
Virus-Induced Gene Silencing
Kurzinformation



inkl. MwSt. Versandinformationen
Artikel zZt. nicht lieferbar
Artikel zZt. nicht lieferbar

Beschreibung
Plants are amazing organisms to study, some are important sources for pharmaceuticals, and others can help to elucidate molecular mechanisms required for a plant¿s development and its interactions with the biotic or abiotic environment. Functional genomics is vastly lagging behind the speed of genome sequencing as high-throughput gene function assays are difficult to design, specifically for non-model plants. Bioinformatics tools are useful for gene identification and annotation but are of limited value for predictions concerning gene functions as gene functions are uncovered best by experimental approaches. Virus-Induced-Gene-Silencing (VIGS) is an easy to use, fast, and reliable method to achieve down regulation of target gene expression. Virus-Induced Gene Silencing: Methods and Protocols provides detailed protocols for VIGS experiments in several plant species including model and non-model plants. Also included in this book are recently developed protocols for VIGS-derived microRNA production in the plant or protein over expression, as well as chapters devoted to summarizing the molecular mechanisms of VIGS action and the vector systems developed so far. 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, Virus-Induced Gene Silencing: Methods and Protocols serves as a valuable resource for researchers from diverse fields of plant biology interested in experimental approaches to analyzing gene functions. von Becker, Annette
Produktdetails

So garantieren wir Dir zu jeder Zeit Premiumqualität.
Über den Autor
- paperback
- 608 Seiten
- Erschienen 2016
- Bodley Head
- hardcover
- 373 Seiten
- Erschienen 2017
- Harvard University Press
- paperback
- 276 Seiten
- Erschienen 2024
- Springer
- Taschenbuch
- 178 Seiten
- Erschienen 1997
- Routledge
- paperback
- 338 Seiten
- Erschienen 1984
- Springer Berlin Heidelberg
- Gebunden
- 346 Seiten
- Erschienen 2012
- Academic Press
- hardcover
- 288 Seiten
- Erschienen 1988
- CRC Press Inc
- Gebunden
- 506 Seiten
- Erschienen 2022
- Wiley-VCH
- hardcover
- 574 Seiten
- Erschienen 2011
- Academic Press
- Hardcover
- 352 Seiten
- Erschienen 2000
- Oxford University Press
- paperback
- 732 Seiten
- Erschienen 1983
- John Wiley & Sons Inc
- Kartoniert
- 418 Seiten
- Erschienen 2021
- Macmillan