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31.
In the temperate zone, agroforestry systems come increasingly into focus as they offer an approach for the production of fuelwood, thus matching the increasing demand for a self-supply with bioenergy in rural decentralized areas. Because of the large area potential of marginal land, research activities aimed at a reliable estimation of the minimum productivity of fast–growing tree species under most unfavourable site conditions.Two agroforestry systems were established on reclaimed mine sites in NE-Germany (Lusatia) and Central Germany (Helmstedt). The yield potential and the sustainability of yields were studied for different clones of poplar (Populus spp.), willow (Salix viminalis L.), and black locust (Robinia pseudoacacia L.), considering different rotation periods (3-, 6-, and 9-year-rotation) and approaches of soil amelioration (mineral fertiliser, compost).On both sites the highest yields of woody biomass were found for R. pseudoacacia L. regardless of rotation period and amelioration measures. On loamy substrates in the Helmstedt mining district, all tree species and clones responded positively to soil amelioration measures.In the agroforestry system in Lusatia, special emphasis was given to the interaction between trees (R. pseudoacacia) and crops (Medicago sativa L.). Considering the land equivalent ratio (LER), R. pseudoacacia hedgerows have practically no negative influence on yields of M. sativa. Hence, with regard to an increasing demand for woody biomass, alley cropping with R. pseudoacacia and crops such as M. sativa may provide a promising alternative for future land use in the temperate zone.  相似文献   
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Four renal cell lines were derived from glomeruli, proximal, distal, and cortical collecting tubules microdissected from the kidneys of transgenic mice carrying the temperature-sensitive mutant of the simian virus 40 large T antigen under the control of the vimentin promoter. All four cell lines contained large T antigen in their nuclei, grew rapidly, and contained vimentin filaments when grown in serum-enriched medium at the permissive temperature of 33°C. The glomerular cell line formed multiple layers of cells and contained smooth muscle actin and desmin filaments, features of mesangial cells. The three tubule cell lines formed monolayers of polarized cuboid cells separated by tight junctions and having a patchy distribution of cytokeratins K8-K18. A shift from 33°C to the restrictive temperature (39.5°C) stopped cell growth in all cell lines and caused profound changes in the content of intermediate filaments. Vimentin was still present in mesangial-like cells, but the proximal, distal, and collecting tubule cells contained uniform networks of cytokeratins K8-K18 and desmoplakin I and II around the cell peripheries. Potassium transport, mediated by NA+-K+ ATPase pumps and specific cAMP hormonal sensitivities, significantly increased in proximal, distal, and collecting tubule cells when shifted from 33°C to 39.5°C. Thus, the temperature-dependent inactivation of large T antigen, responsible for the arrest of cell growth, did not affect the phenotype of mesangial-like glomerular cells but induced some changes in the expression of intermediate filaments and restored, at least partially, the main parental cell-specific functions in proximal, distal, and collecting tubule cultured cells. © 1996  相似文献   
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Urinary tract infections (UTIs), which are mainly due to uropathogenic Escherichia coli (UPEC), occur via the retrograde ascent of the bacteria along the urinary tract system. The adhesion and invasion mechanisms of UPEC have been extensively studied in bladder epithelial cells, but less is known about the role of renal tubule epithelial cells (RTEC) in renal antibacterial defences. This review considers recent advances in the understanding of the role of RTECs in inducing an innate immune response mediated by Toll-like receptors (TLRs) in experimental UTI. Collecting duct cells are a preferential site of adhesion of UPEC colonizing the kidneys. Epithelial TLR4 activation induces an inflammatory response and the recruitment of lipid rafts to the plasma membrane, both of which facilitate the transcytosis of non-cytolytic UPEC strains across intact collecting duct cell layers to invade the renal interstitium. Arginine vasopressin, which regulates water absorption in the collecting duct, also acts as a potent modulator of the TLR4-mediated intrarenal innate response caused by UPEC. The role of epithelial TLR5 in renal host defences is also discussed. These findings highlight the role of RTECs in triggering the innate immune response in the context of ascending UTIs.  相似文献   
