Response to pinealectomy and blinding in vitellogenic female frogs (Rana perezi) subjected to high temperature in autumn

1990 ◽  
Vol 68 (1) ◽  
pp. 94-98 ◽  
Author(s):  
A. L. Alonso-Gómez ◽  
M. Tejera ◽  
M. Alonso-Bedate ◽  
M. J. Delgado

The present experiments were carried out to investigate the effects of pinealectomy and bilateral enucleation on the ovarian activity in Rana perezi frogs maintained in 12-h light – 12-h dark photoperiod and 20 ± 1 °C during the vitellogenetic growth in late autumn. These environmental conditions, mainly temperature, induce a gonadal and metabolic response similar to that observed in the natural habitat in summer: a marked ovarian follicular regression, a depletion of the energetic resources from fat bodies and liver, and a minimum in oestradiol circulating levels. This response is partially blocked by pinealectomy and blinding. Protein phosphorus, as an index of vitellogenic proteins, and total ovary lipid content were significantly higher in pinealectomized and blinded frogs with respect to sham-operated animals. Likewise, oestradiol concentrations showed a significant increase during the dark phase of the daily photocycle in pinealectomized and blinded animals. From our results, we can suggest that the arrest of vitellogenesis, the depletion of energetic resources, and the regulation of oestradiol levels induced by the high temperature in Rana perezi frogs can be influenced, at least in part, by the pineal complex and lateral eyes.Key words: pinealectomy, blinding, vitellogenesis, frog, temperature.

2016 ◽  
Vol 68 (1) ◽  
pp. 117-123
Author(s):  
Predrag Vujovic ◽  
Iva Lakic ◽  
Nebojsa Jasnic ◽  
Tanja Jevdjovic ◽  
Sinisa Ðurasevic ◽  
...  

Given that both prolactin and galanin take part in the regulation of energy homeostasis and that galanin is localized within lactotrophs, this study was aimed at comparing the pituitary expression patterns of prolactin and galanin during different phases of metabolic response to starvation in adult Wistar male rats. Food was removed at the onset of the dark phase (6:00 pm) and the animals were deprived for 6, 12, 24 and 48 h. Each of the starved groups (n=6) was killed simultaneously with a group of ad libitum-fed rats (n=6), and the intrapituitary levels of prolactin and galanin were examined. Galanin expression in the hypothalamus and the circulating levels of prolactin were also assessed. Starvation induced a rise in the intrapituitary prolactin level (p<0.001), whereas the opposite trend was detected in the serum (p<0.05). The galanin pituitary level was initially increased (6, 12 h) (p<0.05), but as starvation progressed, it first reached (at 24 h) and ultimately fell below the level recorded in the ad libitum rats (at 48 h) (p<0.05). Both prolactin and galanin were elevated in the hypothalamus after 24- and 48-h starvation. The results show that the starvation-induced increase in the pituitary prolactin expression did not lead to the rise in prolactin circulating levels, but rather resulted in the elevation of the prolactin hypothalamic content. Furthermore, the results suggest that under the circumstances of disturbed energy homeostasis, galanin might be responsible for the augmented prolactin production, initially at the pituitary and subsequently at the hypothalamic level.


2020 ◽  
Vol 10 (1) ◽  
Author(s):  
Changi Wong ◽  
Yee Soon Ling ◽  
Julia Lih Suan Wee ◽  
Aazani Mujahid ◽  
Moritz Müller

AbstractNepenthes, as the largest family of carnivorous plants, is found with an extensive geographical distribution throughout the Malay Archipelago, specifically in Borneo, Philippines, and Sumatra. Highland species are able to tolerate cold stress and lowland species heat stress. Our current understanding on the adaptation or survival mechanisms acquired by the different Nepenthes species to their climatic conditions at the phytochemical level is, however, limited. In this study, we applied an eco-metabolomics approach to identify temperature stressed individual metabolic fingerprints of four Nepenthes species: the lowlanders N. ampullaria, N. rafflesiana and N. northiana, and the highlander N. minima. We hypothesized that distinct metabolite regulation patterns exist between the Nepenthes species due to their adaptation towards different geographical and altitudinal distribution. Our results revealed not only distinct temperature stress induced metabolite fingerprints for each Nepenthes species, but also shared metabolic response and adaptation strategies. The interspecific responses and adaptation of N. rafflesiana and N. northiana likely reflected their natural habitat niches. Moreover, our study also indicates the potential of lowlanders, especially N. ampullaria and N. rafflesiana, to produce metabolites needed to deal with increased temperatures, offering hope for the plant genus and future adaption in times of changing climate.


