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Pacemaker activity of the isolated chick heart changed considerably during development. The spontaneous impulse frequency increased up to the 11th–15th incubation day. This period of acceleration was followed by a marked deceleration around the time of hatching. Both acceleration and deceleration appeared to be caused by changes intrinsic to the pacemaker. Deceleration was related to a decrease in rate of slow diastolic depolarization. The results were compared with well-known ontogenetic changes in heart rate in vivo. This comparison indicates that the deceleration of pacemaker firing around hatching is counteracted by the development of sympathetic cardiac reflexes in vivo.  相似文献   

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The influence of plant ontogeny on xylem exudate K+ concentrations and K+ transport to the shoot was studied in both nutrient-solution and field-grown tomato plants ( Lycopersicon esculentum ).
K+ concentrations in xylem exudate from decapitated plants decreased during tomato plant development from a high of 12 m M to a low of 5 m M . In the nutrient-solution plants, the most rapid decline occurred during the vegetative growth phase, while in field-grown plants, the xylem K+ concentrations remained high during an-thesis and then subsequently declined. The rapid decline in nutrient-solution plants might be related to a decrease in the absorptive efficiency of the root system. In field-grown plants, a reduction in the availability of assimilates to the root might account in part for the decrease in xylem exudate K+ concentrations. The volume (ml h−1 plant−1) and the net rates of K+ exudation (mmol h−1 plant−1) decreased dramatically as the fruits approached maturity. Since only a small reduction in xylem exudate K+ concentrations occurred during fruiting, the hydraulic conductivity of the root system decreased as the tomato plants aged. It is proposed that the ontogenetic changes in xylem transport of K+ contribute to a reduction in leaf free space K+ concentration which would explain the decline in tomato leaf K+ concentrations.  相似文献   

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Reducing substances in allantoic fluid of the chick embryo   总被引:7,自引:0,他引:7  
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Identification and quantitative fluorimetric assay have been made on the content of DOPA, dopamine, noradrenaline and adrenaline in the amniotic fluid and amnion of the developing chick embryos. Significant increase in the content of DOPA, noradrenaline and adrenaline in the amniotic fluid was observed between the 6th and the 13th days of incubation; dopamine content sharply decreases at the 13th day. The content on amines in the amnion tissue remained essentially constant throughout the investigated period. The role of catecholamine in amniotic fluid in regulation of contractile activity of amniotic membrane in the developing chick embryo is discussed.  相似文献   

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In vitro phosphorylation of brain proteins of developing chick embryos showed a drastic increase in the extent of phosphorylation of a 22 KDa protein from the fourteenth day reaching a peak at seventeenth day of development; the phosphorylation of the 22 KDa protein declined afterwards. Phosphoaminoacid analysis of the 22 KDa protein indicated serine residues as targets of phosphorylation. Isoelectric focusing followed by second dimensional SDS-PAGE indicated that the 22 KDa protein had a pI value of 4.5. Polymyxin B, an inhibitor of Ca2+ and phospholipid dependent protein kinases inhibited the phosphorylation of the 22 KDa protein.  相似文献   

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Intracellular potassium, sodium and potassium influx were examined in PHA-activated human lymphocytes within 6 days of cultivation. DNA flow cytometry was used to estimate the percentage of cells in G1, S and G2 + M phases. Potassium influx and content per g protein were found to be increased, whereas sodium content decreased with the progression of cells from G1 to S phases, being maximum on the 3rd day. Later on the percentage of cells in S phase was seen diminished, and the potassium content decreased just as sodium content increased. It is concluded that ionic changes may correlate with the entering of cells into S phase.  相似文献   

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Metabolism of cholesterol in the tissues and blood of the chick embryo   总被引:3,自引:0,他引:3  
Three artificially inseminated laying White Leghorn hens were given 35-50 micro c of cholesterol-4-(14)C intravenously. Their subsequently produced eggs contained cholesterol-(14)C-labeled yolks. Some of the fertilized eggs were analyzed for cholesterol content and radioactivity. Other eggs were incubated until hatching. The specific activity of the cholesterol contained in the serum and tissues of newly hatched chicks was determined and compared with that of yolk sac, which was taken as representative of egg yolk cholesterol before its metabolic transfer into the chick embryo. The specific activities of cholesterol in intestine, liver, serum, heart, and skeletal muscle and the whole chick were 95-98% of that in yolk sac, but that of brain cholesterol was only 11% of this value. These results indicate that whereas most of the cholesterol in the chick originated from the egg yolk, cholesterol biosynthesis was active in the brain and provided about 90% of its cholestero content. Newly hatched chicks were found to be hyperlipemic compared with older chicks and had fatty livers with a high cholesterol content. Desmosterol was found in 9- and 15-day old chick embryos but not in the newly hatched chicks, in which the only sterol was cholesterol.  相似文献   

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