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Titlebook: Cell and Molecular Biology of Plastids; Ralph Bock Book 20071st edition Springer-Verlag Berlin Heidelberg 2007 Biogen.Chloroplast.Chloropl

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楼主: Gullet
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https://doi.org/10.1007/978-3-540-75376-6Biogen; Chloroplast; Chloroplasts; DNA; Expression; Proteomics; biotechnology; gene expression; molecular bi
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https://doi.org/10.1057/9780230236806ant cells. In addition to the photosynthesisof leaf mesophyll cell chloroplasts, plastids contribute to storage and pigmentation capacities inmany different specialised cells as well as contributing essential metabolic pathways within the cellin general. Plastids also have the capacity to interconve
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Pressures, Challenges and Changes,copy numbers, with up to thousands of genomecopies being present in a single cell. Although mapping as a single circular molecule,the plastid DNA shows great structural dynamics. Multiple copies of the plastome are packed togetherin large nucleoprotein bodies, referred to as plastid nucleoids. The p
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https://doi.org/10.1057/9780230240810ays. We will review the current understandingof the DNA sequences, proteins, and mechanisms involved in plastid genome maintenance. This includesanalysis of the topological forms of plastid DNA, models of plastid DNA replication, homologous recombination,replication slippage, DNA repair, and plastid
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Realising the Sacred: Chinua Achebe’s in transcription. The chromosomes of plastids fromnearly all plants contain genes for core subunits of PEP, a bacterial-type RNA polymerase which mightbe responsible for transcription of all plastid genes in algae but shares responsibility for transcriptionwith one or more nuclear encoded transcript
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The Stalled Sublime: J. M. Coetzee’s The picture which emerges isthat maturation and degradation share many prokaryotic features, vestiges of the chloroplast endosymbiontancestor. The major exoribonucleases are well-defined, being polynucleotide phosphorylase and RNaseII/R. The endonucleases include CSP41, with largely informatic evide
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On the Sacred in African Literatureraits are RNA splicing and RNA editing. Thenumbers and distribution of introns and editing sites in different taxa suggest that editing and splicinghave taken different evolutionary pathways in different chloroplast lineages. Both processes aredependent on nuclear-encoded factors and, intriguingly,
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