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1.
The elongation rate, the gradient of the local elongation rate and the surface pH of maize roots were measured over 12 h. A data bank was constituted by storing these values. By sorting these results on the basis of different elongation rates, different classes of root were obtained. Two classes were chosen: the low-growth roots and the high-growth roots. The mean growth of these two root classes was stable with time and differed significantly from one another. The surface pH of the elongation zone was the same for the roots of these two classes, but the roots selected for their higher growth rate had a larger acid efflux in this zone. 相似文献
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Mayor, Heather D. (Baylor University College of Medicine, Houston, Tex.), Richard M. Jamison, Liane E. Jordan, and Joseph L. Melnick. Structure and composition of a small particle prepared from a simian adenovirus. J. Bacteriol. 90:235-242. 1965.-When tissue-culture fluids infected with simian adenovirus SV15 are examined in an electron microscope, either as fresh harvests or after treatment with Genetron, typical mature adenovirus particles are found. These are 65 to 70 mmu in diameter, with an icosahedral capsid built from 252 capsomeres. Also present is a population of small polyhedral particles approximately 20 mmu in diameter. These small particles can be separated from the mature virions by ultrafiltration or density gradient centrifugation. The small particles have a density of 1.43 in cesium chloride. They contain protein and double-stranded deoxyribonucleic acid. They appear to possess cubic symmetry of the icosahedral type, with a coat composed of 12 subunits each at the vertex of an icosahedron. 相似文献
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The effect of the neurotoxic pigment bilirubin on the membrane potential of rat brain synaptosomes was studied by using the tetraphenylphosphonium ion (TTP+) technique. Bilirubin induces a rapid depolarization of synaptosomes, as reflected by an efflux of previously accumulated [3H]TTP+. This phenomenon persisted when the membrane potential across either the plasma membrane of the synaptosome or the inner membrane of the entrapped mitochondria was selectively depressed, thus indicating that both components of the synaptosomal membrane potential were affected by bilirubin. Bovine serum albumin, used at a albumin/bilirubin molar ratio of 1:1, had the capacity to completely prevent and reverse the effect of bilirubin. This fact demonstrates that the bilirubin-induced TPP+ release from synaptosomes is a reversible process that requires the presence of bilirubin interacting with the synaptosomal membranes. These results, together with the inhibition by bilirubin of [3H]TPP+ and [2-14C]acetate uptake by synaptosomal plasma membrane vesicles isolated from rat brain, suggest that bilirubin depresses the membrane potential across the synaptosomal plasma membrane by a mechanism involving alterations in ion permeability. This effect could be of relevance in the pathogenesis of bilirubin encephalopathy. 相似文献
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Since classical times and earlier, footprints in stone have intrigued humanity. Sometimes the supposed footprints were mere indentations produced by the chances of erosion; sometimes they were invertebrate fossils; and sometimes they were faked; but quite often they were the tracks of extinct creatures. The interpretations resulting from observations of these phenomena included legends of gods, heroes and saints: but, on occasion, the envisioning of the track‐maker was remarkably accurate. This account of the folklore of footprints surveys legends from Europe, North and South America, Africa and Australia; it concludes with the beginning of their scientific observation. 相似文献
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Marine planktonic copepods of the order Calanoida are central to the ecology and productivity of high latitude ecosystems, representing the interface between primary producers and fish. These animals typically undertake a seasonal vertical migration into the deep sea, where they remain dormant for periods of between three and nine months. Descending copepods are subject to low temperatures and increased hydrostatic pressures. Nothing is known about how these organisms adapt their membranes to these environmental stressors. We collected copepods (Calanoides acutus) from the Southern Ocean at depth horizons ranging from surface waters down to 1000 m. Temperature and/or pressure both had significant, additive effects on the overall composition of the membrane phospholipid fatty acids (PLFAs) in C. acutus. The most prominent constituent of the PLFAs, the polyunsaturated fatty acid docosahexanoic acid [DHA – 22:6(n-3)], was affected by a significant interaction between temperature and pressure. This moiety increased with pressure, with the rate of increase being greater at colder temperatures. We suggest that DHA is key to the physiological adaptations of vertically migrating zooplankton, most likely because the biophysical properties of this compound are suited to maintaining membrane order in the cold, high pressure conditions that persist in the deep sea. As copepods cannot synthesise DHA and do not feed during dormancy, sufficient DHA must be accumulated through ingestion before migration is initiated. Climate-driven changes in the timing and abundance of the flagellated microplankton that supply DHA to copepods have major implications for the capacity of these animals to undertake their seasonal life cycle successfully. 相似文献
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Ecosystems - Identified as essential mechanisms promoting alternative stable states, positive feedbacks have been the focus of most former studies on the potential for catastrophic shifts in... 相似文献
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