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1.
  • 1.1. The thermal preference of four scorpion species—two from xeric habitats and two from mesic habitats—was observed in a temperature-gradient.
  • 2.2. The two scorpions from mesic habitats responded positively to lower temperatures. The xeric species stayed longer in higher temperatures.
  • 3.3. In each pair of scorpion species studied here (the mesic and the xeric species), one of them responded to a more limited temperature range whereas the other to a wider range.
  • 4.4. The significance of these findings is discussed in relation to the microclimate in the scorpion's microhabitat and to their dispersal pattern.
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2.
  • 1.1. The short-term resting rates of oxygen consumption of laboratory white mice (Mus musculus) and Mongolian gerbils (Meriones unguiculatus) were measured by closed system manometry.
  • 2.2. Metabolic rates of animals tested individually were compared to those of huddled trios and trios in which the animals were tested simultaneously but prevented from physical contact (separated trios) at temperatures ranging from 9–25° C.
  • 3.3. Rates of increase of weight-specific resting metabolism were greatest for animals tested individually.
  • 4.4. There was no significant difference in the rates of increase of oxygen consumption between huddled and separated trios in cither species.
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3.
  • 1.The thermal coadaptation hypothesis predicts that (1) ectotherms experiencing a narrow range of body temperatures in the wild will evolve to perform well over a narrow range of body temperatures and that (2) the optimal temperature for performance will be equal to the preferred body temperature of the species.
  • 2.We tested the predictions of the thermal coadaptation hypothesis with black rat snakes (Elaphe obsoleta) and northern water snakes (Nerodia sipedon) because black rat snakes experience lower and more variable body temperatures than northern water snakes at our study site.
  • 3.We measured swimming speed, tongue-flicking speed, and striking speed in black rat snakes, and swimming speed and tongue-flicking speed in northern water snakes.
  • 4.Adult water snakes generally had narrower performance breadths and higher optimum performance temperatures than adult black rat snakes.
  • 5.Performance breadths were the same for swimming, tongue flicking, and striking within adult black rat snakes, but performance optima for these behaviours differed significantly. Performance breadths differed and performance optima were the same for swimming and tongue flicking within adult northern water snakes.
  • 6.The relative swimming performance of neonates of the two species was similar in breadth to that of adults, but the thermal optimum for neonate black rat snakes was higher than that of adults.
  • 7.Overall, our results provided support for the thermal coadaptation hypothesis.
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4.
  • 1.1. Changes in the glycogen content, condition, stomach content and acetic acid concentration of mussels Mytilus edulis and cockles Cerastoderma edule were followed during periods of up to 14 days of exposure (to air) at temperatures of 5 and 20°C.
  • 2.2. In animals with a high glycogen content the glycogen is not used during the first 3 to 7 days, at high and low temperature respectively.
  • 3.3. After this latent period the glycogen concentration often decreased, coinciding with a high mortality and an increase of the concentration of acetic acid.
  • 4.4. In cockles with a low glycogen content, and kept at a high temperature, glycogen can be used from the beginning of the stress period.
  • 5.5. Between species no clear differences were found.
  • 6.6. The stomach content decreased during exposure; however, the stomach content amounted to only 0.5 to 0.7% of the body weight, and is thought to be of minor importance as an energy source during the stress period.
  • 7.7. Especially at the higher temperatures glycogen finally is transformed into acetic acid.
  • 8.8. It is concluded that during exposure, the animals do not die because of a lack of energy reserves, but because of a high accumulation of acids.
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5.
  • 1.1. The presence of a renin-angiotensin-like system has been investigated in the Antarctic fishes Chionodraco hamatus (Fam. Channichthydae) and Pagothenia (Trematomus) bernacchii (Fam. Notothenidae).
  • 2.2. A renin-like activity is present in plasma and kidney of both the white blooded (Chionodraco) and the red blooded (Pagothenia) species.
  • 3.3. An angiotensin converting enzyme-like activity has been demonstrated in plasma, gills and kidneys of both species. The activity is inhibited by high temperature.
