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At least 19 recordsLinked to original sources

Successful cultivation of isolated islets of Langerhans without attachment: relationship between Glucose- and theophylline-induced insulin release and insulin content in rats islets after cultivation.

The effect of various inhibitors of insulin secretion such as mannoheptulose (20 mM), atropine (1 mM), diphenylhydantoin (20 microng/ml), high concentration of Mg++ (5.3 mM) in the presence of 20 mM glucose (control) on insulin content and secretion from collagenase-isolated rat pancreatic islets was studied in vitro by cultivation of islets up to 5 or 9 days in glass Petri dishes without attachment. In a following short-term incubation for 60 min the glucose-induced insulin release without and with theophylline (5 mM) was investigated. Islets cultivated at 5 mM glucose and at 20 mM glucose with the inhibitors mannoheptulose or atropine lost the responsiveness to glucose and theophylline whereas such islets cultivated at 20 mM glucose alone or with diphenylhydantoin (DPH) or 5.3 mg Mg++ showed a stimulation of insulin secretion by glucose and theophylline. Compared, however, with freshly isolated islets all cultivated islets were restricted in their maximal glucose response and this defect was not evoked alone by quantitative changes in islet insulin content. Nevertheless, culture conditions which facilitate a net increase of insulin (content and release) during cultivation influenced also positively the glucose-induced insulin release without and with 5 mM theophylline in the following short-term experiments.

Animals

[Biologic-economic study of processes for cultivating Clostridium perfringens. II. Comparison of the effectiveness of actual and predicted processes for cultivating microorganisms].

The authors analyzed the efficacy of actual and prognosticated processes of Cl. perfringens, type A, cultivation: periodic, semicontinuous, continuous, and combined monocyclic. Comparative study permitted to choose the economically optimal processes, without any expenditure for their realization. Monocyclic combined process which could provide a great amount of active toxin at short periods proved to be the most advantageous among the cultivation processes studied.

Bacterial Toxins

[Controlled cell cultivation. 2. Cultivation of mammalian cells and tissues in the perfusion chamber].

The results of biological testing of a perfusion chamber are presented. The chamber can be used for a prolonged cultivation of cells and tissues of different types on controlling the composition of nutrient medium and gas phase. The possibility is shown to apply the chamber for a prolonged cultivation and the observation of the behavior of live cells under different influences.

Animals

Cultivation of fibroblasts on human teeth. Ultrastructural observations of cells cultivated in multilayers.

The periodontal ligament in a traumatically lost tooth is often destroyed due to drying. In attempts to restore the periodontal ligament, a technique has been worked out for using gingival biopsies as an alternative cell source. A biopsy from the attached gingiva was set up for tissue cultivation. After the establishment of a pure fibroblast culture, cells were repeatedly added to the root surfaces of 12 human teeth from which the cells and the original periodontal ligament had been removed. The teeth were examined in the transmission electron microscope. The root surface of specimens from all 12 teeth was covered with a pelliclelike material arranged in a layered pattern. The cells frequently appeared in multilayers on top of the pellicle. The cells were flattened and appeared elongated in sections. Areas of close proximity between cells and the pellicular material were seen and were interpreted as adherence junctions. The possibility that these multicellular arrangements can replace the periodontal ligament in transplantation has to be further investigated.

Cell Membrane

Haemoflagellates: commercially available liquid media for rapid cultivation.

The successful cultivation of a variety of haemoflagellates in three different liquid media is reported. These media include medium 199, Grace's insect tissue-culture medium and Schneider's drosophila medium, each in combination with 30% (v/v) foetal calf serum. These media were used to cultivate Old and New World species of visceral and cutaneous human Leishmania, as well as Leishmania species isolated from sandflies, rodents, and reptiles. Four strains of Trypanosoma cruzi, an isolate of T. R-angeli and and an isolate of T. lewisi have also been cultivated in these media. One or more of these media have been used to cultivate 121 strains of haemoflagellates, including at least 14 different species (11 Leishmania and 3 Trypanosoma) and many geographic isolates or strains. The Leishmania include L. braziliensis, L. peruviana, L. mexicana, L. tropica, L. donovani, L. chagasi, L. enriettii, L. hertigi, L. hoogstraali, L. adleri, and L. agamae. Using the Schneider's based medium, we have obtained primary isolates of both cutaneous and visceral Leishmania of man and of experimentally infected laboratory rodents and canines. Freeze-dried preparations of the Schneider's based medium that were reconsituted with distilled water after 24 months of storage at ambient temperature have proven to be suitable cultivation media. This feature makes the media valuable field tools. The various species of human Leishmania cultivated in these media have in our experience demonstrated no differences in growth rate, viability after liquid nitrogen preservation, or infectivity for laboratory animals and tissue-culture cells compared with promastigotes derived from blood-agar cultivation.

