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Titlebook: Genomics of Chloroplasts and Mitochondria; Ralph Bock,Volker Knoop Book 2012 Springer Science+Business Media B.V. 2012 chloroplast.genome

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Horizontal Gene Transfer in Eukaryotes: Fungi-to-Plant and Plant-to-Plant Transfers of Organellar Dspecies of phylogenetically and geographically widely separated ferns, gymnosperms, and angiosperms, with seven cases involving parasitic plants. Only one nuclear HGT has come to light, and extremely few fungi-to-plant transfers. Plant mitochondrial genomes, especially in tracheophytes, are prone to
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,Land Plant RNA Editing or: Don’t Be Fooled by Plant Organellar DNA Sequences,e with, “It seems likely….” Because here’s the rub: Organellar genetic information cannot be read the easy way, by identifying open reading frames based on start and stop codons and predicting the protein sequences based on codons. Instead, it is far better to read the RNA itself or, better yet in e
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Expression Profiling of Organellar Genes,e interspecific and intraspecific level or in artificial CMS lines. The role of various plastid genes in global genome expression and chloroplast development has been highlighted in knock-out lines produced by plastid transformation. Significant differences in the transcriptome, editome and translat
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Organellar Proteomics: Close Insights into the Spatial Breakdown and Functional Dynamics of Plant Powever, the flow of information (from genomics to proteomics) is not a one way alley. Proteogenomic mapping contributes to the process of gene annotation by the discovery of proteins which do not fit predicted gene sequences, but instead require re-annotation of predicted open reading frames (ORFs).
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Plastid Transformation in Flowering Plants,on removal of marker genes. The model species for plastid genetic manipulation is ., in which most protocols have been tested. Plastid transformation is also available in several solanaceous crops (tomato, potato, eggplant) and ornamental species (petunia, .). Significant progress has been made with
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