首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 62 毫秒
1.
At 14° C, standard metabolic rate (75·1 mg O2 h−1 kg−1), routine metabolic rate (108.8 mg O2 h−1 kg−1), active metabolic rate ( c . 380 mg O2 h−1 kg−1), critical swimming speed (Ucrit 1·7 BL s−1), heart rate 47 min−1), dorsal aortic pressure (3·2 kPa) and ventilation frequency (63 min−1) for triploid brown trout Salmo trutta were within the ranges reported for diploid brown trout and other salmonids at the same temperature. During prolonged swimming ( c . 80% U crit), cardiac output increased by 2·3-fold due to increases in heart rate (1·8-fold) and stroke volume (1·2-fold). At 18° C, although standard and routine metabolic rates, as well as resting heart rate and ventilation frequency increased significantly, active metabolic rate and certain cardiorespiratory variables during exercise did not differ from those values for fish acclimated to 14° C. As a result, factorial metabolic scope was reduced (2·93-fold at 18° C v . 5·13-fold at 14° C). Therefore, it is concluded that cardiorespiratory performance in triploid brown trout was not unusual at 18° C, but that reduced factorial metabolic scope may be a contributing factor to the mortality observed in triploid brown trout at temperatures near 18° C.  相似文献   

2.
When swimming at low speeds, steelhead trout and bluegill sunfish tilted the body at an angle to the mean swimming direction. Trout swam using continuous body/caudal fin undulation, with a positive (head-up) tilt angle ( 0 , degrees) that decreased with swimming speed ( u , cm s−1) according to: 0 =(164±96).u(−1.14±0.41) (regression coefficients; mean±2 s.e. ). Bluegill swimming gaits were more diverse and negative (head down) tilt angles were usual. Tilt angle was −3·0 ± 0.9° in pectoral fin swimming at speeds of approximately 0.2–1.7 body length s−1 (Ls−1; 3–24 cm s−1), −4.5 ±2.6° during pectoral fin plus body/caudal fin swimming at 1·2–1·7 L s−1 (17–24cm s−1), and −5.0± 1.0° during continuous body/caudal fin swimming at 1.6 and 2.5 L s−1 (22 and 35cm s−1). At higher speeds, bluegill used burst-and-coast swimming for which the tilt angle was 0.1±0.6°. These observations suggest that tilting is a general phenomenon of low speed swimming at which stabilizers lose their effectiveness. Tilting is interpreted as an active compensatory mechanism associated with increased drag and concomitant increased propulsor velocities to provide better stabilizing forces. Increased drag associated with trimming also explains the well-known observation that the relationship between tail-beat frequency and swimming speed does not pass through the origin. Energy dissipated because of the drag increases at low swimming speeds is presumably smaller than that which would occur with unstable swimming.  相似文献   

3.
Feeding rate experiments were conducted for pink salmon Oncorhynchus gorbuscha fry [mean fork length ( L F) 39 mm], juveniles (103–104 mm L F) and juvenile chum salmon Oncorhynchus keta (106–107 mm L F). Fishes were presented with small copepod ( Tisbi sp.) or larger mysid shrimp ( Mysidopsis bahia ) prey at varying densities ranging from 1 to 235 prey l−1 in feeding rate experiments conducted at water temperatures ranging from 10·5 to 12·0° C under high light levels and low turbidity conditions. Juvenile pink and chum salmon demonstrated a type II functional response to mysid and copepod prey. Mysid prey was readily selected by both species whereas the smaller bodied copepod prey was not. When offered copepods, pink salmon fry fed at a higher maximum consumption rate (2·5 copepods min−1) than larger juvenile pink salmon (0·4 copepods min−1), whereas larger juvenile chum salmon exhibited the highest feeding rate (3·8 copepods min−1). When feeding on mysids, the maximum feeding rate for larger juvenile pink (12·3 mysids min−1) and chum (11·5 mysids min−1) salmon were similar in magnitude, and higher than feeding rates on copepods. Functional response models parameterized for specific sizes of juvenile salmon and zooplankton prey provide an important tool for linking feeding rates to ambient foraging conditions in marine environments, and can enable mechanistic predictions for how feeding and growth should respond to spatial-temporal variability in biological and physical conditions during early marine life stages.  相似文献   

