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1.
Summary The metabolic and cardiac responses to temperature were studied in two species (four subspecies) of western chipmunks (genusEutamias), inhabiting boreal and alpine environments. A specially designed (Fig. 1) implantable biopential radiotransmitter was used to measure heart rate in unrestrained animals. The estimated basal metabolic rates (EBMR) were 1.78 (E. minimus borealis), 1.64 (E. m. oreocetes), 1.50 (E. m. operarius), and 1.69 ml O2 g–1 h–1 (E. amoenus luteiventris), or 839, 752, 698, and 628 ml O2 kg–0.75 h–1, respectively, for the four subspecies (Table 1). The two alpine species (E.m.or. andE.m.op.) had significantly lower EBMR than both of their boreal counterparts. The EBMR from all animals are 120–135% of the predicted values based on body weights of the animals. The thermal neutral zone for the four subspecies ranged from 23.5 to 32°C and the minimum thermal conductances were 0.113, 0.111, 0.112 and 0.112 ml O2 g–1 h–1 °C–1, respectively, or 54.4, 54.0, 50.4 and 52.1 ml O2 kg–0.75 h–1 °C–1, respectively (Fig. 2). No interspecific diffence in conductance was observed. These values are 72 to 85% of their weight specific values. The body temperature ranged between 35.0 and 39.5°C and was usually maintained between 36 and 38°C in all subspecies between ambient temperatures of 3 and 32°C. The estimated basal heart rates were 273, 296, 273 and 264 beats/min, respectively, for the four subspecies, 49–55% of their predicted weight specific values. The resultant oxygen pulses (metabolic rate/heart rate) were 5.49, 4.50, 4.48 and 5.56×10–3 ml O2/beat, respectively, which are 2 to 2.4 times their weight specific values (Table 2).The observed reduction of basal heart rate without the corresponding decreases of basal metabolic rate and body temperature indicate sufficient compensatory increases in stroke volume and/or A-V oxygen difference at rest. Such cardiovascular modifications provide extra reserves when demand for aerobic metabolism rises during bursts of activity typically observed in the western chipmunk.Abbreviations A-V arterio-venous - EBMR estimated basal metabolic rate (ml O2 g–1 h–1) - HR heart rate (beats/min) - MR metabolic rate (ml O2 g–1 h–1) - OP oxygen pulse (ml O2/heart beat) - Ta, Tb ambient and body temperature (°C)  相似文献   

2.
Summary Pulmonary ventilation (tidal volume, frequency) and oxygen content of expired air were measured in separate flights for 3 species of birds — Evening Grosbeak (Hesperiphona vespertina), Ring-billed Gull (Larus delawarensis), and Black Duck (Anas rubripes). Heart rate was measured in flight or immediately after landing in 12 species.Respiratory frequency and tidal volume were greater in flight than during rest. As the O2 content of expired air did not change appreciably, the increase in O2 consumption was similar to the increase in ventilation and averaged more than 10 times basal. The influence of body weight on metabolism during flight was similar to that previously observed under basal conditions.Heart rates during flight (10 species), immediately after landing (12 species), and maximal rates from various authors (15 species) were in close agreement, and were 2–4 times as high as during rest. The heart rate decreased with increasing body weight according to the equation HRf=25.1 BW–0.16 (HR per sec, BW in g). In flight there was much less variation and there was a smaller decrease with increasing weight than during rest. Although the estimated stroke volume and heart size appear larger in birds, the ratio of these functions was similar to that in mammals.Issued as N.R.C.C. No. 11094.The valuable technical assistance of Mr. B. Mackenzie and Mr. R. Charbonneau made this study possible. We are also indebted to Dr. Doris Jensen of McMaster University for providing facilities for tests on ring-billed gulls.  相似文献   

