase in lymphoma risk, particularly among women and persons who used dyes before 1980. Specific compounds associated with this risk remain to be elucidated.

Adult↗

Microanalysis of melanins in mammalian hair by alkaline hydrogen peroxide degradation: identification of a new structural marker of pheomelanins.

A highly sensitive, easy-to-perform method for melanin analysis in pigmented tissues based on alkaline hydrogen peroxide degradation has been developed and accomplishes simultaneous determination of eumelanins and pheomelanins. Pyrrole-2,3,5- tricarboxylic acid, the typical eumelanin marker, was obtained in higher yields than in previous procedures. A benzothiazole acid, 6-(2-amino-2-carboxyethyl)-2-carboxy-4-hydroxybenzothiazole, characterized in our previous studies as a specific marker of pheomelanins, and the newly identified 1,3-thiazole-2,4, 5-tricarboxylic acid were also used for pigment analysis. Optimal yields of the pigment markers were obtained at 24 h reaction time. Pyrrole-2,3,5-tricarboxylic acid, 6-(2-amino-2-carboxyethyl)-2-carboxy-4-hydroxybenzothiazole, and 1, 3-thiazole-2,4,5- tricarboxylic acid were quantified in a single chromatographic analysis without fractionation or work up of the degradation mixture. The linearity (linearity coefficient from 0.997 to 0.999) was excellent and the inter-assay (percentage coefficient of variation values in the range 0.2-2, n = 6) and intra-assay (percentage coefficient of variation values </= 0.4) reproducibility of the method was very satisfactory. A variety of mammalian hairs including coat color mutant mice and human hairs were used to evaluate the method. All the phenotypically pheomelanic hairs gave 1, 3-thiazole-2,4,5-tricarboxylic acid in variable yields, whereas 6-(2-amino-2-carboxyethyl)-2-carboxy-4-hydroxybenzothiazole was obtained only from some of the red hair samples examined. Notably, a marked tendency to actinic damage, as evidenced by determination of the minimal erythema dose, was exhibited by those subjects whose hair afforded the highest 6-(2-amino-2-carboxyethyl)-2-carboxy-4-hydroxybenzothiazole yields. This suggests that 6-(2-amino-2-carboxyethyl)-2-carboxy-4-hydroxybenzothiazole represents a new biogenetic marker for predicting individuals at high risk for skin cancer and melanoma.

Animals↗

[Melanin traits of Yunnan black bone sheep and TYR gene polymorphism].

The "black bone and muscle" is cardinal melanin trait of black bone sheep. The black bone sheep and the native sheep in Lanping and Luomuni sheep were chosen as materials for the measurement of TYR activity of blood and melanin content of tissues and organs. Moreover, we compared characteristic structure of melanin of black bone sheep with silky fowls. The results showed as follows: TYR activity was significantly different between black and non-black bone sheep (P<0.05); the total character of infrared spectrum (IR) of melanin of black bone sheep resembled silky fowls; and melanin was eumelanin. We firstly cloned exon1 667bp sequence of TYR gene and determined TYR gene polymorphism of black and non-black bone sheep by PCR-RFLP. Compared with sequence of TYR gene of non-black bone sheep, there were two nucleotide mutation sites in exon1 of black bone sheep, located in No.64 and No.154 amino acid codons, respectively; but they were synonymics mutation. We designed restriction site in codon 64 and check up TYR gene polymorphism. The result showed the mutation site together with the close linked gene influenced melanin trait deposition. It suggests there should be functional mutation related with melanin trait. Furthermore, there was significant correlation between TYR gene polymorphism and coat color of sheep (P<0.01), indicating TYR could influence synthesis of coat color of sheep.

Animals↗

[Verification of the color genotype based on morphological analysis of fur pigmentation of brown and black water voles Arvicola terrestris L].

Qualitative and quantitative analysis of fur pigmentation in brown and black water voles (Arvicola terrestris L.) was performed. Morphology of pigment granules, their distribution along the hair layers and histology of hair bulbs were studied. Morphological data and the results of the analysis of segregation in the progeny, when brown voles were self-crossed and crossed with black ones, led to conclusion that fur colour of water voles is mediated by genes from the agouti series, precisely, black colour is determined by the extreme non-agouti allele (aeae genotype), and in brown voles which are homo- or heterozygous the colour is determined by the agouti allele (AA or Aae genotypes).

Alleles↗

Fox colors in relation to colors in mice and sheep.

Color inheritance in foxes is explained in terms of homology between color loci in foxes, mice, and sheep. The hypothesis presented suggests that the loci A (agouti), B (black/chocolate brown pigment) and E (extension of eumelanin vs. phaeomelanin) all occur in foxes, both the red fox, Vulpes vulpes, and the arctic fox, Alopex lagopus. Two alleles are postulated at each locus in each species. At the A locus, the (top) dominant allele in the red fox, Ar, produces red color and the corresponding allele in the arctic fox, Aw, produces the winter-white color. The bottom recessive allele in both species is a, which results in the black color of the silver fox and a rare black color in the Icelandic arctic fox when homozygous. The B alleles are assumed to be similar in both species: B, dominant, producing black eumelanin, and b, recessive, producing chocolate brown eumelanin when homozygous. The recessive E allele at the E locus in homozygous form has no effect on the phenotype determined by alleles at the A locus, while Ed, the dominant allele is epistatic to the A alleles and results in Alaska black in the red fox and the dark phase in the arctic fox. Genetic formulae of various color forms of red and arctic fox and their hybrids are presented.

