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Titlebook: Cell Organelles; Reinhold G. Herrmann Book 1992 Springer-Verlag/Wien 1992 Zelle.Zellstruktur.cell

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0175-2073 cell and the steps leading to it are overwhelmingly an endeavour of a joint genetic cooperation between nucleus/cytosol, plastids, and mitochondria. Alter­ ation of the genetic material in anyone of these compartments or exchange of organelles between species can seriously affect harmoniously balanc
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https://doi.org/10.1007/b138573the existence of two modes of plastid inheritance had been found, viz. biparental and uniparental maternal plastid inheritance. Only many decades later, hints were obtained at cases of uniparental paternal plastid inheritance in gymnosperms and possibly in angiosperms.
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Plastid Chromosomes from Vascular Plants—Genesit resides. Since the demonstration of a unique DNA species in chloroplasts (Sager and Ishida, 1963), intensive studies have shown them to maintain their own genetic system which synthesizes some of the proteins and probably all of the RNA molecules present inside these organelles.
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Optimal Quadratic Programming Algorithmsted into chloroplasts, where they are assembled into functional complexes. The sequence of events between translation of the precursor proteins on cytosolic ribosomes and assembly of the functional proteins has been the subject of considerable research in the past decade and will be the focus of this chapter.
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https://doi.org/10.1007/b138711d Neupert, 1989; Lonsdale and Grienenberger, 1992) (Fig. 1). Therefore, several hundred different proteins have to be imported into mitochondria. The transport of precursor proteins into mitochondria comprises a complex series of steps, including targeting, membrane translocation, and assembly of the proteins.
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