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61.
T. K. Kirk E. Schultz W. J. Connors L. F. Lorenz J. G. Zeikus 《Archives of microbiology》1978,117(3):277-285
Culture parameters influencing metabolism of synthetic14C-lignins to14CO2 in defined media have been studied in shallow batch cultures of the ligninolytic wood-destroying HymenomycetePhanerochaete chrysosporium Burds. Study of the effect of O2 concentration in the gas phase above non-agitated cultures indicated essentially complete absence of attack on the lignin polymer at 5% O2 in N2, and a 2- to 3-fold enhancement by 100% O2 as compared to air (21% O2). Agitation of the cultures resulting in the formation of mycelial pellets greatly suppressed lignin decomposition. The optimum culture pH for lignin decomposition was 4 to 4.5, with marked suppression above 5.5 and below 3.5. The source of nutrient nitrogen (NO
3
–
, NH
4
+
, amino acids) had little influence on lignin decomposition, but the concentration of nitrogen was critical; decomposition at 24 mM was only 25–35% of that at 2.4 mM N. Thiamine was the only vitamin required for growth and lignin decomposition. Under the optimum conditions developed, decomposition of 5 mg of synthetic lignin was accompanied by utilization of approximately 100 mg of glucose. The influence of the various culture parameters was analogous for metabolism of synthetic lignin labeled in the ring-,side chain-, and methoxyl carbon atoms. 相似文献
62.
Spatial studies of colonization and succession of soil algae and chemical analyses of the various soils on the cinde cone of Kilauea Iki in Hawaii Volcanoes National Park, Hawaii are outlined. There is a positive correlation between the diversity and quantity of soil algae with nutrient levels and organic matter accumulation in each locale. Three distinct edaphic-biotic zones existing in this area are differentially revealed by the soil chemical composition, quantity and diversity of soil algae, and as evident variations in higher plant growth and colonization. Varying colonization and successional phases of higher plant growth around standing and fallen tree snags killed by volcanic activity also reflect variations in the soil algal flora. These variations appear largely as a function of differential water interception, absorption, and retention as well as differential accumulation of organic matter, and the initiation of various biogeochemical cycles. 相似文献
63.
Joanne T. Emerman Dorothy R. Pitelka 《In vitro cellular & developmental biology. Plant》1977,13(5):316-328
Summary Dissociated normal mammary epithelial cells from prelactating mice were plated on different substrates in various medium-serum-hormone
combinations to find conditions that would permit maintenance of morphological differentiation. Cells cultured on floating
collagen membranes in medium containing insulin, hydrocortisone and prolactin maintain differentiation through 1 month in
culture. The surface cells form a continuous epithelial pavement. Some epithelial cells below the surface layer rearrange
themselves to form alveolus-like structures. Cells at both sites display surface polarization; microvilli and tight junctions
are present at their medium-facing or luminal surface and a basal lamina separates the epithelial components from the gel
and stromal cells. Occasinal myoepithelial cells, characterized by myofilaments and plasmalemmal vesicles, are identified
at the basal surface of the secretory epithelium. In contrast, cells cultured on plastic, glass or collagen gels attached
to Petri dishes form a confluent epithelial sheet showing surface polarization, but lose secretory and myoepithelial specializations.
If these dedifferentiated cells are subsequently maintained on floating collagen membranes, they redifferentiate. There is
little DNA synthesis in cells on collagen gels, in contrast to Petri-dish controls. Protein synthesis in cells on floating
collagen membranes increases over T0 values and remains constant through 7 days in culture whereas it decreases on attached gels; however, if the gels are freed
to float, protein synthesis increases sharply and parallels that seen on floating membranes.
The work was supported by USPHS Grants CA-05388 and CA-05045 from the National Cancer Institute, DHEW. 相似文献
64.
本文对增殖期的淋巴细胞胰岛素依赖性酪氨酸蛋白激酶活性及内源性废物进行了分析研究。在纯化的健康人淋巴细胞中加入适量的植物血凝素(PHA),经过72h培养即成为转化淋巴细胞(增殖期淋巴细胞)。应用~(32)P参入实验,证实转化淋巴细胞胰岛素受体具有胰岛素依赖性的酪氨酸蛋白激酶活性,与未转化的对照组相比其活性增加约9倍。Scatchard分析表明转化后淋巴细胞膜表面胰岛素受体数增加3.5倍。应用抗酪氨酸磷酸酯抗体,对胰岛素作用前后的转化与未转化淋巴细胞内,酪氨酸残基磷酸化的蛋白进行了鉴定,结果表明:除了95kD受体β亚基自身磷酸化外,45kD蛋白质也明显磷酸化,我们命名它为PP45。我们认为PP45可能是淋巴细胞中胰岛素受体酪氨酸蛋白激酶的主要内源性废物,它的磷酸化是胰岛素信息传递过程级联反应的初始步骤。 相似文献
65.
Substrate selection and seasonal variation in densities of invertebrates in stream pools of a tropical river 总被引:4,自引:0,他引:4
M. Arunachalam K. C. Madhusoodanan Nair J. Vijverberg K. Kortmulder H. Suriyanarayanan 《Hydrobiologia》1991,213(2):141-148
Spatial distribution and seasonal variation in densities of the invertebrates were investigated for a year in three stream pools of a South Indian river. The effects of season, substrate type and water depth on the distribution were analyzed. Substrate type and season influenced the invertebrate distribution the most. Leaf packs harboured most of the organisms followed by macro-algal substrate and sand. The lowest densities were observed on rocky substrates and in the water column. Rocky substrates in shallow water supported higher densities of total invertebrates than deeper areas. Chironomid larvae dominated all benthic substrates throughout the year. Of the 19 invertebrate taxa studied, 6 showed no seasonality in densities, and most of the rest showed their highest densities in the pre-monsoon period and lowest in the SW monsoon or post-monsoon periods. However, in two of the three pools, the densities of total invertebrates were highest during the post-monsoon period with secondary peaks in the pre-monsoon period. 相似文献
66.