3.
Synopsis Both physical and physiological modifications to the oxygen transport system promote high metabolic performance of tuna. The large surface area of the gills and thin blood-water barrier means that O2 utilization is high (30–50%) even when ram ventilation approaches 101 min–1kg–1. The heart is extremely large and generates peak blood pressures in the range of 70–100 mmHg at frequencies of 1–5 Hz. The blood O2 capacity approaches 16 ml dl–1 and a large Bohr coefficient (–0.83 to –1.17) ensures adequate loading and unloading of O2 from the well buffered blood (20.9 slykes). Tuna muscles have aerobic oxidation rates that are 3–5 times higher than in other teleosts and extremely high glycolytic capacity (150 mol g–1 lactate generated) due to enhanced concentration of glycolytic enzymes. Gill resistance in tuna is high and may be more than 50% of total peripheral resistance so that dorsal aortic pressure is similar to that in other active fishes such as salmon or trout. An O2 delivery/demand model predicts the maximum sustained swimming speed of small yellowfin and skipjack tuna is 5.6 BL s–1 and 3.5 BL sec–1, respectively. The surplus O2 delivery capacity at lower swimming speeds allows tuna to repay large oxygen debts while swimming at 2–2.5 BL s–1. Maximum oxygen consumption (7–9 × above the standard metabolic rate) at maximum exercise is provided by approximately 2 × increases in each of heart rate, stroke volume, and arterial-venous O2 content difference.Paper from International Union of Biological Societies symposium The biology of tunas and billfishes: an examination of life on the knife edge, organized by Richard W. Brill and Kim N. Holland.  相似文献   

4.
Summary Cardiac output was measured by the thermodilution method in three young harbor seals, at rest and while swimming up to the maximum effort for which they could be trained. Stroke volume was determined by counting heart rate simultaneously with determination of cardiac output. Cardiac outputs varied widely between surface breathing (7.8 ml · kg–1 · s–1) and breath-holding while swimming under water (1.8 ml · kg–1 · s–1). Stroke volume while at the surface was almost twice the volume white submerged. Surface cardiac output was always near maximal despite work effort, whereas submerged cardiac output gradually increased at higher work efforts. The cardiovascular performance of seals at the maximum MO2 we could induce from them is equivalent to that of the domestic goat.Abbreviations CO Cardiac output - HR Heart rate - SV Stroke volume - MO 2 Metabolic rate - FS Forced sumersion - V Velocity - C DF Frontal drag coefficient - CV Cardiovascular Present address: Institute of Marine Science, University of Alaska, Fairbanks, AK, USA  相似文献   

5.
Cardiac output, heart rate, stroke volume, pressures in the brachial artery, right ventricle and pulmonary artery, forearm blood flow, and arterial concentration of FFA, lactate and glucose were measured in healthy male volunteers during i–v infusion of PGE1, PGE2, PGF or 15-methyl PGF in increasing doses. In accordance with previous findings PGE1 and PGE2 increased cardiac output by a vasodilating effect in the systemic and pulmonary vascular bed, probably in combination with an inotropic effect on the heart.15-methyl PGF had essentially the same cardiovascular effects as PGF. They induced a slight increase in cardiac output due to effects on heart rate, while systemic vascular resistance was unchanged. Forearm vascular resistance increased and pressures in the pulmonary circulation rose, indicating a vasoconstriction in these vascular beds.Glucose concentrations were not affected nor were lactate concentrations, except for a slight decrease of unclear significance in the group receiving 15-methyl PGF. FFA increased slowly in the same manner as seen spontaneously in fasting individuals. These data do not indicate direct metabolic effects of the prostaglandins studied when given i–v.  相似文献   

6.
Intracellular feruloylation of pectic polysaccharides   总被引:2,自引:2,他引:0  
Stephen C. Fry 《Planta》1987,171(2):205-211
The pectic polysaccharides of spinach cell walls carry feruloyl groups on arabinose and galactose residues. The following experiments were designed to discover whether the arabinose residues are feruloylated intra-or extracellularly. Cultured spinach cells started to incorporate exogenous [3H]arabinose into polymers at a linear rate after a lag period of approx. 3–4 min, although radioactive polysaccharides and extensin did not start to appear outside the plasmalemma until after an approx. 25-min lag. In the same cells, polysaccharide-bound feruloyl-[3H]arabinose units starded to accumulate radioactivity at a linear rate after a lag period of approx. 4–5 min. Therefore, arabinose residues of polysaccharides began to be feruloylated while still intracellular. The rate of formation of polysaccharide-bound feruloyl-[3H]arabinose units did not appreciably increase after 25 min, showing that any additional extracellular feruloylation of the polysaccharide was relatively slow. This conclusion was supported by two different types of pulse-chase experiments, one of which was designed to detect feruloylation of polysaccharides up to 6 d after synthesis.Abbreviations Ara2 3-O–-L-arabinopyranosyl-L-arabinose - BAW butan-1-ol/acetic acid/water (12:3:5, by vol.) - BEW butan-1-ol/ethanol/water (20:5:11, by vol.) - EPW ethyl acetate/pyridine/water (8:2:1, by vol.) - Fer-Ara2 3-O–(3-O–feruloyl--L-arabinopyranosyl)-L-arabinose - Fer-Gal2 4-O–(6-O–feruloyl--D-galactopyranosyl)-D-galactose  相似文献   

