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1.
  • 1.1. Fingerlings of intergenious hybrid Russian sturgeon (Acipenser guldenstadti) × beluga (Huso huso) weighing 22 g reared in water with salinity 18 ppt were fed nine diets differing in protein and fat content.
  • 2.2. The increase of dietary protein content (from 45 to 52%) improved the fingerlings growth rate, food and protein conversion efficiencies. No effect of further protein content increase to 60% was observed.
  • 3.3. The increase of dietary fat content from 10 to 20% positively influenced all growth results.
  • 4.4. The muscular lipid content increased following the increase in dietary fat due to accumulation of triacylglycerols.
  • 5.5. Distinctive leucopenia in neutrophils and leucophilia in lymphocytes following dietary protein and fat content increase were observed.
  • 6.6. It was concluded that within the analysed range of values the increase of dietary protein and lipid content improved the physiological status of sturgeon hybrid fingerlings.
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2.
  • 1.1. Nitrogenous excretion in the form of ammonia was determined in common carp of 65.0 ± 8.0 g body weight in metabolism chambers. The fish were fed with 20, 35 and 50% dietary protein at 1, 2 and 3% body weight per day ration level.
  • 2.2. Nitrogenous excretion as a percentage of ingested food increased with an increase of dietary protein but decreased with an increase of ration level.
  • 3.3. The energy lost in excretion ranged from 4.19% with 20% dietary protein at 3% ration level to 8.74% with 50% dietary at 1% ration level.
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3.
  • 1.1. We investigated the effects of the ingestion of naturally occurring glucosinolates in rapeseed meal on growth rate, metabolic efficiency and respiratory rate in larvae of the yellow mealworm, Tenebrio molitor L.
  • 2.2. In our feeding studies, larvae were reared on one of seven different diets, including a whole ground wheat control diet and rapeseed meal from six rapeseed varieties. Dry weight gain of larvae and dry food assimilated were measured after 4 weeks of rearing, and the conversion of food into insect biomass was determined. The results may be explained by variations in the glucosinolates content of the diets.
  • 3.3. The effect of glucosinolates on food consumption, larval growth, expired carbon dioxide, oxygen uptake and respiratory quotient were studied.
  • 4.4. Glucosinolates did not reduce food assimilation or growth after 1 day of experimentation, but they caused some inhibition of respiratory exchanges and increased the RQ ratio.
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4.
  • 1.1. A starvation test was conducted in small beakers with stage 1 (S1) and stage 2 (S2) Macrobrachium rosenbergii larvae to determine optimal salinities.
  • 2.2. Experiments were first performed with S2 larvae at 13 ppt to identify a suitable medium made with artificial sea salts.
  • 3.3. A broad-range (0–35 ppt) and a subsequent narrow-range (9–16 ppt) salinity experiment with S2 larvae were used to identify 13 ppt as the optimal salinity, with 12 ppt as the next best; this agrees well with most previous estimates of optimal salinities for rearing larvae.
  • 4.4. S1 larvae were also tested in a narrow-range salinity experiment but were not used further because, unlike starved S2 larvae, they molted during the experiment.
  • 5.5. Identification of the optimal salinity was not affected by 50% daily water exchange or by bright light.
  • 6.6. Exposure of larvae to three different salinities—7, 13 and 19 ppt—during S1 influenced the width of the optimal salinity range for S2 larvae.
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5.
  • 1.1. Growing male kittens were fed an 18% casein diet supplemented with 2, 3, or 4% l-methionine (MET) for 6 weeks.
  • 2.2. Free MET concentration in liver increased 30-fold and cystathionine two- to three-fold; the activity of adenosyl-MET transferase and cystathionase also increased but remained lower than previously found in rats.
  • 3.3. Taurine concentration in liver decreased in cats fed excess MET and appeared to depend on taurine intake.
  • 4.4. Alanine aminotransferase activity was high in all groups while serine dehydratase activity was very low.
  • 5.5. Pyruvate kinase and malic enzyme activities which are normally low in cat liver increased after excess MET. Also, glucose 6-phosphate and 6-phosphogluconate dehydrogenases increased.
  • 6.6. Cat liver metabolism showed limited adaptation to an excess dietary intake of methionine compared to that found in rats.
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6.
  • 1.1. Scale regeneration was examined in Oreochromis niloticus under normal, dietary calcium-deficient, and both dietary and ambient water calcium-deficient conditions.
  • 2.2. Calcium contents of regenerating scales were dependent on the calcium status of the fish, but areal growth of the scales was independent.
  • 3.3. Transient hypocalcemia accompanied with a loss of calcium from original scales was observed in descaled fish in dietary calcium deficiency, and intact and descaled fish in both dietary and ambient water calcium deficiency.