Summary Rare mutations that alter the substrate specificity of proline permease cluster in discrete regions of theputP gene, suggesting that they may replace amino acids at the active site of the enzyme. IfputP substrate specificity mutations directly alter the active site of proline permease, the mutants should show specific defects in the kinetics of proline transport. In order to test this prediction, we examined the kinetics of threeputP substrate specificity mutants. One class of mutation increases theK
m
over 120-fold but only decreases theV
max fourfold. SuchK
m
mutants may be specifically defective in substrate recognition, thus identifying an amino acid critical for substrate binding. Another class of mutation decreases theV
max 80-fold without changing theK
m
.V
max mutants appear to alter the rate of substrate translocation without affecting the substrate binding site. The last class of mutation alters both theK
m
andV
max of proline transport. These results indicate that substrate specificity mutations alter amino acids critical for Na+/proline symport. 相似文献
67.
Carbon: terrestrial C4 plants 总被引:1,自引:1,他引:0
The carbon isotope composition of terrestrial C4 plants depends on the primary carboxylation of phosphoenolpyruvate (PEP) and on the diffusion of CO2 to the carboxylation sites, but is also influenced by the final carboxylation of ribulose-1,5-bisphosphate (RuBP). Several models have been used for reproducing this complex situation. In the present review, a particular model is applied as a means to interpret the effects of environmental and genetically determined factors on carbon isotope discrimination during C4 photosynthesis. As a new feature, the model considers four types of limitation of the overall CO2 assimilation rate. Both carboxylation reactions are assumed to be limited by either maximum enzyme activity or maximum substrate regeneration rate. The model is applied to experimental data on the effects of CO2, irradiance and water stress on short-term discrimination by leaves of several C4 species measured simultaneously with CO2 gas exchange characteristics. In particular, different patterns of the influence of low irradiances on carbon isotope discrimination are interpreted as due to variations in that irradiance at which a transition from limitation by PEP regeneration rate and RuBP carboxylase activity to limitation by the regeneration rates of both substrates occurs. After discussing literature data on the effects of environmental conditions on carbon isotope discrimination by C4 plants seasonal and developmental changes in carbon isotope composition, studies on the systematic and geographic distribution of C4 plants, evolutionary and genetical aspects, and some ecological implications are reviewed. 相似文献
68.
Transformed 3T3 cells have reduced levels and altered subcellular distribution of the major PKC substrate protein marcks 总被引:1,自引:0,他引:1
The MARCKS (myristylated alanine-rich C-kinase substrate) protein is an abundant calmodulin-binding protein that is a major and specific endogenous substrate of protein kinase C (PKC). Stimulation of cells with phorbol esters or other activators of PKC has been shown previously to result in rapid phosphorylation of MARCKS proteins and redistribution of these myristylated C-kinase substrates from membrane to cytosol. Here we show that NIH3T3 murine fibroblasts transformed by p21-HA-C-RAS or pp60-V-SRC oncoproteins have markedly reduced levels of p68-MARCKS and that most of the remaining MARCKS protein is found in the cytosol. 3T3 cells containing a nontransforming oncoprotein p26-BCL2, in contrast, exhibited normal levels and distribution of p68-MARCKS. When taken together with recent evidence that MARCKS proteins are involved in regulating organization of the membrane cytoskeleton, our findings suggest that oncoprotein-mediated alterations in MARCKS protein levels and subcellular distribution may contribute to the development or maintenance of the transformed phenotpe. 相似文献
69.
L. P. Ruse 《Aquatic Ecology》1992,26(2-4):411-417
Chironomid pupal skins were collected during one year from three sites along a chalk stream in southern England. The sites had similar chemistry and discharge but differed in their current and temperature regimes. Substrate composition upstream of each collection point was surveyed during spring, summer and autumn. Proportions of macrophytes and sediments were compared with proportions of chironomid species and trophic groups. Seasonal changes in substrate and pupal skin collections were correlated by classification and direct ordination techniques. The distribution of chironomid species were indicated as being significantly related to the recorded substrate data. 相似文献
70.
Macroinvertebrate density, biomass and drift were studied from moss-covered and moss-free channels in the South Fork Salmon River, Idaho. Insect densities were compared for 10 different substrate types and locations involving moss (Fontinalis neo-mexicana), sand, pebbles and cobbles. An ANOVA test demonstrated that insect densities varied significantly with substrate type (P < 0.05), and that total insect density in moss clumps differed significantly from densities in mineral substrates. Insect densities were 4–18 times greater in moss clumps than in mineral substrates under and adjacent to moss; sands under moss supported the lowest densities. During most tests, densities in pebble and cobble substrates adjacent to moss clumps were not significantly different from those found in similar substrates in the moss-free channel. The 20% moss-covered channel had 1.6 to 7.2 greater insect density and 1.4 to 6.1 greater biomass than did the moss-free channel for the tests conducted. Generally, midges (Chironomidae) made up over 50% of the insect community; annelids were the principal non-insect invertebrates.In spite of greater insect density and biomass in a moss-covered than in the moss-free channel, we did not demonstrate universally increased drift of the immature stages from the moss-covered channel, at least during daylight hours. As a consequence, we infer that salmonid fishes, feeding primarily on drifting insects during the daytime, may not derive increased caloric benefit from moss habitats until the insects emerge as adults. 相似文献