4.
Abstract.  An optocardiographic non-invasive technique was used to monitor heart activity in small arthropods. Heart rate was recorded in adult individuals of the supralittoral amphipod Talitrus saltator after 3 h of immersion in marine artificial water (0, 11 and 33‰, t  = 15 ± 1 °C). Mean heart rate (± SE) ranged from 210 ± 26 beats min−1 (at 33‰) to 276 ± 15 beats min−1 (at 0‰) and, despite the small increase in temperature (0.5 °C) due to the infrared beam, the heart frequency remained constant for several hours. Neither the glue used to apply the sensor to the animal nor the beating of the pleopods affected heart rate. This technique could be a useful tool for the investigation of ecophysiological aspects in T. saltator , which is already well known for its ecology and behaviour.  相似文献   

5.
Approximately 15% of a population of the cryopelagic nototheniid fish Pagothenia borchgrevinki , found constantly swimming immediately beneath the annual fast ice, in McMudro Sound, Ross Sea, Antarctica, was affected by X-cell gill disease. This disease affected blood flow through the gill lamellae, and this in turn affected oxygen uptake. Exercise caused increases in heart rate and ventral aortic blood pressure. Heart rate increased from 15·1 ± 1·55 to 23·1 ± 0·93 beats min−1 in healthy fish, with a similar increase (to 24·6 ± 0·26 beats min−1) in X-cell-affected animals. In healthy fish, pressures rose with exercise (from 2·72 ± 0·11 to 3·75 ± 0·19 kPa) and then rapidly returned to resting levels during recovery. In X-cell fish pressures rose during exercise, but then continued to rise, to reach a high of 4·18 ± 0·13 kPa, close to the predicted maximum pressure able to be generated by these hearts. Recovery was rapid in healthy fish, but was prolonged in diseased animals. As they are constantly swimming, there is the potential that X-cell-affected fish suffer from chronic hypertension.  相似文献   

6.
The values of Michaelis–Menten constant (KM) and maximum velocity (VMAX) for kidney and heart monoamine oxidase (MAO) from pacu Piaractus mesopotamicus were determined. The mean ± s . e . KM values were 17·28 ± 2·27 μM for kidney and 15·38 ± 1·86 μM for heart. MAO activities were 111·60 ± 3·25 and 15·12 ± 0·30 nmols min−1 g−1 of wet tissue for kidney and heart, respectively. In addition, MAO inhibitory studies in these two tissues indicate that this enzyme may be a different isoform of MAO.  相似文献   

7.
When water temperature was increased from 12 to 27°C at a rate of 2°C h−1, oxygen consumption of rainbow trout Oncorhynchus mykiss was correlated strongly with both heart rate and blood oxygen extraction but the relationship with cardiac output was variable and weak. On the other hand, when water temperature was decreased from 21 to 12°C at a rate of 0·5°C h−1, oxygen consumption was correlated with both heart rate and cardiac output but not with blood oxygen extraction. When fish were forced to swim increasingly faster, heart rate, cardiac output and blood oxygen extraction all correlated positively with oxygen consumption. For both cardiac output and heart rate, the slope of the regression line with oxygen consumption was elevated significantly more when the fish were forced to swim at increasingly higher swimming speeds than when water temperature was increased or decreased. The variation of the regression lines between cardiac output and oxygen consumption indicated that cardiac output presents few advantages over heart rate as a predictor of metabolic rate.  相似文献   

