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Titlebook: Endosymbiotic Organelle Acquisition; Solutions to the Pro Steven D. Schwartzbach,Peter G. Kroth,Miroslav Obo Book 2024 The Editor(s) (if ap

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Simone Mocellin,Carlo Riccardo Rossiorganelle systems. In this chapter, we attempt to summarize and compare various characters across the currently known plastid-type diversity and discuss the trends in their evolution—conservation, reduction, diversification, or convergence—and the possible driving or constraining mechanisms behind them.
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F. Bastida,T. Hernandez,C. Garcia varying compositions, they may mediate the import of specific proteome subsets into different plastid types. The remodeling of TOC -complexes is mediated by the ubiquitin–proteasome system in a process termed CHLORAD. This chapter will discuss the latest advances in the field:
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https://doi.org/10.1007/978-3-030-23045-6ed to plant plastids required the establishment of further transport systems of nucleus-encoded proteins into the organelles. In this chapter, we are reviewing the targeting signals and targeting mechanisms of proteins into the complex plastids of these algal groups, and discuss the physiological and evolutionary implications.
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Translocation of Proteins into Primary Plastids varying compositions, they may mediate the import of specific proteome subsets into different plastid types. The remodeling of TOC -complexes is mediated by the ubiquitin–proteasome system in a process termed CHLORAD. This chapter will discuss the latest advances in the field:
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The Extent, Role, and Timing of Endosymbiotic Gene Transfer in Plastidsed, there is no consensus on the methodology used to research EGT and HGT, making comparisons between studies difficult. However, some patterns are beginning to emerge and the central role of EGT in plastid establishment is now being shifted toward a shared role between EGT, HGT, and contributions b
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