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61.
Fatty acids of Azotobacter vinelandii ATCC 12837 were determined at various times during aerobic vegetative growth at 30°C to provide baseline data for studying the effects of chemical agents on the organism’s survival and fatty acid biosynthesis. Palmitate (16:0) was the highest at 36.7±4.3 mol% (mean±SD) after the first 5 h in fresh culture, decreasing slightly to 33.4±2.6 mol% at 49 h. The other fatty acids were therefore each normalized as a ratio of 16:0. At 5 h, as a ratio of 16:0, myristate (14:0) was 0.14±0.06, palmitoleate (16:1cΔ9–10) 0.13±0.06, oleate (18:1cΔ9–10) 0.21±0.12, cis-vaccenate (18:1cΔ11–12) 0.30±0.17 and stearate (18:0) 0.68±0.02. As the growth phase advanced to 49 h, 14:0 and 16:1cΔ9–10 increased, 18:1cΔ9–10 decreased and cis-vaccenate reciprocally increased, whereas 18:0 decreased. These suggest that the saturated fatty acid biosynthesis pathway yielded 16:0 and 18:0 in the 5-h lag period. By desaturation, 18:0 formed the unsaturated fatty acid (UFA) 18:1cΔ9–10. As the culture aged, the anaerobic UFA biosynthesis pathway formed 16:1cΔ9–10, which was elongated to 18:1cΔ11–12. These fatty acid alterations represent a homeoviscous adaptation, modulating the microbe’s membrane lipid viscosity for optimal cellular function.  相似文献   
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The aim of this study was to explore how caregivers experience collaboration in rural municipalities in northern Norway. We conducted fieldwork with a dementia team in addition to seventeen qualitative in-depth interviews with formal and family caregivers. The caregivers had ethnic Sami and ethnic Norwegian affiliation. The theme ‘negotiating ethnic and ethno-political positions’ was identified through thematic analysis and developed using positioning theory. Ethnicity involves dynamic and situated personal affiliations, and participants negotiate each other's ethnic positions in practice. Negotiations of ethnic positions hamper collaboration between formal and family caregivers, and ethno-political positions reinforce stereotyped ethnic positions. This study contributes to the understanding of and the debate over positions on ethno-cultural collaboration in health care. In practice, participants negotiate the health policy concept of ‘cultural facilitation’, which must be broadened to ensure equal healthcare services.  相似文献   
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Greater sage-grouse populations have decreased steadily since European settlement in western North America. Reduced availability of brood-rearing habitat has been identified as a limiting factor for many populations. We used radio-telemetry to acquire locations of sage-grouse broods from 1998 to 2012 in Strawberry Valley, Utah. Using these locations and remotely-sensed NAIP (National Agricultural Imagery Program) imagery, we 1) determined which characteristics of brood-rearing habitat could be used in widely available, high resolution imagery 2) assessed the spatial extent at which sage-grouse selected brood-rearing habitat, and 3) created a predictive habitat model to identify areas of preferred brood-rearing habitat. We used AIC model selection to evaluate support for a list of variables derived from remotely-sensed imagery. We examined the relationship of these explanatory variables at three spatial extents (45, 200, and 795 meter radii). Our top model included 10 variables (percent shrub, percent grass, percent tree, percent paved road, percent riparian, meters of sage/tree edge, meters of riparian/tree edge, distance to tree, distance to transmission lines, and distance to permanent structures). Variables from each spatial extent were represented in our top model with the majority being associated with the larger (795 meter) spatial extent. When applied to our study area, our top model predicted 75% of naïve brood locations suggesting reasonable success using this method and widely available NAIP imagery. We encourage application of our methodology to other sage-grouse populations and species of conservation concern.  相似文献   