  • 4.4. The results suggested that calcium mobilized from internal sources was insufficient and both water and dietary calcium were necessary for normal calcification of the regenerating scales.
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7.
  • 1.1. Cholesterol feeding for 4 weeks of female and male rabbits of two inbred strains increased plasma cholesterol concentrations by about 11 and 48 mmole/I in the hypo- and hyperresponsive strain, respectively.
  • 2.2. On the low-cholesterol pre-experimental diet, the hyporesponsive animals had significantly higher plasma HDL (high density protein) cholesterol levels than hyperresponders.
  • 3.3. In both strains, cholesterol feeding caused elevations of cholesterol in all lipoprotein classes, the difference between the hypo- and hyperresponsive strains in essence only being observed in the VLDL (very low density lipoprotein) fraction.
  • 4.4. Basal plasma total arylesterase activity was significantly higher in the hypo- than in the hyperresponsive rabbits.
  • 5.5. Dietary cholesterol caused an increase in plasma esterase activity in both strains.
  • 6.6. We suggest that in rabbits a low plasma arylesterase activity and a low concentration of HDL cholesterol are associated with an increased sensitivity to dietary cholesterol.
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8.
  • 1.1. Hemolymph ornithine concentrations in tobacco horn worm larvae fed a 2.5 mM l-canavanine plus 25 mM l-arginine-supplemented artificial diet (CAAM) were higher than those in larvae fed diets supplemented with 2.5 mM canavanine (CAV), 25 mM arginine (ARG), or controls (CON).
  • 2.2. Ornithine concentrations in CAV-treated larvae were significantly greater than the control or ARG treatment, but less than the CAAM treatment during the latter part of the wandering larval stage and during the pharate pupal stage.
  • 3.3. Urea concentrations were greater during the active feeding stage with the CAAM- and ARG-treated larvae having significantly higher levels than control or CAV-treated larvae.
  • 4.4. Urea concentrations in all treatments never exceeded 36.5% of the ornithine concentration.
  • 5.5. Canavanine concentrations were higher in CAV-treated larvae than in CAAM-treated larvae.
  • 6.6. During active feeding, arginine concentrations for all treatments were similar, but were lower in CAV- and CAAM-treated larvae during the pharate pupal stage.
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9.
《Insect Biochemistry》1990,20(6):625-637
The interaction of the fast-neurotoxic and insect selective polypeptide derived from scorpion venom (AaIT) with lepidopterous larvae tissues was studied through assays of toxicity, chromatography, binding and light microscopical autoradiography. The native and/or radioiodinated toxin was shown to:
  • 1.(1) Induce a delayed, slow, progressive paralysis (within 24–48 h) of Spodoptera larvae by relatively high doses (paralytic unit = 2.4 μg/100 mg) corresponding to about only 10% of the total toxicity of the crude venom. Larvae of six species representing five families of Lepidoptera responded similarly to the toxin.
  • 2.(2) Resist an in vitro incubation in the insect's hemolymph.
  • 3.(3) Lose 80% of its toxicity in the insect's body within 24 h, accompanied by a progressive process of degradation and elimination by the excretory system.
  • 4.(4) Specifically bind to a single class of non-interacting binding sites of high affinity and low capacity (0.2 pmol/mg protein, similar to tritiated saxitoxin) in an in vitro, homogenate derived, neuronal preparation.
  • 5.(5) Specifically bind with high affinity to desheathed but otherwise intact nerves.
  • 6.(6) Be devoid of accessibility to peripheral-terminal branches of Spodoptera motor nerves in situ—strongly contrasting those of the toxin susceptible Periplaneta nerves.
It may be thus concluded that the tolerance of the lepidopterous larvae to AaIT can be substantially attributed to pharmacokinetic aspects of toxin accessibility barriers and degradation processes.  相似文献   

10.
  • 1.1. The composition of HDL, the major lipoprotein fraction from chick serum, drastically changed after 2 weeks of coconut oil feeding. Total cholesterol and triacylglycerols significantly increased following dietary 10 or 20% coconut oil supplementation.
  • 2.2. Changes in LDL composition were less profound, cholesterol being the only component that increased by coconut oil supplementation (10 or 20%).
  • 3.3. IDL proteins were the only components that increased following the same dietary treatment (20%).
  • 4.4. VLDL cholesterol and proteins also increased after 1–2 weeks of 20% coconut oil supplementation to the diet.
  • 5.5. Of total lipoproteins, the cholesterol content strongly increased after dietary treatment, while triacylglycerols did not change significantly.
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11.
  • 1.1. Specific Dynamic Action (SDA) effects of diet were investigated in the supralittoral isopod, Ligia pallasii, using defined chemical diets.
