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Titlebook: Mechanisms of Resistance to Plant Diseases; A. J. Slusarenko,R. S. S. Fraser (Honorary Visitin Book 2000 Kluwer Academic Publishers 2000 F

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書目名稱Mechanisms of Resistance to Plant Diseases
編輯A. J. Slusarenko,R. S. S. Fraser (Honorary Visitin
視頻videohttp://file.papertrans.cn/629/628761/628761.mp4
圖書封面Titlebook: Mechanisms of Resistance to Plant Diseases;  A. J. Slusarenko,R. S. S. Fraser (Honorary Visitin Book 2000 Kluwer Academic Publishers 2000 F
描述Plant-pathogen interactions is a rapidly developing areaamong the plant sciences. Molecular genetics has provided the tools toanalyse and manipulate mechanisms of pathogenicity and resistanceresponses and has facilitated their study from the population to themolecular level. The book brings together the views of experts in thefield and provides an overview of the genetic basis of interactionsbetween fungi, bacteria, viruses and their host plants, the triggeringof plant defences and the complex array of plant responses to stoppathogen invasion, as well as possible applications for improved plantprotection. .The chapters are organised and written to make an advanced textbookrather than simply a collection of reviews or something resemblingconference proceedings. Thus, authors have largely concentrated on adidactic approach and the book should remain useable for several yearsin spite of the rapid progress in research. .The text is aimed at advanced students in the field of plant pathologyas well as researchers requiring an integrated picture of plantresistance to pathogens.
出版日期Book 2000
關鍵詞Fungi; genetics; molecular genetics; plant; plant pathology; plant science; plants; protein; tobacco; virus
版次1
doihttps://doi.org/10.1007/978-94-011-3937-3
isbn_softcover978-1-4020-0399-8
isbn_ebook978-94-011-3937-3
copyrightKluwer Academic Publishers 2000
The information of publication is updating

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The Barley/, (Syn. , Interactionr studies have suggested that at least callose and phenylpropanoids are directly involved in arresting the growth of the penetration peg. In compatible interactions, the haustorial nutrient uptake is believed to be driven by fungal plasma membrane H+-ATPase activity. This is based on the apparent la
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Genetics of Disease Resistancethogen races. Quantitative resistance shows no obvious genetic interaction with the pathogen and slows down the disease development by increasing latency period and other parameters related to the epidemic. Resistance breeding in crop plants depends on both types of resistance. Monogenic resistances
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Resistance in Populations comes into play. Compensation and tolerance are described as mechanisms operating after resistance and relevant to the phenomena of selection and fitness, which are treated subsequently..Some thoughts about management of resistance in crops are developed by considering all the mechanisms involved i
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Resistance Genes and the Perception and transduction of Elicitor Signals in Host-Pathogen Interactioerception systems for so-called general elicitors, i.e. substances characteristic of whole groups of micro-organisms, such as microbial glycopeptides, cell wall fragments, and sterols. The substances recognized occur not only in pathogens, but also in saprophytes and even in symbiotic microorganisms
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