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    Microbiology

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    Microorganisms are classified according to their structure. By means of flow charts‚ diagrams and tables explain the differences between Viruses‚ Bacteria‚ Cyanobacteria‚ Achaea and Fungi. Bacteria or bacterium are unicellular microorganisms. They are essentially only a few micrometres long and form of various shapes including the spheres‚ rods and spirals. A BACTERIAL CELL Illustration courtesy of Wikipedia. A Virus (from the Latin noun virus‚ meaning toxic or poison) is a sub-microscopic

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    classification   ● Genus is represented by staphylococcus   ● Designing organisms in the industrial setting that can provide human products through  genetic engineering or clean up environment waste through bioremediation is part of  the sub discipline microbiology referred to as biotechnology   ● A pathogen is the term used to refer to any disease causing microorganism  ● The term ubiquitous is used to refer to the fact that microbes exists nearly  everywhere on the earth    ● A good hypothesis must be: able to be supported or rejected by 

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    Terms to Know Decomposer - Breakdown of dead matter and wastes into simple compounds Prokaryote – No nucleus - microscopic‚ unicellular organisms‚ lack nuclei and membrane-bound organelles Pathogen - Microorganisms that do harm Eukaryote - unicellular (microscopic) and multicellular‚ nucleus and membrane-bound organelles alcohol - archaeobacteria - Prokaryotic single-celled organisms of primitive origin that have unusual anatomy‚ physiology‚ and genetics‚ and live in harsh habitats;

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    MICROBIOLOGY What is the purpose of general growth media‚ selective media‚ and differential media? Give examples of each. General Purpose Media General Purpose media is designed to grow most organisms and do not contain growth inhibitors. Standard Methods Agar and Blood Agar Bases are examples of general purpose media. Differential Media Differential media contain a component that allow an observable change when a specific chemical reaction takes place. Simmons Citrate Agar is an example

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    Microbiology

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    ` Study Guide for Exam 1 Chapter 1: 1. What is a “microbe”? What groups of organisms are included in this category? Microbes (microorganisms) are minute living things that individually are too small to be seen with the unaided eye the group includes bacteria‚ fungi‚ protozoa‚ and microscopic algae‚ viruses Only minority of microorganisms are pathogenic(disease-producing) 2. What are some of the benefits provided by microbes? Decompose organic waste‚ producers in the ecosystem

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    Microbiology

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    (2005). Evidence for functional overlap among multiple bacterial cell division proteins: compensating for the loss of FtsK. Mol Microbiol 58: Pages 596–612 Gordon‚ G.S Grainge I. (2010). FtsK – a bacterial cell division checkpoint? Molecular Microbiology Volume 78‚ Issue 5‚ pages 1055–1057 Grainge I.‚ Lesterlin C Griffiths A. J. F.‚ Wessler S. R.‚ Lewontin R. C. and Carroll S. B. (2008). Introduction to Genetic Analysis. W.H. Freeman and COmpany. Chapter 7: DNA: Structure and Replication. pages

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    Microbiology

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    CH4 Prokaryotic Cells No nucleus Plasma membrane Selective permeability lets molecules pass. Enzymes for ATP production. Photosynthetic pigment on folding (on chromatophores or thylakoids). Leakage occurs if damaged by alcohols‚ ammonium‚ and polymyxin antibiotics. Phospholipid bilayer‚ peripheral proteins‚ integral protein‚ transmembrane protein‚ sterols‚ glycocalyx Movement across Membranes Simple diffusion: Movement of solute from high concentration to low Facilitative diffusion: Solute

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    impact on our construction of social networks? Does the “virtual society” actually exist? The development of the means of communication through the internet leaded to partial replacement of direct interhuman relationships‚ so we frequently find us facing questions related to modern communication‚ the way that it affects our day to day life‚ and the way society tends to become digitalized one day at a time. Therefore‚ the concept of a virtual society is real‚ and it tends to be nothing more than

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    microbiology

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    Theodor Wilhelm Engelmann was a German microbiologist whose 1882 experiment measured the effects of different colors of light on photosynthetic activity and showed that the conversion of light energy to chemical energy took place in the chloroplast. In 1881‚ he observed the movement of bacteria towards the chloroplasts in a strand of “Spirogyra” algae. Engelmann hypothesized that the bacteria were moving in response to oxygen generated by the photo synthetically active chloroplasts in the algae.

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    Microbiology

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    Ch. 1 Prokaryotes = bacteria ‚ archaea Eukaryotes = Fungi‚ protozoa ‚ algae (Growth:: Mitosis有絲分裂) Bacterial cell → Bacillus(rodlike) ‚ cocus (spherical)‚ spiral (curved) *P.S. 有時會star-shaped or square → 出現既形式: pairs‚ chains‚ clusters cell walls of bacteria → peptidoglycan (carbohydrate & protein complex) cell walls of plant and algal cell → cellulose Growth::Binary fission = bacteria reproduce by dividing into two equal cells bacteria 吸收nutrients from dead / living organisms/ photosynthesis

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