2020 ◽  
Vol 8 (6) ◽  
pp. 796
Author(s):  
Ivana Cavello ◽  
María Sofía Urbieta ◽  
Sebastián Cavalitto ◽  
Edgardo Donati

Geothermal areas are the niches of a rich microbial diversity that is not only part of the intangible patrimony of a country but also the source of many microbial species with potential biotechnological applications. Particularly, microbial species in geothermal areas in Argentina have been scarcely explored regarding their possible biotechnological uses. The purpose of this work was to explore the proteolytic and keratinolytic enzymatic potential of microorganisms that inhabit in the Domuyo geothermal area in the Neuquén Province. To this end, we did enrichment cultures from two high-temperature natural samples in mineral media only supplemented with whole chicken feathers. After the isolation and the phylogenetic and morphologic characterization of different colonies, we obtained a collection of Bacillus cytotoxicus isolates, a species with no previous report of keratinolytic activity and only reported in rehydrated meals connected with food poisoning outbreaks. Its natural habitat has been unknown up to now. We characterized the proteolytic and keratinolytic capacities of the B. cytotoxicus isolates in different conditions, which proved to be remarkably high compared with those of other similar species. Thus, our work represents the first report of the isolation as well as the keratinolytic capacity characterization of strains of B. cytotixicus obtained from a natural environment.


1961 ◽  
Vol 200 (6) ◽  
pp. 1277-1284 ◽  
Author(s):  
T. C. Smith ◽  
L. Will ◽  
J. Oleson ◽  
K. -F. Benitz ◽  
J. Perrine ◽  
...  

Response of transplanted and nontransplanted fat bodies to various hormones, tolbutamide, and hypoglycin A was compared by measuring the amount of lipids in the dissected fat bodies after 2 weeks treatment. Simultaneous measurements of food intake and body weight were made to serve as a basis for evaluating the effects on fat. Protamine zinc insulin produced an increase in lipid content of the testicular fat body, accompanied by elevation in food intake in three of five experiments; hydrocortisone acetate, triamcinolone or its 16,21-diacetate, or diethylstilbestrol brought about decreases in lipid with either no change or a decline in food intake; epinephrine·HCl or growth hormone elicited decreases in lipid without significantly influencing food intake or body weight. Generally, transplanted fat was more responsive to these agents than the undisturbed fat body. Both tolbutamide and hypoglycin A decreased lipids in the transplant without affecting those in untransplanted fat. Food intake, body weight, and blood glucose were not changed.


2005 ◽  
Vol 17 (2) ◽  
pp. 246 ◽  
Author(s):  
G.V. Druery ◽  
M.D. Rival ◽  
D.A. Taggart ◽  
G.A. Shimmin ◽  
A.B. Horsup ◽  
...  

The southern hairy-nosed wombat (SHW), Lasiorhinus latifrons, is a model species in which to develop assisted breeding techniques for the endangered northern hairy-nosed wombat, Lasiorhinus krefftii. We recently showed that anoestrus SHW respond to eutherian gonadotrophins by production of multiple ovarian follicles, but ovulation had not occurred at the time of examination 24 h post-LH (Druery GV et al. 2003 Theriogenology 59, 391 abst). This study investigated the timing of ovulation in six anoestrus captive adult female SHW (n = 3 per group) after ovarian superstimulation using porcine FSH (200 mg total, Folltropin-V, Bioniche, Belleville, Ontario, Canada) administered s.c. at 12-h intervals over 7 days. Ovulation was triggered by a single s.c. dose of porcine LH (25 mg Lutropin-V, Bioniche) 12 h after the final FSH injection. Superstimulatory response was determined by laparoscopy immediately after the final FSH injection on Day 7 prior to LH. Group 1 was re-examined at 33, 36, and 39 h post-LH, and Group 2 at 42, 45, and 48 h post-LH, for evidence of ovulations using laparoscopy and transabdominal ultrasonography. Laparoscopy on Day 7 revealed an ovarian follicular response in all six females, which coincided with the highest levels of estradiol. The reproductive tract also responded to the treatment (swollen fimbriae and enlarged, highly vascular uteri). Multiple follicles (range 16–31) up to 11 mm in diameter were observed in five females. One female had ovulated, as determined by the presence of corpora lutea. Transabdominal ultrasonographic imaging was unable to confirm the number of follicles in stimulated ovaries. Ovulation had commenced by 36 h post-LH, with the majority occurring 39–45 h post-LH. Ovulation was recorded as having occurred if a dark red, highly vascular crater on the surface of the newly formed corpus hemorrhagicum was observed. Increased circulating levels of progesterone were confirmed 9 days after the last laparoscopies. These results have important implications for the development of assisted reproductive technologies in the SHW: (1) transabdominal ultrasound imaging is ineffective for determining ovarian activity; (2) laparoscopy is a well-tolerated, repeatable minor surgical procedure that can be used for intrauterine AI in this species in which nonsurgical AI is unlikely to succeed (Paris DBBP et al. 2003 Theriogenology 59, 401 abst); and (3) knowledge of the timing of ovulation will enable insemination of spermatozoa into the uterus prior to ovulation. Financial support was provided by Dr. M. Jacobson, and hormones were supplied by Bioniche.


