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S K Boyd

Publications and source records attributed to S K Boyd.

33 records · Page 2Linked to original sources

Arginine vasotocin facilitation of advertisement calling and call phonotaxis in bullfrogs.

Although the neuropeptide arginine vasotocin (AVT) is found in several auditory and vocalization regions of the bullfrog (Rana catesbeiana) brain, its functions in these areas are unknown. We examined the effects of AVT injection on two auditory-evoked reproductive behaviors: advertisement calling in male bullfrogs and call phonotaxis in female bullfrogs. AVT (500 micrograms; intraperitoneal) significantly increased advertisement call frequency and decreased calling latency in male bullfrogs, compared to saline injection. This dose of AVT also significantly decreased the time required for female bullfrogs to reach a call source as well as the latency of females to leave the starting position during call playback. In both males and females, these effects were significant at 0.5 hr and persisted until at least 2 hr after injection. AVT thus facilitated display of two sexually-dimorphic reproductive behaviors in bullfrogs. These effects may be due to direct effects of AVT on auditory processing regions in the bullfrog brain.

Animals↗

Development of vasotocin pathways in the bullfrog brain.

The brain of adult bullfrogs (Rana catesbeiana) contains six populations of cells which are immunoreactive for the neurohypophysial peptide arginine vasotocin (AVT). It is unknown when some of these cell populations first appear during development and when the sexual differences in AVT distribution first become apparent. We therefore used immunocytochemistry to examine development of AVT pathways in developing bullfrog tadpoles and in newly metamorphosed froglets of both sexes. AVT-immunoreactive (AVT-ir) cells were already present in the three diencephalic areas (magnocellular preoptic nucleus, suprachiasmatic nucleus and hypothalamus) at stage III (Taylor and Kollros stages), the earliest stage examined. Cell size in the magnocellular nucleus was not bimodally distributed in either tadpoles or froglets. AVT-ir cells in the telencephalic septal nucleus and amygdala did not appear until stage VI. There was no sexual difference in the density of AVT-ir cells or fibers in the amygdala of tadpoles or froglets. Finally, cells in the hindbrain pretrigeminal nucleus appeared much later--after stage XX. Thus, different populations of neurons begin to express AVT at unique times during development. The sexual dimorphism in AVT content observed in the amygdala of adult bullfrogs must appear during juvenile development or at adulthood.

Animals↗

Gonadal steroid modulation of vasotocin concentrations in the bullfrog brain.

Concentrations of the neuropeptide arginine vasotocin (AVT) are sexually dimorphic in some regions of the bullfrog brain. Since these differences in AVT content may be due to sexual differences in plasma steroid concentrations, we performed a gonadectomy-steroid replacement experiment (30-day treatment) to assess the effects of specific steroids on AVT concentrations (determined by RIA) in adult male and female bullfrogs (Rana catesbeiana). These treatments had significant effects in six brain areas. Gonad removal decreased AVT concentrations in the amygdala pars lateralis, septal nucleus and habenula of both sexes. Gonadectomy decreased AVT content in optic tectum, torus semicircularis and pretrigeminal nucleus of males only. Dihydrotestosterone treatment resulted in AVT concentrations at or above sham levels in all six areas, whether or not gonadectomy decreased content. Estradiol fully restored AVT concentrations only in the septal nucleus and habenula (of both sexes) and in the amygdala of females. Estradiol partially restored AVT levels in the amygdala of males. These results indicate that the gonads maintain AVT concentrations in several brain areas and that steroids can modulate levels of AVT in bullfrog brain. Effects of each steroid vary depending upon the region and sex of the frog. AVT cells are present in three of these regions--the amygdala pars lateralis, septal nucleus and pretrigeminal nucleus. Steroids may be directly affecting AVT synthesis in these cells and these populations may be the source of AVT fibers in the other steroid-sensitive areas.

Animals↗

Characterization and localization of gonadotropin-releasing hormone receptors in the adult female sea lamprey, Petromyzon marinus.

