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41.
An insufficiently known bivalve and gastropod assemblage from the Early-Middle Miocene (Tarkhanian-Chokrakian) of northern Sinop Province (Turkey), is analyzed. Environments of the assemblage are reconstructed for the Chokrakian as subtidal, with prevailing lime and sandy bottom and good aeration, and partially well vegetated. Impoverishment of the mollusk biocoenose in this part of the marine basin (only 18 bivalve and 22 gastropod species recorded) compared to other areas, including the closest regions, Bulgaria on the west and Georgia on the east, is emphasized. The relatively low diversity of the fauna is probably connected not only with insufficient collecting, but with special hydrological conditions. A special aspect of the fauna is highlighted by the presence of the bivalve Circomphalus foliaceolamellosus subplicatus (Orb.), which is rare in the Chokrakian.  相似文献   
42.
The effect of atrial natriuretic factor (ANF) synthetic linear truncated analogues AP-H-6-OH and AP-FOR-6-OH on corneal, skin, duodenum and colon epithelium proliferation has been studied on male rats. The epithelium mitotic activity and DNA synthesis were evaluated 4 and 24 h after intraperitoneal injection of 10 or 100 micrograms/kg peptides. In a dose of 10 micrograms/kg both ANF synthetic analogues inhibited proliferation processes in corneal epithelium, but activated the DNA synthesis in duodenum and colon epithelium. AP-FOR-6-OH (10 micrograms/kg) decreased the mitotic activity of skin epithelium and increased the silver grain density over the cell nuclei at the same time. 100 micrograms/kg ANF analogues stimulated cell mitogenesis in all organs studied. According to the data obtained ANF linear truncated analogues influence on epithelium proliferation is similar to effector of previously studied cyclic atriopeptin AP II.  相似文献   
43.
A method of radiometry in vivo was applied to study the regularities attending distribution of the absorbed dose and its formation in the course of one year after the administration of 0.033 muCu/g of selenomethionine-75Se to rats, as well as the functional condition of the adaptive hypophysis-adrenal glands system by the determination of plasma corticosterone. A high tropicity of this preparation to the endocrine system organs was demonstrated. Intensification of the functional activity of the adaptive system was indicated by an increase of the blood plasma corticosterone concentration following the administration of a, radioactive preparation and its statistically significant increase (in comparison with control) 3, 6, and 10 months from the beginning of the experiment. The action of acute stress (histamine and formalin) 10 months after the administration of selenomethionine-75Se caused no sharp elevation of the plasma corticosterone concentration characteristic of control rats, this indicating an extreme strain of the hypophysis-adrenal gland system and its incapacity to respond to additional loads. It is supposed that analysis of functional condition of the adaptive system could serve as the key in the assessment of the biological effect of low radiation doses.  相似文献   
44.
45.
Cationic proteins of brain lysosomes (LCP), myelin (MCP) and nuclear histone fractions from calf thymus (T) and rat brain (B) are shown to increase at different degree the permeability of brain lysosomes and neutrophiles for acid RNAase, acid phosphatase, catepsin D and beta-galactosidase. According to the effectivity, basic proteins can be listed in the following order: for lysosomes-f2aT, F3B, f3T greater than total histones B, f2bT greater than f2B greater than LCP, MCP greater than flT, flB; for neutriphiles-f3T larger than or equal to total histones B larger than or equal to f3b MCP larger than or equal to f2aT, f2bT greater than f2B greater than LCP greater than flB greater than flT. Fractions f2a and f3 considerably increased the release of acid RNAase from lysosomes in very low concentrations beginning from 0,2 mug/ml, while the release of catepsine and acid phosphatase took place beginning from 5-10 mug/ml. The effect of lysosome and myelin cationic proteins on the release of hydrolases occurred at concentrations ten to hundred times higher.  相似文献   
46.
Extravasation of circulating cells from the bloodstream plays a central role in many physiological and pathophysiological processes, including stem cell homing and tumor metastasis. The three-dimensional flow chamber device (hereafter the 3D device) is a novel in vitro technology that recreates physiological shear stress and allows each step of the cell extravasation cascade to be quantified. The 3D device consists of an upper compartment in which the cells of interest circulate under shear stress, and a lower compartment of static wells that contain the chemoattractants of interest. The two compartments are separated by porous inserts coated with a monolayer of endothelial cells (EC). An optional second insert with microenvironmental cells of interest can be placed immediately beneath the EC layer. A gas exchange unit allows the optimal CO2 tension to be maintained and provides an access point to add or withdraw cells or compounds during the experiment. The test cells circulate in the upper compartment at the desired shear stress (flow rate) controlled by a peristaltic pump. At the end of the experiment, the circulating and migrated cells are collected for further analyses. The 3D device can be used to examine cell rolling on and adhesion to EC under shear stress, transmigration in response to chemokine gradients, resistance to shear stress, cluster formation, and cell survival. In addition, the optional second insert allows the effects of crosstalk between EC and microenvironmental cells to be examined. The translational applications of the 3D device include testing of drug candidates that target cell migration and predicting the in vivo behavior of cells after intravenous injection. Thus, the novel 3D device is a versatile and inexpensive tool to study the molecular mechanisms that mediate cellular extravasation.  相似文献   
47.