8.
The maximum swimming stamina of hatchery reared juvenile brown trout Salmo trutta , swimming against a fixed-velocity water flow of 36·6 cm s-1 (6·97 L s-1), was achieved at 16·1° C, and a 90% performance level occurred over a breadth of 7·7° C (12·2–19·9° C). The wide range of temperatures at which swimming performance is close to the maximal capacity could be a consequence of the implications for survival of this function.  相似文献   

9.
Physiological impact of sea lice on swimming performance of Atlantic salmon   总被引:6,自引:0,他引:6  
Atlantic salmon Salmo salar were infected with two levels of sea lice Lepeophtheirus salmonis (0·13 ± 0·02 and 0·02 ± 0·00 sea lice g−1). Once sea lice became adults, the ventral aorta of each fish was fitted with a Doppler cuff to measure cardiac output ( ̇ ), heart rate ( f H) and stroke volume ( V S) during swimming. Critical swimming speeds ( U crit) of fish with higher sea lice numbers [2·1 ± 0·1 BL (body lengths) s−1] were significantly lower ( P  < 0·05) than fish with lower numbers (2·4 ± 0·1 BL s−1) and controls (sham infected, 2·6 ± 0·1 BL s−1). After swimming, chloride levels in fish with higher sea lice numbers (184·4 ± 11·3 mmol l−1) increased significantly (54%) from levels at rest and were significantly higher than fish with fewer lice (142·0 ± 3·7 mmol l−1) or control fish (159·5 ± 3·5 mmol l−1). The f H of fish with more lice was 9% slower than the other two groups at U crit. This decrease resulted in ̇ not increasing from resting levels. Sublethal infection by sea lice compromised the overall fitness of Atlantic salmon. The level of sea lice infection used in the present study was lower than has previously been reported to be detrimental to wild Atlantic salmon.  相似文献   

10.
The von Bertalanffy growth parameters for common wolf–fish Anarhichas lupus in the North Sea were: male: L ∞=111·2 cm, t 0=–0·43 and K =0·12; and female: L ∞=115·1 cm, t 0=–0·39 and K =0·11, making this the fastest growing stock reported. Resting metabolic rates (RMR±S.E.) and maximum metabolic rates (MMR±S.E.) for six adult common wolf–fish (mean weight, 1·39 kg) at 5° C were 12·18±1·6 mg O2 kg–1 h–1 and 70·65±7·63 mg O2 kg–1 h–1 respectively, and at 10° C were 25·43±1·31 mg O2 kg–1 h–1 and 113·84±16·26 mg O2 kg–1 h–1. Absolute metabolic scope was 53% greater at 10° C than at 5° C. The diet was dominated by Decapoda (39% overall by relative occurrence), Bivalvia (20%) and Gastropoda (12%). Sea urchins, typically of low energy value, occupied only 7% of the diet. The fast growth probably resulted from summer temperatures approximating to the optimum for food processing and growth, but may have been influenced by diet, and reduced competition following high fishing intensity.  相似文献   

11.
Routine oxygen consumption rates of bonnethead sharks, Sphyrna tiburo , increased from 141·3±29·7 mg O2 kg−1 h−1 during autumn to 218·6±64·2 mg O2 kg−1 h−1 during spring, and 329·7±38·3 mg O2 kg−1 h−1 during summer. The rate of routine oxygen consumption increased over the entire seasonal temperature range (20–30° C) at a Q 10=2·34.  相似文献   

12.
Routine oxygen consumption ( M o 2) was 35% higher in 1 day starved and 21% higher in 4 day starved adult transgenic coho salmon Oncorhynchus kisutch relative to end of migration ocean-ranched coho salmon. Critical swimming speed ( U crit) and M o 2 at U crit ( M o 2max) were significantly lower in 4 day starved transgenic coho salmon (1·25 BL s−1; 8·79 mg O2 kg−1 min−1) compared to ocean-ranched coho salmon (1·60 BL s−1; 9·87 mg O2 kg−1 min−1). Transgenic fish swam energetically less efficiently than ocean-ranched fish, as indicated by a poorer swimming economy at U crit ( M o 2max     ). Although M o 2max was lower in transgenic coho salmon, the excess post-exercise oxygen consumption (EPOC) measured during the first 20 min of recovery was significantly larger in transgenic coho salmon (44·1 mg O2 kg−1) compared with ocean-ranched coho salmon (34·2 mg O2 kg−1), which had a faster rate of recovery.  相似文献   

