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1.
Whole body DNA turnover in the goldfish, as measured by the rate of loss of incorporated 125I-deoxyuridine, is remarkably invariant over a temperature range of 30 centigrade degrees. Apparently cell proliferation kinetics in this poikilotherm do not simply reflect chemical reaction rates but are under some sort of homeostatic control with respect to temperature. At the nearly lethal temperature of 37°C the rate of cell turnover increases and the absolute number of proliferating cells decreases.  相似文献   

2.
A new continuous line of goldfish somatic cells, designated SJU-1 has been continuously subcultured over a 39-month period. Best growth was obtained at 20°C over a pH range of 6.8–7.2. The minimal and optimal seed inocula, in terms of per cent cell increase, were determined to be 1.1 × 106 and 2.5 × 106, respectively. The susceptibility of the SJU-1 line to infectious pancreatic necrosis virus offers an available assay system for goldfish in vivo and goldfish cells in vitro interferon studies. Chromosomal analyses of the line were also carried out.  相似文献   

3.
Callus of 'Marsh' grapefruit ( Citrus paradisi Macf.) albedo tissue was used to investigate the effect of preconditioning temperature on the rate of chilling - stimulated K+ leakage. Callus grew most rapidly at 30°C and attained a weight of about 1 g after 30 days. The rate of K.+ leakage from nonchilled callus tissue decreased as temperature decreased from 20 to 7.5°C, but no measurable change in rate was observed between 7.5 and 0°C. When calli were held for 40 days at 01 2.5 or 5°C, K+ leakage increased 200%, 60% or 0%) respectively. Holding callus for 5 days at 10 or 15°C prior to chilling for 40 days at 0°C prevented the increase in K+ leakage observed in callus receiving no preconditioning treatment. Preconditioning at 7.5 and 20°C was less effective in reducing chilling - induced leakage. Preconditioning at 10°C for 5, 2 or 1 day reduced chilling – induced leakage after 40 days at 0°C by 50%, 33% and 15%. respectively.  相似文献   

4.
Abstract: Secretion of both epinephrine and norepinephrine by cultured chromaffin cells was studied at temperatures ranging from 0°C to 37°C. The percentage of epinephrine secreted was always lower than that of norepinephrine when the cells were stimulated with either acetylcholine or high K+ at any temperature. When the cells were stimulated with acetylcholine or carbachol the percentage of catecholamine secreted at 10 min increased with temperature from 4°C to 24°C and then decreased from 24°C to 37°C. Potassium-stimulated cells secreted increasing amounts of catecholamine as the temperature was increased to 37°C. We found, however, that the initial rates of secretion increased continuously as temperature increased throughout the range for both carbachol-and K+-stimulated cells. The temperature maximum of acetylcholine-stimulated secretion is caused by a faster shut-off of secretion at higher temperature. The Arrhenius plots of initial rates show an inflection point at approximately 17°C for carbachol-stimulated cells. The plot for K+-stimulated cells is a straight line over the entire temperature range. The transition could be caused by a conformational change in the cholinergic receptor/ion channel molecule.  相似文献   

5.
The LT50 (lethal temperature) of first instar and adult stages of the peach-potato aphid Myzus persicae was lowered following long term acclimation at low temperatures.
First instars consistently showed greater cold hardiness than adult stages at each acclimation temperature, with the differential increasing as the temperature was lowered. When maintained at 5°C (the lowest acclimation regime) nymphs and adults had dLT508.3°C and 4.7°C respectively lower than those for non-acclimated individuals.
When 10°C acclimated adults were returned to 20°C, the acclimation effect was retained in full for 6 days but complete deacclimation occurred by day 10. In contrast the LT50 of their progeny increased gradually from the first day of adult deacclimation towards the level of the unacclimated control over a period of 10 days.
A change in cold hardiness was observed in first instars according to their position in the birth sequence. The LT50 of first-born nymphs (day 1 of reproduction) from 20°C parents was - 15.9°C rising to - 8.3°C by day 4 and remaining at this level until the end of the reproductive period.
The differential mortality between nymphs and adults observed in the laboratory was supported by the results of a field experiment. Adult aphids kept in clip-cages on a crop of oilseed rape showed greater mortality compared with those introduced as nymphs when the minimum temperature fell below -4°C for the first time in winter. At - 10°C mortality of aphids introduced as adults approached 100% whereas more than 50% of those introduced as nymphs were still alive at this temperature.  相似文献   

