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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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1572-0233 ield.Comprehensive coverage of all groups of algae and land The past decade has witnessed an explosion of our knowledge on the structure, coding capacity and evolution of the genomes of the two DNA-containing cell organelles in plants: chloroplasts (plastids) and mitochondria. Comparative genomics a
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Seed Plant Mitochondrial Genomes: Complexity Evolving,endent studies addressing the molecular evolution of these features and our insights from the growing list of completed plant chondrome sequences into a modern phylogenetic perspective on land plants.
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Book 2012n endosymbioses, plastid and mitochondrial mutants, gene expression profiling and methods for organelle transformation. The book is designed for students and researchers in plant molecular biology, taxonomy, biotechnology and evolutionary biology.
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https://doi.org/10.1007/978-1-349-07845-5endosymbiotic origins of mitochondria and plastids, focusing on advances coming from the latest comparative genomic and proteomic investigations. In the case of plastids, the recently evolved photosynthetic ‘organelles’ of the testate amoeba . provide a possible window on the ancient origin of canon
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https://doi.org/10.1057/9780230500181plastid genomes are fairly homogenous, coding for about 100–250 genes, except in non-photosynthetic algae that rapidly lose genes involved in photosynthesis. The most gene-rich and cyanobacteria-like plastid genomes are in red algae, followed by glaucophyte and green algae. Genomes in secondary or h
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Dictionary of Minor Planet Namesspecies 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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