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Effects of rearing environment on adrenal weights, sexual development, and behavior in gerbils: an examination of Richter's domestication hypothesis.

Mongolian gerbils (Meriones unguiculatus) reared and maintained in standard laboratory cages exhibited accelerated eye opening, more rapid growth, earlier sexual maturity, and marked reduction in adrenal gland size in comparison with gerbils reared in more natural cages providing access to shelter. Gerbils reared in standard laboratory cages were also easier to handle and less responsive to sudden stimulation than those reared in sheltered cages. Changes in phenotype resulting from rearing in environments lacking shelter parallel changes in phenotype resulting from the domestication process. The implications of the data for genetically oriented hypotheses of domestication are discussed.

Adrenal Glands↗

Plasma concentrations of luteinising hormone, follicle stimulating hormone, androgen, growth hormone, prolactin, thyroxine and triiodothyronine during growth and sexual development in the cockerel.

Changes in concentrations of plasma luteinising hormone (LH), follicle stimulating hormone (FSH), androgen, growth hormone (GH), prolactin (Prl), thyroxine (T4) and triiodothyronine (T3) were measured during growth and sexual maturation in broiler cockerels reared in continuous light to 7 weeks and 14 h light/d thereafter. Concentrations of LH and FSH began to increase between 13 and 15 weeks, while those of androgens increased between 16 and 17 weeks. FSH concentration increased faster than that of LH. Concentrations of GH and Prl were high at 3 weeks; that of GH decreasing progressively between 3 and 14 weeks of age and thereafter remaining low, while that of Prl was low between 5 and 9 weeks, relatively high between 10 and 13 weeks, and then temporarily decreasing before increasing progressively during sexual maturation. Concentrations of T3 and T4 were higher in juvenile than in adult birds.

Androgens↗

Sex hormone-binding globulin and male sexual development.

The masculinization of the brain, reproductive tract and many other structures is critically dependent on the testicular hormone, testosterone (T). In many species, T circulates bound with high affinity to sex hormone-binding globulin (SHBG). This protein has a wide phylogenetic distribution and SHBG or SHBG-like proteins are produced by the liver, testes, placenta, brain and other tissues. SHBG activity is detectable during gestation and its expression is both stage- and tissue-dependent. Although SHBG binds circulating androgens, it is argued that the trapping of steroids in the circulation is not the principal function of this protein. The specific binding and uptake of SHBG by various tissues has been observed and suggests that SHBG may directly affect the delivery of androgen signals to target tissues. Effects of SHBG on androgen metabolism, tissue retention, cellular targeting, and action are reviewed. Evidence to date indicates that SHBG is able to enhance or inhibit the uptake of androgens in a cell- and tissue-specific manner. Future work will be necessary to demonstrate whether such actions of SHBG are important for normal male reproductive development.

Animals↗

Beating fantasies in a latency girl: their role in female sexual development.

Detailed clinical material is presented from the analysis of a latency girl whose inner life revolved around a series of beating fantasies. The clinical data support Freud's 1925 formulation that the perception of sexual differences initiates the oedipus complex in the girl. Whether a girl experiences vaginal sensations before puberty has been a controversial issue; in this girl vaginal sensations and contractions appeared prior to puberty.

Anxiety, Castration↗

A Monte Carlo test of weight as a critical factor in menarche, compared with bone age and measures of height, width, and sexual development.

The correlation coefficients for each of nine traits measured at menarche (bone age, pubic hair and breast stages, and five physical measurements) have been calculated. These have been compared with the corresponding correlation coefficients obtained by using a Monte Carlo technique, where the ages of menarche are randomly redistributed over the sample. The difference between the random and actual results are most pronounced for bone age, sitting height and the development of pubic hair and breasts, showing that these characteristics may indeed be critically related to menarche, while the same differences for weight, height, sitting height/height, and biacromial and bi-iliocristal diameters show that these latter are only moderately related to menarche. These results do not support the exclusivity of body weight as a critical factor in menarche (critical body weight hypothesis).

Adolescent↗