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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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Dialogmarketing Perspektiven 2015/2016e tractability of . facilitate its use in translational biology. The. genome project has greatly assisted the mapping, sequencing and annotation of parasitic nematode genomes. Furthermore, the development of RNAi in . has not only aided functional analysis of conserved proteins in parasitic species
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https://doi.org/10.1007/978-3-658-16835-3ided 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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Deutscher Dialogmarketing Verband e.V.fore 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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https://doi.org/10.1007/978-3-658-40753-7fe cycle requires the maintenance of the biotrophic interaction for several weeks and the induction of a permanent feeding site. These essential processes require fine tuning of plant cell responses. About a hundred candidate effectors have been isolated from nematodes to date that have roles in the
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Dialogmarketing Perspektiven 2015/2016but has also provided a platform for the development of RNAi in these target species. Application of RNAi in plant-parasitic nematodes has enhanced gene functional analysis as well as highlighted the potential for its development as a transgenic control.
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