Breeding practice defined the main ways to increase crop yield: morphotype change, exploitation of heterosis, and increase in photosynthesis effectiveness. We identified donors and sources of high photosynthetic potential genetic system and polymorphic loci controlling photosynthetic efficiency in Russian rice cultivars. Thirty-two Russian rice cultivars were used as material. The content of chlorophyll a and b and carotenoids was measured at the beginning of tillering, heading, and flowering stages by a Genesys 8 spectrophotometer. Twenty plants of each cultivar in two replications were used for measurement. SSR markers were used. DNA was extracted by the STAB method. Polymerase chain reaction (PCR) and visualization of amplification products were performed under the International Rice Research Institute (IRRI) protocol. Donors of high contents of each pigment were found. A high level of polymorphism for the loci connected with photosynthesis effectiveness in Russian rice cultivars will allow us to create new cultivars with improved characters by hybridization. Six markers significantly divided cultivar groups with different photosynthetic rate, three of them (RM154, RM600, RM5508) were related to the content of carotenoids, two markers (RM347, RM240) were related to specific leaf weight (SLW) control, and two others (RM154, RM509) were related to the chlorophyll a content.  相似文献   
48.
The importance of calcium in nickel tolerance was studied in the nickel hyperaccumulator plant Alyssum inflatum by gene transformation of CAX1, a vacuolar membrane transporter that reduces cytosolic calcium. CAX1 from Arabidopsis thaliana with a CaMV35S promoter accompanying a kanamycin resistance gene was transferred into A. inflatum using Agrobacterium tumefaciens. Transformed calli were sub-cultured three times on kanamycin-rich media and transformation was confirmed by PCR using a specific primer for CAX1. At least 10 callus lines were used as a pool of transformed material. Both transformed and untransformed calli were treated with varying concentrations of either calcium (1–15 mM) or nickel (0–500 µM) to compare their responses to those ions. Increased external calcium generally led to increased callus biomass, however, the increase was greater for untransformed callus. Further, increased external calcium led to increased callus calcium concentrations. Transformed callus was less nickel tolerant than untransformed callus: under increasing nickel concentrations callus relative growth rate was significantly less for transformed callus. Transformed callus also contained significantly less nickel than untransformed callus when exposed to the highest external nickel concentration (200 µM). We suggest that transformation with CAX1 decreased cytosolic calcium and resulted in decreased nickel tolerance. This in turn suggests that, at low cytosolic calcium concentrations, other nickel tolerance mechanisms (e.g., complexation and vacuolar sequestration) are insufficient for nickel tolerance. We propose that high cytosolic calcium is an important mechanism that results in nickel tolerance by nickel hyperaccumulator plants.  相似文献   
49.
Evidence was obtained for the interaction between the photosystem 2 (PS2) reaction centre (RC) chlorophyll (Chl) P680 and inorganic phosphate, Pi. The light-induced endogenous basal electron transport to ferricyanide in PS2 depended on endogenous Pi. The electron transport in phosphate deficient chloroplasts was absent, and could be resumed upon the addition of exogenous Pi or of the exogenous electron donor, diphenylcarbazide. Some chloroplast Chl molecules were apparently bound with Pi to a complex via the magnesium atom that was detected by the increase in absorbance in the Chl a absorption maximum at 435 nm observed after the consumption of endogenous Pi in the photophosphorylation reactions. The electron paramagnetic resonance (EPR) Signal I, found in the spectra at 77 K after irradiation of frozen samples in chloroplasts poor in endogenous Pi, was the sum of P700+ and P680+ signals. The P680+ signal disappeared after addition of Pi, diphenylcarbazide or diuron to the chloroplasts before freezing. In addition, the EPR doublet signal of the phosphate anion radicals was recorded at 77 K after irradiation in the ethanol solutions of Chl a containing potassium phosphate. The same doublet signal was discovered in the difference EPR spectrum "chloroplasts minus chloroplasts with diuron" at 77 K after irradation. The results are a possible evidence of the participation of phosphate ions in the primary light reactions of PS2.  相似文献   
50.
Des Roza  Kishio Hatai 《Mycoscience》1999,40(3):235-240
Heavy mortalities reaching 100% among larvae of the Japanese mitten crab,Eriocheir japonicus, occurred in Yamaguchi Prefectural Naikai Fisheries Experimental Station, Yamaguchi, Japan. Under the microscope, infected zoeal larvae were seen to be filled with numerous aseptate hyphae. An investigation was carried out to identify the pathogenic fungus and determine its pathogenicity under laboratory conditions. The pathogenic fungus was identified asAtkinsiella dubia. Its optimum growth temperature was 25°C, and it grew only at 2.5% NaCl. Under laboratory conditions, it showed pathogenicity to the larvae of the swimming crab,Portunus trituberculatus. This is the first report of mass mortality in crustaceans due toA. dubia infection in Japan.  相似文献   
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