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191.
The distribution of arterial blood pressure (BP) values of 1499 adult inhabitants of four Newfoundland communities was surveyed. Mean age- and sex-adjusted BP scores were found to be higher in each of three fishing villages than in the logging and mining community, Badger, in the central part of the province. It is postulated that the observed differences may be caused by environmental factors. The prevalence of individuals with probable essential hypertension (diastolic BP > 100 mm. Hg) in individuals over 50 years of age was found to be three times higher in the island community, Fogo, than in Badger. In both communities less than one third of those with probable hypertensive disease had received treatment. 相似文献
192.
Nicolai Obel ;Veronika Erben ;Tatjana Schwarz ;Stefan Kuhnel ;Andrea Fodor ;Markus Pauly 《植物生理学报》2009,(5):922-932
Oligosaccharide Mass Profiling (OLIMP) allows a fast and sensitive assessment of cell wall polymer structure when coupled with Matrix Assisted Laser Desorption Ionisation Time Of Flight Mass Spectrometry (MALDI-TOF MS). The short time required for sample preparation and analysis makes possible the study of a wide range of plant organs, revealing a high degree of heterogeneity in the substitution pattern of wall polymers such as the cross-linking glycan xyloglucan and the pectic polysaccharide homogalacturonan. The high sensitivity of MALDI-TOF allows the use of small amounts of samples, thus making it possible to investigate the wall structure of single cell types when material is collected by such methods as laser micro-dissection. As an example, the analysis of the xyloglucan structure in the leaf cell types outer epidermis layer, entire epidermis cell layer, palisade mesophyll cells, and vascular bundles were investigated. OLIMP is amenable to in situ wall analysis, where wall polymers are analyzed on unprepared plant tissue itself without first isolating cell walls. In addition, OLIMP enables analysis of wall polymers in Golgi-enriched fractions, the location of nascent matrix polysaccharide biosynthesis, enabling separation of the processes of wall biosynthesis versus post-deposition apoplastic metabolism. These new tools will make possible a semi-quantitative analysis of the cell wall at an unprecedented level. 相似文献
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E. Böszörményi T. Érsek A. Fodor A.M. Fodor L.Sz. Földes M. Hevesi J.S. Hogan Z. Katona M.G. Klein A. Kormány S. Pekár A. Szentirmai F. Sztaricskai R.A.J. Taylor 《Journal of applied microbiology》2009,107(3):746-759
Aims: Broad-spectrum antibiotics produced by symbiotic bacteria [entomopathogenic bacterium (EPB)] of entomopathogenic nematodes keep monoxenic conditions in insect cadavers in soil. This study evaluated antibiotics produced by EPB for their potential to control plant pathogenic bacteria and oomycetes.
Methods and Results: Entomopathogenic bacterium produce antibiotics effective against the fire blight bacterium Erwinia amylovora, including streptomycin resistant strains, and were as effective in phytotron experiments as kasugamycin or streptomycin. Xenorhabdus budapestensis and X . szentirmaii antibiotics inhibited colony formation and mycelial growth of Phytophthora nicotianae. From X . budapestensis, an arginine-rich fraction (bicornutin) was adsorbed by Amberlite® XAD 1180, and eluted with methanol : 1 n HCI (99 : 1). Bicornutin inactivated zoospores, and inhibited germination and colony formation of cystospores at <<25 ppm. An UV-active molecule (bicornutin-A, MW = 826), separated by HPLC and thin-layer chromatography, was identified as a novel hexa-peptide : RLRRRX.
Conclusions: Xenorhabdus budapestensis produces metabolites with strong antibacterial and cytotoxic activity. Individual compounds can be isolated, identified and patented, but their full antimicrobial potential may be multiplied by synergic interactions.
Significance and Impact of the Study: Active compounds of two new Xenorhabdus species might control plant diseases caused by pathogens of great importance to agriculture such as Erw. amylovora and P . nicotianae . 相似文献
Methods and Results: Entomopathogenic bacterium produce antibiotics effective against the fire blight bacterium Erwinia amylovora, including streptomycin resistant strains, and were as effective in phytotron experiments as kasugamycin or streptomycin. Xenorhabdus budapestensis and X . szentirmaii antibiotics inhibited colony formation and mycelial growth of Phytophthora nicotianae. From X . budapestensis, an arginine-rich fraction (bicornutin) was adsorbed by Amberlite
Conclusions: Xenorhabdus budapestensis produces metabolites with strong antibacterial and cytotoxic activity. Individual compounds can be isolated, identified and patented, but their full antimicrobial potential may be multiplied by synergic interactions.
Significance and Impact of the Study: Active compounds of two new Xenorhabdus species might control plant diseases caused by pathogens of great importance to agriculture such as Erw. amylovora and P . nicotianae . 相似文献
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Csomós P Zupkó I Réthy B Fodor L Falkay G Bernáth G 《Bioorganic & medicinal chemistry letters》2006,16(24):6273-6276
Isobrassinin (2-(S-methyldithiocarbamoylaminomethyl)indole (7a), a regioisomer of the cruciferous phytoalexin brassinin (1), exerted marked antiproliferative effects on the HeLa, A431 and MCF7 cell lines (>78.6% inhibition at 30 μM). For structure–activity relationships, further analogues were synthesized. The highest cytotoxic effect was displayed by 2-phenylimino-1,3-thiazino[5,6-b]indole (10) (10 μM, 76.8%—HeLa and 46.3%—MCF7). The effect of the natural phytoalexin brassinin was also determined. 相似文献
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199.
Zhongfang Wang Nicole C. Robb Eva Lenz Thorsten Wolff Ervin Fodor Stephan Pleschka 《Journal of virology》2010,84(21):11323-11335
200.
S Aravind Kumar s Rajeshkumar SP Saravana Dinesh Ashwin Mathew George Ravindra Kumar Jain 《Bioinformation》2020,16(11):863
The nanoparticles such as hydroxyapatite, zinc oxide, titanium dioxide and zirconium nanoparticles have application in dentistry. Therefore, it is of interest to document the antimicrobial activity of silymarin mediated zinc oxide and hydroxy apatite nanoparticles against oral pathogens. Hence, we synthesized hydroxyapatie and zinc oxide nanoparticles with silymarin and characterized by UV-visible spectrophotometer. Data shows that silymarin mediated HAP and ZnO nanoparticles have antimicrobial activity against oral pathogens such as Pseudomonas sp, Staphylococcus aureus, Streptococcus mutans, Enterococcus faecalis and Candida albicans. 相似文献