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M Morgan Conn Joe Kappock Dale Drueckhammer Richard Cammack Dennis Hall Tony Cass Jon D Stewart Graham RL Cousins Jeremy KM Sanders Sabine Flitsch Philip AS Lowden Richard Newman 《Current opinion in chemical biology》1999,3(6):631
A selection of interesting papers that were published in the two months before our press date in major journals most likely to report significant results in chemical biology. 相似文献
223.
Most biosensors reported to date have been prepared, studied and used under laboratory conditions. The feasibility of a very great number of biosensors seems to be demonstrated and their characteristics, very often, established as corresponding to the demands of the modern analysis. The operational stability of the biosensors, according to authors, is almost always acceptable. The long term storage, with analytical quality conservation that is necessary to commercialise products, has rarely been studied. The stability of biosensors has to remain not only during the fabrication step or their subsequent utilisation, but also throughout the whole commercial shelf-life of the sensor, from producer to end user, through wholesaler and/or retailer. We developed the manufacturing processes, on a large scale, of renewable surface electrodes modified with enzymes such as oxidoreductases. The process consisting of several steps is described and the analytical behaviours of resulting biosensors is studied and correlated with the effects of different constraints applied during the fabrication process. 相似文献
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The cell envelope of a Sulfolobus-like microorganism has an arrayed hexagonal subunit structure, a double-layered cytoplasmic membrane, and a hollow periplasmic space between the plasma membrane and the outermost arrayed layer. A dense peptidoglycan layer outside the plasma membrane found in the case of Thiobacillus ferrooxidans was not seen. The cell envelope of a thermophile isolated from a leaching environment has a well-defined envelope with two well-stained layers distinclty seen. While the peptidoglycan layer is also not seen in this thermophile, a long flagellum similar to that in the case of T. ferrooxidans is present. The presence of pili in the Sulfolobus-like organism and its arrayed subunit cell envelope structure could account for the organism's selective attachment to sulfide phases in the leaching of low-grade ores. The observations of a well-defined cell envelope in the two thermophiles is consistent with the structure-function relationship previously established for T. ferrooxidans. 相似文献
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F. R. SCARANO FLS H. M. DUARTE G. RÔÇAS S. M. B. BARRETO E. F. AMADO F. REINERT T. WENDT A. MANTOVANI H. R. P. LIMA C. F. BARROS 《Botanical journal of the Linnean Society. Linnean Society of London》2002,140(4):391-401
The clonal tank-bromeliad Aechmea bromeliifolia (Rudge) Baker was found in four different habitats in a restinga (vegetation mosaic on sandy coastal plains), of south-eastern Brazil. These habitats (swamp forest, dry forest, dry shrubland and herbaceous marsh) lie within a few hundred metres of each other along a gradient extending inland from the coast, and differ markedly in terms of light and flood regime. We compared ramet morphology, leaf anatomy and physiology, and population parameters to examine the amplitude of trait variation of this widespread species in the studied restinga. This integrated approach allowed us to examine which variation conferred acclimation and which was merely a stress symptom. A . bromeliifolia showed site-specific differences in abundance, distribution, rosette size and shape, leaf anatomical arrangement and photochemical efficiency (potential quantum yield; F v / F m ) during the day. Most of the variation found seemed to be related to the interaction of light and flooding. The lowest number and size of ramets at the exposed, dry shrubland was matched by a marked leaf photoinhibition, which suggested poor acclimation to local levels of light intensity and limited water supply. In the other habitats, the morpho-physiological parameters measured suggested adequate foraging behaviour and site acclimation. © 2002 The Linnean Society of London, Botanical Journal of the Linnean Society, 2002, 140 , 391-401. 相似文献