  • 4.4. From our data a renin-angiotensin-like system is present in the Antarctic fishes studied but the cascade of enzymes is active only at low temperatures.
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6.
  • 1.1. The ability to tolerate extracellular freezing as an adaptation for winter survival was tested in seven species of terrestrially-hibernating amphibians found in eastern Canada.
  • 2.2. All species had only moderate supercooling abilities, with whole animal supercooling points of −1.5 to −3°C.
  • 3.3. Two salamander species, Plethodon cinereus and Ambystoma laterale, and the toad, Bufo americamts, were freezing intolerant and were killed when frozen for 24 hr at temperatures just below their supercooling points. The major winter strategy of these animals appears to be behavioural avoidance of subzero temperatures.
  • 4.4. Four species of frogs Rana sylvatica, Hyla versicolor, Hyla crucifer and Pseudacris triseriata, survived extracellular freezing at moderate subzero temperatures (−2 to −4°C) for periods of time ranging up to 2 weeks.
  • 5.5. All four frog species accumulated low molecular weight carbohydrates as cryoprotectants, glycerol being the major cryoprotectant in adult H. versicolor, while immature adults of this species as well as the other three species all produced high levels of glucose as the cryoprotectant.
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7.
  • 1.1. The cardiovascular physiology of adult Carcinus maenas (L.) emerging into air has been investigated at three different air temperatures.
  • 2.2. Transition from seawater to air or vice versa triggered transient increases in cardiac and locomotor activity.
  • 3.3. However, crabs became inactive 5–10 min after emerging from seawater (15°C) into air at the same temperature (15°C) or at lower temperatures (12–13°C) and heart rate fell.
  • 4.4. At higher air temperatures (18–20°C) heart rate rose but to a lesser extent than predicted from aquatic Q10 heart-rate values.
  • 5.5. Crabs were again quiescent in aerial conditions.
  • 6.6. Mean arterial oxygen tension (Pao2) was ~ 74 mmHg in submerged crabs but fell to ~ 38 mmHg in air while mean arterial carbon dioxide tension (Pao2) increased from 1 to 4 mmHg resulting in respiratory acidosis.
  • 7.7. A model of gill function is proposed to explain the development of internal hypoxia in air.
  • 8.8. The results are discussed in relation to the distribution of adult and juvenile C. maenas in situ.
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8.
  • 1.1. Morphological similarities and differences for the urticating apparatus of three Lepidoptera were studied using a scanning electron microscope.
  • 2.2. Complementary anatomical studies of the urticant apparatus were undertaken to explain the morphological results.
  • 3.3. Biochemical identity of a thaumetopoein-like protein (an urticating protein) was demonstrated for Thaumatopoea urticating hairs but not for Hylesia moth spicules.
  • 4.4. Urticating mechanisms appear to be different across species of Lepidoptera.
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9.
  • 1.1. Developing eggs of whitefish (Coregonus lavaretus L.) and vendace (Coregonus albula L.) were kept at 1–2°C and some eggs taken gradually up to 8°C to provoke mass hatching of embryos.
  • 2.2. Wet weight, dry matter and the contents of lipid, protein and ash were measured in fish during the course of experiment.
  • 3.3. Dry matter content decreased gradually in whitefish eggs from 15.64 to 11.95% during 1 month at 1–2°C, whereas vendace eggs showed only a slight decrease from 16.27 to 15.53%.
  • 4.4. In both species protein content decreased but lipid increased when approaching the natural time of hatching.
  • 5.5. During delayed hatching at low water temperatures protein contributes to catabolism, whereas lipid content decreased only in the later phase of the experiment.
  • 6.6. Larvae starved for 10 days after hatching lost increasing amounts of dry matter (from 26.1 to 50.3% of body weight) and protein (from 18.7 to 45.9% of body weight) as they remained longer in cold water as embryos.
  • 7.7. A correspondence was found between assessment of metabolic utilization of body stores based on chemical analysis of fish body and previous work on oxygen consumption and nitrogen excretion.
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10.
  • 1.1. Malleefowl Leipoa ocellata have a lower than predicted metabolic rate, a finding common to many arid adapted avian species.
