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P J Sharp

Publications and source records attributed to P J Sharp.

At least 145 records · Page 8Linked to original sources

Effects of selection for reduced oviposition interval on plasma concentrations of luteinising hormone during the ovulatory cycle in hens on a 24 h lighting cycle.

The effects of selection under continuous light for reduced oviposition interval within a sequence of eggs on plasma luteinising hormone (LH) concentrations during the ovulatory cycle were investigated in lines of Australorps and White Leghorns maintained on a 24-h light:dark cycle. Selection did not significantly alter LH concentrations during mid-sequence cycles in either breed. In the control lines, concentrations were higher in the Australorps than in the White Leghorns before and at peak in mid-sequence cycles. The increase in egg production resulting from selection was associated with an advance in the mean time of lay of mid-sequence eggs in both breeds and, in the Australorps, with more pre-ovulatory LH peaks being initiated at the beginning of the open period of the ovulatory cycle. Selection reduced the time an egg spends in the oviduct and, in the Australorps, significantly reduced the interval between a pre-ovulatory LH peak and the oviposition of the egg currently in the shell gland. We suggest that selection under continuous light for reduced oviposition interval increased the rate of ovarian follicular maturation by a mechanism which did not involve an increase in pre-ovulatory concentration of plasma LH in a 24-h light-dark cycle.

Animals↗

Aspects of the neuroendocrine control of ovulation and broodiness in the domestic hen.

The neuroendocrine control of ovulation and broodiness in the domestic hen involves complex interactions between hypothalamic neuropeptides, neurotransmitters, and ovarian steroids which regulate the secretion of luteinizing hormone (LH) and prolactin. Nuclear progesterone receptor is localized in many neurons throughout the hypothalamus but is absent from LHRH neurons. Hence, the positive feedback action of progesterone on LH release is not mediated by a genomic mechanism within the LHRH neuron. Precursors of 5-hydroxytryptamine (5HT) and dopamine (DA) inhibit the preovulatory release of LH, while the turnover rates of these neurotransmitters in the anterior hypothalamus decrease when preovulatory levels of LH are at their highest. Further, a population of receptors for 5HT which occurs in the anterior hypothalamus in laying birds is absent in nonlaying, incubating hens. Taken together, these observations suggest that the preovulatory surge of LH is mediated by a transitory decrease in the inhibitory action of 5HT and possibly DA, on the secretion of LHRH. Neurons containing 5HT may play a role in the regulation of prolactin release and, more specifically, in the control of broodiness. Drugs which enhance the function of 5HT neurons stimulate prolactin release while increased prolactin secretion in incubating hens is associated with an increase in the turnover of 5HT in the anterior hypothalamus. No receptors for 5HT were demonstrable in the anterior pituitary gland, showing that the prolactin-releasing activity of 5HT must be mediated by a prolactin-releasing factor (PRF). A candidate for a physiological PRF is vasoactive intestinal polypeptide (VIP).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

A comparison of the luteinizing hormone-releasing activities of synthetic chicken luteinizing hormone-releasing hormone (LH-RH), synthetic porcine LH-RH, and buserelin, an LH-RH analogue, in the domestic fowl.

The luteinizing hormone-releasing activities of synthetic chicken luteinizing hormone-releasing hormone (chLH-RH), synthetic porcine LH-RH (pLH-RH), and an analogue of LH-RH (buserelin, D-Ser-(But)6-des-Gly10-LH-RH ethylamide) were compared in the domestic fowl. In adult cockerels, intravenous injections of 0.5 or 1 microgram chLH-RH/kg released the same amount of LH as the same doses of pLH-RH; subcutaneous injections of 0.5 or 1 microgram buserelin/kg were about twice as effective as the same doses of pLH-RH. In laying hens, injections of 1, 10, 20, and 50 micrograms buserelin induced more sustained releases of LH than the corresponding doses of pLH-RH. Daily injections of 1 or 10 micrograms buserelin/bird or of 10 micrograms pLH-RH/bird for 12 days synchronized the timing of most ovipositions showing that the injections of releasing hormone could induce preovulatory surges of LH. In contrast with mammals, daily injections of buserelin in laying hens did not reduce pituitary responsiveness to the analogue. It is concluded that the structural difference between mammalian and chicken LH-RH does not affect their LH-releasing activities in the domestic fowl. Although the LH-releasing activity of buserelin in the hen is greater than that of pLH-RH, the difference in activity is not as great as that observed in most mammals. This view is strengthened by the finding that chronic treatment with buserelin, which exerts an antagonistic effect on ovulation in mammals, does not do so in the domestic hen.