6.
The effect of temperature (1–34 °C ) on the maximum specific growth rate of Aeromonas salmonicida could not be described by the classical growth models ; for some strains, two optimal temperatures at 23 °C and 30 °C were observed, as well as an unexpected increase in the pseudolag time above 27 °C. This could be explained by the presence of two subsets, notably S-layer+ and S-layer sub-populations. The A cells had higher growth parameters (Topt and μopt) than the A+ cells and were selected by subcultures above 30 °C. Yet the relative proportion of A+ cells did not explain all the variation of μmax versus temperature, and the growth kinetics of an Aer. salmonicida isolate remained unpredictable.  相似文献   

7.
Acclimation of respiration to temperature is not well understood. To determine whether whole plant respiration responses to long-term temperature treatments can be described using the Q10 concept, the CO2 exchange rate of marigolds ( Tagetes patula L. 'Queen Sophia'), grown at 20°C or 30°C, was measured for 62 days. When plants of the same age were compared, plants grown at 20°C consistently had a higher specific respiration (Rspc) than plants grown at 30°C (long-term Q10= 0.71–0.97). This was due to a combination of greater dry mass at 30°C and a decrease in Rspc with increasing mass. When plants of the same dry mass were compared, the long-term Q10 was 1.35–1.55; i.e. Rspc was higher at 30°C than at 20°C. Whole plant respiration could be accurately described by dividing respiration into growth and maintenance components. The maintenance respiration coefficient was higher at 30°C than at 20°C, while the growth respiration coefficient was lower at 30°C, partly because of temperature-dependent changes in plant composition. These results suggest difficulties with interpreting temperature effects on whole plant respiration, because conclusions depend greatly on whether plants of the same age or mass are compared. These difficulties can be minimized by describing whole plant respiration on the basis of growth and maintenance components.  相似文献   

8.
The effects of hyperoxia and change of temperature (range 20–30° C) on blood gases were studied in the teleost fish Piaractus mesopotamicus , native to several major river systems in Brazil. Large hyperoxia-induced increases of arterial P o2 ( P ao2) indicated that true branchial blood shunts are negligible in relation to total gill perfusion. This implies that blood gases will be influenced by ventilation rather than by shunts. Acute variations of temperature ( t ) were accompanied by changes of arterial blood pH (on the average Δ p HaΔt−1 of — 0·015 units °C−1), due mainly to alterations of P aco2: 2·4 mmHg at 20° C, 5·0 mmHg at 30° C. Concomitantly, P ao2 declined from 116 mmHg (20° C) to 89 mmHg (30° C). The data suggest that temperature-induced changes of acid-base status depend mainly on gill ventilation and that the decrease of P ao2 with higher temperature is a result of this regulation.  相似文献   

9.
The equilibrium carbon storage capacity of the terrestrial biosphere has been investigated by running the Lund–Potsdam–Jena Dynamic Global Vegetation Model to equilibrium for a range of CO2 concentrations and idealized climate states. Local climate is defined by the combination of an observation-based climatology and perturbation patterns derived from a 4 × CO2 warming simulations, which are linearly scaled to global mean temperature deviations, Δ T glob. Global carbon storage remains close to its optimum for Δ T glob in the range of ±3°C in simulations with constant atmospheric CO2. The magnitude of the carbon loss to the atmosphere per unit change in global average surface temperature shows a pronounced nonlinear threshold behavior. About twice as much carbon is lost per degree warming for Δ T glob above 3°C than for present climate. Tropical, temperate, and boreal trees spread poleward with global warming. Vegetation dynamics govern the distribution of soil carbon storage and turnover in the climate space. For cold climate conditions, the global average decomposition rate of litter and soil decreases with warming, despite local increases in turnover rates. This result is not compatible with the assumption, commonly made in global box models, that soil turnover increases exponentially with global average surface temperature, over a wide temperature range.  相似文献   

