ENGLISH

Agrobacterium Protocols

Book information

Publisher
Humana Press
Year
2006
ISBN
9781588295361, 1588295362, 1597451304
DOI
10.1385/1597451304
LCC
QR82.R45 A37 2006
Language
english
Format
PDF
Filesize
8 MB (8771608 bytes)
Series
Methods in Molecular Biology 343
Volume
Vol. 1
Edition
2nd
Pages
484\507
Time added
2010-08-30 15:18:36

Description

Rapid changes and significant progress have been made in the use of Agrobacterium to genetically transform plants for both basic research purposes and agricultural development. In Agrobacterium Protocols, Second Edition, Volumes 1 and 2, a team of leading experts and veteran researchers describe in detail their best techniques for delivering DNA to plant cells and permanently altering their genomes. Volume 1 details the most updated techniques available for twenty-six plant species drawn from cereal crops, industrial plants, legume plants, and vegetable plants, and presents various methods for introducing DNA into three major model plant species, Arabidopsis thaliana, Medicago truncatula, and Nicotiana. The authors also outline the basic methods in Agrobacterium manipulation and strategies for vector construction, major components of plant transformation that are often neglected by many plant biologists. Volume 2 contains another thirty-three proven techniques for root plants, turf grasses, woody species, tropic plants, nuts and fruits, ornamental plants, and medicinal plants. Additional chapters provide methods for introducing DNA into non-plant species, such as bacteria, fungi, algae, and mammalian cells. The protocols follow the successful Methods in Molecular Biology™ series format, each offering step-by-step laboratory instructions, an introduction outlining the principles behind the technique, lists of the necessary equipment and reagents, and tips on troubleshooting and avoiding known pitfalls. Comprehensive and highly practical, Agrobacterium Protocols, Second Edition, Volumes 1 and 2 offers plant biotechnologists a gold standard collection of Agrobacterium-mediated transformation techniques for state-of-the-art plant genetic engineering, functional genomic analysis, and crop improvement, and for inspiration in developing new methods for other related and non-related plants.

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