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661.
Agata Torre Francesca Trischitta Carmelo Corsaro Domenico Mallamace Caterina Faggio 《Cell biochemistry and function》2013,31(6):489-495
The response of isolated digestive cells of the digestive gland of Mytilus galloprovincialis to hypotonic shock was studied using videometric methods. The isolated cells exposed to a rapid change (from 1100 to 800 mosmol kg?1) of the bathing solution osmolality swelled but thereafter underwent a regulatory volume decrease (RVD), tending to recover the original size. When the hypotonic stress was applied in the presence of quinine and glibenclamide, known inhibitors of swelling activated ion channels, the cells did not exhibit an RVD response; in addition, they showed a larger increase in size in respect to control cells. These observations suggest that the digestive cells of the digestive gland have the machinery to cope with the hyposmotic shock allowing them to exhibit a small but significant RVD preventing an excessive increase in cell size. The pharmacological treatment of digestive cells during the RVD experiments suggests that cell volume is regulated by K+ and Cl? efflux followed by an obliged water efflux from the cell. The involvement of organic osmolytes such as taurine and betaine seems to be excluded by NMR measurement on digestive cells. Copyright © 2012 John Wiley & Sons, Ltd. 相似文献
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663.
Summary The growth of Cyanidium caldarium on nitrate and ammonia as nitrogen sources was studied at different temperatures from 21 to 54°C.Algal growth occurred at temperatures of 24° C or above when ammonia was the nitrogen source, whereas with nitrate, growth occurred at 30° C or above. The optimum and the maximum growth temperatures were 45 and 54° C respectively on both substrates.Arrhenius plots show that the logarithm of the growth rate is not linear with the reciprocal of absolute temperature, but exhibit sharply defined breaks at 30° C on ammonia and at 40° C on nitrate.It is assumed that below 40° C, when Cyanidium grows on nitrate, the utilization of this substrate represents the master reaction which controls the growth rate of the alga. 相似文献
664.
Ashley Castellanos-Jankiewicz Omar Guzmán-Quevedo Valérie S. Fénelon Philippe Zizzari Carmelo Quarta Luigi Bellocchio Anne Tailleux Julie Charton Daniela Fernandois Marcus Henricsson Catherine Piveteau Vincent Simon Camille Allard Sandrine Quemener Valentine Guinot Nathalie Hennuyer Alessia Perino Alexia Duveau Daniela Cota 《Cell metabolism》2021,33(7):1483-1492.e10
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