10.
Abstract.  The influence of temperature on the insect cell line, BmN, derived from the silkworm, Bombyx mori is investigated. These cells proliferate at an accelerated pace as the temperature increases from 22 to 30 °C, but the growth rate slows at 34 °C, and proliferation stops at 38 °C. At high temperatures, abnormal cellular morphology is observed. Cells treated at 38 °C have cytoplasmic bilateral protrusions and they gradually aggregate and float in the medium. BmN cells without proliferation at 38 °C are viable but have reduced DNA synthesis. At high temperatures, the cell cycle of BmN cells halts at the G2 phase. After heat treatment of the larvae, an accumulation of larval haemocytes with high DNA content is found, which suggests that the cell cycle arrest at G2 also occurs in the silkworm at high temperatures.  相似文献   

11.
12.
Underyearling Lake Inari Arctic charr Salvelinus alpinus were acclimated to 11·0) C for 3 weeks, and then one group was maintained at 11·0) C and others were exposed to 14·4) Cconst, 17·7) Cconst or a diel fluctuating temperature of 14·3° C ± 1° C (14·3° Cfluc). Routine rates of oxygen consumption and ammonia excretion were measured over 10 days before the temperature change and over 31 days following the change. Measurements were made on fish that were feeding and growing. The temperature increase produced an immediate increase in oxygen consumption. There was then a decline over the next few days, suggesting that thermal acclimation was rapid. For groups exposed to constant temperature there was an increase in oxygen consumption ( M accl, mg kg−1 h−1) with increasing temperature ( T ), the relationship being approximated by an exponential model: M accl= 46·53e0·086 T . At 14·3° Cfluc oxygen consumption declined during the 3–4 days following the temperature shift, but remained higher than at 14·4° Cconst. This indicates that small temperature fluctuations have some additional influences that increase metabolic rate. Ammonia excretion rates showed diel variations. Excretion was lower at 11° Cconst than at other temperatures, and increases in temperature had a significant effect on ammonia excretion rate. Fluctuating (14·3° Cfluc) temperature did not influence ammonia excretion relative to constant temperature (14·4° Cconst).  相似文献   

13.
Oxygen consumption (o2) and respiratory variables were measured in the Prochilodontid fish, Prochilodus scrofa exposed to graded hypoxia after changes in temperature. The measurements were performed on fish acclimated to 25°C and in four further groups also acclimated to 25°C and then changed to 15, 20, 30 and 35°C. An increase in o2 occurred with rising temperature, but at each temperature o2 was kept constant over a wide range of O2 tensions of inspired water ( Pi o2). The critical oxygen tensions ( Pc o2) were Pi o2= 22 mmHg for 25°C acclimated specimens and after transfer from 25°C to 15, 20, 30 and 35°C the Pc o2 changed to Pi o2= 28, 22, 24 and 45 mmHg, respectively. Gill ventilation ( G ) increased or decreased following the changes in o2 as the temperature changed and was the result of an accentuated increase in breath frequency. During hypoxia the increases in G were characterized by larger increases in breath volume. Oxygen extraction was kept almost constant at about 63% regardless of temperature and ambient oxygen tensions in normoxia and moderate hypoxia ( P o2∼70 mmHg). P. scrofa showed high tolerance to hypoxia after abrupt changes in temperature although its survival upon transfer to 35°C could become limited by the capacity of ventilatory mechanisms to alleviate hypoxic stress.  相似文献   

