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      <maintitle inherited="0" form="plain">Growth of Cyanophora paradoxa</maintitle>
      <maintitle inherited="1" form="plain">Volume 20</maintitle>
      <maintitle inherited="2" form="plain">Endocytobiosis and Cell Research</maintitle>
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    <participants class="MCRMetaLinkID" heritable="false" notinherit="false">
      <participant inherited="0" xlink:type="locator" xlink:href="jportal_person_00010541" xlink:title="Steiner, Jürgen M." type="author"/>
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      <size inherited="0" form="plain">062-067</size>
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    <keywords class="MCRMetaLangText" heritable="true" notinherit="false">
      <keyword inherited="0" form="plain">Cyanophora paradoxa, cyanelle isolation, protein translocation</keyword>
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      <abstract inherited="0" form="plain">The living fossil Cyanophora paradoxa (Glaucocystophyta) is an obligatorily photoautotrophic biflagellated protist containing cyanelles (muroplasts), peculiar plastids surrounded by a peptidoglycan wall. This special feature likely is the strongest hint for an endosymbiotic origin of plastids from a cyanobacterial invader. Therefore this earliest diverging photosynthetic eukaryote has served as an ideal model system to study essential aspects of plastid evolution such as protein translocation, the carbon-concentrating mechanism (CCM) and plastid division. The well-established cya-nelle in vitro protein import system allows to use them as „honorary cyanobacteria“: assembly processes of supramolecular structures such as phycobilisomes and carboxysomes thus can be studied after import of labeled nucleus-encoded precursor proteins and subsequent fractionation. In this work the growth conditions and the growth behaviour of Cyanophora paradoxa under various conditions as well as the isolation of import-competent cyanelles is described.</abstract>
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      <date inherited="1" type="published">2010</date>
      <date inherited="2" type="published_from">1984</date>
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      <servdate inherited="0" type="createdate">2011-01-10T09:34:36.477Z</servdate>
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