Jatropha, Challenges for a New Energy Crop (PDF)
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Jatropha, Challenges for a New Energy Crop -Volume 2 aims to report on the state of the art of scientific investigations that were made during the past ten years on the new crop Jatropha curcas. The progresses obtained on the knowledge of this abstemious, semi-wild species are already impressive and were mainly achieved in just a decade (2001-2011). This knowledge extends from basic Jatropha physiology and biological reproduction to the basic agronomic practices and systems for its productive management, but also the complete set of biotechnological tools, such as in vitro culture, genetic transformation, genome sequencing, genetic maps, and marker-assisted selection that are necessary for its selective breeding. These scientific and technological achievements pave the way for the future technological management and domestication of Jatropha as an industrial oilseed crop able to contribute to the feeding of the transport system.
Mulpuri Sujatha has been graduated in Plant Sciences by the University of Hyderabad (UoH), India. She has a PhD in Genetics from Osmania University, Hyderabad (OU) and worked on intergeneric and interspecific affinities between Ricinus and Jatropha. She made significant contributions for the genetic improvement of oilseed crops through genetics, tissue culture and biotechnological tools. The important achievements include development of male sterility systems in safflower, sunflower and niger; reliable and efficient tissue culture and transformation protocols for sunflower, castor, niger, safflower, and Jatropha. The genetic transformation protocols developed are being used for development of insect resistant transgenics through deployment of suitable Cry genes in castor, development of transgenic male sterility and fertility restoration system in safflower and development of transgenics for resistance to necrosis disease in sunflower. Her experience in molecular markers resulted in mapping of downy mildew resistance gene (Pl13) in sunflower besides development of appropriate molecular markers for distinguishing the toxic and non-toxic accessions of Jatropha curcas.
Nicolas Carels has been graduate in Agronomy in Belgium and did a PhD in plant pathology (FUSAGx, Gembloux) prior to work as a scientist on the elaboration of the first genetic map of sugarbeet at the end of the 1980's (ICIseed-SES, Belgium). He then moved to Paris (IJM, CNRS, France) where he did a PhD on the genome organization in plants. He continued his work on genomics in Italy (SZN, Naples) and Spain (INTA-CAB, Madrid, Torrejon de Ardoz) prior to move to Brazil (Bahia, Ilhéus, UESC) where he contributed to the application of bioinformatics and genomics to the improvement of Cacao and Rubber Tree for resistance to fungal diseases. He took Jatropha at its beginning when it was declared a strategic crop for the Brazilian economy by President Lula. His investigations covered the measure of the genome size by flow cytometry and the application of reverse genetics to detect QTLs for oil production with the purpose of breeding Jatropha for this trait. He also published an extensive review (ABR) on Jatropha and more recently an overview on the bioenergies (InTech) with special concern for climate change mitigation and biodiversity preservation. He is now a Federal Officer of Fiocruz (Rio de Janeiro, Brazil) and is interested by the exploration of genomics, bioinformatics and natural products for the human health benefit.
- 2013, 614 Seiten, Englisch
- Herausgegeben: Bir Bahadur, Mulpuri Sujatha, Nicolas Carels
- Verlag: Springer-Verlag GmbH
- ISBN-10: 1461449154
- ISBN-13: 9781461449157
- Erscheinungsdatum: 14.12.2012
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- Dateiformat: PDF
- Größe: 16 MB
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