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101.
Résumé L'ultrastructure des éléments cytoplasmiques de deux Dinoflagellés a révélé des différences fondamentales directement liées à leur mode de vie.Chez Noctiluca (Dinoflagellé libre, incolore), les corps de Golgi jouent un rôle important dans la formation des sphères archoplasmiques au moment des divisions et lors de l'élaboration de l'endoglée. Les mitochondries de grande taille, parfois géantes, ont des crêtes nombreuses et une matrice réduite. Elles offrent souvent des relations de contiguïté avec les granulations lipidiques et l'enveloppe nucléaire; elles sont très abondantes dans le tentacule du trophozoïte. Il n'existe pas de plastes. Les inclusions lipidiques abondent ainsi que les trichocystes fibreux et les poches mucifères dont le contenu est polysaccharidique.Chez Blastodinium (Dinoflagellé parasite, coloré sauf une espèce), les corps de Golgi sont très réduits dans le trophocyte, assez rares mais de structure classique dans les sporocytes. Les mitochondries sont de petite taille, pauvres en crêtes et ont une matrice importante chez le trophocyte; elles sont plus grandes dans les sporocytes. Les plastes bien développés, périphériques, possèdent des lamelles stromatiques formées de trois thylakoïdes chez les sporocytes; par contre, chez l'individu végétatif, le plus souvent incolore et relativement protégé de la lumière par plusieurs rangées de sporocytes, les plastes, de grande taille ont un aspect dégénéré: lamelles stromatiques rares, thylakoïdes tassés et stroma important; ce sont des étioplastes. Le cas de Blastodinium contortum hyalinum toujours incolore, est particulier: les plastes existent encore mais sont totalement dégénérés. Il y a très peu de lipides dans le trophocyte, mais ils sont par contre abondants dans les sporocytes. Il existe des trichocystes fibreux et chez l'individu végétatif, des figures myéliniques.Ces importantes variations structurales illustrent parfaitement, dans l'échelle évolutive des Dinoflagellés, l'exemple de deux modes de vie très différents.
Fine structure of endoplasm and vacuoles in two types of dinoflagellates of the genus Noctiluca and Blastodinium
Summary The fine structure of cytoplasmic elements of two Dinoflagellates reveals fundamental differences directly linked to their way of life.In Noctiluca, free-living, colourless dinoflagellate, the Golgi bodies play an important role in the formation of archoplasmic spheres at the moment of division and when the endoglea is elaborated. The mitochondria of great size, sometimes giant, have very abundant cristae and a reduced matrix. They often show relations of contiguity with the lipid granules and the nuclear envelope; they are very abundant in the tentacle of the trophozoïd. There are no plastids. The lipid inclusions are very abundant and so are fibrous trichocysts and muciferous bags whose content is polysaccharidic.In Blastodinium, parasitic dinoflagellate, coloured except for one species, the Golgi bodies are much reduced in the trophocyte, rather rare but of classical structure in the sporocytes. The mitochondria are of small size, with rare cristae and have an enlarged matrix in the trophocyte; they are bigger in the sporocytes. The plastids are well developed, peripheral, and have stromatic lamellae formed of three thylakoïds in the sporocytes. On the other hand, in the vegetative individual, usually colourless since it is protected from the light by many rows of sporocytes, the large plastids have a degenerated aspect, rare stromatic lamellae, packed thylakoïds and enlarged stroma; they are etioplastids. The case of Blastodinium contortum hyalinum, always colourless, is special: the plastids still exist but are completely degenerated. There are very few lipids in the trophocyte but abundant ones in the sporocytes. Some fibrous trichocysts occur, and in the vegetative individual, some myelinic vacuoles.These important structural variations illustrate very well the example of two very different ways of life, in the evolutionary tree of dinoflagellates.
Cet article fait partie d'un travail d'ensemble constituant une Thèse de Doctorat d'Etat intitulée: La cytologie et la division de deux types de Dinoflagellés: Noctiluca Suriray (genre libre) et Blastodinium Chatton (genre parasite).  相似文献   
102.
Potato leafroll virus induces considerable disturbances of phosphorus metabolism in leafroll-infected potato plants. Each variety reacts differently in this respect on the infection, to some extent being dependent on the susceptibility of the respective variety to leafroll and to the season as well. In varieties particularly susceptible to leafroll as in Apta and Sieglinde there is a decrease of total P after infection. On the contrary, varieties showing medium susceptibility such as varieties Tatranka, Rita and Ambra react to leafroll infection with a considerable increase of total P. In the comparatively less susceptible variety Krasava, there is no change in the level of total P after infection. In autumn, however, a slight decrease of total P even in the medium susceptible variety Tatranka, and the less susceptible variety, Krasava, can be found. Our results shed a new light on existing controversies in literature regarding phosphorus content in leafroll-infected potato plants. When the changes in the contents of various phosphorus fractions in the infected plants are compared we can observe a tendency of lowmolecular fractions to rise. Among the different phosphorus fractions one common feature could be seen, except for the hypersensitive resistant variety Apta, namely, that the acid-soluble organic phosphates in the stems of all varieties examined, were considerably higher than in healthy stems.  相似文献   
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The strainCandida utilis T 20 adapted to a high concentration of ethionine, excretes considerable amounts of methionine in a synthetic medium, about 40 times as much as the original non-adapted strain. At the same time, the amount of methionine in yeast cells incrncreased, predominantly in the pool (9 times as much as in the control). This ability to produce greater amounts of methionine in the pool or to excrete it into the medium is not permanent, since after 5 passages on agar with ut ethionine the amount of methionine was practically not increased as compared with the original non-adapted strain. An increase in free methionine and of methionine excreted into the medium was found on cultivating the strain in a molasses-containing medium, too.  相似文献   
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(1) The proportion of infected B. megatherium cells which develop lysogenic colonies depends on the number and kind of infecting virus particles and on the culture medium in which the cells are growing. (2) Cells infected with 100 or more T virus particles (from megatherium 899) in yeast extract peptone disintegrate, produce very few virus particles, and less than one lysogenic colony per 107 infected cells. Cells infected with one or a few particles produce 500 to 1000 virus particles each and about 30 lysogenic colonies per 107 infected colonies. (3) T phage obtained from lysogenic magatherium KM cultures produces many more lysogenic cells than does the original megatherium 899 virus. (4) Cells infected with megatherium 899 T virus in peptone medium and then transferred to asparagine medium give rise to 106 lysogenic colonies per 107 infected cells and this transformation will occur even after the infected cells have been in peptone for 60 to 90 minutes and are beginning to produce virus particles. (5) Continued growth of KM strain with either C or T virus from megatherium 899 for several hundred generations in the steady state apparatus results in a lysogenic strain which produces several different types of virus.  相似文献   
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Previous in vivo experiments in rats have shown that pulsed nerve stimulations of 20-50 mV require "external" electrical communication over vessels. This indicates that potential differences also should occur in associated vessels, at physiologic muscle contractions. Pinching toes of the hind leg of anaesthetized rats in the present study caused the animals to spontaneously pull the leg. This resulted in electric potential differences over two intracaval electrodes, as well as high frequency spikes. The slow potential pulses and high frequency spikes could be recorded dominantly in the vena cava compared with the extravascular tissue fluid. The electrical prerequisites and the previous experiments support the view that the vascular-interstitial fluid represents an "external" low resistant communication route of a closed circuit over the nerve cell bodies, the axons and the muscle fibers. A closed electrical circuit evidently increases our possibilities for explaining various structural and chemical events of the synaptic membranes.  相似文献   
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