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SYNOPSIS. The formation of digestive vacuoles by starved Tetrahymena pyriformis could be induced by mixtures of latex particles and a variety of potentially digestible solutes. Latex particles themselves had little effect in inducing vacuole formation. Protein, polypeptide, and RNA were highly effective inducers, while glutamate, amino acid mixtures, polysacharides, and glucose were moderately effective. Sodium-β-glycerophosphate had a slight effect and sodium acetate was ineffective. The possible stimulus to endocytosis is discussed. The endocytic response to inducers does not appear to be an all-or-none phenomenon and varies with the concentration of inducer. The stimulatory effect for protein-related inducers seems to be produced by a large number of stimulatory molecules acting upon a single cell and the magnitude of the response appears to be related to molecular size.  相似文献   
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A system has been developed for the culture of algae on a 3–5l scale under controlled axenic conditions. Light/dark regimescan be altered for the induction of synchrony and an automaticculture dilution system with new media has been developed. Theresults are shown for Platymonas striata. It was possible toinduce synchrony by a regime of 14 h light and 10 h darknessper 24 h. This synchrony could be maintained for many cyclesby the removal of half the culture daily and its replacementwith fresh medium 4 h after the onset of the light period. Cellseparation commenced at the onset of the light period and wascompleted after 4 h. No cell separation occurred during theremainder of the 24 h cycle. A system for automatic samplingof the axenic culture at known time intervals is described.  相似文献   
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RICKETTS  T. R. 《Annals of botany》1988,61(4):451-458
When nitrate, ammonium, or urea were the sole nitrogen sourcesfor the growth of Platymonas striata there was a short initiallag period, after which uptake/assimilation occurred at a constantrate. Glycine ‘uptake’ was however non-linear withtime. Addition of ammonium or urea markedly inhibited nitrate‘uptake’ whereas although glycine was initiallytotally inhibitory, nitrate ‘uptake’ recommencedabout 1 h after addition, but at a greatly reduced rate. Ammoniumtotally inhibited urea ‘uptake’, but did not inhibitglycine ‘uptake’. When ammonium, urea, or glycinewere present at the same time as nitrate the total rate of nitrogen'uptake/assimilation was within 40% (or closer) of that of nitratenitrogen ‘uptake’ alone. In the first two casesthis reflected a total switching off of nitrate ‘uptake’whilst the new substrate was assimilated at a rate similar tothe initial nitrate rate, whereas in the case of glycine, bothsubstrates were used simultaneously. Once the concentrationof any of the inhibitory nitrogen sources had been reduced toa low level the ‘uptake’/assimilation of nitraterecommenced. It is suggested that the ability of P. striatato maintain a more or less constant rate total nitrogen ‘uptake’/assimilationirrespective of the mixture of utilizable nitrogen sources presentedto it, is not due to controls at the level of the entry of substrateinto the cell, but to intracellular actions at the enzyme level.The relative constancy of, and high rate of ‘uptake’,irrespective of nitrogen source and over a wide range of extracellularconcentrations, is tentatively considered to be due to saturationof the assimilatory mechanisms under the conditions employed;all the sources lead, either directly or indirectly, to theproduction of amino groupings for entry into nitrogenous metabolism.This homeostasis of nitrogen ‘uptake’/assimilationwould clearly be of considerable benefit to the alga in nature,enabling it to maximize growth in changing environmental conditions. Platymonas striata, nitrogen update, nitrogen assimilation  相似文献   
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The response of an autumn-sown determinate selection, 858 , to different plant distribution patterns was examined in field trials during the two seasons 1985/86 and 1986/87 at the University of Nottingham. Plants were sown at two densities (20 and 40 plants per m2) and at three different row widths (11.9, 23.8 and 47.6 cm) in the autumn of each season. Plant numbers and combined yields were greater in 1986/87 than in 1985/86. Grain yield was unaffected by differences in inter-row spacing and this was ascribed to the early attainment of complete ground cover even when plants were grown in widely spaced rows. Yield was most strongly correlated with seed numbers per m2. An examination of yield on a per plant basis suggested that narrow inter-row spacings were more productive at low plant densities, while yield per plant was greater at higher densities if the crop was grown on wider inter-row spacings. It was concluded that autumn-sown determinate forms of faba bean were able to compensate for large changes in plant distribution and consequently yield was unaffected.  相似文献   
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RICKETTS  T. R. 《Annals of botany》1985,55(6):819-825
Nitrate refeeding of nitrogen-starved cells of Platymonas striataresulted in approximately a doubling of average cellular nitrogenwithin 24 h. All the nitrate-nitrogen removed from the culturemedium could be accounted for as non-nitrate nitrogen withincells. Thus no significantly sized nitrate pool existed in Platymonasstriata and no assimilated nitrogen was lost from the cellsto the medium over the 48 h period studied. The slight fallin average cellular nitrogen which occurred from 24 to 36 hcould be attributed to cell division. The majority (70–80per cent) of the assimilated nitrate was recovered in the trichloroaceticacid (TCA)-insoluble fraction. There was some increase in thepercentage of nitrogen found in the TCA-soluble fraction duringthe period of most rapid nitrate assimilation (0–24 h).This presumably reflects an inability of the cells to assimilatelow-molecular-weight metabolic intermediates into macromoleculesat the same rate at which they were being formed. The majorityof the TCA-soluble fraction could be accounted for in termsof amino acids, purine and pyrimidine bases and ammonia. Cellswith adequate nitrogen nutrition seemed to maintain amino acidand purine + pyrimidine base nitrogen pools of about 0.8–0.9and 0.3–0.4 pg per average cell respectively. Algal amino acids, algal purine and pyrimidine bases, algal ammonia  相似文献   
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