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The crystallographic three-dimensional structure of the Escherichia coli maa gene product, previously identified as a maltose O-acetyltransferase (MAT) [Brand, B., and Boos, W. (1991) J. Biol. Chem. 266, 14113-14118] has been determined to 2.15 A resolution by the single anomalous dispersion method using data from a crystal cocrystallized with trimethyllead acetate. It is shown here that MAT acetylates glucose exclusively at the C6 position and maltose at the C6 position of the nonreducing end glucosyl moiety. Furthermore, MAT shows higher affinity toward artificial substrates containing an alkyl or hydrophobic chain as well as a glucosyl unit. The presence of a long hydrophobic patch near the acceptor site provides the structural explanation for this preference. The three-dimensional structure reveals the expected trimeric left-handed parallel beta-helix structure found in all other known hexapeptide repeat enzymes. In particular, the structure shows similarities both overall and at the putative active site to the recently determined structure of galactoside acetyltransferase (GAT), the lacA gene product [Wang, X.-G., Olsen, L. R., and Roderick, S. L. (2002) Structure 10, 581-588]. The structure, together with the new biochemical data, suggests that GAT and MAT are more closely related than previously thought and might have similar cellular functions. However, while GAT is specific for acetylation of galactosyl units, MAT is specific for glucosyl units and is able to acetylate maltooligosaccharides, an important property for biotechnological applications. Structural differences at the acceptor site reflect the differences in substrate specificity.  相似文献   
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A. L. Archibald  C. S. Haley  J. F. Brown  S. Couperwhite  H. A. McQueen  D. Nicholson  W. Coppieters  A. Van de Weghe  A. Stratil  A. K. Winterø  M. Fredholm  N. J. Larsen  V. H. Nielsen  D. Milan  N. Woloszyn  A. Robic  M. Dalens  J. Riquet  J. Gellin  J. -C. Caritez  G. Burgaud  L. Ollivier  J. -P. Bidanel  M. Vaiman  C. Renard  H. Geldermann  R. Davoli  D. Ruyter  E. J. M. Verstege  M. A. M. Groenen  W. Davies  B. Høyheim  A. Keiserud  L. Andersson  H. Ellegren  M. Johansson  L. Marklund  J. R. Miller  D. V. Anderson Dear  E. Signer  A. J. Jeffreys  C. Moran  P. Le Tissier  Muladno  M. F. Rothschild  C. K. Tuggle  D. Vaske  J. Helm  H. -C. Liu  A. Rahman  T. -P. Yu  R. G. Larson  C. B. Schmitz 《Mammalian genome》1995,6(3):157-175
A linkage map of the porcine genome has been developed by segregation analysis of 239 genetic markers. Eighty-one of these markers correspond to known genes. Linkage groups have been assigned to all 18 autosomes plus the X Chromosome (Chr). As 69 of the markers on the linkage map have also been mapped physically (by others), there is significant integration of linkage and physical map data. Six informative markers failed to show linkage to these maps. As in other species, the genetic map of the heterogametic sex (male) was significantly shorter (16.5 Morgans) than the genetic map of the homogametic sex (female) (21.5 Morgans). The sex-averaged genetic map of the pig was estimated to be 18 Morgans in length. Mapping information for 61 Type I loci (genes) enhances the contribution of the pig gene map to comparative gene mapping. Because the linkage map incorporates both highly polymorphic Type II loci, predominantly microsatellites, and Type I loci, it will be useful both for large experiments to map quantitative trait loci and for the subsequent isolation of trait genes following a comparative and candidate gene approach.  相似文献   
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Supee Saksuwan Larsen 《Grana》2013,52(2-3):114-131
35 species of Bauhinia all occurring in Thailand have been studied by light and scanning electron microscopy. 15 pollen types based on sexine structure have been established. A correlation between pollen types and geographical distribution has been observed. On the basis of gross morphology there seems to be no reason for splitting up the genus into several smaller genera as proposed by some authors; however, raising the pollen types to taxonomic sections may be considered in a future revision.

One new combination and one new name have been established: B. bassacensis Pierre ex Gagnep. var. bakeri (de Wit) S. S. Larsen comb. nov. and B. bakeriana S S. Larsen nom. nov.  相似文献   
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