Quantitative in vitro autoradiography was used to characterize and localize putative GnRH receptors in the anterior pituitary of the adult female sea lamprey, Petromyzon marinus. Pituitaries were sectioned at 20 microns and incubated for 3 h at 4 C with DAla6,Pro9 NEt mammalian GnRH as both the labeled and unlabeled ligand. Scatchard analysis revealed two classes of high affinity binding sites with Kds of 1.5 x 10(-12) M and 5 x 10(-9) M. Binding to the GnRH receptors was saturable, reversible, tissue specific, and time and temperature dependent. Displacement studies showed that labeled peptide could be displaced by chicken GnRH-I, chicken GnRH-II, synthetic mammal, salmon, lamprey GnRH-I, lamprey GnRH-III, DAla6,Pro9 NEt mammalian GnRH and DPhe2,6,Pro3 lamprey GnRH. The proximal pars distalis region of the anterior pituitary contained most of the GnRH binding sites with slight binding in the rostral pars distalis. These data provide direct evidence of GnRH activity on the Agnathan pituitary and are the first to demonstrate that a vertebrate pituitary contains two high affinity binding sites for GnRH.

Animals↗

Sexual dimorphism in the vasotocin system of the bullfrog (Rana catesbeiana).

Arginine vasotocin (AVT) is widespread in amphibian brains, where its levels have been correlated with reproductive behaviors. To better understand which neural systems are involved in central actions of AVT, we used immunocytochemistry to compare the distribution of AVT in the brains of male and female bullfrogs (Rana catesbeiana). AVT-immunoreactive cells were observed in the septal nucleus, amygdala pars lateralis, magnocellular preoptic area, suprachiasmatic nucleus, and hypothalamus. AVT-immunoreactive cells were also found in the pretrigeminal nucleus, but only in animals killed in the fall. Immunoreactive fibers were broadly distributed in hypothalamic and extrahypothalamic areas. The most obvious sex differences were found in the amygdala pars lateralis, where the density of immunoreactive cells and fibers was significantly greater in male than in female bullfrogs. In addition, in the habenular nucleus, males had a denser distribution of AVT-immunoreactive fibers than females. In the suprachiasmatic nucleus, AVT-immunoreactive cells were larger in females than in males but did not differ in number. Since the areas that showed sex differences in AVT distribution have also been implicated in control of reproductive behaviors, they may form the neural substrates for the effects of AVT on sexually dimorphic behaviors in amphibians.

Animals↗

Sexually dimorphic concentrations of arginine vasotocin in sensory regions of the amphibian brain.

Arginine vasotocin (AVT) regulates reproductive behaviors in amphibians. We measured AVT in the brains of bullfrogs (Rana catesbeiana) and newts (Taricha granulosa) using radioimmunoassay. In bullfrogs, AVT concentrations were greater in males, compared to females, in the amygdala pars lateralis, optic tectum, and tegmentum. Concentrations in the dorsolateral nucleus were greater in females. In newts, AVT concentrations were also greater in the tectum and tegmentum of males. AVT may modulate dimorphic behaviors by acting at these sites.

Animals↗

Sexual differences in hormonal control of release calls in bullfrogs.

Release calls in anuran amphibians are given when animals are inappropriately clasped by others. Since other call types, such as mate calls, are sexually dimorphic in frogs and toads, sonogram analysis was used to determine whether release call characteristics might also be sexually dimorphic in bullfrogs (Rana catesbeiana). Only intercall intervals differed significantly between males and females. Call duration, dominant frequency characteristics, and the display of secondary or tertiary harmonic frequencies were similar in both sexes. In the spring, but not the fall, calling rates were significantly lower in female bullfrogs, compared to males. Females also had significantly lower plasma androgen concentrations and higher plasma estrogen in the spring, compared to males. In both sexes, plasma androgen and estrogen were significantly higher in the spring, compared to the fall. The neuropeptide arginine vasotocin significantly decreased release call rates in females in the spring while it significantly increased rates in males. Vasotocin had no significant effect in the fall. Prostaglandin E2 significantly inhibited release calling in both males and females. On the other hand, prolactin significantly inhibited calling in female bullfrogs, but had no affect in males. Thus, although acoustic characteristics of release calls were similar in male and female bullfrogs, hormonal control of call rates was sexually dimorphic and seasonally variable.

Androgens↗

Sex steroids and vasotocin interact in a female amphibian (Taricha granulosa) to elicit female-like egg-laying behavior or male-like courtship.

