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111.
Zusammenfassung Der neu isolierte Stamm W von Bdellovibio bacteriovorus infiziert und lysiert Rhodospirillum rubrum F und alle anderen untersuchten Athiorhodaceae, nicht aber Pseudomonas aeruginosa und Spirillum serpens. Er befällt auch zahlreiche Enterobacteriaceae und von den grampositiven Bakterien Streptococcus faecalis und Lactobacillus plantarum.Nach dem Festheften an der Zellwand wird diese in 3–20 min durchdrungen. In 10–60 min ist Bdellovibrio vollständig in die Zelle eingedrungen und hat sich im Raum zwischen Zellwand und cytoplasmatischer Membran angesiedelt.In 3–5 Std wird der gesamte Zellinhalt bis auf die Membranen aufgelöst. In dieser Phase erfolgt die Vermehrung von Bdellovibrio. In den ghosts sind die Parasiten in lebhafter Bewegung. Die Geißel hat einen Gesamtdurchmesser von 29 m und eine Länge von etwa 3 . Sie ist von einer Geißelscheide umgeben, die in Verbindung zur Zellwand steht. Der Durchmesser der Geißel ohne Scheide beträgt etwa 18 m. Bdellovibrio kann oberhalb eines Sauerstoffpartialdruckes von 4–5 mm Hg infizieren und sich vermehren. Der Titer von Bdellovibrio nimmt bei Aufbewahrung in lysierten Kulturen in 36 Tagen von 108 auf 101 pfu (plaque forming units) je ml ab. Bei Aufbewahrung in Nährkultur sinkt der Titer nur auf 104 pfu/ml ab. Die Zahl der Plaques im Verhältnis zum Titer der Impfsuspension von Bdellovibrio schwankt in Abhängigkeit vom Wirtsstamm. Wenn man die Plaque-Bildungsrate bei R. rubrum gleich 1 setzt, beträgt sie bei Serratia marcescens 0,0001, bei Proteus vulgaris 10. Bd. bacteriovorus, Stamm W wächst nicht in synthetischer Nährlösung oder Lysaten. Ein geringes Wachstum ohne Zellteilung findet in Zellextrakten von R. rubrum statt. Der Stamm vermehrt sich jedoch in hitzeinaktiviertem R. rubrum. Die Plaque-Bildungsrate ist unter diesen Bedingungen aber sehr niedrig.In Lysaten treten encystierte Dauerformen von Bdellovibrio bacteriovorus auf.
The host range and the infectious cycle of a new isolated, on gram-positive and gram-negative bacteria parasiting Bdellovibrio bacteriovorus strain
Summary Rhodospirillum rubrum and all other investigated Athiorhodaceae are infected and lysed by the new isolated strain W of Bdellovibrio bacteriovorus. This strain W parasites on numerous Enterobacteriaceae and the gram-positive bacteria Streptococcus faecalis and Lactobacillus plantarum, but not on Pseudomonas aeruginosa and Spirillum serpens.After attachment of Bdellovibrio to the host, the cell wall is penetrated in 3 to 20 min. In 10 to 60 min Bdellovibrio has completely entered the host cell. He remains in the space between cell wall and cytoplasmic membrane of the host.The host cell is completely lysed within 3 to 5 hours. During this phase the size and cell number of Bdellovibrio are increased and a new flagellum is likely to be formed. In the ghosts of the host cell a strong movement is observed. The single polar flagellum of Bdellovibrio has a diameter of 29 m. The flagellum consists of an inner core ( 18 m) and an outer sheath which is continued into the cell wall. Bdellovibrio is able to grow and to infect only under aerobic or semiaerobic conditions (oxygen partial pressure 4 to 5 mm Hg and more). The titer of Bdellovibrio is gradually decreased from 108 to 101 plaque forming units (pfu) per ml, when kept in the lysate for 36 days. In a synthetic medium there is a diminution of 104 pfu/ml only. The plating efficiency is dependent of the host strain. If the plating efficiency of Bdellovibrio with Rhodospirillum rubrum is 1.0, the rate varies from 0.0001 with Serratia marcescens to 10 with Proteus vulgaris. Bdellovibrio bacteriovorus strain W does not grow in a synthetic medium. However, it grows but does not multiply in cell free extracts of Rhodospirillum rubrum. The parasite is also able to infect and lyse heat inactivated R. rubrum. But the plating efficiency in this case is very low.It has been observed that in lysed cells of R. rubrum certain amount of Bdellovibrio is encysted. The morphology and fine structure of these cells is quite different from the normal virulent type.