Animals↗

The development of photorefractoriness in castrated willow ptarmigan (Lagopus lagopus lagopus).

Changes in plasma LH levels were observed in castrated willow ptarmigan exposed to different lighting patterns to determine whether they become photorefractory. LH levels did not increase in long-term castrated birds exposed to a natural (70 degrees N) increase in daylength and did not fall abruptly in June when intact birds become photorefractory. Plasma LH levels in naturally photostimulated, long-term castrates fell gradually during the summer and fall. Plasma LH levels increased steeply when these birds were transferred in winter from short days to continuous light. Thereafter the levels fell indicating that the birds became photorefractory. In a further experiment, photosensitive male willow ptarmigan were castrated 3 or 6 weeks after transfer from short days to continuous light. The postcastration increase in plasma LH levels was significantly greater in birds castrated after 3 weeks than in those castrated after 6 weeks of photostimulation. In both groups of castrates, LH levels began to fall when LH levels decreased in intact controls, indicating the development of photorefractoriness. These findings confirm that the development of photorefractoriness is progressive rather than abrupt and that it may be accelerated in castrated birds under natural increases in daylength but not after acute transfer from short days to continuous light. These observations support the view that the development of photorefractoriness in willow ptarmigan involves an interaction between the gonads and the neuroendocrine or circadian system. They are not entirely consistent with the simple concept that photorefractoriness is caused by a decrease in the sensitivity of the hypothalamus to inhibitory steroid feedback.

Animals↗

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↗

Absence of nuclear progesterone receptor in LH releasing hormone in laying hens.

Using a double immunohistochemical technique, LH releasing hormone (LHRH) neurones and 110kDa nuclear progesterone receptor were localized in the hypothalamus of the laying hen. Nuclear progesterone receptor was widely distributed throughout the hypothalamus, occurring in the preoptic, septal, anterior and basal areas. The region where progesterone receptor was revealed in nuclei of neurones overlapped that containing LHRH neurones. However, LHRH cell bodies did not contain progesterone nuclear receptor. It is concluded that the positive feedback action of progesterone on LH release is not mediated by a genomic mechanism within the LHRH neurone.

Animals↗

Influence of lighting cycles on daily rhythms in concentrations of plasma tri-iodothyronine and thyroxine in intact and pinealectomized immature broiler hens (Gallus domesticus).

The effects of pinealectomy on the daily rhythms of concentrations of tri-iodothyronine (T3) and thyroxine (T4) were investigated in sexually immature female chickens exposed to 21-, 24- and 27-h cycles of light and darkness, or to extended periods of light or darkness for more than 24 h. In pinealectomized and control birds, rhythms in levels of plasma T3 and T4 were entrained by all lighting cycles and decreased in amplitude or disappeared in continuous light or darkness. In pinealectomized and control birds held on 21-h (11 h light:10 h darkness; 11L:10D) and 24-h (14L:10D) lighting cycles, the peak of the T4 rhythm coincided with, or lagged, the trough in the rhythm of T3 while in birds held on a 27-h (14L:13D) lighting cycle, the peak of the T4 rhythm preceded the trough in the rhythm of T3. Pinealectomy resulted in significant effects on the phases or amplitudes of rhythms of T3 or T4 in all lighting schedules except 4L:20D. However, these effects were not consistent in direction between experimental groups and were, therefore, of doubtful physiological significance. Pinealectomy increased the mean level of plasma T4 in birds exposed to continuous light or darkness or to 4L:20D. A corresponding reduction in mean levels of plasma T3 was seen in birds exposed to continuous light or darkness. It is concluded that under the lighting conditions investigated pinealectomy had no clear effect on the phases or amplitude of daily rhythms of levels of T4 or T3. However, after the effects of the feeding pattern on thyroid hormone rhythms imposed by the lighting cycle were removed by placing birds in constant lighting conditions, pinealectomy appeared to exert an inhibitory action on thyroid function.

Animals↗

The localisation of LH-RH neurones in the diencephalon of the domestic hen.