Female egg-laying behaviors and male amplectic clasping behaviors in the rough-skinned newt (Taricha granulosa) are similar in that animals clasp an object. In the case of egg-laying, females clasp submerged inanimate objects, whereas in amplexus, males clasp conspecific females. Considering these behavioral similarities and differences, we investigated the possibility that gonadal steroids and vasotocin (AVT) interact to control egg-laying behaviors, as has been shown for the control of amplexus in Taricha males. Intact, gravid T. granulosa females injected ip with AVT, unlike those injected with saline, exhibited egg-laying behaviors and oviposition. In ovariectomy-steroid-implant studies, no saline-injected female exhibited egg-laying behaviors, whereas AVT-injected ovariectomized females exhibited egg-laying behaviors if implanted with estradiol (E2), testosterone, or dihydrotestosterone (DHT), and not if implanted with empty capsules. When given a choice between clasping aquatic vegetation or other females (amplectic clasping), following an AVT injection, unoperated and sham-operated control females and ovariectomized females with E2 implants did not preferentially clasp aquatic vegetation over other females. In contrast, AVT-injected ovariectomized females with DHT implants preferentially clasped other females. Thus, exposure of Taricha females to estrogens or androgens appears to determine whether the AVT-induced clasping is egg-laying or amplectic clasping.

Animals↗

Gonadectomy reduces the concentrations of putative receptors for arginine vasotocin in the brain of an amphibian.

Putative receptors for arginine vasotocin (AVT) in the brain of the newt (Taricha granulosa) were measured using quantitative autoradiography with tritium-labelled vasopressin. Specific binding sites were observed in the olfactory bulb, medial (hippocampal) pallium, dorsal pallium, amygdala para lateralis and tegmental region of the medulla oblongata. In both male and female newts, concentrations of binding sites in the amygdala, but not in the other four areas, were significantly lower in gonadectomized animals than in sham-operated controls. The equilibrium dissociation constants (KdS) were not altered by gonadectomy. Since long-tem castration abolishes the effect of AVT injection on sexual behaviors, these results support the hypothesis that gonadal steroids maintain sexual behaviors in this amphibian by maintaining AVT receptors in the amygdala.

Amygdala↗

Effect of vasotocin on locomotor activity in bullfrogs varies with developmental stage and sex.

Although neurohypophysial peptides are present in many regions of the developing and adult bullfrog (Rana catesbeiana) brain, the function of these peptides remains unclear. To investigate possible behavioral actions, we examined locomotor activity following peptide injection in bullfrogs at various developmental stages. An intraperitoneal (ip) injection of arginine vasotocin (AVT) in tadpoles (stages V, X, or XVII) produced an immediate and dose-dependent inhibition of locomotor activity. On the other hand, AVT stimulated activity when administered ip to juvenile or adult female bullfrogs, but did not influence activity in juvenile or adult males. The minimum effective dose of AVT, when injected directly into the brain of tadpoles, was 100-fold less than that observed when injected ip, suggesting a central nervous system site of action for this peptide. A vasopressin receptor antagonist (d(CH2)5[Tyr(Me)2]AVP administered ip or icv) significantly increased locomotor activity in tadpoles, compared to controls. Oxytocin, vasopressin, and AVP4-9 inhibited activity in tadpoles while mesotocin, des Gly(NH2)AVP, and pressinoic acid had no significant effect. Injection of PGF2 alpha also significantly decreased activity levels in tadpoles. However, pretreatment of tadpoles with indomethacin, a prostaglandin synthesis inhibitor, did not prevent the behavioral effects of AVT, suggesting that prostaglandin synthesis is not required for this response. In summary, AVT influenced locomotor activity in bullfrog tadpoles and female frogs. This effect shifted during development from an inhibitory action in tadpoles to a stimulatory effect in metamorphosed female frogs. The effect of AVT on juvenile and adult frog locomotion was sexually dimorphic, as this peptide altered female behavior but not male behavior.

Animals↗

Thyrotropin-releasing hormone facilitates display of reproductive behavior and locomotor behavior in an amphibian.

In the amphibian brain, thyrotropin-releasing hormone (TRH) is present in many regions outside the hypothalamus. The functions of this extrahypothalamic TRH however are unknown. We sought to determine whether TRH or its metabolites altered reproductive behaviors (amplectic clasping behavior) or locomotor behaviors of the male South African clawed frog, Xenopus laevis. TRH-injected (100 micrograms; dorsal lymph sac injection) male Xenopus displayed significantly fewer amplectic clasp attempts and longer clasp durations than saline-injected controls. The TRH metabolites, TRH acid and histidylproline diketopiperazine, similarly altered clasping behavior. Several hormones released by TRH, including thyroid-stimulating hormone, melanocyte-stimulating hormone, prolactin, and dopamine, had no significant effect on clasp frequency or duration. Locomotor activity in Xenopus males was increased significantly after 15 min following TRH injection (150 micrograms); this effect persisted for at least 1 hr. The metabolites did not alter locomotion. These studies indicate that TRH can facilitate the display of two behaviors in the South African clawed frog. Effects of TRH on locomotor and reproductive behaviors thus appear in several vertebrate classes. These behavioral actions of TRH likely occur through different mechanisms or at different sites.