7.
Summary Pulmonary CO-diffusing capacity (D l CO), lung volume, pulmonary perfusion and O2-uptake were measured by non-invasive techniques in the lizardsVaranus exanthematicus andTupinambis teguixin (mean body weight 2.2 kg for both species).The CO-diffusing capacity was at 25–27°C 0.059 mlstpd·kg–1·min–1·Torr–1 inVaranus, which is 47% greater than the value of 0.040 mlstpd·kg–1·min–1·Torr–1 inTupinambis. The lung volume ofVaranus was 36 ml·kg–1 and that ofTupinambis 20 ml·kg–1. At 35–37°C the diffusing capacity of lizard lungs are about 25% of those for mammals of comparable size.InVaranus pulmonary CO-diffusing capacity increased with temperature from 0.027 mlstpd·kg–1·min–1·Torr–1 at 17–19 °C to 0.075 mlstpd·kg–1·min–1·Torr–1 at 35–37 °C. This change closely matched a concomitant increase of O2-uptake. Pulmonary perfusion increased from 27 ml·kg–1·min–1 to 55 ml·kg–1·min–1 within this temperature range.The study emphasizes that pulmonary diffusing capacity cannot be fully evaluated without information on pulmonary perfusion and O2-uptake. In reptiles and other ectotherms diffusing capacity must be reported at specified body temperature.  相似文献   

8.
M. M. Babiker 《Hydrobiologia》1984,110(1):351-363
The respiratory behaviour and partitioning of O2 uptake between air and water were investigated in Polypterus genegalus using continuous-flow and two-phase respirometers and lung gas replacement techniques P. senegalus rarely resorts to aerial respiration under normal conditions. Partitioning of O2 consumption depends on the activity and age of fish and the availability of aquatic oxygen. Immature fish (12–22 g) cannot utilize aerial O2 but older fish exhibit age-dependent reliance on aerial respiration in hypoxic and hypercarbic waters. Pulmonary respiration accounts for 50% of the total requirement at aquatic O2 concentrations of about 3.5 mg · l–1 (or CO2 of about 5%) and fish rely exclusively on aerial respiration at O2 concentrations of less than 2.5 mg · l–1. Branchial respiration is initially stimulated by hypercarbia (CO2: 0.5–0.8%) but increased hypercarbia (CO2 – 1%) greatly depresses (by over 90%) brancial respiration and initiates (CO2: 0.5%) and sustains pulmonary respiration.  相似文献   

9.
The large bowel intestinal flora of mammals is made up mostly of O2-intolerant anaerobic microorganisms which are irreversibly damaged by brief exposure to air. The aim of our work was to investigate the effect of atmospheric O2 on human intestinal anaerobic microorganisms. Thirty O2-intolerant bacterial strains that reached 100% mortality after 120 min of air exposure were isolated. Ten of these strains were tested for their atmospheric O2 sensitivity as a function of air exposure time; all tested microorganisms showed a similar mortality trend on exposure to air. In fact, 50% of cells survive, on the average, after 4–5 min of atmospheric O2; this percentage decreases to 3–5% after only 20 min, and after 40 min only one cell in a thousand survives; all strains reached 100% mortality in a time range of 100–120 min. The strains examined were identified as belonging to the generaEubacterium, Peptostreptococcus, andCoprococcus.  相似文献   