  • 2.2. “Apparent SDA”, or the total rise in metabolic rate following a meal, was resolved in animals eating a nutritionally complete chemical diet into three components: 8% mechanical costs of moving food through the gut, 40% “excitement costs” due to investigator disturbance and presence of food, and 52% SDA.
  • 3.3. Excitement costs in animals exposed to food but which chose not to eat showed non-significant variation between diets containing different levels of chemical nutrients, but were significantly less on a diet containing only cellulose and agar.
  • 4.4. SDA increased with increasing concentration of amino acids in the diet.
  • 5.5. Substitution of whole-protein casein for free amino acids in the diet had no significant SDA effect, while substitution of free amino acids in the ratio found in casein more than doubled the SDA effect.
  • 6.6. Deletion of alanine from the diet caused no significant effect on SDA, while deletion of phenylalanine caused a highly significant elevation in SDA.
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12.
  • 1.1. Larvae of the bromeliad crab, Metopaulias depressus Rathbun, were reared in the laboratory, and changes in dry weight (W), ash-free W (AFW), carbon, nitrogen, hydrogen, protein, lipid, carbohydrates and respiration rate were measured during development from hatching to metamorphosis.
  • 2.2. Development was successful in rain-water from bromeliads (pH < 5–6), but not in river water from the same region (pH 8). It is abbreviated, with two non-feeding zoeal stages (2.5–3.5 days each) and a feeding megalopa (8.5–10 days). Development to metamorphosis can also be completed in the absence of food (facultative lecithotrophy).
  • 3.3. Dry weight and other absolute biomass values per individual vary significantly between different hatches, whereas changes in the relative (% of W or AFW) composition follow quite invariable patterns: ash increases from hatching through the first part of megalopa development, organic biomass decreases concurrently.
  • 4.4. Elemental and biochemical data show that lecithotrophy of the zoeal stages as well as continued endotrophic development in the megalopa depend chiefly on degradation of lipid reserves and less on protein. No significant growth was observed in organic constituents when food was available, but without food the megalopa reached metamorphosis with only half the lipid and less than two thirds the protein of fed siblings.
  • 5.5. The relationship between C and lipid is similar in M. depressus larvae as in planktotrophic marine crab larvae, whereas that between N and protein differs; it indicates the presence of unusually large quantities of unidentified non-protein N.
  • 6.6. Exuvial losses of late premoult biomass or energy are very low in the zoeal stages (2 and 3%), but increase in the megalopa (16% in W, 10% in C, 7–8% in N, H and energy).
  • 7.7. Respiration rate per individual increases gradually during larval development (0.6–0.8 μg O2/hr). Starved megalopa larvae reveal lower individual but higher W-specific metabolism than fed larvae.
  • 8.8. Bioenergetic traits of abbreviated larval development are discussed in relation to those known from regular (planktotrophic marine) development of brachyuran crabs. M. depressus is highly adapted to life and development in a physically extreme terrestrial environment.
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13.
  • 1.1. Heliothis zea (Boddie) larvae infected with irridescent virus (IV) showed rapid cell dissolution in the fat bodies.
  • 2.2. Fatty acid accumulation in healthy H. zea was significantly greater (P < 0.001) than in IV-infected larvae.
  • 3.3. Healthy and IV-infected larvae accumulated glycogen at a rate of 3.86 cal and 0.19 cal/day/insect, respectively.
  • 4.4. Total protein of healthy and IV-infected larvae showed no significant difference with time.
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14.
  • 1.1. The amount of sugar required for growth of Heliothis zea larvae on a chemically defined diet was determined.
  • 2.2. Larvae grew well on fructose, galactose, sucrose, trehalose and raffinose diets but not on diets containing more than 0.5% glucose.
  • 3.3. A starch diet did not promote rapid larval growth.
  • 4.4. Hemolymph trehalose levels in 12-day-old larvae ranged from none to 45μmoles/ml.
  • 5.5. A method for analysis of hemolymph trehalose by gas chromatography is described.
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15.
  • 1.1. The double isotope ratios of individual lipid fractions in major tissues of mice were determined before and after a period of total dietary deprivation.
  • 2.2. Several significant alterations in these ratios were caused by this treatment, with a marked individuality evident in the response of separate tissues.
  • 3.3. The increased metabolic flux overall was contributed to by increased rates of lipid degradation in liver, and active mobilization from the peripheral depots.
  • 4.4. Significant utilization of phospholipid fractions for energy purposes was also noticeable, however. along with tissue specific variation in the patterns of both double isotope ratios and specific radioactivities.
