By Zamir Punja

ISBN-10: 1560229608

ISBN-13: 9781560229605

ISBN-10: 1560229616

ISBN-13: 9781560229612

Up to date, actual info on contemporary advancements in crop safety!

Fungal sickness Resistance in vegetation: Biochemistry, Molecular Biology, and Genetic Engineering provides the newest advancements in crop safety from fungal an infection. top specialists in botany, plant breeding, and plant pathology give a contribution their wisdom to assist lessen and probably hinder new outbreaks of devastating crop epidemics brought on by fungi. With interesting new advances in molecular biology, biochemistry, and genetic engineering, this informative ebook may also help researchers, professors, and scholars additional their realizing of plant defenses.

Fungal illness Resistance in vegetation is your advisor to realizing a few of the obstacles that crops have built via evolution and edition to guard themselves from invading fungal pathogens. Defenses comprise actual boundaries akin to thick mobile partitions and chemical substances expressed by way of the plant whilst attacked. nonetheless different vegetation have received proteins that play a tremendous function in security. This publication discusses those evolutionary characteristics and introduces new clinical innovations to engineer resistance in crops that experience no integrated defense.

Fungal illness Resistance in vegetation explores:

cellular expression of resistance to fungal pathogens the hypersensitive reaction and its function in disorder resistance caused plant resistance to fungal pathogens—mechanisms and sensible purposes pathogenesis-related proteins and their roles in resistance to fungal pathogens sign transduction—plant networks, supply, and reaction to fungal an infection fungus genes as they relate to illness susceptibility and resistance

Without extreme examine and clinical examine, catastrophic harvest disasters as a result of fungal ailments may cause nutrients shortages, human and animal poisonings, and financial loss through the global. Augmented with tables, figures, and vast references, this cutting-edge resource of study fabric is efficacious for scientists and researchers in universities, inner most corporations, govt associations, and agricultural agencies attracted to plant defenses and destiny crop renovation.

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Extra info for Fungal Disease Resistance in Plants: Biochemistry, Molecular Biology, and Genetic Engineering (Crop Science)

Sample text

And Lamb, C. (1998). A plant homolog of the neutrophil NADPH oxidase gp91phox subunit gene encodes a plasma membrane protein with Ca2+ binding motifs. The Plant Cell 10: 255-266. S. and Lemaitre, B. (2000). Genes that fight infection—What the Drosophila genome says about animal immunity. Trends in Genetics 16: 442-449. J. (2000). Identification of rice blast fungal elicitor-responsive genes by differential display analysis. Molecular PlantMicrobe Interactions 13: 470-474. , et al. (2002). Mlo, a modulator of plant defense and cell death, is a novel calmodulin-binding protein—Isolation and characterization of a rice Mlo homologue.

1994). Specific, high affinity binding of chitin fragments to tomato cells and membranes. Journal of Biological Chemistry 269: 17931-17938. A. (2000). The C-terminal dilysine motif confers endoplasmic reticulum localisation to type I membrane proteins in plants. The Plant Cell 12: 1179-1201. G. (1999). K+ channels of Cf-9 transgenic tobacco cells as targets for Cladosporium fulvum Avr9 elicitor-dependent signal transduction. The Plant Journal 19: 453462. , and Scheel, D. (2000). Receptor-mediated increase in cytoplasmic free calcium required for activation of pathogen defense in parsley.

Zhang, S. and Liu, Y. (2001). Activation of salicylic acid-induced protein kinase, a mitogen-activated protein kinase, induces multiple defense responses in tobacco. The Plant Cell 13: 1877-1889. , and Scheel, D. (1997). Receptor-mediated activation of a plant Ca2+-permeable ion channel involved in pathogen defense. Proceedings of the National Academy of Sciences, USA 94: 2751-2755. Zinecker, H. (2001). , die für putative NADPH-Oxidasen kodieren. PhD thesis, Martin-LutherUniversität Halle Wittenberg, Halle (Saale).

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Fungal Disease Resistance in Plants: Biochemistry, Molecular Biology, and Genetic Engineering (Crop Science) by Zamir Punja

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