10.
The effects of intravenously administered prostaglandin D2 (PGD2) on bronchopulmonary and cardiovascular functions were examined in the dog. PGD2 (0.03–1.0 μg/kg) was shown to be more active than PGF, a known bronchoconstrictor, in decreasing dynamic lung compliance, tidal volume, and expiratory airflow rate, as well as in elevating lung resistance. PGD2 demonstrated a potency approximately 4–6 times that of PGF on pulmonary mechanics. Atropine sulfate infusions reduced significantly the resistance and compliance responses to PGF, but only the resistance responses to PGD2, thereby suggesting that part of the bronchoconstrictor activities of these agents involved a cholinergic component.In another series of anesthetized dogs, PGD2 (0.1–10.0 μg/kg) increased pulmonary arterial pressure (comparable to PGF) and heart rate (greater than PGF, but less than PGE2), while concomitantly decreasing systemic arterial pressure in a dose-related manner ( that of PGE2). Qualitatively similar alterations in cardiovascular parameters were obtained for PGD2 in conscious dogs.Therefore, potent biologica activity of PGD2 has been shown in the dog. No physiologic or pathologic role for PGD2 has yet been demonstrated, but nonetheless, since it is a naturally occurring PG derived from arachidonic acid, further studies are warranted.  相似文献   

11.
It was found that production of superoxide (O2 – ·) is crucial for normal morphogenesis of etiolated wheat seedlings in the early stages of plant development. The development of etiolated wheat seedlings was shown to be accompanied with cyclic changes in the rate of O2 – · production both in the entire intact seedling and in its separated organs (leaf, coleoptile). First increase in the rate of O2 – · production was clearly observed in the period from two to four days of seedling development, then the rate of O2 – · production decreased to the initial level, and then it increased again for two days to a new maximum. An increase in O2 – · production in the period of the first four days of seedling development correlates with an increase in DNA and protein contents in the coleoptile. The second peak of increased rate of O2 – · production observed on the sixth or seventh day of seedling development coincides with a decrease in DNA and protein contents and apoptotic internucleosomal nuclear DNA fragmentation in the coleoptile. Incubation of seedlings in the presence of the antioxidant BHT (ionol) strongly affects their development but it does not influence the increase in DNA and protein contents for the initial four days of seedling life, and it slows down the subsequent age-dependent decrease in protein content and fully prevents the age-dependent decrease in DNA content in the coleoptile. A decrease in the O2 – · amount induced by BHT distorts the seedling development. BHT retards seedling growth, presumably by suppression of cell elongation, and it increases the life span of the coleoptile. It seems that O2 – · controls plant growth by cell elongation at the early stages of seedling development but later O2 – · controls (induces) apoptotic DNA fragmentation and protein disintegration.  相似文献   

12.
Direct EPR evidence of the photo-generation of superoxide radicals (O2 –.) was obtained by using a novel spin trapping probe in spinach Photosystem II (PS II) membrane fragments. The production of O2 –. was detected by following the formation of 5-diethoxyphosphoryl-5-methyl-1-pyrroline-N-oxide (DEPMPO) superoxide adducts (DEPMPO-OOH). The inhibition of O2 –. formation by 3-(3,4-dichlorophenyl) -1,1-dimethylurea (DCMU) and the 77 K fluorescence spectrum indicated that O2 –. were generated from PS II, not from PS I. The inhibition of O2 –. formation by DCMU also suggested that O2 –. were generated from the QBbinding site, not at a site prior to DCMU blockage. The extrinsic proteins and Mn are very important to eliminate O2 –., showing that the oxygen-evolving system is involved in O2 –. removal rather than production.This revised version was published online in October 2005 with corrections to the Cover Date.  相似文献   

13.
Summary In this study, we examined the effects of exposure of heart fatty acid-binding protein (h-FABP) to chemically generated O2 or OH · with respect to its oleate binding and to its electrophoretic properties. Purified rat h-FABP at 40 M scavenged as much as 30% O2 and 85% OH ·. On the other hand, when 2 nmol (4 M) FABP were exposed to free radicals, the maximum oleate binding capacity as measured by Scatchard analysis was reduced only by 14% and 27% for O2 and OH ·, respectively. The electrophoretic pattern of free radical-exposed FABP was not markedly different when examined either by the non-denaturing or by denaturing PAGE, suggesting the absence of any degradation or aggregation of FABP by O2 or OH ·. It is hypothesized that O2 or OH · in physiological concentration may not alter the function of FABP markedly in the ischemic-reperfused myocardium.Abbreviations h-FABP Heart Fatty Acid Binding Protein - NEFA Non-Esterified Fatty Acids - O2 Superoxide anions - OH· hydroxyl radicals - OCI hypohalite radicals - H2O2 hydrogen peroxide - HPLC High Pressure Liquid Chromatography  相似文献   

