Gram Stain E Coli

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Size Limits of Very Small Microorganisms

Author: National Research Council
language: en
Publisher: National Academies Press
Release Date: 1999-09-13
How small can a free-living organism be? On the surface, this question is straightforward-in principle, the smallest cells can be identified and measured. But understanding what factors determine this lower limit, and addressing the host of other questions that follow on from this knowledge, require a fundamental understanding of the chemistry and ecology of cellular life. The recent report of evidence for life in a martian meteorite and the prospect of searching for biological signatures in intelligently chosen samples from Mars and elsewhere bring a new immediacy to such questions. How do we recognize the morphological or chemical remnants of life in rocks deposited 4 billion years ago on another planet? Are the empirical limits on cell size identified by observation on Earth applicable to life wherever it may occur, or is minimum size a function of the particular chemistry of an individual planetary surface? These questions formed the focus of a workshop on the size limits of very small organisms, organized by the Steering .Group for the Workshop on Size Limits of Very Small Microorganisms and held on October 22 and 23, 1998. Eighteen invited panelists, representing fields ranging from cell biology and molecular genetics to paleontology and mineralogy, joined with an almost equal number of other participants in a wide-ranging exploration of minimum cell size and the challenge of interpreting micro- and nano-scale features of sedimentary rocks found on Earth or elsewhere in the solar system. This document contains the proceedings of that workshop. It includes position papers presented by the individual panelists, arranged by panel, along with a summary, for each of the four sessions, of extensive roundtable discussions that involved the panelists as well as other workshop participants.
Microbiology of Waterborne Diseases

The second edition of Microbiology of Waterborne Diseases describes the diseases associated with water, their causative agents and the ways in which they gain access to water systems. The book is divided into sections covering bacteria, protozoa, and viruses. Other sections detail methods for detecting and identifying waterborne microorganisms, and the ways in which they are removed from water, including chlorine, ozone, and ultraviolet disinfection. The second edition of this handbook has been updated with information on biofilms and antimicrobial resistance. The impact of global warming and climate change phenomena on waterborne illnesses are also discussed. This book serves as an indispensable reference for public health microbiologists, water utility scientists, research water pollution microbiologists environmental health officers, consultants in communicable disease control and microbial water pollution students. Focuses on the microorganisms of most significance to public health, including E. coli, cryptosporidium, and enterovirus Highlights the basic microbiology, clinical features, survival in the environment, and gives a risk assessment for each pathogen Contains new material on antimicrobial resistance and biofilms Covers drinking water and both marine and freshwater recreational bathing waters
Escherichia coli Infections, Third Edition

Escherichia coli bacteria cause many illnesses of the gastrointestinal tract. Often, people come down with these diseases when they eat contaminated foods, especially ground beef or raw produce. Though E. coli infections are most common in less developed parts of the world, they are also a problem in the United States—contamination occurred in prepackaged cookie dough in 2009 and in spinach in 2006. But all E. coli are not harmful, as strains found in the human intestinal system can help with vitamin K production or in fighting harmful bacteria. This third edition of Escherichia coli Infections contains up-to-date information on the different strains of E. coli, including the latest outbreaks, statistics, diagnostic breakthroughs, and vaccine development. Chapters include: E. coli Outbreaks What Is E. coli? E. coli Diseases E. coli Colonization and Transmission Epidemiology of E. coli Infections Disease Pathogenesis Clinical Diagnosis and Treatment Disease Prevention Future Possibilities and Concerns.