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Titlebook: Genomics of Plant-Associated Bacteria; Dennis C. Gross,Ann Lichens-Park,Chittaranjan Kole Book 2014 Springer-Verlag Berlin Heidelberg (out

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楼主: antithetic
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Book 2014focuses on the genomics of particular bacteria: the first described plant pathogen, .Erwinia amylovora.; phytoplasmas lacking cell walls; fastidious, phloem-restricted liberibacters; .Pseudomonas syringae., which is a genetically tractable model system; .Xanthomonas citri., which causes a disease th
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d practical aspects of fighting against crop loss.Of particu.This book describes how genomics has revolutionized our scientific understanding of agriculturally important plant-associated bacteria. Each chapter focuses on the genomics of particular bacteria: the first described plant pathogen, .Erwin
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Genomics of , and Related , Species Associated with Pome Fruit Trees,, economic losses, and spread of the fire blight disease, the characteristics of the pathogen as well as its key features associated with virulence factors and regulatory systems, including type III secretion systems and the exopolysaccharide amylovoran. Future perspectives and research directions f
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Genomics of Plant-Associated Bacteria: The Soft Rot ,,ers to colonize plants. Gene expression experiments also show that even though important regulatory proteins are conserved among the SRE, these proteins may not play the same regulatory roles in different SRE species. For example, only some SRE rely upon acyl-homoserine lactone (AHL)-based quorum se
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, Genomics: From Comparative Genomics of Individual Crop Pathogen Strains Toward Population Genomiclved in the population dynamics of . and its evolutionary history. Bulk sequencing of . strains closely related to pathovar . from snowpack and surface water has started to reveal how the genomic diversity of . in non-agricultural environments relates to that of the epidemic population on crops. Thi
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Genetics and Functional Genomics of the , Group,biocontrol. While the genetics underlying some biocontrol processes is well established, many questions remain regarding ecology, gene expression, and metabolism of these organisms in natural environments. The advent of genomic approaches has allowed interrogation of sequence and expression data, wh
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Genomics of , and Related Species,1 causing citrus bacterial spot, has also been sequenced. Multilocus sequence phylogenetic analysis of XccA and other xanthomonads indicates that citrus canker pathogens XccA, XccA., XauB, and XauC form a closely related group. In this review, the following topics were included: an introduction abou
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