  • 2.2. Evaporative water loss was as expected by allometric analysis. However, in the wild this species probably reduces its evaporative water loss because their water turnover rate is extremely low.
  • 3.3. Malleefowl coped with temperatures up to 40°C well, but above this temperature they become highly agitated.
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11.
12.
  • 1.1. The regulation of ions at similar concentrations in most individuals of a species suggests the existence of internal reference standards.
  • 2.2. Few have been identified, but many probably relate to cell membrane properties, including potentials, surface charge densities and equilibrium constants of receptor molecules.
  • 3.3. Solubility may sometimes determine the product [Ca2+][CO32−].
  • 4.4. Reference standards must generally each relate to more than one ionic species.
  • 5.5. For some concentrations, including osmolality, there may be no direct reference standard.
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13.
  • 1.1. Hormonal regulation of apolipoprotein E (apoE) gene expression by insulin and thyroid hormone was studied in a human hepatoma cell line, HepG2.
  • 2.2. Changes at the mRNA level, mRNA translation, in vivo synthesis and secretion were monitored.
  • 3.3. Both insulin and triiodothyronine were found to have no significant effect on apoE mRNA levels.
  • 4.4. Insulin treatment caused an inhibition of: (a) the in vitro translation of endogenous apoE mRNA in a HepG2 cell-free system (25%), and (b) the incorporation of radioactivity into newly-synthesized apoE in an in vivo pulse-chase labeling experiment (32%).
  • 5.5. Interestingly, apoE secretion rate was found to be significantly reduced with insulin (84%) suggesting that a major portion of newly-synthesized apoE may be shunted into a degradative pathway.
  • 6.6. Using a similar experimental approach, triiodothyronine showed no significant effect on the rate of apoE synthesis or translation (6–15% decrease), however a slight reduction (20%) in secretion rate was shown.
  • 7.7. Overall, apoE gene expression does not appear to be influenced by triiodothyronine significantly but is modulated by insulin at the translational and post-translational level.
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14.
  • 1.1. Fatty acid and lipid class composition were determined in larvae of four marine species: Atlantic halibut (Hippoglossus hippoglossus L.), plaice (Pleuronectes platessa), cod (Gadus morhua) and turbot (Scophthalmus maximus) at hatching and prior to first feeding.
  • 2.2. Total fatty acid content decreased in the four species with up to 50% reduction in one of the halibut groups. Docosahexanaoic acid (22:6 n-3) was especially utilized.
  • 3.3. Low lipid utilization was found in turbot in relation to the other three species.
  • 4.4. Water environmental temperature may explain some of the differences in the fatty acid utilization and the source of metabolic energy between cold water species (halibut, cod, and plaice) and temperate species (turbot), in the period from hatching to prior to first feeding.
  • 5.5. Relative amounts of neutral lipids and phospholipids were similar in plaice, cod and halibut, approximately 25% and 75% of total lipids, respectively, and were approximately constant during the yolk-sac stage. Neutral lipids were dominant for turbot at hatching, accounting for 53–55% of the total lipids, while phospholipids predominated prior to first feeding, being 56–59%.
  • 6.6. Phosphatidylcholine was catabolized in halibut, plaice and cod but not in turbot, while phosphatidylethanolamine tended to be synthesized in all four species.
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15.
  • 1.1. The activity of l-gulonolactone oxidase (EC 1.1.3.8) in livers of 49 species of eutherian mammals varied intraspecifically among individuals; coefficients of variation were 0.2 to 0.4 in many species.
  • 2.2. Differences observed in l-gulonolactone oxidase activity among strains of laboratory rats and domestic rabbits are probably genetically controlled.
  • 3.3. Pronounced sex differences in l-gulonolactone oxidase activity were found in some species, particularly in the genera Peromyscus, Reithrodontomys and Onychomys.
  • 4.4. Mormota monax exhibited seasonal variation in l-gulonolactone oxidase somewhat like that previously observed in Sylvilagus floridanus; no such seasonal variation was found in Sciurus carolinensis.
  • 5.5. Hibernation did not affect l-gulonolactone oxidase activity in Spermophilus tridecemlineatus.