2021 ◽  
Author(s):  
◽  
Lauren Fracasso

<p>Members of the phylum Cnidaria, such as corals and sea anemones, often form mutualistic endosymbiotic relationships with photosynthetic dinoflagellates that are founded upon a reciprocal exchange of nutrients. In this exchange, the cnidarian host provides its symbionts with nutrients derived through respiration, heterotrophy, and the environment, while the symbionts provide their host with products of photosynthesis. The energy derived from this exchange is utilized for metabolism, growth, and reproduction; alternatively, it can be accumulated into storage bodies for use during nutritional shortages or stress. Cnidarian-algal symbioses can be found throughout the world and vary in their sensitivity to stress, with environmental changes playing a prominent role in inducing stress. Tropical cnidarian-dinoflagellate symbioses are particularly vulnerable to temperature change, with increases of just 1-2℃ above their upper thermal limit often resulting in bleaching (the breakdown of symbiosis via symbiont expulsion). In contrast, temperate cnidarian-dinoflagellate symbioses exhibit far greater tolerance to such environmental stressors, and are rarely seen to bleach in the field. It is unclear how temperate cnidarian-dinoflagellate symbioses achieve this resilience and stability.   This thesis examines the effects of changes in temperature and irradiance on the content of energy-rich cellular storage products in the temperate sea anemone Anthopleura aureoradiata and its dinoflagellate endosymbionts (family: Symbiodiniaceae), in order to assess the potential of these compounds in contributing to the overall stability of the symbiosis. In particular, symbiont density and chlorophyll content (as well as photosynthetic efficiency, for experimental study only), in addition to both symbiont and host protein content, served as indicators of physiological health, and were then related to the accumulation of cellular storage products such as lipids and carbohydrates.  A field study was conducted in which a population of A. aureoradiata was sampled from Wellington Harbor, New Zealand, at monthly intervals for one year. Despite monthly and seasonal variability in the physiological parameters measured, the symbiosis remained functional and stable (i.e. no signs of bleaching) throughout the year. The greatest inter-seasonal variation occurred in the symbiont cell-specific carbohydrate content, which decreased significantly between spring and summer. In contrast, host lipid content exhibited less variation than all other symbiont and host storage products. These observations suggest that symbiont carbohydrate stores are primarily utilized to sustain the symbiosis during times of seasonal environmental change (in this case, correlating with increased light and temperature during summer), while lipids may be kept in reserve. The robustness of this field population is expected; being a native species, A. aureoradiata is likely highly acclimated to the conditions that were observed throughout the year of this field study. A separate population of A. aureoradiata was subsequently acclimated to a moderate regime of temperature and irradiance, and then exposed to one of six treatments of different combined temperatures and irradiances (based on seasonal conditions in the Wellington Harbour), to establish their interactive effects on cellular storage product content. Specifically, three thermal regimes (low: 9±1°C, moderate: 14.5±1°C, high: 21±1°C), each at a low (70±10 µmol photons m-2 s-1) or high (145±15 µmol photons m-2 s-1) irradiance, were maintained for a total of sixteen weeks. Unlike in the field, a breakdown in symbiosis was observed; photo-physiological dysfunction of the symbiosis was observed within four weeks in all anemones exposed to low temperature at both irradiances, and bleaching was apparent by week eight. This response likely arose from a combination of the rapid decrease in temperature experienced upon distribution into the low-temperature tank, as well as the prolonged nature of the conditions in the experiment, which would not be experienced in the field. In contrast, the anemones maintained at both irradiances in the moderate and high temperature treatments maintained a stable symbiosis, suggesting that these conditions were not extreme enough to cause notable stress. In fact, anemones kept under both low and high irradiance within the moderate temperature treatment increased in symbiont density and exhibited the highest host lipid content relative to the other treatments, suggesting that this treatment was near-optimal for the symbiosis. Perhaps interestingly, both the moderate and high temperature treatments induced significant reductions in symbiont-specific protein, lipid, and carbohydrate content, while host storage products decreased less drastically. This observation suggests increased utilization of symbiont storage products to maintain a healthy symbiosis under these experimental conditions.   My findings are consistent with previous reports of seasonal stability in temperate cnidarian-dinoflagellate symbioses; moreover, I provide experimental evidence for the utilization of symbiont storage products as a means of maintaining symbiosis stability, though this was less apparent in the field. Although recent studies have made great progress in identifying patterns of stability in temperate cnidarian-dinoflagellate symbioses, additional studies are required to build a more comprehensive picture of the mechanisms involved. Future studies would benefit from increased frequency of field sampling, including assessments of nutrient availability and host reproductive cycles, to better understand the monthly and seasonal variability in the intracellular storage product use observed in the field. Nevertheless, results of this study contribute to an improved understanding of the physiology and remarkable stability of temperate cnidarian-dinoflagellate symbioses, with implications for predictions of how they might respond to future climate change scenarios.</p>


