The Biochemistry and Physiology of Tetrahymena

The Biochemistry and Physiology of Tetrahymena

Author: Donald G. Hill

Publisher: Elsevier

Published: 2012-12-02

Total Pages: 243

ISBN-13: 0323159346

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The Biochemistry and Physiology of Tetrahymena presents a review of the literature covering the physiology and biochemistry of the ciliate genus Tetrahymena, of which Tetrahymena pyriformis is the most studied species. Organized into 10 parts, this book first provides basic information about Tetrahymena, which is found in almost any body of water and is so unusual that one can debate quite rationally as to whether it is an animal or a plant. Other chapters are restricted to specific subjects about this organism, namely, carbohydrate, lipid, energy, protein, amino acid, purine, pyrimidine, and nucleic acid metabolism. The organism's biochemical genetics, vitamin and inorganic requirements, and evolution are also shown. This book also explores the effect of radiation, drugs, and hydrostatic pressure on Tetrahymena. The documented information presented in this book will be sufficient to stimulate even more interest in the organism.


Tetrahymena Thermophila

Tetrahymena Thermophila

Author:

Publisher: Academic Press

Published: 1999-09-08

Total Pages: 599

ISBN-13: 0080524958

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Tetrahymena thermophila is emerging as a powerful experimental system for functional genetics. The ciliated protozoan offers numerous advantages, not the least of which is the ability to eliminate any specific gene of interest and then to evaluate the effect of that mutation on the living cell. Past investigations with T. thermophila have yielded several key discoveries, including dynein, catalytic RNA, and telomerase. This volume is a comprehensive resource for using Tetrahymena in the laboratory and is aimed at persons already experienced, as well as newcomers to the organism. It covers both the biological background and essential protocols for investigators rapidly turning to Tetrahymena as the experimental system of choice. Contains both theoretical and practical issues in 30 chapters contributed by the world authorities on Tetrahymena Indispensible for both the novice and the experienced researcher Overviews the history, cell biology, and genetics of the organism Describes essential protocols on the growth of cells, genetic techniques, and how to look at the cells with the microscope Illustrates how the methods can be applied to solve various cell biological problems Reviews recently developed strategies for altering gene expression


Biochemistry and Physiology of Protozoa

Biochemistry and Physiology of Protozoa

Author: André Lwoff

Publisher: Elsevier

Published: 2014-05-12

Total Pages: 445

ISBN-13: 1483263665

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Biochemistry and Physiology of Protozoa, Volume I focuses on the chemical and physiological features of Protozoa, including nutrition, metabolism, and growth of phytoflagellates, Trypanosomidae and Bodonidae, biochemistry of ciliates and Plasmodium, and the influence of antimalarials. The selection first offers information on the biochemistry of Protozoa and phytoflagellates, including sexuality in Chlamydomonas, growth factors and chemical asepsis, descriptive chemistry and phylogenetic relationships, evolutionary aspects of photosynthesis, nutrition and biochemistry of Protozoa, and the biochemical evolution of Protozoa. The text then ponders on the nutrition of parasitic flagellates and metabolism of Trypanosomidae and Bodonidae. The publication takes a look at the nutrition of parasitic amebae, biochemistry of Plasmodium and the influence of antimalarials, and the biochemistry of ciliates in pure culture. Topics include carbon metabolism and respiration, nitrogen metabolism, antimalarial compounds and their influence on the metabolism of malarial parasites, metabolism of malarial parasites, and nutrition of the dysentery ameba, Entamoeba histolytica. The selection is a valuable reference for cytologists, geneticists, and pathologists interested in the biochemistry and physiology of protozoa.


Transgenerational Epigenetics

Transgenerational Epigenetics

Author:

Publisher: Academic Press

Published: 2019-05-21

Total Pages: 0

ISBN-13: 9780128163634

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Transgenerational Epigenetics, Second Edition, offers the only up-to-date, comprehensive analysis of the inheritance of epigenetic phenomena between generations with an emphasis on human disease relevance, drug discovery, and next steps in clinical translation. International experts discuss mechanisms of epigenetic inheritance, its expression in animal and plant models, and how human ailments, such as metabolic disorders and cardiovascular disease are influenced by transgenerational epigenetic inheritance. Where evidence is sufficient, epigenetic clinical interventions are proposed that may help prevent or reduce the severity of disease before offspring are born. This edition has been thoroughly revised in each disease area, featuring newly researched actors in epigenetic regulation, including long noncoding RNA in addition to histone modifications and DNA methylation. Therapeutic pathways in treating cancer and extending human longevity are also considered, as are current debates and future directions for research.


Euglena: Biochemistry, Cell and Molecular Biology

Euglena: Biochemistry, Cell and Molecular Biology

Author: Steven D. Schwartzbach

Publisher: Springer

Published: 2017-04-19

Total Pages: 304

ISBN-13: 3319549103

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This much-needed book is the first definitive volume on Euglena in twenty-fire years, offering information on its atypical biochemistry, cell and molecular biology, and potential biotechnology applications. This volume gathers together contributions from well-known experts, who in many cases played major roles in elucidating the phenomenon discussed. Presented in three parts, the first section of this comprehensive book describes novel biochemical pathways which in some instances have an atypical subcellular localization. The second section details atypical cellular mechanisms of organelle protein import, organelle nuclear genome interdependence, gene regulation and expression that provides insights into the evolutionary origins of eukaryotic cells. The final section discusses how biotechnologists have capitalized on the novel cellular and biochemical features of Euglena to produce value added products. Euglena: Biochemistry, Cell and Molecular Biology will provide essential reading for cell and molecular biologists with interests in evolution, novel biochemical pathways, organelle biogenesis and algal biotechnology. Readers will come away from this volume with a full understanding of the complexities of the Euglena as well as new realizations regarding the diversity of cellular processes yet to be discovered.


Handbook of Genetics

Handbook of Genetics

Author: Robert King

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 662

ISBN-13: 1461571480

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Many modern geneticists attempt to elucidate the molecular basis of phenotype by utilizing a battery of techniques derived from physical chemistry on subcellular components isolated from various species of organisms. Volume 5 of the Handbook of Genetics provides explanations of the advantages and shortcomings of some of these revolutionary tech niques, and the nonspecialist is alerted to key research papers, reviews, and reference works. Much of the text deals with the structure and func tioning of the molecules bearing genetic information which reside in the nucleus and with the processing of this information by the ribosomes resid ing in the cytoplasm of eukaryotic cells. The mitochondria, which also live in the cytoplasm of the cells of all eukaryotes, now appear to be separate little creatures. These, as Lynn Margulis pointed out in Volume 1, are the colonial posterity of migrant prokaryotes, probably primitive bacteria that swam into the ancestral precursors of all eukaryotic cells and remained as symbionts. They have maintained themselves and their ways ever since, replicating their own DNA and transcribing an RNA quite different from that of their hosts. In a similar manner, the chloroplasts in all plants are self-replicating organelles presumably derived from the blue-green algae, with their own nucleic acids and ribosomes. Four chapters are devoted to the nucleic acids and the ribosomal components of both classes of these semi-independent lodgers. Finally, data from various sources on genetic variants of enzymes are tabulated for ready reference, and an evaluation of this information is attempted.