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Several strains of bacteria, isolated from marine environments, were characterized for their hydrocarbon oxidizing abilities using a complex synthetic mixture of hydrocarbons. Attempts were made at a broad classification of these organisms on the basis of their behavior towards four major groups of hydrocarbons, normal paraffins, iso-paraffins, cyclo-paraffins, and aromatics, known to be present in crude oils. Although bacteria appear to be able to oxidize hydrocarbons at random, this study has shown that it may be possible to recognize a rudimental pattern if we view their oxidative abilities in terms of groups of hydrocarbons rather than individual compounds. A study of the action of combined strains on the synthetic hydrocarbon mixture was performed. It was found that no particular benefit could be derived as compared to the use of single strains.  相似文献   
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The effects of aldosterone and vasopressin on Cl transport were investigated in a mouse cortical collecting duct (mpkCCD) cell line derived from a transgenic mouse carrying the SV40 large T antigen driven by the proximal regulatory sequences of the L-pyruvate kinase gene. The cells had features of a tight epithelium and expressed the amiloride-sensitive sodium channel and the cystic fibrosis transmembrane conductance regulator (CFTR) genes. dD-arginine vasopressin (dDAVP) caused a rapid, dose-dependent, increase in short-circuit current (I sc ). Experiments with ion channel blockers and apical ion substitution showed that the current represented amiloride-sensitive Na+ and 5-nitro-2-(3-phenylpropylamino)benzoate-sensitive and glibenclamide-sensitive Cl fluxes. Aldosterone (5 × 10−7 m for 3 or 24 hr) stimulated I sc and apical-to-basal 22Na+ flux by 3-fold. 36Cl flux studies showed that dDAVP and aldosterone stimulated net Cl reabsorption and that dDAVP potentiated the action of aldosterone on Cl transport. Whereas aldosterone affected only the apical-to-basal 36Cl flux, dDAVP mainly increased the apical-to-basal Cl flux and the basal-to-apical flux of Cl to a lesser extent. These results suggest that the discrete dDAVP-elicited Cl secretion involves the CFTR and that dDAVP and aldosterone may affect in different ways the observed increased Cl reabsorption in this model of mouse cultured cortical collecting duct cells. Received: 8 January 1998/Revised: 25 March 1998  相似文献   
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Liddle's syndrome is a form of inherited hypertension linked to mutations in the genes encoding the epithelial Na+ channel (ENaC). These mutations alter or delete PY motifs involved in protein-protein interactions with a ubiquitin-protein ligase, Nedd4. Here we show that Na+ transporting cells, derived from mouse cortical collecting duct, express two Nedd4 proteins with different structural organization and characteristics of ENaC regulation: 1) the classical Nedd4 (herein referred to as Nedd4-1) containing one amino-terminal C2, three WW, and one HECT-ubiquitin protein ligase domain and 2) a novel Nedd4 protein (Nedd4-2), homologous to Xenopus Nedd4 and comprising four WW, one HECT, yet lacking a C2 domain. Nedd4-2, but not Nedd4-1, inhibits ENaC activity when coexpressed in Xenopus oocytes and this property correlates with the ability to bind to ENaC, as only Nedd4-2 coimmunoprecipitates with ENaC. Furthermore, this interaction depends on the presence of at least one PY motif in the ENaC complex and on WW domains 3 and 4 in Nedd4-2. Thus, these results suggest that the novel suppressor protein Nedd4-2 is the regulator of ENaC and hence a potential susceptibility gene for arterial hypertension.  相似文献   
40.
A real-time PCR assay is described for rapid and accurate identification of the Streptococcus anginosus group members. Based on melting curve analysis, the S. anginosus species isolates could be further subdivided into two subgroups, each associated with different clinically relevant ribotypes of S. anginosus.  相似文献   
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