1996 ◽  
Vol 74 (10) ◽  
pp. 1665-1670 ◽  
Author(s):  
N. T. Bakardjieva ◽  
N. Christova ◽  
K. Christov

Incubation of peroxidase from Mnium sp. and Polypodium vulgare with calcium or zinc ions caused an activation or inhibition. The enzyme was thermostabilized. The pronounced effect of calcium is interpreted as the result of its established structural role in the enzyme molecule and the hypothesis that calcium maintains the peptide bonds around the active site. The individual peroxidase isoenzymes reacted differently to metal ions added and to increased temperatures. These results are important for characterization of metabolic response to environmental stress and can be used in biological monitoring. Keywords: peroxidase, enzyme thermosensitivity, mosses, ferns, calcium, zinc.


2021 ◽  
Vol 49 (2) ◽  
pp. 329-341
Author(s):  
Martin Arenas ◽  
Alfonso Álvarez-González ◽  
Álvaro Barreto ◽  
Adolfo Sánchez ◽  
Gerard Cuzon ◽  
...  

This study was conducted to evaluate juveniles' Ocyurus chrysurus (13.7 ± 0.45 g initial weight) to utilize lipid as an energy source on growth, feed efficiency, body composition, digestive and hepatic enzyme activities. Four diets of two protein levels (40 and 50%) with two lipid levels (6 and 12%) and 2% of digestible carbohydrates were formulated. Fish were fed for 60 days to apparent satiation at a stocking density of 10 fish per tank (100 L). Growth gain of fish fed 50% dietary protein was higher than of fish fed 40% dietary protein (P < 0.05). However, feed efficiency was significantly higher at 12 than 6% of dietary lipid. Whole-body lipid and glycogen in the liver increased dramatically with dietary lipid content-alkaline protease activity trend increased as dietary protein increased. Trypsin activity increased significantly as dietary lipid decreased, whereas chymotrypsin activity showed the opposite trend (P < 0.05). Bile salt-dependent lipase activity trend towards increasing as dietary energy decreased. Glucose-6-phosphate dehydrogenase (G6PDH), 6-phosphogluconate dehydrogenase (6PGDH), and fructose-1, 6-biphosphatase (FBPase) significantly increased with increasing dietary lipid levels. However, alanine aminotransferase (ALT) activity increased with dietary protein content. On the other side, pyruvate kinase (PK) activity increased with both dietary protein and lipid content. This study indicates that high dietary lipid (12%) improved the feed efficiency but did not reduce dietary protein demand in juveniles O. chrysurus.


2018 ◽  
Author(s):  
Karine Casier ◽  
Valérie Delmarre ◽  
Nathalie Gueguen ◽  
Catherine Hermant ◽  
Elise Viodé ◽  
...  

ABSTRACTTransposable element (TE) activity is repressed in animal gonads by PIWI-interacting RNAs (piRNAs), a class of small RNAs produced by specific loci made of TEs insertions and fragments. Current models propose that these loci are functionally defined by the maternal inheritance of piRNAs produced during the previous generation, raising the question of their first activation in the absence of piRNAs. Taking advantage of an inactive cluster of P-element derived transgene insertions, we show here that raising flies at high temperature (29°C) instead of 25°C results in a rare but invasive epigenetic conversion of this locus into an active piRNAs producing one. The newly acquired epigenetic state is stable over many generations even when flies are switch back to 25°C. The silencing capacities, piRNA production and chromatin modifications of the cluster are all identical whether conversion occurred by maternal piRNA inheritance or by high temperature. We also demonstrate that in addition to high temperature, a single homologous transgene inserted elsewhere in the genome is required to activate the locus. We thus have identified a minimal system of three components to create a stable piRNA producing locus: 1) a locus with multiple TE derived sequences; 2) an euchromatic copy of these sequences and 3) elevated temperature. Altogether, these data report the first case of the establishment of an active piRNA cluster by environmental changes. It highlights how such variations of species natural habitat can become heritable and shape their epigenome.SIGNIFICANCE STATEMENTRecently, we have witnessed great progress in our understanding of the silencing of Transposable Elements (TEs) by piRNAs, a class of small RNAs produced by piRNA clusters. At each generation, piRNA clusters are supposed to be activated by homologous piRNAs inherited from the mother raising the question of the making of the first piRNAs. Here, we report the birth of a stable and functional piRNA cluster induced by high temperature without maternal inheritance of homologous piRNAs. We propose a minimal system to create a piRNA cluster: a sufficient number of repeated sequences, a euchromatic copy of these sequences and an increase in the production of antisense RNA.


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