Animals

Transmission dynamics and driving mechanisms of antibiotic resistance genes through a chronosequence of saline-sodic rice cultivation.

Rice cultivation reclaims saline-sodic soils and improves fertility, but may also promote antibiotic resistance genes (ARGs) accumulation and horizontal transfer, posing ecological risks. This study investigated long-term co-evolution of soil properties, microbial communities, ARGs, and mobile genetic elements (MGEs) across a 1-78 year cultivation chronosequence in saline-sodic fields. Results indicated that prolonged cultivation effectively alleviated soil salinization and increased fertility. Microbial communities shifted directionally, with functional taxa enriched, while opportunistic pathogen-containing genera peaked during 5-20 years. ARGs abundance and diversity increased markedly after five years and peaked at 10-20 years. Multidrug efflux pump genes persisted throughout the chronosequence, whereas aminoglycoside resistance genes declined after 30 years. MGEs activity increased over time and was significantly correlated with key ARGs. Path analysis identified improved soil properties as the primary direct driver of ARGs accumulation, while cultivation-induced declines in microbial diversity indirectly promoted ARGs dissemination by weakening the community's suppression of MGEs-mediated horizontal transfer. Collectively, long-term rice cultivation not only ameliorated saline-sodic soils but also created a dynamic, stage-specific resistome, with the 5-20 year period representing a critical risk window for ARGs propagation. These findings highlight the need to integrate ARGs monitoring into soil health assessments for sustainable management of reclaimed saline-sodic lands.

Oryza

Global genomic population structure of wild and cultivated oat reveals signatures of chromosome rearrangements.

The genus Avena consists of approximately 30 wild and cultivated oat species. Cultivated oat is an important food crop, yet the broader genetic diversity within the Avena gene pool remains underexplored and underexploited. Here, we characterize over 9000 wild and cultivated hexaploid oat accessions of global origin using genotyping-by-sequencing and explore population structure using multidimensional scaling and population-based clustering methods. We also conduct analyses to reveal chromosome regions associated with local adaptation, sometimes resulting from large-scale chromosome rearrangements. We report four distinct genetic populations within the wild species A. sterilis, a distinct population of cultivated A. byzantina, and multiple populations within cultivated A. sativa. Some chromosome regions associated with local adaptation are also associated with confirmed structural rearrangements on chromosomes 1A, 1C, 3C, 4C, and 7D. This work provides evidence suggesting multiple polyploid origins, multiple domestications, and/or reproductive barriers amongst Avena populations caused by differential chromosome structure.

Avena

[A long-term experiment on the complex influence of cultivating, fertilizing, and crop rotation measures on humic substances in soil and development of yield (author's transl)].

In a 10-year field experiment, the influence of fertilizing, cultivating, and crop rotation measures on the C-content of the soil, humus quality of the organic soil substance, and the yield was investigated. With cultivation of fodder plants only, the C-content of the soil can be improved by increased mineral and increased organo-mineral fertilization at any depth of cultivation. When in the same location there was a turn between cereals and green crops, a decrease of C-rate can only be prevented by increased organo-mineral fertilization. Continuous cultivation of root crops resulted in a decrease of the C-content. Deeper tillage of the soil generally decreased C-content. Within the years, a variability of the pure humin substances could be detected, depending on the rotation of crops and C-content. The composition of the fulvic acids is differentiated in dependence on the factors "time" and "cultivation". The effect of fertilization variants on the yield was different. Fertilization in that location with manure only, compared with mineral fertilization, caused in most cases depression in yield. Decrease on yield by deeper ploughing had the least influence with root crops.

Agriculture

Structure and ultrastructure of cultivated glial cells from Corpus callosum.

1. Explants and dissociated cells from Corpus callosum (c. c.) of rats and rabbits were cultivated in Petri dishes and Rose chambers. 2. Different types of glial cells were found in the cultivated Corpus callosum (c. c.) explanted from 12 days old rats: a) adendritic glial cells, typical for migrating oligodendroglial cells, b)-migrating large, nondifferentiated astrocytes with pronounced phagocytosing activity, c) macro- and microglial cells which differentiated during cultivation. 3. The population of differentiated glial cells is mostly composed of oligodendroglia, less of astrocytes and microglial cells are rare. 4. Differentiation of dissociated cells from c. c. in homogenous and mixed population was studied. The appearance of first processes of macroglial cells is postponed to 6 to 10 days of cultivation. No substantial difference was observed between homogenous and mixed population. A higher incidence of macrophages was observed in the later. 5. Glial cells differentiate surrounded by degenerated nerve fibers and myelin, exhibiting phagocytoses and cleaning reaction.

