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81.
A survey of the genus Sorbaria (Rosaceae)   总被引:1,自引:0,他引:1  
A taxonomic revision of the Asiatic genus Sorbaria (Rosaceae). 4 species are recognized: S. sorbifolia (including S. stellipila), S. grandiflora (= S. pallasii incl. S. rhoifolia), S. kirilowii,(incl. S. arborea and S. assurgens ) and S. tomentosa (= S. lindleyana , incl. S. olgae and S. gilgitensis ) with var. angustifolia , comb. nov. (= S. aitchisonii ). Hybrids presumably between S. sorbifolia and S. grandiflora and S. sorbifolia and S. kirilowii are found cultivated.  相似文献   
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Influence of relative humidity on the photochemistry of DNA films   总被引:11,自引:0,他引:11  
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Ten algal strains from snow and permafrost substrates were tested for their ability to produce secondary carotenoids and α-tocopherol in response to high light and decreased nitrogen levels. The Culture Collection of Cryophilic Algae at Fraunhofer IBMT in Potsdam served as the bioresource for this study. Eight of the strains belong to the Chlorophyceae and two strains are affiliated to the Trebouxiophyceae . While under low light, all 10 strains produced the normal spectrum of primary pigments known to be present in Chlorophyta, only the eight chlorophyceaen strains were able to synthesize secondary carotenoids under stress conditions, namely canthaxanthin, echinenone and astaxanthin; seven of them were also able to synthesize minor amounts of adonixanthin and an unidentified hydroxyechinenone. The two trebouxiophyceaen species of Raphidonema exhibited an unusually high pool of primary xanthophyll cycle pigments, possibly serving as a buffering reservoir against excessive irradiation. They also proved to be good α-tocopherol producers, which might also support the deactivation of reactive oxygen species. This study showed that some strains might be interesting novel candidates for biotechnological applications. Cold-adapted, snow and permafrost algae might serve as valuable production strains still exhibiting acceptable growth rates during the cold season in temperate regions.  相似文献   
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Dendritic cells (DCs) produce tumor necrosis factor (TNF)-α upon infection and contribute in various ways to defense against pathogenic agents. Several biological agents have been designed to inhibit TNF-α activity. However, the use of these inhibitors has been associated with an increased rate of certain opportunistic infections. To study the effect of TNF-α inhibition, human monocyte-derived DCs were infected with Chlamydia pneumoniae . TNF-α was neutralized by adalimumab, a human anti-TNF-α monoclonal antibody. Chlamydiae induced the maturation of DC as determined by flow cytometry and quantitative real-time PCR. However, DC maturation was impaired in the presence of adalimumab. Moreover, neutralization of TNF-α resulted in a significant increase of infectious progeny, 16S rRNA gene copy number and development of larger inclusions consisting of different stages of chlamydial development. Additionally, chlamydial infection induced secretion of cytokines/chemokines, which were downregulated by adalimumab treatment. Our data reveal an indirect effect on maturation of DC by C. pneumoniae and that maturation is crucial for the restriction of chlamydial development. The results also demonstrate an increase in infectious progeny after TNF-α inhibition, suggesting a contribution of TNF-α produced by DCs to chlamydial growth arrest. These data suggest a possible mechanism by which TNF-α inhibition enhances the risk of intracellular infections.  相似文献   
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Blue light receptors belonging to the cryptochrome/photolyase family are found in all kingdoms of life. The functions of photolyases in repair of UV-damaged DNA as well as of cryptochromes in the light-dependent regulation of photomorphogenetic processes and in the circadian clock in plants and animals are well analysed. In prokaryotes, the only role of members of this protein family that could be demonstrated is DNA repair. Recently, we identified a gene for a cryptochrome-like protein (CryB) in the α-proteobacterium Rhodobacter sphaeroides. The protein lacks the typical C-terminal extension of cryptochromes, and is not related to the Cry DASH family. Here we demonstrate that CryB binds flavin adenine dinucleotide that can be photoreduced by blue light. CryB binds single-stranded DNA with very high affinity ( K d∼10−8 M) but double-stranded DNA and single-stranded RNA with far lower affinity ( K d∼10−6 M). Despite of that, no in vitro repair activity for pyrimidine dimers in single-stranded DNA could be detected. However, we show that CryB clearly affects the expression of genes for pigment-binding proteins and consequently the amount of photosynthetic complexes in R. sphaeroides . Thus, for the first time a role of a bacterial cryptochrome in gene regulation together with a biological function is demonstrated.  相似文献   
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