  • 5.5. These data are discussed in relation to the comparative priorities of synthesis and degradation in the different tissue and lipid sources in response to this physiological perturbation.
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16.
  • 1.1. The feeding of 0.5% (3,5,5-trimethylhexanoyl)ferrocene (TMH-ferrocene) in rats resulted in a severe and progressive liver siderosis (total liver iron, 30 mg/g liver wet weight, after 30 weeks).
  • 2.2. High concentrations of an iron-rich ferritin (up to 250 mg/l) were detected in serum of heavily iron-loaded rats forming a large fraction of non-transferrin-bound-iron (5000 μg/dl in maximum).
  • 3.3. Ferritin and not haemosiderin was the major iron storage protein in the liver.
  • 4.4. The total liver iron concentration (from 0.4 to > 30 mg Fe/g wet wt) but not the cytosolic low-molecular-weight-iron fraction (from 0.5 to 2.5 μM) was extremely increased during iron-loading.
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17.
  • 1.1. Responses of channel catfish (Ictalurus punctatus) swim-up fry to dietary calcium in soft (< 1 mg/1 as CaCO3) and hard (> 100 mg/1 as CaCO3) water were determined by feeding purified egg-white diets containing 0, 0.5, 1.0, or 2.0% calcium from CaCO3 for 8 weeks.
  • 2.2. Catfish fry fed the basal diet (0.03% Ca) in hard and soft water had lower whole-body ash and whole-body calcium concentrations but higher weight gain and survival than those fed calcium-supplemented diets.
  • 3.3. Fry in soft water generally had lower whole-body ash, whole-body calcium, and survival, as well as a higher incidence of spinal deformities than fry in hard water.
  • 4.4. Feeding higher levels of calcium to fry reared in soft water did not increase whole-body calcium levels or decrease spinal deformities to the levels observed for fry reared in hard water and fed supplemental calcium.
  • 5.5. These data indicate that calcium derived solely from dietary or environmental sources was not sufficient for optimum health of channel catfish fry.
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18.
19.
  • 1.1. Influence of the biochemical composition of food (four species of micro-algae and one mixture) on the biochemical composition of gonads and larvae of O. edulis (total protein, lipid, carbohydrate, ash content, neutral and polar lipid class composition, amino acid composition and fatty acid composition of total, neutral and polar lipids) and the size of newly released larvae have been investigated.
  • 2.2. Precentage of total lipids and triacylglycerols in gonads depends on that in algae (r = 0.52 and 0.69 accordingly).
  • 3.3. Gonads rich in lipids had a higher level of triacylglycerols, phospholipids, polar lipids and a lower value of the ratio phosphatidylethanolamine/phosphatidylcholine (PE/PC) than gonads with a low lipid content.
  • 4.4. Amino acid composition of gonads depends on that of food, in this case, essential acids are preferentially accumulated (Asp acid, Ser, Ala, Cys, Tyr and Pro) and two non-essential (Thr and Lys).
  • 5.5. Fatty acid composition of total lipids of gonads was rather stable; except for the two essential acids 20:523 and 22:6w3, their percentage depends on that of food r = 0.65 and 0.65 accordingly). Fatty acid composition of neutral lipids was more diverse (in number and degree of variety) as compared to polar lipids.
  • 6.6. Larvae released from oysters with gonads rich in lipids had a higher percentage of lipids, triacylglycerols, size and a lower ash percentage and value of ratio PE/PC, as compared to larvae from gonads with low lipid content. Total lipid and triacylglycerol contents in gonads correlate rather well with those in larvae (r = 0.77 and 0.47 accordingly).
  • 7.7. Phospholipid class composition of larvae strongly depends on that of gonads. All the correlations are high and positive in character (except for phosphatidylinositol).
  • 8.8. Amino acid composition of larvae depends on that of gonads and, as in the case with gonads, the same essential acids are accumulated in the first place.
  • 9.9. Fatty acid composition of total lipids of newly released larvae was rather stable and independent on that of gonads except for total polyunsaturated acids (r = 0.70) and 20:5w3 (r = 0.65). Fatty acid composition of neutral lipids was lesser diverse (in number and degree of variation) as compared to polar lipids.
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20.
  • 1.1. Serum retinol and total cholesterol concentrations were determined in several species of nonhuman primates fed semipurified diets. Two species of Old World and three species of New World nonhuman primates were examined.
  • 2.2. Retinol levels were significantly lower (up to four-fold) in the serum of the smaller New World than the larger Old World animals and the difference could not be explained by differences in dietary make-up.
  • 3.3. Cholesterol levels were not different between the groups but differed within a species when type of dietary fat was altered.
  • 4.4. Differences in circulating levels of retinol may reflect differences in levels of retinol binding protein between the groups.
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