14.
Summary Responses to acute hypoxia were measured in skipjack tuna (Katsuwonus pelamis) and yellowfin tuna (Thunnus albacares) (1–3 kg body weight). Fish were prevented from making swimming movements by a spinal injection of lidocaine and were placed in front of a seawater delivery pipe to provide ram ventilation of the gills. Fish could set their own ventilation volumes by adjusting mouth gape. Heart rate, dorsal and ventral aortic blood pressures, and cardiac output were continuously monitored during normoxia (inhalant water (PO 2>150 mmHg) and three levels of hypoxia (inhalant water PO 2130, 90, and 50 mmHg). Water and blood samples were taken for oxygen measurements in fluids afferent and efferent to the gills. From these data, various measures of the effectiveness of oxygen transfer, and branchial and systemic vascular resistance were calculated. Despite high ventilation volumes (4–71·min-1·kg-1), tunas extract approximately 50% of the oxygen from the inhalant water, in part because high cardiac outputs (115–132 ml·min-1·kg-1) result in ventilation/perfusion conductance ratios (0.75–1.1) close to the theoretically ideal value of 1.0. Therefore, tunas have oxygen transfer factors (ml O2·min-1·mmHg-1·kg-1) that are 10–50 times greater than those of other fishes. The efficiency of oxygen transfer from water in tunas (65%) matches that measured in teleosts with ventilation volumes and order of magnitude lower. The high oxygen transfer factors of tunas are made possible, in part, by a large gill surface area; however, this appears to carry a considerable osmoregulatory cost as the metabolic rate of gills may account for up 70% of the total metabolism in spinally blocked (i.e., non-swimming) fish. During hypoxia, skipjack and yellowfin tunas show a decrease in heart rate and increase in ventilation volume, as do other teleosts. However, in tunas hypoxic bradycardia is not accompanied by equivalent increases, in stroke volume, and cardiac output falls as HR decreases. In both tuna species, oxygen consumption eventually must be maintained by drawing on substantial venous oxygen reserves. This occurs at a higher inhalant water PO2 (between 130 and 90 mmHg) in skipjack tuna than in yellowfin tuna (between 90 and 50 mmHg). The need to draw on venous oxygen reserves would make it difficult to meet the oxygen demand of increasing swimming speed, which is a common response to hypoxia in both species. Because yellowfin tuna can maintain oxygen consumption at a seawater oxygen tension of 90 mmHg without drawing on venous oxygen reserves, they could probably survive for extended periods at this level of hypoxia.Abbreviations BPda, BPva dorsal, ventral aortic blood pressure - C aO2, C vO2 oxygen content of arterial, venous blood - DO2 diffusion capacity - Eb, Ew effectiveness of O2 uptake by blood, and from water, respectively - Hct hematocrit - HR heart rate - PCO2 carbon dioxide tension - P aCO2, P vCO2 carbon dioxide tension of arterial and venous blood, respectively - PO2 oxygen tension - P aO2, P vO2, P iO2, P cO2 oxygen tension of arterial blood, venous blood, and inspired and expired water, respectively - pHa, pHv pH of arterial and venous blood, respectively - Pw—b effective water to blood oxygen partial pressure difference - Pg partial pressure (tension) gradient - cardiac output - R vascular resistance - SV stroke volume - SEM standard error of mean - TO2 transfer factor - U utilization - g ventilation volume - O2 oxygen consumption  相似文献   

15.
Summary Simultaneous measurements of pulmonary and cutaneous oxygen and carbon dioxide exchange, pulmonary ventilation and heart rate were made on the diamondback water snake,Natrix rhombifera at 28°C using body plethysmography. Resting lung volume, maximum lung volume and tracheal volume were also measured.The following mean values were measured in undisturbed snakes breathing room air: total (pulmonary and cutaneous) O2 uptake 46 mol · (kg min)–1; total CO2 output, 49 mol · (kg min)–1; tidal volume, 12 ml (BTPS) · kg–1; ventilatory rate, 6.9 min–1; heart rate, 42 min–1. From the measurements of tracheal volume, the effective (alveolar) ventilation was estimated as approximately 70% of total ventilation resulting in effective pulmonary and of 130 Torr and 20 Torr respectively. Cutaneous exchange accounted for 8.1% of the total and 12.4% of the total .Resting lung volume of anaesthetized snakes was 75 ml (BTPS) · kg–1, maximum lung volume was 341 ml (BTPS) · kg–1 and tracheal volume was 3.9 ml (BTPS) · kg–1.  相似文献   