13.
Morphometric measurements were carried out on some of the structural parameters affecting oxygen diffusing capacity in red muscle of 15 specimens of O. niloticus body weight (b.w.) 0.65–812.3 g. Total capillary length and surface area and total morphometric oxygen diffusing capacity in body trunk red muscle had average values of 4792·7 (± 1740.7 s.e.) m, 415·4 (± 157·3 s.e.) cm2 and 0·0213 (± 0·0075 s.e.) ml−1 min−1 cm−2 mmHg respectively. When expressed as functions of b.w. these parameters had scaling values of 1·02, 1·07 and 0·993 respectively. These figures show a slight increase or almost no change in these structural parameters (which affect diffusion of oxygen to mitochondria in red muscle) per unit weight of fish. This should be important as the role of sustained swimming (by red muscle) becomes more important in larger tilapia. Oxygen diffusion distances were short [3·11 (±0·16 s.e.) μm] which facilitates diffusion of oxygen to mitochondria. The scaling value for oxygen diffusion distances of 0·067 (with respect to body weight) shows a slight increase in this parameter with development. This value is significantly different from zero.  相似文献   

14.
Goldsinny Ctenolabrus rupestris were subjected to rapid, environmentally realistic, reductions in temperature at 2° C increments from 10 to 4° C over a 3-day period in full-strength sea water. In separate experiments, oxygen uptake measurements and ultrasound recordings of heart rate and opercular motion were carried out at regular intervals over the same temperature regime. Mean oxygen uptake rates fell from 0.042 to 0.028 ml O2 g−1 h−1 between 10 and 6° C respectively (Q10=2.71). Between 6 and 4° C mean rates decreased from 0.028 to 0.008 ml O2 g−1 h−1 (Q10=542). Mean opercular motion and heart beat rates decreased from 49.5 and 60.3 beats min−1 respectively at 10° C to 18.7 and 18.0 beats min−1 respectively at 4° C. Most goldsinny subjected to 4° C were observed in a torpid state and would not react to external stimulation. Opercular motion was erratic at 4° C and would at times cease altogether for periods up to 1.3 min duration. Heart movement was diffcult to detect at 4° C and may also have ceased for prolonged periods. Q10 values for opercular motion and heart beat rates recorded between 6 and 4° C were 6.39 and 24.52 respectively compared with values of 2.42 and 2.93 respectively recorded between 10 and 8° C. Such large depressions in metabolism appear not to have been reported previously for a marine fish species. No goldsinny mortalities were recorded at any temperature. The possibility that hypometabolic torpor is an adaptive strategy for goldsinny survival at low environmental temperatures is discussed.  相似文献   

15.
Juvenile bull trout Salvelinus confluentus exposed to continuous- or pulsed-DC electroshock exhibited rapid elevations in plasma cortisol and glucose, but plasma chloride did not change. In a 1-h experiment using 240 V at 1·4 A of 60-Hz pulsed DC (voltage gradient 0·81 V cm−1), which proved lethal, plasma cortisol and glucose rose significantly within 15 min of a 10-s electroshock. Plasma cortisol reached a peak level of 156 ± 18 ng ml−1 at 45 min and then decreased, whereas plasma glucose reached its highest level of 179 ± 7·5mg dl−1 at 1 h. In a 24-h experiment using lower dosages, plasma cortisol increased from 6·1-16 ng ml−1 to peak levels of 155–161 ng ml−1 in 1 h in response to a 10-s electroshock of continuous (130 V, 0·5 A, 1·45 V cm−1) or pulsed (120 V, 0·5 A, 60 Hz, 0·55 V cm−1) DC. Although plasma concentrations declined thereafter, levels remained above control values at 24 h. Plasma glucose was elevated from 60–65 to 120–134 mg dl−1 after 1h by both electroshock treatments and remained near or above those levels for the 24-h duration. Plasma cortisol and glucose levels were much higher in electroshocked bull trout at 1 h compared with those in fish 1 h after receiving a 30-s handling stressor (cortisol, 90 ± 12 ng ml−1; glucose, 82 ± 6·1 mg dl−1). The results indicate that both continuous and pulsed DC were more stressful to juvenile bull trout than handling and that recovery, at least for pulsed DC, may take longer than 24 h.  相似文献   

