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2.
I. Boubriak T. Akimkina V. Polischuk A. Dmitriev S. McCready D. Grodzinsky 《Cytology and Genetics》2016,50(6):381-399
Thirty years after the Chernobyl explosion we still lack information regarding the genetic effects of radionuclide contamination on the plant population. For example, are plants adapting to the low dose of chronic ionising irradiation and showing improved resistance to radiation damage? Are they coping with changing/increased pathogenicity of fungi and viruses in the Chernobyl exclusion (ChE) zone? Are plant populations rapidly accumulating mutational load and should we expect rapid micro-evolutionary changes in plants in the Chernobyl area? This review will try to summarise the current knowledge on these aspects of plant genetics and ecology and draw conclusions on the importance of further studies in the area around Chernobyl. 相似文献
3.
A D Dmitriev E A Kizim M B Smirnova I D Shcheglova A M Ugolev 《Zhurnal evoliutsionno? biokhimii i fiziologii》1991,27(6):701-711
The effects of the agonist of the glucocorticoid hormones dexamethasone and dopamine antagonist--haloperidol on the concentration of immunoreactive alpha-, beta- and gamma-endorphins in duodenum, ileum, and jejunum of rats were studied. Besides the extracts of the intestines, the immunoreactive endorphins were measured in the extracts of their mucosa-submucosa and muscle-serous layers, that allowed to separate the endorphin-producing cells of the nervous system (muscle-serous layer) from endorphin producing cells of endocrine and immune systems (mucosa-submucosa layer). The injection of dexamethasone (0.2 mg per rat, daily for 6 days) caused the reliable decrease in concentrations of all three types of endorphins in mucosa-submucosa and muscle-serous layer of duodenum, ileum, and jejunum. Under the action of haloperidol (0.6 mg per rat, daily for 6 days) the reliable increase of beta-endorphin concentration was noticed only in jejunum. The suggestion is made that two distinct subpopulations of endorphin-producing cells exist in the intestine: in one cells endorphin synthesis is regulated by glucocorticoids, as in the anterior lobe of pituitary, in the other cells the synthesis of endorphins is regulated by dopamine, as in the cells of the intermediate lobe of pituitary. It is suggested that both glucocorticoid and dopamine types of regulation of endorphins synthesis were formed in the intestine or even in the gastric cavity. In process of evolution the cells with glucocorticoid type of regulation gave rise to the anterior lobe of pituitary, the cells with the dopamine type of regulation--to the intermediate lobe. 相似文献
4.
R.Robert Schellenberg Marilyn J. Duff Aidan Foster Harry B. Paddon 《Prostaglandins & other lipid mediators》1986,32(2)
Histamine caused a triphasic response of human pulmonary artery strips in vitro, consisting of a small initial contraction followed by pronounced relaxation preceding a second contractile response. These characteristics were not seen with other contractile stimuli including 5-hdyroxytryptamine, leukotriene D4, and KC1. The relaxant component of this response was ablated by removal of endothelium from the vascular strips or by pretreatment of the tissues with 1μM indomethacin. Measurement of the PGI2 degradation product 6-keto-PGF1α in supernatants from histamine-challenged tissues confirmed the synthesis of PGI2. Supernatants from unstimulated or leukotriene-challenged tissues contained no detectable amounts of 6-keto-PGF1α. The histamine H1 antagonist diphenhydramine inhibited both the contractile and relaxant responses to histamine whereas the H2 antagonist cimetidine affected neither component. The released PGI2 significantly altered the dose-respons curve to histamine without inhibiting the maximal contractile responses. We conclude that histamine induces PGI2 formation from pulmonary arterial endothelium via an H1 receptor. 相似文献
5.
Iu A Knirel' E V Vinogradov A S Shashkov B A Dmitriev N K Kochetkov 《Bioorganicheskaia khimiia》1986,12(6):848-851
O-Specific polysaccharide chain of P. aeruginosa 013 (Lányi) lipopolysaccharide is composed of N-acetyl-D-quinovosamine (QuiNAc), acetamidino derivative of L-fucosamine (FucNAm), and 5,7-diacetamido-3,5,7,9-tetradeoxy-D-glycero-L-galacto-nonuloso nic acid (Sug). On solvolysis with HF in methanol, the polysaccharide afforded methylglycosides of a disaccharide and a trisaccharide both containing fucosamine and ulosonic acid derivatives. Chemical transformations (alkaline hydrolysis, reductive deamination, acetylation accompanied by intramolecular acylation of acetamidino group by ulosonic acid), 1H and 13C NMR analysis and mass spectral data proved the following structure of the trisaccharide unit of the polysaccharide: -8)-beta-Sug-(1-3)-alpha-L-FucNAm-(1-3)-alpha-D-QuiNAc -(1- 相似文献
6.
L F Dmitriev 《Molekuliarnaia biologiia》1983,17(6):1297-1305
A number of enzymatic reactions with the participation of lipid radicals is discussed in the article. It is supposed that NADPH- and NADH-dependent formation of the lipid radicals has a functional importance. The uptake of oxygen by free radicals is considered as one of the reactions of radicals utilization. It is proposed that other reactions with participation of lipid radicals can take place in the membranes of microsomes and mitochondria: the reaction of electron transfer from flavoprotein to cytochrome P448 and the reaction of energy transfer which provide the coupling of oxidation and phosphorylation. 相似文献
7.
Aidan Southall 《American anthropologist》1984,86(2):512-513
8.
V. Dmitriev A. Tsiomenko I. Kulaev B. Fikhte 《Applied microbiology and biotechnology》1980,9(3):211-216
Summary A distinction between the chemical composition of ultrastructurally modified regions and the rest of the cell wall (canals) of the yeast Schwanniomyces occidentalis was shown by cytochemical staining of cell wall polysaccharides. The formation of canals was induced by cultivation of yeasts on hydrocarbons and was parallelled by the enhancement of -glucosidase, -glucanase and -mannosidase activities which were all capable of degrading cell wall polysaccharides. The presence of cycloheximide prevented canal formation. We assume that these hydrolases modified definite cell wall regions transforming them into canals. 相似文献
9.
Boris A. Dmitriev Andrey V. Nikolaev Alexander S. Shashkov Nikolay K. Kochetkov 《Carbohydrate research》1982,100(1):195-206
Successive condensation of derivatives of the trisaccharide, biological repeating-unit of the O-antigenic polysaccharide of Salmonella newington, followed by removal of protecting groups, has given the hexa- and nona-saccharides. The structures of these oligosaccharides were confirmed chemically and by 13C-n.m.r. spectroscopy. 相似文献
10.
V L L'vov N V Tokhtamysheva A S Shashkov B A Dmitriev N K Kochetkov 《Bioorganicheskaia khimiia》1983,9(1):60-73
A specific acidic polysaccharide was isolated from Sh. boydii type 8 antigenic lipopolysaccharide after mild hydrolysis followed by chromatography on Sephadex G-50. The polysaccharide consists of D-glucuronic acid, D-galacturonic acid, 2-acetamido-2-deoxy-D-glucose, 2-acetamido-2-deoxy-D-galactose and 2-amino-1,3-propanediol residues in 1:1:1:1:1 ratio. From the results of methylation analysis, partial acid hydrolysis and Smith degradation, the structure of the repeating unit of the specific polysaccharide was deduced as: (Formula: see text). The 13C NMR spectra of native, O-deacetylated and carboxyl-reduced polysaccharides, as well as the spectrum of oligosaccharide produced by Smith degradation were interpreted. The 13C NMR data fully confirmed the structure of the polysaccharide repeating unit. 相似文献