Listing 1 - 4 of 4 |
Sort by
|
Choose an application
Arabidopsis thaliana. --- Arabis thaliana --- Cress, Mouse-ear --- Cress, Mouseear --- Cress, Thale --- Mouse-ear cress --- Mouseear cress --- Sisymbrium thalianum --- Thale cress --- Arabidopsis
Choose an application
SCIENCE --- Life Sciences / Genetics & Genomics --- Plant genome mapping --- Arabidopsis thaliana --- Plant Ecology --- Botany --- Earth & Environmental Sciences --- Planning --- Research --- Arabis thaliana --- Cress, Mouse-ear --- Cress, Mouseear --- Cress, Thale --- Mouse-ear cress --- Mouseear cress --- Sisymbrium thalianum --- Thale cress --- Mapping, Plant genome --- Plant chromosome mapping --- Plant gene mapping --- Arabidopsis --- Gene mapping --- Plant genetics --- Technique
Choose an application
Organogenesis entails the regulation of cell division, cell expansion, cell and tissue type differentiation, and patterning of the organ as a whole. It is essential to gain insight into how organs are initiated and how they develop. However, this very often is subject to technical difficulties as these processes take place embedded deep in tissues or are difficult to access or visualize. To achieve this, we need specialized techniques such as those concisely illustrated in Plant Organogenesis: Methods and Protocols. Chapters address topics such as how to study and image the structure of ovules and embryos of Arabidopsis thaliana, tools to establish cell lineages in order to visualize the contribution of each cell and cell division to the building of a mature organ, approaches to study the totipotency of several plant cells, techniques such as the use of fluorescence-activated cell sorting (FACS) to analyse transcriptomes and hormone levels in Arabidopsis, methods to investigate organogenesis in economically important crops, and computer-based approaches to bring everything together. Written in the successful Methods in Molecular Biology™ series format, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible protocols, and notes on troubleshooting and avoiding known pitfalls. Authoritative and easily accessible, Plant Organogenesis: Methods and Protocols serves both professionals and novices with its well-honed methodologies in an effort to further our knowledge of this fascinating research field.
Plant morphogenesis --- Plant cell development --- Plant cell differentiation --- Arabidopsis thaliana --- Growth --- Brassicaceae --- Angiosperms --- Embryophyta --- Streptophyta --- Viridiplantae --- Plants --- Eukaryota --- Organisms --- Arabidopsis --- Botany --- Earth & Environmental Sciences --- Plant Anatomy --- Arabis thaliana --- Cress, Mouse-ear --- Cress, Mouseear --- Cress, Thale --- Mouse-ear cress --- Mouseear cress --- Sisymbrium thalianum --- Thale cress --- Arabidopses --- Arabidopsis thalianas --- Cress, Mouse ear --- Cresses, Mouse-ear --- Mouse-ear Cress --- Mouse-ear Cresses --- thaliana, Arabidopsis --- Eucarya --- Eukarya --- Eukaryotes --- Eukaryotas --- Eukaryote --- Plant --- Land Plants --- Land Plant --- Plant, Land --- Plants, Land --- Angiospermae --- Liliopsida --- Magnoliopsida --- Angiosperm --- Liliopsidas --- Magnoliopsidas --- Cell development, Plant --- Green Plants --- Green Plant --- Plant, Green --- Plants, Green --- Moricandia --- Cress --- Cruciferae --- Cresses --- Moricandias --- Life sciences. --- Plant biochemistry. --- Plant science. --- Botany. --- Life Sciences. --- Plant Sciences. --- Plant Biochemistry. --- Botanical science --- Phytobiology --- Phytography --- Phytology --- Plant biology --- Plant science --- Biology --- Natural history --- Phytochemistry --- Plant biochemistry --- Plant chemistry --- Biochemistry --- Phytochemicals --- Plant biochemical genetics --- Biosciences --- Sciences, Life --- Science --- Biochemistry. --- Biological chemistry --- Chemical composition of organisms --- Physiological chemistry --- Chemistry --- Medical sciences --- Composition --- Floristic botany
Choose an application
Signal transduction is the fundamental mechanism for regulation of cellular activities by environmental cues and regulatory signals, and is particularly important for plants, whose survival requires proper physiological and developmental responses to the environmental changes. Much progress has been made recently in the plant signal transduction research field thanks to the development of diverse techniques which are covered in Plant Signalling Networks: Methods and Protocols. These include advanced research methods such as proteomics and mass spectrometry methods for studying protein modification, biochemical and cell biological tools for studying protein-protein interactions, genomic techniques for dissecting protein-DNA interaction and transcription networks, and computation methods that integrate molecular network into plant developmental processes. Written in the successful Methods in Molecular Biology™ series format, chapters include introductions to their respective topics, lists of the necessary materials and reagents, step-by-step, readily reproducible protocols, and notes on troubleshooting and avoiding known pitfalls. Plant Signalling Networks: Methods and Protocols presents well-honed methodologies for a wide range of research approaches including genetics, proteomics, biochemical, cell biological, and computational approaches, and seeks to serve both professionals and novices with a comprehensive understanding of complex signaling networks in plants. .