Animals

Pan-genome based on chromosome sequences of wild and cultivated Agaricus bisporus.

Agaricus bisporus, one of the most widely cultivated mushrooms around the world, plays an important role in economy and agriculture. In this study, by employing long-reads generated by PacBio and Nanopore sequencing, we assembled six novel high-quality genomes (of which three are telomere-to-telomere assemblies) with sizes 29.6 ~ 30.8 Mb and N50 lengths of 2.5 ~ 2.6 Mb. Combined with public genome data of nine strains, we successfully established a pan-genome of A. bisporus, comprising a total of 14,626 clusters of protein coding genes, of which 50.70%, 7.45%, 24.74% and 17.01% are defined as core, soft core, dispensable, and private clusters, respectively. A total of 5,646 non- redundant structural variants (SVs) were identified among wild and cultivated strains and the genes associated with SV were mapped. This work provides valuable whole-genome sequences and genomic resources across wild and cultivated strains of the most widely cultivated mushroom species for functional analyses of genomes.

Agaricus

[Effect of the composition of the medium and the conditions of Aspergillus foetidus cultivation on the biosynthesis of glucoamylase].

The optimal conditions for biosynthesis of exocellular glucoamylase were found in the course of submerged cultivation of Aspergillus foetidus ATCC 14916: pH 4.5 at the beginning of cultivation, cultivation for four days, a temperature of 30 degrees C, and an aeration in the fermenter of 1.5 volumes of the air per 1 volume of the medium with a stirring of 280 rpm. The material can be inoculated either as spores (1 X 10(7) spores per 100 ml of the medium) or a material germinated from spores (5% by volume). The composition of the medium was improved by using waste products of the agricultural industry (wheat and rice bran, yellow maize, etc.). The maximum biosynthesis of glucoamylase under the optimum conditions of cultivation was observed on crushed yellow maize (10--15%): up to 6.8--8.0 units of GIA (g of glucose per hour) per 1 ml of the cultural filtrate which was 3.4--4.0 times higher than on the original medium and 5--10 times higher than for Endomycopsis bispora, Endomycopsis sp. 20--9, Aspergillus niger and other cultures producing glucoamylase.

Aerobiosis

[Effect of plant residues on the parasitic activity of soil-borne pathogens and the saprophytic microflora of the soil. II. Influence of a second crop cultivation one the incidence of Rhizoctonia solani (author's transl].

In a more years-lasting field trial the influence of a second crop cultivation of rye and rape in winter time on the incidence of Rhizoctonia solani Kühn on potato or mustard as indicator plants was studied. The second crops were ploughed in during spring time. On part of the trial was artificially infested by this causal agent. Three crop rotations with different proportions of host plants (potato) were compared. The results obtained demonstrate the following: 1. On the part of experimental area arficially infested the incidence rate was higher for 3 till 4 years than on the control plots, but later it became equally to the control one, which also was very high (approximately 50). 2. In the last very dry year (1969) the disease developed only a little. 3. The second crop cultivation decreased the incidence of R. solani in 7 (rye) or 8 (rape) of 10 cases, but mostly the rate of decreasing was low. 4. A high weed density induced by a diminished mechanical cultivation increased the incidence of R. solani at the end of the experiment (1969), specially in the rotation with 80% host plants. 5. The number of soil bacteria, the respiration rate, and partly also the activity of dehydrogenase and the soil acidity were increased by green manuring of the second crop, however, the number of the actinomycetes, and the cellulolytic activity didn't be influenced remarkably. 6. The second crop cultivation ist nounced as a measure stimulating the soil fertiligy and discussed in connection with the microbial processes taking place in soil.

Agriculture

[L-glutaminase-asparaginase biosynthesis by a Pseudomonas boreopolis culture dependent on cultivation conditions].

The activity of deamidases of L-glutamine and L-asparagine of Pseudomonas boreopolis 526 was found to depend on the conditions of cultivation. The activity of L-glutaminase-asparaginase II (EC 3.5.1.38) decreased with an increase of the specific growth rate in the conditions of periodic cultivation and increased in the conditions of continuous cultivation. The activity of this enzyme was manifested mainly in the conditions of continuous cultivation at a rate of 0.1--0.2 hr-1 and a final nitrogen concentration of 0.006--0.025 g per litre of the medium. If the concentration of nitrogen was increased in these conditions, biosynthesis of L-glutaminase-asparaginase I was stimulated while the activity of L-glutaminase-asparaginase II was not detected at all.

Amidohydrolases