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The effect of temperature on the potential and current thresholds of the squid giant axon membrane was measured with gross external electrodes. A central segment of the axon, 0.8 mm long and in sea water, was isolated by flowing low conductance, isoosmotic sucrose solution on each side; both ends were depolarized in isoosmotic KCl. Measured biphasic square wave currents at five cycles per second were applied between one end of the nerve and the membrane of the central segment. The membrane potential was recorded between the central sea water and the other depolarized end. The recorded potentials are developed only across the membrane impedance. Threshold current values ranged from 3.2 µa at 267deg;C to 1 µa at 7.5°C. Threshold potential values ranged from 50 mv at 26°C to 6 mv at 7.5°C. The mean Q10 of threshold current was 2.3 (SD = 0.2), while the Q10 for threshold potentials was 2.0 (SD = 0.1).  相似文献   
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SYNTHETIC ACTIVITIES DURING SPERMATOGENESIS IN THE LOCUST   总被引:2,自引:2,他引:0       下载免费PDF全文
Isolated testes of the locust Schistocerca gregaria were immersed in solutions of tritiated thymidine, cytidine, uridine, or arginine for short periods to study nucleic acid and protein synthesis during spermatogenesis. DNA synthesis in this tissue is completed prior to initiation of meiosis. Protein synthesis continues throughout the whole meiotic cycle as well as during spermatid development. Meiotic cells, except those in metaphase through early telophase, and early spermatids are also actively synthesizing RNA. The heteropycnotic X-chromosome does not produce RNA at any stage of spermatogenesis. The rates of protein and particularly RNA synthesis decrease as chromosome condensation progresses. Depression of RNA synthesis, however, is not always accompanied by cytologically detectable condensation of chromatin, since very little or no RNA is synthesized in spermatids in which chromatin condensation has barely begun.  相似文献   
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Carboxypeptidase E (CPE), a peptide hormone-processing enzyme, is present within secretory granules in both a soluble form and a form which is membrane-bound at pH 5.5 but soluble at neutral pH. Antisera raised against a peptide corresponding to the predicted COOH-terminus of CPE bind to the membrane-associated form of CPE but not to the soluble form. This COOH-terminal region is predicted to form an amphiphilic alpha-helix, containing several pairs of hydrophobic residues separated by hydrophilic residues. Synthetic COOH-terminal peptides 11-24 residues in length are able to bind to bovine pituitary membranes and can be extracted by conditions that extract the membrane-bound form of CPE. The influence of pH on the membrane binding of a 21-residue COOH-terminal peptide is similar to the membrane binding of CPE: at pH values less than 6 the majority of the peptide is membrane-bound, while at pH values above 8 less than 20% is membrane-bound. Both the 21-residue COOH-terminal peptide and the purified membrane form of CPE, but not the soluble form, partition into Triton X-114 only at low pH (pH less than 6). Combined polar and hydrophobic interactions of the COOH-terminal peptide appear to be responsible for the reversible, pH-dependent association of CPE with membranes.  相似文献   
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Vitamin A (retinol) and some of its analogs exhibited varying degrees of inhibition on induced iron and ascorbic acid lipid peroxidation of rat brain mitochondria. Malonyldialdehyde production was used as an index of the extent of in vitro lipid peroxidation. The fat-soluble vitamins retinol, retinol acetate, retinoic acid, retinol palmitate, and retinal at concentrations between 0.1 and 10.0 mmol/L inhibited brain lipid peroxidation. Retinol and retinol acetate were the most effective inhibitors. It is concluded from this study that retinol and its analogs can be considered as potential antioxidant factors, more potent than some of the well-known antioxidants such as alpha-tocopherol and butylated hydroxytoluene.  相似文献   
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