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This monograph series is commissioned by the Phytochemical Society of North America (PSNA). The volumes in this series contain articles on developing topics of interest to scientists, students and individuals interested in recent developments in the biochemistry, chemistry and molecular biology of plants. Volume 36 centers on the role of phytochemistry in the rapid developments in biology brought about by the application of large-scale genomics approaches. Several functional genomic approaches discussed in this volume address plant gene function on a large scale. Plants are combinatori
Botanical chemistry. --- Botanical chemistry--Congresses. Plant genetics--Congresses. --- Chemistry. --- Congresses. --- Genetics. --- Genome, Plant. --- Plant biochemical genetics. --- Plant genetics. --- Plants. --- Eukaryota --- Genome --- Genetic Structures --- Organisms --- Genetic Phenomena --- Phenomena and Processes --- Plants --- Genome, Plant --- Botany --- Earth & Environmental Sciences --- Plant Physiology --- Plant Genome --- Genomes, Plant --- Plant Genomes --- Genes, Plant --- Plant --- Plant Proteins --- Ethnopharmacology --- Genetic Concepts --- Genetic Phenomenon --- Genetic Process --- Genetic Processes --- Concept, Genetic --- Concepts, Genetic --- Genetic Concept --- Phenomena, Genetic --- Phenomenon, Genetic --- Process, Genetic --- Processes, Genetic --- Molecular Biology --- Genetic Structure --- Structure, Genetic --- Structures, Genetic --- Genetics --- Genomes --- Genes --- Proteome --- Eucarya --- Eukarya --- Eukaryotes --- Eukaryotas --- Eukaryote --- Analog electronic systems. --- Electronic circuits.
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In this book a distinguished scientist-historian offers a critical account of how biochemistry and molecular biology emerged as major scientific disciplines from the interplay of chemical and biological ideas and practice. Joseph S. Fruton traces the historical development of these disciplines from antiquity to the present time, examines their institutional settings, and discusses their impact on medical, pharmaceutical, and agricultural practice.
Biochemistry --- Molecular biology --- Proteins --- Enzymes --- Genes --- Genes. --- Molecular Biology --- Research --- Genetics --- Enzymes and Coenzymes --- Genome Components --- Chemistry --- Amino Acids, Peptides, and Proteins --- Science --- Biological Science Disciplines --- Biology --- Natural Science Disciplines --- Chemicals and Drugs --- Genome --- Disciplines and Occupations --- Genetic Structures --- Genetic Phenomena --- Phenomena and Processes --- Human Anatomy & Physiology --- Health & Biological Sciences --- Animal Biochemistry --- Laboratory Research --- Research Activities --- Research and Development --- Research Priorities --- Activities, Research --- Activity, Research --- Development and Research --- Priorities, Research --- Priority, Research --- Research Activity --- Research Priority --- Research, Laboratory --- Ethics, Research --- Biocatalysts --- Biocatalyst --- Enzyme --- Molecular Mechanisms of Pharmacological Action --- Genetic Concepts --- Genetic Phenomenon --- Genetic Process --- Genetic Processes --- Concept, Genetic --- Concepts, Genetic --- Genetic Concept --- Phenomena, Genetic --- Phenomenon, Genetic --- Process, Genetic --- Processes, Genetic --- Cistron --- Gene --- Genetic Materials --- Cistrons --- Genetic Material --- Material, Genetic --- Materials, Genetic --- Biochemical Genetics --- Biology, Molecular --- Genetics, Biochemical --- Genetics, Molecular --- Molecular Genetics --- Biochemical Genetic --- Genetic, Biochemical --- Genetic, Molecular --- Molecular Genetic --- Gene Products, Protein --- Gene Proteins --- Protein --- Protein Gene Products --- Proteins, Gene --- Genomes --- Proteome --- Natural Sciences --- Physical Sciences --- Discipline, Natural Science --- Disciplines, Natural Science --- Natural Science --- Natural Science Discipline --- Physical Science --- Science, Natural --- Science, Physical --- Sciences, Natural --- Sciences, Physical --- Genetic Structure --- Structure, Genetic --- Structures, Genetic --- Biologic Sciences --- Biological Science --- Science, Biological --- Sciences, Biological --- Biological Sciences --- Life Sciences --- Biologic Science --- Biological Science Discipline --- Discipline, Biological Science --- Disciplines, Biological Science --- Life Science --- Science Discipline, Biological --- Science Disciplines, Biological --- Science, Biologic --- Science, Life --- Sciences, Biologic --- Sciences, Life --- Sciences --- Component, Genome --- Components, Genome --- Genome Component --- Coenzymes and Enzymes --- Units of heredity --- Units of inheritance --- Heredity --- Molecular genetics --- DNA --- Ferments --- Soluble ferments --- Catalysts --- Enzymology --- Proteids --- Biomolecules --- Polypeptides --- Proteomics --- Molecular biochemistry --- Molecular biophysics --- Biophysics --- Systems biology --- History. --- History --- Occupations --- Genetics. --- Enzymes and Coenzymes. --- Genome Components. --- Chemistry. --- Amino Acids, Peptides, and Proteins. --- Science. --- Biological Science Disciplines. --- Biology. --- Natural Science Disciplines. --- Genome. --- Occupations. --- Genetic Structures. --- Genetic Phenomena. --- Enzymes. --- Research. --- Proteins. --- Molecular Biology. --- Biochemistry. --- history.
