Image for Chloroplast Research in Arabidopsis: Methods and Protocols, Volume II

Chloroplast Research in Arabidopsis: Methods and Protocols, Volume II - 775 (2011st edition)

Jarvis, R. Paul(Edited by)
Part of the Methods in Molecular Biology series
See all formats and editions

Chloroplasts are essential for the survival and flourishing of life on Earth. Over the years, chloroplast biology has been studied in a variety of different organisms, leading to the significant disadvantage that findings which were made by using different experimental systems or species were not always directly cross-comparable.  The relatively recent adoption of Arabidopsis thaliana as the model organism of choice for plant science research, across the globe, has led to its emergence as a pre-eminent system for research on chloroplasts and other types of plastid.  In Chloroplast Research in Arabidopsis: Methods and Protocols, expert researchers bring together some of the most important, modern techniques and approaches for chloroplast research, with the unifying theme of Arabidopsis as the model system. Volume II explores topics such as multiprotein complexes, protein-protein interactions, omics and large-scale analyses, proteomics and suborganellar fractionation, as well as photosynthesis and biochemical analysis.  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 convenient, Chloroplast Research in Arabidopsis: Methods and Protocols serves as an ideal reference for all researchers with a general interest in chloroplasts, plastids, or related processes.

Read More
Special order line: only available to educational & business accounts. Sign In
£89.50
Product Details
Humana Press
1617792373 / 9781617792373
eBook (Adobe Pdf, EPUB)
572.2
23/08/2011
United States
432 pages
Copy: 10%; print: 10%