Plant cellular signal transduction --- Plants --- Arabidopsis --- Plant Proteins --- Biochemical Processes --- Cell Physiological Processes --- Eukaryota --- Brassicaceae --- Proteins --- Amino Acids, Peptides, and Proteins --- Organisms --- Biochemical Phenomena --- Angiosperms --- Chemical Processes --- Cell Physiological Phenomena --- Embryophyta --- Chemical Phenomena --- Chemicals and Drugs --- Phenomena and Processes --- Streptophyta --- Viridiplantae --- Signal Transduction --- Biology --- Botany --- Health & Biological Sciences --- Earth & Environmental Sciences --- Plant Physiology --- Biophysics --- Plant cellular signal transduction. --- Arabidopsis. --- Plant Proteins. --- Plants. --- Plant --- Proteins, Plant --- Arabidopsis thaliana --- Cress, Mouse-ear --- Arabidopses --- Arabidopsis thalianas --- Cress, Mouse ear --- Cresses, Mouse-ear --- Mouse-ear Cress --- Mouse-ear Cresses --- thaliana, Arabidopsis --- Receptor Mediated Signal Transduction --- Signal Transduction Pathways --- Signal Transduction Systems --- Receptor-Mediated Signal Transduction --- Signal Pathways --- Pathway, Signal --- Pathway, Signal Transduction --- Pathways, Signal --- Pathways, Signal Transduction --- Receptor-Mediated Signal Transductions --- Signal Pathway --- Signal Transduction Pathway --- Signal Transduction System --- Signal Transduction, Receptor-Mediated --- Signal Transductions --- Signal Transductions, Receptor-Mediated --- System, Signal Transduction --- Systems, Signal Transduction --- Transduction, Signal --- Transductions, Signal --- 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 --- Land Plants --- Land Plant --- Plant, Land --- Plants, Land --- Cell Physiological Phenomenon --- Cell Physiological Process --- Physiology, Cell --- Cell Physiology --- Phenomena, Cell Physiological --- Phenomenon, Cell Physiological --- Physiological Process, Cell --- Physiological Processes, Cell --- Process, Cell Physiological --- Processes, Cell Physiological --- Cells --- Angiospermae --- Liliopsida --- Magnoliopsida --- Angiosperm --- Liliopsidas --- Magnoliopsidas --- Biochemical Concepts --- Biochemical Phenomenon --- Biochemical Process --- Phenomena, Biochemical --- Biochemical Concept --- Concept, Biochemical --- Concepts, Biochemical --- Phenomenon, Biochemical --- Process, Biochemical --- Processes, Biochemical --- Gene Products, Protein --- Gene Proteins --- Protein Gene Products --- Proteins, Gene --- Eucarya --- Eukarya --- Eukaryotes --- Eukaryotas --- Eukaryote --- physiology --- Green Plants --- Green Plant --- Plant, Green --- Plants, Green --- Moricandia --- Cress --- Cruciferae --- Cresses --- Moricandias --- Life sciences. --- Proteomics. --- Plant science. --- Botany. --- Life Sciences. --- Plant Sciences. --- Botanical science --- Phytobiology --- Phytography --- Phytology --- Plant biology --- Plant science --- Natural history --- Molecular biology --- Biosciences --- Sciences, Life --- Science --- Floristic botany
Listing 1 - 4 of 4 |
Sort by
|