By Gurdev S. Khush, K.K. Jena (auth.), Guo-Liang Wang, Barbara Valent (eds.)
Rice blast, brought on by the fungal pathogen Magnaporthe grisea, is without doubt one of the such a lot harmful rice ailments all over the world and destroys sufficient rice to feed greater than 60 million humans every year. because of excessive variability of the fungal inhabitants within the box, common lack of resistance of newly-released rice cultivars is a massive restraint in sustainable rice creation. within the previous few years, major development has been made in figuring out the safeguard mechanism of rice and pathogenicity of the fungus. The rice blast procedure has develop into a version pathosystem for knowing the molecular foundation of plant-fungal interactions end result of the availability of either genomes of rice and M. grisea and a wide choice of genetic assets. This publication offers a whole assessment of the new development and achievements on genetic, genomic and affliction keep watch over of the sickness. many of the chapters have been offered on the 4th foreign Rice Blast convention hung on October 9-14, 2007 in Changsha, China. This ebook is a invaluable reference not just for plant pathologists and breeders engaged on rice blast but additionally for these engaged on different pathysystems in crop plants.
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Extra resources for Advances in genetics, genomics and control of rice blast disease
Kluwer Academic Publishers. Dordrecht/Boston/London Jeon, J. , Yi, G. , Wang, G. , Ronald, P. C. (2003) Genetic and physical mapping of Pi5(t), a locus associated with broad-spectrum resistance to rice blast. Mol Genet Genomics 269, 280–289 Jeung, J. , Kim, B. , Cho, Y. , Han, S. , Moon, H. , Lee, Y. , Jena, K. K. (2007). A novel gene, Pi40(t), linked to the DNA markers derived from NBS-LRR motif confers broadspectrum of blast resistance in rice. Theor Appl Genet 115, 1163–1177 Kinoshita, T. (1986).
La, T. , Zenbayashi, K. , & Miyasaka, A. (2006). Pi35(t), a new gene conferring partial resistance to leaf blast in the rice cultivar Hokkai 188. , & Wang, L. (2003). Fine mapping of blast resistance gene Pi15, linked to Pii on chromosome 9. L. (2006). The broadspectrum blast resistance gene Pi9 encodes a nucleotide-binding site-leucine-rich repeat protein and is a member of a multigene family in rice. Genetics 172, 1901–1914 Robinson, R. A. (1980) New concepts in breeding for disease resistance.
2006), Pid2 (Chen et al. 2006) and Pi36 (Liu et al. 2007). All the cloned resistance genes belong to the NBS-LRR class of R genes except Pid2 which encodes a receptor-like kinase protein with a predicted extra-cellular domain of bulb type manose specific binding lectin (B-lectin) and an intracellular serine threonine kinase domain. The several R genes for the blast resistance, the genes located at Piz, Pik, and Pita loci on chromosome 6, 11, and 12 respectively are clustered with a similar allelic expression for resistance (Monosi et al.
Advances in genetics, genomics and control of rice blast disease by Gurdev S. Khush, K.K. Jena (auth.), Guo-Liang Wang, Barbara Valent (eds.)