Alleles↗

Coat color and gestation length in thoroughbred mares.

Average gestation periods for bay, chestnut, dark bay, gray, and black Thoroughbred mares were compared. A total of 1359 gestation periods were used. A linear model including factors for age of mare, sex of foal, month and year of breeding, and sire effects was used in the analysis. Dam and sire coat-color combinations were also investigated in a similar manner. No significant differences in gestation length could be attributed to coat color of the mare of to dam and sire coat-color combinations. Heritability of gestation length was estimated to be 0.38. The results of this study strongly suggest that coat color is not associated with gestation length in Thoroughbred mares.

Animals↗

Multigeneration study of FD & C Blue No. 2 in rats.

In a three-generation reproduction study, groups of ten male and 20 female Charles River CD rats were fed FD & C Blue No. 2 at dietary levels providing intakes of 0.0, 2.5, 25, 75 and 250 mg/kg body weight/day. Slightly bluish-coloured fur was noted in rats at the 250-mg/kg/day dose level and bluish-green-coloured faeces were produced by rats in the 75- and 250-mg/kg/day groups. The gestation, viability and lactation indices of all litters were comparable for the control and treated groups. The fertility indices for female rats in the 2.5- and 25-mg/kg/day groups were significantly lower than those for control females in the case of the F2 litters. However, there was no reduction in the female fertility indices for the F2 litters at the two higher dosage levels, nor for the F1 and F3 litters at any dosage level. Although fertility indices were reduced for some groups of male rats in the F2b and F2c litters, these changes were not considered to be compound-related. Examination of the ovaries and uteri of all dams killed on day 19 of gestation of the F2c and F3c litters revealed no gross anatomical abnormalities. No unusual changes were observed in the stillborn pups or in pups dying during the study. There were no compound-related gross or microscopic pathological lesions in any of the F1 or F3a rats that were killed and necropsied, and no compound-related organ-weight variations were recorded in the F1 parental rats.

Animals↗

A psychosocial study of albinism in a predominantly Mulatto Caribbean community.

Psychosocial data collected from 12 albinos in rural and isolated parts of the Dominican Republic suggest a stigma is associated with the absence of skin color. The general population living in the area has a skin pigmentation of dark brown. The purpose of the investigation was to assess whether there were psychosocial problems for albinos with white skin and hair. Prior studies imply albinism is a negative social characteristic associated with prejudice and apartheid in a predominantly mulatto community. This researcher recommends that psychologists and health-care providers be familiar with similar sensitive issues among special populations.

Adult↗

The effects of predator learning, forgetting, and recognition errors on the evolution of warning coloration.

This paper demonstrates that the specifics of predator avoidance learning, information loss, and recognition errors may heavily influence the evolution of aposematism. I establish a mathematical model of the change in frequency over time of bright individuals of a distasteful prey species. Warning color spreads through green beard selection as reformulated by Guilford (1990); bright colored forms gain an advantage due to their phenotypic resemblance to other bright forms, which have been sampled by the predator. I use a general classical conditioning model to examine gradual predator learning and forgetting, and then consider the extreme of one-trial learning and no forgetting over time that may occur with very toxic prey. The advantage of conspicuous coloration under these latter conditions depends upon its role in lowering a constant probability of the prey being misidentified and thus mistakenly attacked by a predator, a rarely emphasized factor in the evolution of warning coloration. This constant probability of mistaken attacks can also be interpreted as a constant probability that forgetting has occurred (forgetting does not increase with time) or a periodic decision by the predator to resample avoided prey. I show that when predators learn and forget gradually, as under the general classical conditioning model, it is very difficult for aposematic coloration to become established unless bright individuals cross an often high threshold frequency through chance factors. In contrast, the conditions expected with highly toxic prey promote the evolution of warning coloration more easily, by means from the fixation of very bright mutations to the fixation of successive mutations each of which causes a small increase in a prey's conspicuousness. The results therefore predict that aposematic coloration may have evolved in a different manner in different predator and prey systems. They also suggest that it may be extremely difficult for warning coloration to evolve in more mildly toxic or distasteful prey outside of a mimicry system.

Animals↗

[UV light sensitivity of the skin--possibilities and limits of clinical diagnosis].

Our study on 58 test persons showed that the sensitivity of human skin to UV light is independent of the color of skin, hair, eyes or the pigmentation of the mamillae. Therefore, the sensitivity to UV light must be ascertained by subtle phototesting. By means of the new UV phototesting set SBA-LT-400, Saalmann Co., 4900 Herford/West Germany, we determined the minimal erythema doses (MED) of UV-B and UV-A as basic, reproducible parameters regarding Central European people. 7 and 24 hours after radiation, MED showed mean values of 0.032 and 0.037 Joule/cm2, resp., for UV-B, whereas 24.1 and 25.6 Joule/cm2 were measured for UV-A. The pigmentation responses to UV radiation of human skin described in the literature can be reproduced in Mediterranean skin types only.

Adolescent↗