16.
Osmoregulation during the development of glass eels and elvers   总被引:2,自引:0,他引:2  
Drinking rates in glass eels and elvers of the European eel increased with environmental acclimation salinity from 0·07±0·02 (FW) to 0·70±0·09 μl g-1 h-1 (SW) at month 1 and from 1·12±0·42 (FW) to 12·85±1·05 ± l g-1 h-1 (SW) at month 5. Drinking rates increased with time in both FW and SW groups. FW acclimated eels when challenged acutely with SW increased drinking rate rapidly immediately upon transfer (0–15 min) and the magnitude of this response increased with developmental time from month 1 to month 5.  相似文献   

17.
The effect of two known rates of repeated blood loss on rainbow trout Oncorhynchus mykiss swimming performance was measured and blood‐feeding rates of sea lice Lepeophtheirus salmonis were calculated to predict the point at which blood ingestion causes anaemia in infected fish. Known quantities of blood were sampled from rainbow trout over a 5 day period followed by critical swimming performance ( U crit) testing. A predictive equation was developed using masses of blood‐feeding sea lice and host blood loss calculated for increasing levels of sea lice infection. Blood loss of 8% total blood volume caused a decrease in U crit for rainbow trout. Total blood volume losses of 3·2% reduced erythrocyte stores, but did not affect fish swimming performance. The predictive feeding rate model suggests that 15–25% of the tissue consumed by sea lice is blood. This consumption of blood at higher sub‐lethal infection levels (≥0·5 sea lice g−1) may cause anaemia and a further decrease in swimming performance. Anaemia would compound the osmotic balance problems due to infection and potentially precipitate the morbidity seen at lethal sea lice levels (0·75–1·0 lice g−1).  相似文献   

18.
A unique heart beat datalogging device was either surgically implanted into the peritoneal cavity (internal‐fish) or attached by nylon anchor tags to the dorsal fin rays (external‐fish) of the black cod Paranotothenia angustata . Both groups had a mean ±  s . e . heart rate of c . 46 beats min−1 after 24 h, and by 20 days external‐fish showed a significant reduction (34 ± 3 beats min−1) whereas internal‐fish did not (44 ± 2 beats min−1). In demersal fishes external attachment of an electronic recording device may be preferable to surgical implantation.  相似文献   

19.
Saithe Pollachius virens , tracked diurnally with a split-beam echosounder, showed no relationship between size and swimming speed. The average and the median swimming speeds were 1·05 m s−1(±0·09 m s−1) and 0·93 m s−1, respectively. However, ping-to-ping speeds up to 3·34 m s−1 were measured for 25–29 cm fish, whose swimming speeds were significantly higher at night (1·08 m s−1) than during the day (0·72 m s−1). The high average swimming speed could be related to the foraging or streaming part of the population and not to potential weakness of the methodology. However, the uncertainty of target location increased with depth and resulted in calculated average swimming speeds of 0·15 m s−1 even for a stationary target. With increasing swimming speed the average error decreased to 0 m s−1 for speeds >0·34 m s−1. Species identity was verified by trawling in a pelagic layer and on the bottom.  相似文献   

20.
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   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号