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Titlebook: Genomics and Molecular Genetics of Plant-Nematode Interactions; John Jones,Godelieve Gheysen,Carmen Fenoll Book 2011 Springer Science + Bu

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Genome Analysis of Plant Parasitic Nematodesive analysis of these two RKN genomes reveals striking differences in their organizations and sheds light on the mechanisms and evolution of parasitism. The . genome with 54 Mbp and 14,454 genes represents the smallest metazoan genome characterized so far. By contrast, the organization of the . geno
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Transcriptomic and Proteomic Analysis of the Plant Response to Nematode Infection. The development of unique and highly specialized feeding cells within host roots is an important part of the infection process leading to a successful parasitic association. Yet, we still have a limited understanding of the exact mechanisms contributing to their differentiation. However, in the la
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Parallels Between Plant and Animal Parasitic Nematodesided for unrivalled success amongst the metazoa, with nematodes dominating biomass statistics. Their structural simplicity means that most nematodes, free-living or parasitic, have much in common with parallels in almost every facet of their biology. One major difference between the parasitic nemato
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Degradation of the Plant Cell Wall by Nematodes wall or to promote nematode migration within plant tissues was confirmed in 1998 with the report of the first genes encoding endogenous endo-1,4-β-glucanases isolated from animals, the phytoparasitic cyst nematodes. Expressed gene analyses and recent genome sequencing efforts have since identified
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Suppression of Plant Defences by Nematodesfore have to be kept alive for a period of up to six weeks. However, plants have well developed systems for detection of biotrophic pathogens and destruction of the pathogen or the plant tissues on which they depend. The mechanisms used by plant nematodes to protect themselves from direct attack by
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