14.
The influence of various factors on the fate of Listeria monocytogenes on cut leaves of broad-leaved endive has been studied. Factors considered were temperature, characteristics of the leaves (age, quantity and quality of the epiphytic microflora) and characteristics of the L. monocytogenes inoculum (concentration, strain). The increases in numbers of L. monocytogenes were lower than those of the aerobic mesophilic microflora at 3°, 6°, 10° and 20°C. Doubling times of the populations of L. monocytogenes were in the same order of magnitude as those of aerobic bacteria at 10° and 20°C, but longer at 3° and 6°C. There were positive significant correlations between growth of L. monocytogenes and populations of aerobic bacteria, and between growth of L. monocytogenes and extent of spoilage on the leaves.
Of 225 bacteria isolated from the leaves, 84% were identified as fluorescent pseudomonads; there was no difference in the species isolated from leaves that showed a low growth of L. monocytogenes and leaves that showed a high growth of L. monocytogenes. Populations of L. monocytogenes increased faster during the first 2 and 4 d of storage at 10°C on leaves inoculated with 10–103 cfu g-1 than on leaves inoculated with about 105 cfu g-1, but the population reached after 7 d was lower. The behaviour of L. monocytogenes was similar among the three strains tested.  相似文献   

15.
The effect of temperature on the growth rate, protein pattern and fatty acid composition of Yersinia enterocolitica strain W22703 pYV+, its plasmidless isogenic derivative W22703 pYV- and four recent field isolates was examined.
The growth rate was clearly influenced by presence or absence of the virulence plasmid: pYV- strains grew consistently faster than pYV+ strains. This difference in growth rate was high at 30–35°C, moderate at 1–10°C and 25°C, but hardly significant at 15–20°C.
Increasing the growth temperature above 25°C resulted in the induction of the 220 kDa virulence plasmid-encoded Yop1 protein. In the 1–20°C range no obvious temperature- or plasmid-related differences in protein patterns could be detected.
The fatty acid composition showed a clear temperature-dependent change: with all strains the degree of saturation was low at 1°C and gradually increased with raising temperatures. All strains had similar fatty acid patterns, except one of the field isolates which showed aberrant C16 : 1 and cyclic fatty acid contents in the 5–25°C and 15°C ranges respectively. With strain W22703, the presence or absence of the virulence plasmid did not significantly alter the fatty acid pattern.  相似文献   

16.
Year-class strength in northern populations of smallmouth bass is strongly influenced by winter starvation of young-of-the-year. We examined starvation among young bass under both winter and summer light and temperature conditions. During starvation, body condition declines to a specific level and then the fish dies. Body condition at death is a well defined function of body size that remains relatively constant over a wide range of environmental conditions. Starvation rate varies systematically with body size, temperature, pH and water hardness. Available stored energy increases more rapidly with body size than starvation rate. Therefore, lifetime under starvation conditions tends to increase with increasing body size. The Q10 for starvation rate over the temperature range 2.5-8° C is 2.2. Starvation rate increases as pH declines from 7.0-4.9: the rate at pH 4.9 is ∼ 1.25 times the rate at pH 7 Starvation rate decreases as Ca concentration increases from 1 mgl−1 to 80mgl−1: the rate at 80 mg Ca 1−1 is ∼0.80 times the rate at 1 mgl−1.  相似文献   

17.
Smallmouth bass larvae became highly sensitive to oxygen deficiency on the second day after hatching and continued so to the 10th day. During this period they could not survive exposure to 1 mg O2 l–1 for 3 h at 20° C, and many were killed within 1 h. At 2 mg O2 l–1 half the larvae survived 3 h at 20° C; at 2.5 mg l–1 most survived, and at 3.5 mg l–1 all survived. Resistance to oxygen deficiency was regained by the 11th day, the majority of the larvae withstanding a 3-h exposure at 1 mg O2 l–1. At 25° C the effects of low oxygen concentration were intensified. At 3 and 4 mg O2 l–1 and 20° C the normally quiescent larvae became very active, even swimming to the surface 5 or 6 cm above the substrate. Increasing the temperature increased this response. Smallmouth larvae were more sensitive than large-mouth bass larvae to oxygen deficiency.  相似文献   

