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Featuring current resources used to discover new legume family
genes and to understand genes and their interactions, Legume
Genomics: Methods and Protocols provides techniques from expert
researchers to study these plants that are so vitally important for
food, feed, human nutrition, bioenergy, and industrial purposes.
This detailed volume covers genome characterization and analysis,
transcriptome analysis and miRNA identification/analysis, forward
and reverse genetics, molecular markers, as well as transformation
strategies used to investigate gene function and many other topics.
Written in the highly 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 laboratory protocols, and tips
on troubleshooting and avoiding known pitfalls. Authoritative and
useful, Legume Genomics: Methods and Protocols aims to serve plant
molecular biologists, molecular breeders, plant physiologists and
biochemists, developmental biologists, and those interested in
plant-microbe interactions.
Molecular Cell Biology of the Growth and Differentiation of Plant
Cells encompasses cell division, cell enlargement and
differentiation; which is the cellular basis of plant growth and
development. Understanding these developmental processes is
fundamental for improving plant growth and the production of
special plant products, as well as contributing to biological
understanding. The dynamics of cells and cellular organelles are
considered in the context of growth and differentiation, made
possible particularly by advances in molecular genetics and the
visualization of organelles using molecular probes. There is now a
much clearer understanding of these basic plant processes of cell
division, cell enlargement and differentiation. Each chapter
provides a current and conceptual view in the context of the cell
cycle (6 chapters), cell enlargement (5 chapters) or cell
differentiation (9 chapters). The book provides state of the art
knowledge (and open questions) set out in a framework that provides
a long term reference point. The book is targeted at plant cell
biologists, molecular biologists, plant physiologists and
biochemists, developmental biologists and those interested in plant
growth and development. The book is suitable for those already in
the field, plant scientists entering the field and graduate
students.
Featuring current resources used to discover new legume family
genes and to understand genes and their interactions, Legume
Genomics: Methods and Protocols provides techniques from expert
researchers to study these plants that are so vitally important for
food, feed, human nutrition, bioenergy, and industrial purposes.
This detailed volume covers genome characterization and analysis,
transcriptome analysis and miRNA identification/analysis, forward
and reverse genetics, molecular markers, as well as transformation
strategies used to investigate gene function and many other topics.
Written in the highly 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 laboratory protocols, and tips
on troubleshooting and avoiding known pitfalls. Authoritative and
useful, Legume Genomics: Methods and Protocols aims to serve plant
molecular biologists, molecular breeders, plant physiologists and
biochemists, developmental biologists, and those interested in
plant-microbe interactions.
Molecular Cell Biology of the Growth and Differentiation of Plant
Cells encompasses cell division, cell enlargement and
differentiation; which is the cellular basis of plant growth and
development. Understanding these developmental processes is
fundamental for improving plant growth and the production of
special plant products, as well as contributing to biological
understanding. The dynamics of cells and cellular organelles are
considered in the context of growth and differentiation, made
possible particularly by advances in molecular genetics and the
visualization of organelles using molecular probes. There is now a
much clearer understanding of these basic plant processes of cell
division, cell enlargement and differentiation. Each chapter
provides a current and conceptual view in the context of the cell
cycle (6 chapters), cell enlargement (5 chapters) or cell
differentiation (9 chapters). The book provides state of the art
knowledge (and open questions) set out in a framework that provides
a long term reference point. The book is targeted at plant cell
biologists, molecular biologists, plant physiologists and
biochemists, developmental biologists and those interested in plant
growth and development. The book is suitable for those already in
the field, plant scientists entering the field and graduate
students.
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