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Titlebook: Agrobacterium: From Biology to Biotechnology; Tzvi Tzfira,Vitaly Citovsky Book 2008 Springer-Verlag New York 2008 Agrobacterium.DNA.Expres

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Translocation of Oncogenic T-DNA and Effector Proteins to Plant Cells,sceptible plant cells. This transfer system is a member of a large family of translocation systems termed the type IV secretion (T4S) systems. The T4S systems are structurally complex machines assembled from a dozen or more membrane proteins often in response to environmental signals. In . and other
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Mechanisms of T-DNA integration,the bacterial cell through the host-cell cytoplasm into the nucleus, must covalently attach itself to the host cell’s double-stranded genomic DNA. To fulfil its destiny, the T-DNA needs to be directed to its point of integration in the host genome, to be stripped of some, if not all, of its bacteria
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The Oncogenes of Agrobacterium Tumefaciens and Agrobacterium Rhizogenes,issue masses (crown galls and hairy roots, respectively) which support the growth of large populations of .. Central to pathogenesis is the horizontal transfer of a suite of oncogenes from the tumor-inducing (Ti) plasmids of . and the root-inducing (Ri) plasmids of . into the plant cell genome. Thes
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Biology of Crown Gall Tumors,velopment. Strong vascularization like in animal and human tumors is the most prominent and important feature of tumor proliferation. Vascular bundles consisting of phloem and xylem are from the onset of tumor initiation functionally connected to the host bundle. At the host/tumor interface the vess
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Agrobacterium-Mediated Transformation of Non-Plant Organisms,s are transformable by . under laboratory conditions. It has been shown that .-mediated transformation is possible for at least 80 different non-plant species. Most of these organisms are fungi including yeasts, but also mammalian cells and algae can be transformed. .-mediated transformation is not
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