18.
Literature data are analysed regarding losses of body substances occurring during a period of food deprivation in rainbow trout ( Oncorhynchus mykiss ). Nitrogen (protein) and energy losses show a distinct dependence on fish mass (FM [g]) and water temperature (T [°C]). Several regression models for this relationship were compared with best testing estimates as follows:
Nitrogen loss [mg N 2 fish−1 2 d−1] = 0.0658 e(1.037) 2 FM0.739
( n = 49, 9–20°C, 5–400g fish mass, P < 0.001, B = 0.826)
Nitrogen-corrected energy loss [J 2 fish−1 2 d−1] = 22.09 e(1.034) 2 FM0.833
( n = 63, 9–25°C, 8–400 g fish mass, P < 0.001, B = 0.887).
For nitrogen loss as well as for nitrogen-corrected energy loss, the metabolic rate shows a progressive increase with rising water temperature. The temperature coefficient increases in magnitude as temperature increases. The introduction of a general common exponent (0.8 instead of 0.739 for nitrogen loss and 0.833 for energy loss) for fish mass decreases the precision of the estimate. The equations could serve as a base for estimating net protein and net energy maintenance requirements of rainbow trout. Possible limitations, caused by uncertainities in estimating the elevated metabolic rate by food intake and ingestion, are discussed.  相似文献   

19.
Oxygen consumption of carp acclimated at 10 and 20° C has been measured under routine conditions. Some complications and precautions necessary in continuous flow respirometry are discussed. Routine V o2 at different levels of hypoxia have been determined. Individual variation leads to scatter in the data and different methods of plotting the relationship between V o2 and P o2 are proposed; attention is drawn to differences between inlet (or ambient) P o2 and inspired P o2. Using certain criteria a 'critical' oxygen tension of about 95 mm Hg was found at 20° C; Q 10 values are about 2 at normoxia and some suggestions of an increase near to the critical oxygen tension were found. Blood samples from the dorsal aorta showed rising Pa,o2 of 16 mm Hg which increased to 70–80 mm Hg when P insp was 90 and they then fall as the inspired oxygen is lowered. During periods of deep hypoxia (25 mm Hg) blood lactate concentration increases steadily and indicates an increasing dependence on anaerobic mechanisms.  相似文献   

20.
Turbot Scophthalmus maximus maximum oxygen uptake following feeding and exhaustive exercise increased from 107 mg O2 kg−1 h−1 at 6° C to c . 218 mg O2 kg−1 h−1 at 18° C, then increased slightly from 18 to 22° C to 224 mg O2 kg−1 h−1. Standard oxygen uptake increased exponentially as a function of temperature from 11 mg O2 kg −1 h−1 at 6° C to 66 mg O2 kg−1 h−1 at 22° C. Gradual reduction in oxygen concentration to 87–90% air saturation at 6, 10. 18° C and <80% at 14 and 22° C limited the maximum metabolic rate but, supersaturation (>100% saturation) had little effect. Metabolic scope attained a maximum of 176 mg O2 kg−1 h−1 at 18° C. Interpolation of the results showed that this value changed little between 16 and 20° C. It is suggested that this temperature range is optimal for turbot of c . 500 g. A comparison with a previous study on feeding demand in intensive farming conditions showed a linear relationship between appetite and metabolic scope. It is concluded that the ability of a fish to supply energy (including the energy requirement of digestive metabolism) above a standard level is a limiting factor in the manifestation of its feeding demand.  相似文献   

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