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The Heterotrophic Dinoflagellate Crypthecodinium cohnii Defines a Model Genetic System To Investigate Cytoplasmic Starch Synthesis

机译:异养的鞭毛藻Crypthecodinium cohnii定义了研究细胞质淀粉合成的模型遗传系统

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The nature of the cytoplasmic pathway of starch biosynthesis was investigated in the model heterotrophic dinoflagellate Crypthecodinium cohnii. The storage polysaccharide granules were shown to be composed of both amylose and amylopectin fractions with a chain length distribution and crystalline organization very similar to those of green algae and land plant starch. Preliminary characterization of the starch pathway demonstrated that C. cohnii contains multiple forms of soluble starch synthases and one major 110-kDa granule-bound starch synthase. All purified enzymes displayed a marked substrate preference for UDP-glucose. At variance with most other microorganisms, the accumulation of starch in the dinoflagellate occurs during early and mid-log phase, with little or no synthesis witnessed when approaching stationary phase. In order to establish a genetic system allowing the study of cytoplasmic starch metabolism in eukaryotes, we describe the isolation of marker mutations and the successful selection of random recombinant populations after homothallic crosses.
机译:在异养二鞭毛藻 Crypthecodinium cohnii 模型中研究了淀粉生物合成的细胞质途径的性质。储藏的多糖颗粒由直链淀粉和支链淀粉组成,其链长分布和晶体结构与绿藻和陆地植物淀粉非常相似。淀粉途径的初步表征证明 C。 cohnii 包含多种形式的可溶性淀粉合酶和一种主要的110 kDa颗粒结合淀粉合酶。所有纯化的酶均显示出对UDP葡萄糖的显着底物偏爱。与大多数其他微生物不同,淀粉在鞭毛藻中的积累发生在对数生长期的早期和中期,接近固定期时几乎没有或没有合成。为了建立允许研究真核生物中细胞质淀粉代谢的遗传系统,我们描述了标记突变的分离以及在同型杂交后成功选择随机重组种群的方法。

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