6 research outputs found

    Building and using small computer networks

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    Bakalářská práce se zabývá budováním a využíváním menších počítačových sítí. Pro vybudování kvalitnější a efektivnější počítačové sítě byla použita firemní síť rodičů, která slouží hlavně k provozování účetnictví. Jako vstupní informace posloužila vytvořená analýza současného stavu počítačové sítě. Následuje vytvoření návrhu vedoucí ke zlepšení počítačové sítě a následné testování, zda tento návrh byl úspěšný.This thesis deals with the construction and use of smaller computer networks. To build a better and more efficient computer network was used corporate network of parents, which is mainly used for the operation of accounting. The input information was used for generating analysis of the current state of the computer network. Additionally makes a proposal, which leads to improvement of the computer network and then testing whether the proposal was successful

    Building and using small computer networks

    No full text
    Bakalářská práce se zabývá budováním a využíváním menších počítačových sítí. Pro vybudování kvalitnější a efektivnější počítačové sítě byla použita firemní síť rodičů, která slouží hlavně k provozování účetnictví. Jako vstupní informace posloužila vytvořená analýza současného stavu počítačové sítě. Následuje vytvoření návrhu vedoucí ke zlepšení počítačové sítě a následné testování, zda tento návrh byl úspěšný.This thesis deals with the construction and use of smaller computer networks. To build a better and more efficient computer network was used corporate network of parents, which is mainly used for the operation of accounting. The input information was used for generating analysis of the current state of the computer network. Additionally makes a proposal, which leads to improvement of the computer network and then testing whether the proposal was successful

    The plant energy-dissipating mitochondrial systems: Depicting the genomic structure and the expression profiles of the gene families of uncoupling protein and alternative oxidase in monocots and dicots

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    The simultaneous existence of alternative oxidases and uncoupling proteins in plants has raised the question as to why plants need two energy-dissipating systems with apparently similar physiological functions. A probably complete plant uncoupling protein gene family is described and the expression profiles of this family compared with the multigene family of alternative oxidases in Arabidopsis thaliana and sugarcane (Saccharum sp.) employed as dicot and monocot models, respectively. In total, six uncoupling protein genes, AtPUMP1-6, were recognized within the Arabidopsis genome and five (SsPUMP1-5) in a sugarcane EST database. The recombinant AtPUMP5 protein displayed similar biochemical properties as AtPUMP1. Sugarcane possessed four Arabidopsis AOx1-type orthologues (SsAOx1a-1d); no sugarcane orthologue corresponding to Arabidopsis AOx2-type genes was identified. Phylogenetic and expression analyses suggested that AtAOx1d does not belong to the AOx1-type family but forms a new (AOx3-type) family. Tissue-enriched expression profiling revealed that uncoupling protein genes were expressed more ubiquitously than the alternative oxidase genes. Distinct expression patterns among gene family members were observed between monocots and dicots and during chilling stress. These findings suggest that the members of each energy-dissipating system are subject to different cell or tissue/organ transcriptional regulation. As a result, plants may respond more flexibly to adverse biotic and abiotic conditions, in which oxidative stress is involved. © The Author [2006]. Published by Oxford University Press [on behalf of the Society for Experimental Biology]. All rights reserved

    Plant Uncoupling Mitochondrial Protein and Alternative Oxidase: Energy Metabolism and Stress

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