Nerve fibers and perikarya containing LH-RH-like material were identified immunohistochemically in the diencephalon of the domestic hen using the peroxidase-anti-peroxidase technique. Perikarya were thinly scattered in bilateral bands close to the third ventricle extending from the nucleus praeopticus paraventricularis magnocellularis, passing in front of the anterior commissure into the septal area. In this latter area, the perikarya tended to spread out laterally. A few perikarya were seen in the anterior portion of the nucleus paraventricularis magnocellularis but were not found in the infundibular nuclear complex. Fibre tracts were seen running dorso-ventrally in the preoptic area apparently associated with the lamina terminalis. Fibres, possibly nerve terminals, were found in the lamina terminalis and in the external layers of the anterior and posterior divisions of the median eminence. A large number of fibres was seen distributed throughout the infundibular nuclear complex; scattered fibres were found close to the third ventricle in the anterior hypothalamus. Extrahypothalamic fibers were also observed to project from the septal area into other parts of the telencephalon.

Animals↗

Influence of ingested petroleum on the reproductive performance and pituitary-gonadal axis of domestic ducks (Anas platyrhynchols).

1. The chronic ingestion of a sublethal dose (5%) of dietary North Sea crude oil delayed the onset of lay in adult Khaki Campbell ducks transferred from a short (8L:16D) to long day (16L:8D) photoperiod and greatly reduced the rate of oviposition and quality (weight and shell thickness) of the eggs subsequently laid. 2. Refeeding the oil-fed birds with the uncontaminated control diet stimulated the rate of egg production and improved egg quality, but in both cases not to the level in the controls. 3. Food intake and the plasma calcium level in the petroleum-fed birds were reduced, but these effects are unlikely to be causally responsible for the adverse effects of petroleum on avian reproduction. 4. Gonadotrophic (luteinizing hormone, LH) hormone secretion in the oil fed birds was not suppressed and the impairment of reproductive performance was not due to low plasma LH levels. 5. The reduced rate of lay in the oil-fed birds was accompanied by low gonadal steroid (progesterone) levels. The detrimental effects of oil and reproduction may be due to direct or indirect effects on the ovary or shell gland.

Animals↗

Plasma prolactin concentrations in broody turkeys: lack of agreement between homologous chicken and turkey prolactin radioimmunoassays.

1. Plasma concentrations of prolactin, measured using homologous chicken or turkey prolactin radioimmunoassays, increased 2- and 9-fold, respectively in somatically mature turkey hens transferred from short (6 h light (L): 18 h dark (D)) to long (14 L:10 D) photoperiods. 2. A further increase in plasma prolactin was observed in laying hens 2 to 3 weeks before the onset of incubation. This increase was detected using the turkey prolactin assay but not the chicken prolactin assay. 3. The onset of incubation was not always associated with the cessation of egg production. Egg laying stopped in incubating hens only after plasma concentrations of prolactin were approaching their maximal values. These were 10-fold higher than the prolactin concentrations at the onset of lay. 4. The removal of clutches of eggs from incubating hens resulted in a decrease in plasma concentrations of prolactin, which was associated with the cessation of incubation in two hens which had been incubating for 52 and 47 d. The decrease was only temporary in two hens which had been incubating for 8 and 32 d. The latter two hens continued to show incubation behaviour although they were not sitting on eggs. 5. In four turkey hens which did not become broody, egg production ceased after 12 weeks exposure to 14 L:10 D. The concentration of plasma prolactin, as measured using the turkey prolactin assay, increased 2-fold during the 2 weeks before these hens stopped laying.

Animals↗

Allergens from plantain (plantago lanceolata). Studies with pollen and plant extracts.

There has been unjustified neglect of dicotyledonous (dicot; 'weed') pollens in research directed at isolating pure allergens, since dicot pollens are widespread and frequently important in provoking immediate allergic reactions. Sera from patients who showed positive skin prick test reactions to plantain pollen generally also reacted in the radioallergosorbent test (RAST) with at least one other species of dicot pollen. Fractionation of plantain pollen extracts by ultrafiltration and molecular sieving and examination of the fractions by the RAST revealed a spread of allergenic activity. Using crossed immunoelectrophoresis, at least 16 different antigens were detected in plantain pollen and at least 6 of these antigens may be allergenic. Allergenic glycoproteins that react with concanavalin A were isolated and their complexity examined by electrophoresis and electro-focusing. IgE-binding components were found widely distributed in plantain plants and not confined to the pollen.

Allergens↗