16.
The regression of oxygen uptake (O2) on power output and the O2 demand predicted for suprapeak oxygen uptake (O2peak) exercise (power output = 432 W) were compared in ten male cyclists [C, mean O2peak = 67.9 (SD 4.2) ml · kg–1 · min–1] and nine active, yet untrained men [UT, mean O2peak = 54.1 (SD 6.5) ml · kg–1 · min–1]. The O2-power regression was determined using a continuous incremental cycle test (CON4), performed twice, which comprised several 4-min exercise periods progressing in intensity from approximately 40%–85% O2peak. Minute ventilation (E), heart rate (HR), respiratory exchange ratio (R), blood lactate concentration ([1a]b) and rectal temperature (T re) were measured at rest and during CON4. The slope of the O2-power regression was greater (P 0.05) in C [12.4 (SD 0.7) ml · min–1. W–1] compared to UT [11.7 (SD 0.4) ml · min–1 W–1]; as a result, the O2 demand (at 432 W) was also higher (P 0.05) in C [5.97 (SD 0.23) l · min–1] than UT [5.70 (SD 0.15) 1 · min–1]. ExerciseR and [la]b were lower (P 0.05) in C .in comparison to UT at all power outputs, whereas E and HR were relatively lower (P 0.05) in C at power outputs approximating 180 W, 220 W and 270 W. Differences in fat metabolism estimated over the first three power outputs accounted for approximately 19% of the difference in O2-power slopes between the groups and up to 46% of the difference in O2 at a given intensity. Although the O2-power regressions were linear for C [r = 0.997 (SD 0.001)] and UT [r = 0.997 (SD 0.001)], the O2-power slope was higher at power outputs at or above the lactate threshold (13.2 ml · min–1 · W–1 than at lower intensities (11.6 ml · min–1 · W–1) in C, an effect which was less profound in UT. As a result, the exclusion of O2 at the highest power outputs completely abolished the difference in O2-power slopes between C and UT. Thus, the relatively higher O2 during incremental exercise in C can be almost entirely attributed to the higher O2 cost of cycling at higher power outputs. In addition, the presence of non-linear responses in O2 at higher intensities also confirms the invalidity of describing the O2 response across a wide range of power outputs using a linear function, and challenges the validity of predicting the O2 demand of more intense exercise by a linear extrapolation of this same function.  相似文献   

17.
Colies are one of the phylogenetically oldest groups among the modern birds; the earliest finds are from about 35 million years ago. In states of energy deficiency they can undergo torpor during the night when metabolic rate and body temperature are decreased drastically to save energy (up to 90%). Here, we report the first measurements of heart rate (HR) by long-term telemetry, in seven individuals of blue-naped mousebirds (Urocolius macrourus); simultaneously and continuously metabolic rate (MR) was determined. HR at night was about 20% below the range of expected values (246/310 bpm). Mean oxygen pulse (O2 output/stroke) in normothermic birds was in a range of 0.019–0.020 ml O2/stroke; during torpor nights this value decreased significantly to 0.0086. Mean cardiac output ranged from 724 to 1214 ml blood/kg per min; in torpid birds this value fell to 400 ml blood/kg per min. Cardiac regulation of metabolic demand within an activity phase (day or night) is mainly achieved by chronotropy. Inotropy contributes at most 25% to the differences in MR between day and night (ca. 40%). Entry into torpor is brought about mainly by changes in HR (decrease from 240 to 90 bpm); after torpor levels have been reached, there is an increase in HR (to 200 bpm) and a sharp decrease (−53%) in stroke volume. This regulation by inotropy is also characteristic of arousal from torpor.  相似文献   

