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Histology. Cytology --- Eukaryotic cells --- Cytogenetics. --- Eukaryotic cells.
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Histology. Cytology --- Molecular biology --- Eukaryotic cells
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Cytology --- Cell Biology. --- Eukaryotic Cells. --- Cellules eucaryotes --- Cytologie --- Cellules eucaryotes. --- Cytologie. --- Cell Biology --- Eukaryotic Cells
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Genes --- Cells --- Cytogenetics --- Eukaryotic cells --- Cytogénétique --- Cellules eucaryotes --- Cytogenetics. --- Eukaryotic cells. --- Cells. --- Genes. --- Cytogénétique
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How do we know what role a particular gene has? How do some genes control the expression of others? How do genes interact to form gene networks? This text explores these fascinating questions, detailing how our understanding of key genetic phenomena can be used to understand biological systems. Opening with a brief overview of key genetic principles, model organisms, and epigenetics, the book goes on to explore the use of gene mutations and the analysis of gene expression and activity. A discussion of the genetic structure of natural populations follows, before the interaction of genes during suppression and epistasis, how we study gene networks, and personalized genomics are considered. Drawing on the latest experimental tools, including microarrays, RNAi screens, and bioinformatics approaches, this book provides a state-of-the-art review of the field in a truly student-friendly manner. It uses extended case studies and text boxes to augment the narrative, taking the reader to the forefront of contemporary research with exceptional clarity.
Genetics --- Genetics --- Eukaryotic cells --- Genes --- Genomes --- Genetic Techniques --- Eukaryotic Cells --- Genomics --- Gene Expression Regulation --- Models, Genetic
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Eukaryotic cells --- Ecological genetics --- Mitochondrial DNA --- Mitochondrial pathology
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Proteins --- Eukaryotic cells --- Synthesis --- Congresses --- -Proteins --- -Proteids --- Biomolecules --- Polypeptides --- Proteomics --- Eucaryotic cells --- Cells --- Protista --- -Congresses --- Congresses. --- Cells. --- Proteins - Synthesis - Congresses --- Eukaryotic cells - Congresses --- BIOCHEMICAL MOLECULES --- PROTEINS --- EUKARYOTES --- EUKARYOTIC CELLS --- PREPARATION
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Cell Nucleus --- Cell nuclei --- Cytochemistry --- Gene expression --- Eukaryotic cells --- Congresses --- Histology. Cytology --- General biochemistry --- Cell nuclei - Congresses --- Cytochemistry - Congresses --- Gene expression - Congresses --- Eukaryotic cells - Congresses --- Cell nuclei. --- Cytochemistry.
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Génétique microbienne --- Chromosomes --- ADN extrachromosomique --- Microbial genetics. --- Extrachromosomal DNA. --- Eukaryotic cells. --- Extrachromosomal Inheritance. --- Genetics, Microbial. --- Chromosomes.
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This is the companion volume to Daniel Klionsky's Autophagy: Lower Eukaryotes, which features the basic methods in autophagy covering yeasts and alternative fungi. Klionsky is one of the leading authorities in the field. He is the editor-in-chief of Autophagy. The November 2007 issue of Nature Reviews highlighted his article, "Autophagy: from phenomenology to molecular understanding in less than a decade.? He is currently editing guidelines for the field, with 230 contributing authors that will publish in Autophagy.Particularly in times of stress, like sta
Cell death. --- Autophagic vacuoles. --- Eukaryotic cells. --- Eucaryotic cells --- Autophagocytosis --- Cell degeneration --- Cells --- Protista --- Death (Biology)
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