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Protein Expression: A Practical Approach and its companion volume Post-translational Modification: A Practical Approach complete the mini-series of Practical Approach books covering the synthesis and subsequent processing of proteins. Protein Expression: A Practical Approach details the expression of cloned DNA or RNA templates in all the major in vivo and in vitro systems. The in vivo systems covered are cultured mammalian cells, the yeasts Saccharomyces cerevisiae and Pichia pastoris, baculovirus, Xenopus oocytes, and prokaryotic cells. Cell-free systems of both eukarytotes and prokaryotes are described, including the prokaryotic systems that offer copuled transcription- translation. There is also a chapter on monitoring protein expression. The post- translational fate of proteins is covered in Post-Translational Processing: A Practical Approach.
Genetic translation --- Proteins --- Genetic Processes --- Gene Expression --- Peptide Biosynthesis --- Amino Acids, Peptides, and Proteins --- Metabolism --- Biochemical Processes --- Genetic Phenomena --- Chemicals and Drugs --- Biochemical Phenomena --- Metabolic Phenomena --- Phenomena and Processes --- Chemical Processes --- Chemical Phenomena --- Gene Expression Regulation --- Protein Biosynthesis --- Biology --- Health & Biological Sciences --- Genetics --- Protein Biosynthesis, Ribosomal --- Protein Synthesis, Ribosomal --- Ribosomal Peptide Biosynthesis --- mRNA Translation --- Genetic Translation --- Peptide Biosynthesis, Ribosomal --- Protein Translation --- Translation, Genetic --- Biosynthesis, Protein --- Biosynthesis, Ribosomal Peptide --- Biosynthesis, Ribosomal Protein --- Genetic Translations --- Ribosomal Protein Biosynthesis --- Ribosomal Protein Synthesis --- Synthesis, Ribosomal Protein --- Translation, Protein --- Translation, mRNA --- mRNA Translations --- Genetic Code --- Codon, Initiator --- Codon, Terminator --- Chemical Phenomenon --- Chemical Process --- Physical Chemistry Phenomena --- Physical Chemistry Process --- Physicochemical Phenomenon --- Physicochemical Process --- Chemical Concepts --- Physical Chemistry Concepts --- Physical Chemistry Processes --- Physicochemical Concepts --- Physicochemical Phenomena --- Physicochemical Processes --- Chemical Concept --- Chemistry Process, Physical --- Chemistry Processes, Physical --- Concept, Chemical --- Concept, Physical Chemistry --- Concept, Physicochemical --- Concepts, Chemical --- Concepts, Physical Chemistry --- Concepts, Physicochemical --- Phenomena, Chemical --- Phenomena, Physical Chemistry --- Phenomena, Physicochemical --- Phenomenon, Chemical --- Phenomenon, Physicochemical --- Physical Chemistry Concept --- Physicochemical Concept --- Process, Chemical --- Process, Physical Chemistry --- Process, Physicochemical --- Processes, Chemical --- Processes, Physical Chemistry --- Processes, Physicochemical --- Expression Regulation, Gene --- Regulation, Gene Action --- Regulation, Gene Expression --- Gene Action Regulation --- Regulation of Gene Expression --- RNAi Therapeutics --- Gene Regulatory Networks --- Gene Products, Protein --- Gene Proteins --- Protein --- Protein Gene Products --- Proteins, Gene --- Molecular Mechanisms of Pharmacological Action --- Metabolic Phenomenon --- Metabolic Process --- Metabolism Concepts --- Metabolism Phenomena --- Process, Metabolic --- Processes, Metabolic --- Anabolism --- Catabolism --- Metabolic Concepts --- Metabolic Processes --- Concept, Metabolic --- Concept, Metabolism --- Concepts, Metabolic --- Concepts, Metabolism --- Metabolic Concept --- Metabolism Concept --- Phenomena, Metabolic --- Phenomena, Metabolism --- Phenomenon, Metabolic --- Biochemical Concepts --- Biochemical Phenomenon --- Biochemical Process --- Phenomena, Biochemical --- Biochemical Concept --- Concept, Biochemical --- Concepts, Biochemical --- Phenomenon, Biochemical --- Process, Biochemical --- Processes, Biochemical --- Molecular Biology --- Genetic Concepts --- Genetic Phenomenon --- Genetic Process --- Concept, Genetic --- Concepts, Genetic --- Genetic Concept --- Phenomena, Genetic --- Phenomenon, Genetic --- Process, Genetic --- Processes, Genetic --- Biosynthesis, Peptide --- Peptides --- Expression, Gene --- Expressions, Gene --- Gene Expressions --- Gene Expression Profiling --- Proteids --- Biomolecules --- Polypeptides --- Proteomics --- Translation (Genetics) --- Genetic code --- Genetic regulation --- Laboratory manuals --- Synthesis --- biosynthesis --- Gene Expression Regulation. --- Protein Biosynthesis. --- cheical synthesis.
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