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61.
A constitutively expressed bacteriocin from Cicer-Rhizobium was purified to homogeneity. The purified preparation yielded a homogenous protein with a molecular weight of about 29 kDa. This protein was heat stable, unaffected by nucleases and was found to have an iso-electric point (pI) of 4.6. The N-terminal sequence of the protein was found to be M-N-N-N-Y-R-E-L-L-P-I-I-G-P-P-W-A-E-I-E, sharing 78% homology with linocin M18. Bacteriocin bioactivity was correlated with the presence of a 29 kDa protein in the growth diffusates of the culture. A mutant strain unable to produce this bacteriocin was found to have a statistically significant reduction in nodule occupancy and competitiveness against the wild type and indigeneous populations under unsterile conditions. Bacteriocin production by the mutant carrying the complement clone pJNP365 was found to be stable even in an unsterile environment.  相似文献   
62.
A novel series of antagonists of the human A2A receptor have been identified and have been shown to display good potency and high degrees of selectivity over other receptor sub-types. Displaying in vivo potency in commonly used disease models and high oral bio-availability, this class of compounds may serve as clinically useful treatments for the relief of the symptoms associated with Parkinson’s disease.  相似文献   
63.
Barley plants (Hordeum vulgare L.) received foliar applications of 10–4 M gibberellic acid (GA3) and Kinetin (KN) individually and in combination at one or more of three growth stages: flag leaf appearance (I), ear emergence (II), and the first stage of senescence initiation in the flag leaf (III). Both plant growth regulators (PGR) hastened onset of senescence when sprayed at Stage I and/or Stage II. Treatment at Stage III, either alone or in combination with treatments at the other stages, tended to postpone senescence. Yield components also showed stage-dependent response: Stage I treatment increased the formation of total and bearing tillers, and Stage III treatment improved grain number and weight. However, while GA3 proved more effective than KN, the two together acted antagonistically.  相似文献   
64.

Population dynamics of M. triticoryzae in five rice-based cropping systems have revealed that rice was the main host. Most of the population growth which contributed to the peak population density in September occurred in the rice crop. The other crops in the Rabi and summer seasons had a profound influence on the height of the peak in the succeeding rice crop. Some level of reproduction occurred in wheat, greengram and berseem in Rabi which contributed to relatively higher equilibrium densities. The potato variety Pusa Bahar increased the population density while Pusa Badshah decreased it. The lower temperature during the Rabi season also limited the rate of population growth. The incorporation of organic matter into the soil, either as crop residues of greengram or berseem, reduced the population growth of M. triticoryzae .  相似文献   
65.
The present study explores the suitability of chemical reaction-based and diffusion-based kinetic models for defining the biosorption of Cu(II), Cd(II) and Pb(II) by Phormidium sp.-dominated mat. The time-course data of metal sorption by the test mat significantly (r2 = 0.932-0.999) fitted to the chemical reaction-based models namely pseudo-first-order, -second-order, and the general rate law. However, these models fail to accurately describe the kinetics of metal biosorption due either to prefixed order or unjustifiable change in rate constant and reaction order with varying concentrations of metal and biomass in the solution. The diffusion-based models, namely, the intra-particle diffusion model and the external mass transfer model fitted well to the time-course metal sorption data, thus suggesting involvement of both external and intra-particle diffusion processes in sorption of test metals by mat biomass. However, the Boyd kinetic expression clearly showed that the external mass transfer is the dominant process.  相似文献   
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Biological membranes, comprised of proteins anchored by their trans-membrane domains (TMDs) creating a semi-permeable phase with lipid constituents, serve as ‘checkposts’ for not only intracellular trafficking in eukaryotic cells but also for material transactions of all living cells with external environments. Hydropathy (or hydrophobicity) plots of ‘bitopic’ proteins (i.e. having single alpha-helical TMDs) are routinely utilized in biochemistry texts for predicting their TMDs. The number of amino acids (i.e. TMD length) embedded as alpha-helices may serve as indicators of thickness of biological membranes in which they reside under assumptions that are universally applied for fixing window sizes for identifying TMDs using hydropathy plots. In this work we explore variations in thickness of different eukaryotic biological membranes (reflected by TMD lengths of their resident proteins) over evolutionary time scales. Rigorous in silico analyses of over 23,000 non-redundant membrane proteins residing in different subcellular locations from over 200 genomes of fungi, plants, non-mammalian vertebrates and mammals, reveal that differences in plasma membrane and organellar TMD lengths have decreased over time (scales) of eukaryotic cellular evolution. While earlier work has indicated decreasing differences in TMD lengths with increasing ‘perceived’ organismal complexity, this work is the first report on TMD length variations as a function of evolutionary time of eukaryotic cellular systems. We report that differences in TMD lengths of bitopic proteins residing in plasma membranes and other intra-cellular locations have decreased with evolutionary time, suggesting better/more avenues of intracellular trafficking in the emergence of eukaryotic organisms.  相似文献   
68.
Replication Factor C (RFC) is a five-subunit protein complex required for eukaryotic DNA replication and repair. The large subunit within this complex contains a C-terminal DNA binding domain which provides specificity for PCNA loading at a primer-template and a second, N-terminal DNA binding domain of unknown function. We isolated the N-terminal DNA binding domain from Drosophila melanogaster and defined the region within this polypeptide required for DNA binding. The DNA determinants most efficiently recognized by both the Drosophila minimal DNA binding domain and the N-terminal half of the human large subunit consist of a double-stranded DNA containing a recessed 5' phosphate. DNA containing a recessed 5' phosphate was preferred 5-fold over hairpined DNA containing a recessed 3' hydroxyl. Combined with existing data, these DNA binding properties suggest a role for the N-terminal DNA binding domain in the recognition of phosphorylated DNA ends.  相似文献   
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