  • 6.6. In four species of rodents, Microtus ochrogaster, Tylomys panamensis, Octodon degus and Sigmodon hispidus, l-gulonolactone oxidase activity was not affected by the level of dietary ascorbate.
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16.
Absract
  • 1.1. The basal metabolism of the vole, Microtus ochrogaster, a non-hibernator is about 80% below that expected for microtine rodents, while the basal metabolism of the chipmunk, Tamias striatus, is about 20% below that expected for small mammals.
  • 2.2. Blocking thyroid secretion results in a 3°C improvement in the vole. and a 2°C improvement in the chipmunk, to the highest air temperature tolerated.
  • 3.3. Blood levels of thyroxine in both species did not change as a function of ambient temperatures, whereas rates of radioiodine release were reciprocally related to ambient temperature.
  • 4.4. There was no indication that the thyroid gland of the chipmunk was ever inactive either preceding, or during, hibernation.
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17.
  • 1.1. The capacity of five anuran Amphibians (Bufo viridis B. regularis, Rana ridibunda, Hyla arborea and Pelobates syriacus) to acclimate to NaCl and urea solutions was investigated.
  • 2.2. All species could be acclimated to relatively high concentrations of urea solutions, while only Bufo viridis and Hyla arborea could be acclimated to 500 mOsm/kg or higher NaCl solutions.
  • 3.3. The plasma urea concentration in B. viridis and H. arborea was elevated to levels over 140 mmol/1.
  • 4.4. The sum of plasma sodium and chloride concentrations did not increase over 400 mmol/l in any species.
  • 5.5. Urine osmolality, which was normally low, increased, but never exceeded the plasma osmolality.
  • 6.6. In the urea acclimation conditions, urine electrolytes diminished, similarly in all species in this study.
  • 7.7. It is concluded that anuran Amphibians can tolerate high plasma urea concentrations, but only those species which can elevate it, either through retention or net synthesis, can be acclimated to high salt solutions.
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18.
  • (1)The preferred temperatures of Macrobrachium acanthurus were determined for prawns acclimated to 20°C, 23°C, 26°C, 29°C and 32°C, and the final preferendum estimate was (29.5°C).
  • (2)The critical thermal minima (CTMin) and maxima (CTMax) were 11.0°C, 12.1°C, 13.0°C and 14.8°C, and 34.2°C, 35.0°C, 36.1°C and 39.8°C, respectively.
  • (3)The zone of thermal tolerance assessed using the CTMin and CTMax boundaries was 644°C2.
  • (4)The acclimation response ratio was between 0.33 and 0.62.
  • (5)To cultivate this species in the southeastern region of México it should be done in not <15°C (CTMin) during the winter and below 38°C in summer (CTMax).
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19.
20.
  • 1.1. Common carp (Cyprinus carpio) exposed to experimental temperatures of 12, 18, 24, 30 or 36°C for a 4-week period were used to investigate the effect of temperature acclimation on the frequency of opercular movement (FOM), growth and cytochrome c oxidase (CCO) activity in heart, liver and muscle.
  • 2.2. An exponential relationship between FOM and temperature after the first week (1010 =1.76) disappeared after the second week.
  • 3.3. The initially high FOM at temperatures of 30 or 36°C and the low FOM at 18 or 12°C changed over 4 weeks to approach the FOM of fish at 24°C.
  • 4.4. This change in the relationship of FOM to temperature from highly dependent to independent appeared to be thermal compensation.
  • 5.5. Heart and liver CCO activities were significantly affected by temperature, with the lowest activity at the approximate optimum temperature for growth, 24°C.
  • 6.6. Highest CCO activities for heart and liver occurred at both the highest and lowest temperatures.
  • 7.7. Among the three tissues, heart CCO activity was generally the highest and most affected by acclimation temperature.
  • 8.8. Muscle tissue had the lowest CCO activity and was unaffected by temperature.
  • 9.9. The high CCO activity at a cold acclimation of temperature 12°C was probably due to thermal compensation and the high activity at 36°C may have been a result of thermal stress.
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