Animals↗

Autoradiographic localization of putative arginine vasotocin receptors in the kidney of a urodele amphibian.

The distribution and characteristics of putative arginine vasotocin (AVT) receptors in the urodele amphibian kidney were investigated using in vitro quantitative autoradiography. Specific binding sites for [3H]arginine vasopressin (AVP) in the kidney of the rough-skinned newt (Taricha granulosa) were located over the glomeruli. Scatchard analysis showed that, in the range of concentrations tested (0.2 to 22 nM), [3H]AVP bound to a single class of receptors with a dissociation constant of 1.4 nM and a binding site concentration of 36.5 fmol/mg protein. Binding displacement studies showed that both AVT and AVP were potent ligands for newt kidney receptors. Two specific antagonist peptides with anti-vasopressor (V1) activity, but not anti-antidiuretic (V2) activity, in rat tissues were tested as well. Both antagonists effectively displaced [3H]AVP from receptor sites in newt kidney slices, indicating that the binding sites in this amphibian resemble the V1 subtype of mammals in ligand specificity. Localization of AVT receptors over kidney glomeruli and ligand specificity of these sites is consistent with the hypothesis that AVT may cause antidiuresis in urodele amphibians at least in part via a glomerular vasoconstricting action.

Animals↗

Evidence for GABA involvement in stress-induced inhibition of male amphibian sexual behavior.

The behavioral effects of GABA analogs were investigated to determine whether GABAergic neurotransmission is involved in the stress-induced inhibition of masculine sexual behaviors in rough-skinned newts (Taricha granulosa). Injections of bicuculline, a GABA antagonist, stimulated male sexual behaviors in a dose-dependent fashion, and the minimum effective dose was 40-fold less when administered centrally rather than systemically, suggesting a central nervous system site of action. Injections of muscimol, a GABA agonist, suppressed reproductive behaviors in male newts, and this inhibition lasted at least 5 hr and was proportional to the dose of muscimol administered. The inhibitory effects of muscimol on newt sexual behaviors could be reversed by a single 100-microgram ip injection of arginine vasotocin. The inhibitory effects of confinement stress or corticosterone (CS) injections on newt sexual behaviors were blocked by pretreatment of newts with mercaptopropionic acid, a blocker of GABA synthesis. As well, bicuculline prevented the inhibition of sexual behavior induced by CS injection. These results support the conclusion that, in a male amphibian, the GABAergic system is involved in the inhibitory mechanisms regulating sexual behaviors and that CS mediates the stress-induced inhibition of sexual behaviors through the GABAergic system.

Animals↗

Luteinizing hormone-releasing hormone facilitates the display of sexual behavior in male voles (Microtus canicaudus).

To investigate whether luteinizing hormone-releasing hormone (LHRH) influences the sexual behavior of male gray-tailed voles (Microtus canicaudus), subcutaneous injections of LHRH (500 ng) were given to intact males and to castrated males with different levels of testosterone replacement. Intact voles, as well as castrated voles with Silastic capsules of testosterone propionate, showed significant facilitation of several parameters of masculine sexual behavior 2 hr after LHRH injection, compared to saline controls. Castrated voles without testosterone replacement showed no sexual behavior, even when injected with LHRH. These results support the hypothesis that LHRH regulates sexual behavior in M. canicaudus and that the behavioral response to LHRH is dependent on testosterone. The specific behavioral parameters affected suggest that LHRH changes the arousal component of masculine behavior in voles.

Animals↗

Periplasmic structure in Saccharomyces rouxii (Boutroux), an osmophil.

Electron micrographs of ultrathin sections of S. rouxii displayed electrondense, membrane-circumscribed structures between the protoplasmic membrane and the cell wall. These periplasmic bodies were numerous in cells from a 3-day culture and absent or rare in older cells. Periplasmic bodies were fewer and smaller (flattened) in specimens grown in a medium fortified with 10% sucrose; they were not detected in cells grown in 20% sucrose. A brief treatment with ethyl acetate caused the periplasmic bodies of young cells to become electron light. Periplasmic bodies were most prevalent in the regions of the bud scars and were often accommodated within large invaginations in the protoplasmic membrane. In general, conditions which favor the prevalence and electron density of periplasmic bodies are those which also mask the activity of beta-fructofuranosidase in this species.

Acetates↗