18.
Summary At the onset of moderate swimming activity,Callinectes sapidus rapidly increased branchial ventilation, heart rate, and oxygen uptake, reaching steady state values in 2–3 min, with a half-time of 30 sec. Although O2 extraction efficiency decreased slightly (50% to 43%) upon reaching steady state, O2 uptake was increased 2.6 fold over resting (routine) levels. HemolymphP O 2 did not change during sustained (30–60 min) exercise, but a marked decrease in pH (7.60 to 7.10), associated with a 14-fold increase in hemolymph lactate concentration, caused decreases in both pre-and postbranchial O2 content due to a large hemocyanin Bohr shift. The effect of the Bohr shift on O2 binding, however, was minimized by an increase in hemocyanin O2 affinity induced by lactate ions; the influence of lactate on hemocyaninP 50 was shown to be the same in vivo and in vitro. As a result of the interaction between the Bohr and lactate effects, only slight increases were observed in the a-v O2 difference (13%) and the quantitative role of hemocyanin in oxygen transport (11%) during exercise. The increase in O2 delivery was therefore attributed primarily to a 2.3 fold increase in cardiac output (Fick estimate), resulting from increases in both heart rate (1.61 X) and stroke volume (1.42X). During exercise hemocyanin remained 21% oxygenated upon leaving the tissues, thus maintaining a substantial venous O2 reserve which could be utilized to fuel more strenuous levels of exercise at least partly by aerobic pathways. The high hemolymph lactate levels, however, indicate that anaerobic metabolism makes a significant contribution to energy production even during moderate exercise. These results are similar to the respiratory and circulatory responses reported for other decapod crustaceans and fish during mild exercise.C. sapidus, however, appears to be highly resistant to fatigue, which correlates with its welldeveloped locomotor capabilities.  相似文献   

19.
Sex differences in running economy (gross oxygen cost of running, CR), maximal oxygen uptake (VO2max), anaerobic threshold (Than), percentage utilization of aerobic power (% VO2max), and Than during running were investigated. There were six men and six women aged 20–30 years with a performance time of 2 h 40 min over the marathon distance. The VO2max, Than, and CR were measured during controlled running on a treadmill at 1° and 3° gradient. From each subject's recorded time of running in the marathon, the average speed (v M) was calculated and maintained during the treadmill running for 11 min. The VO2 max was inversely related to body mass (m b), there were no sex differences, and the mean values of the reduced exponent were 0.65 for women and 0.81 for men. These results indicate that for running the unit ml·kg–0.75·min–1 is convenient when comparing individuals with different m b. The VO2max was about 10% (23 ml·kg–0.75·min–1) higher in the men than in the women. The women had on the average 10–12 ml·kg–0.75·min–1 lower VO2 than the men when running at comparable velocities. Disregarding sex, the mean value of CR was 0.211 (SEM 0.005) ml·kg–1·m–1 (resting included), and was independent of treadmill speed. No sex differences in Than expressed as % VO2max or percentage maximal heart rate were found, but Than expressed as VO2 in ml·kg–0.75·min–1 was significantly higher in the men compared to the women. The percentage utilization of f emax and concentration of blood lactate at v M was higher for the female runners. The women ran 2 days more each week than the men over the first 4 months during the half year preceding the marathon race. It was concluded that the higher VO2max and Than in the men was compensated for by more running, superior CR, and a higher exercise intensity during the race in the performance-matched female marathon runners.  相似文献   

20.
Magnetite-producing magnetotactic bacteria collected from the oxic–anoxic transition zone of chemically stratified marine environments characterized by O2/H2S inverse double gradients, contained internal S-rich inclusions resembling elemental S globules, suggesting they oxidize reduced S compounds that could support autotrophy. Two strains of marine magnetotactic bacteria, MV-1 and MV-2, isolated from such sites grew in O2-gradient media with H2S or thiosulfate (S2O32–) as electron sources and O2 as electron acceptor or anaerobically with S2O32– and N2O as electron acceptor, with bicarbonate (HCO3)/CO2 as sole C source. Cells grown with H2S contained S-rich inclusions. Cells oxidized S2O32– to sulfate (SO42–). Both strains grew microaerobically with formate. Neither grew microaerobically with tetrathionate (S4O62–), methanol, or Fe2+ as FeS, or siderite (FeCO3). Growth with S2O32– and radiolabeled 14C-HCO3 showed that cell C was derived from HCO3/CO2. Cell-free extracts showed ribulose 1,5-bisphosphate carboxylase/oxygenase (RubisCO) activity. Southern blot analyses indicated the presence of a form II RubisCO (cbbM) but no form I (cbbL) in both strains. cbbM and cbbQ, a putative post-translational activator of RubisCO, were identified in MV-1. MV-1 and MV-2 are thus chemolithoautotrophs that use the Calvin–Benson–Bassham pathway. cbbM was also identified in Magnetospirillum magnetotacticum. Thus, magnetotactic bacteria at the oxic–anoxic transition zone of chemically stratified aquatic environments are important in C cycling and primary productivity.  相似文献   

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