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Plant organogenesis : methods and protocols / edited by Ive De Smet.

Contributor(s): De Smet, IveMaterial type: TextTextSeries: Methods in molecular biology (Clifton, N.J.): v. 959.; Springer protocols (Series): Publisher: New York : Humana Press / Springer, 2013Description: xvi, 356 pages : illustrationsISBN: 9781627032209; 1627032207; 9781627032216; 1627032215Subject(s): Plant morphogenesis -- Laboratory manuals | Plant cell development -- Laboratory manuals | Plant cell differentiation -- Laboratory manuals | Arabidopsis thaliana -- Growth -- Laboratory manuals | Plant cell development | Plant cell differentiation | Plant morphogenesis | Plant Development -- physiology | Arabidopsis -- growth & developmentGenre/Form: Laboratory manuals. | Laboratory Manual.DDC classification: 581.8761 LOC classification: QK665 | .P56 2013Online resources: Click here to access online
Contents:
The tomato leaf as a model system for organogenesis -- Usefulness of Physcomitrella patens for studying plant organogenesis -- The dicot root as a model system for studying organogenesis -- Genetic control of root organogenesis in cereals -- Gene expression analysis of aquatic angiosperms podostemaceae to gain insight into the evolution of their enigmatic morphology -- Brown algae as a model for plant organogenesis -- Microscopic analysis of ovule development in Arabidopsis thaliana -- Imaging of phenotypes, gene expression, and protein localization during embryonic root formation in Arabidopsis -- Inducible system for lateral roots in Arabidopsis thaliana and maize -- Adventitious root induction in Arabidopsis thaliana as a model for in vitro root organogenesis -- High-throughput, noninvasive imaging of root systems -- Small-molecule screens to study lateral root development -- Cell lineage analyses in living tissues -- Protein immunolocalization in maize tissues -- Auxin immunolocalization in plant tissues -- Gene expression analysis of shoot apical meristem cell types -- Kinematic analysis of cell division in leaves of mono- and dicotyledonous species: A basis for understanding growth and developing refined molecular sampling strategies -- Regeneration in arabidopsis tissue culture -- Isolation and analysis of mRNAs from specific cell types of plants by ribosome immunopurification -- Analyzing small and long RNAs in plant development using non-radioactive in situ hybridization -- Analyzing protein distribution in plant tissues using "Whole-mount" Immunolocalization -- Culture methods and mutant generation in the filamentous brown algae Ectocarpus siliculosus -- Building simulation models of developing plant organs using VirtualLeaf.
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581.8761 DE (Browse shelf) Not for loan 145360

Includes bibliographical references and index.

The tomato leaf as a model system for organogenesis -- Usefulness of Physcomitrella patens for studying plant organogenesis -- The dicot root as a model system for studying organogenesis -- Genetic control of root organogenesis in cereals -- Gene expression analysis of aquatic angiosperms podostemaceae to gain insight into the evolution of their enigmatic morphology -- Brown algae as a model for plant organogenesis -- Microscopic analysis of ovule development in Arabidopsis thaliana -- Imaging of phenotypes, gene expression, and protein localization during embryonic root formation in Arabidopsis -- Inducible system for lateral roots in Arabidopsis thaliana and maize -- Adventitious root induction in Arabidopsis thaliana as a model for in vitro root organogenesis -- High-throughput, noninvasive imaging of root systems -- Small-molecule screens to study lateral root development -- Cell lineage analyses in living tissues -- Protein immunolocalization in maize tissues -- Auxin immunolocalization in plant tissues -- Gene expression analysis of shoot apical meristem cell types -- Kinematic analysis of cell division in leaves of mono- and dicotyledonous species: A basis for understanding growth and developing refined molecular sampling strategies -- Regeneration in arabidopsis tissue culture -- Isolation and analysis of mRNAs from specific cell types of plants by ribosome immunopurification -- Analyzing small and long RNAs in plant development using non-radioactive in situ hybridization -- Analyzing protein distribution in plant tissues using "Whole-mount" Immunolocalization -- Culture methods and mutant generation in the filamentous brown algae Ectocarpus siliculosus -- Building simulation models of developing plant organs using VirtualLeaf.

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