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首页> 外文期刊>Molecular Plant >The Ultrastructure of a Chlamydomonas reinhardtii Mutant Strain Lacking Phytoene Synthase Resembles that of a Colorless Alga
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The Ultrastructure of a Chlamydomonas reinhardtii Mutant Strain Lacking Phytoene Synthase Resembles that of a Colorless Alga

机译:缺乏番茄红素合酶的衣藻衣藻突变体菌株的超微结构类似于无色藻类的超微结构。

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摘要

Chlamydomonas reinhardtii strains lacking phytoene synthase, the first enzyme of carotenoid biosynthesis, are white. They lack carotenoid pigments, have very low levels of chlorophyll, and can grow only heterotrophically in the dark. Our electron and fluorescence microscopic studies showed that such a mutant strain (lts1-204) had a proliferated plastid envelope membrane but no stacks of thylakoid membranes within the plastid. It accumulated cytoplasmic compartments that appeared to be autophagous vacuoles filled with membranous material. The lts1 mutants apparently lacked pyrenoid bodies, which normally house ribulose bisphosphate carboxylase–oxygenase (Rubisco), and accumulated many starch granules. Although these mutant strains cannot synthesize the carotenoid and carotenoid-derived pigments present in the phototactic organelle (eyespot), the mutant we examined made a vestigial eyespot that was disorganized and often mislocalized to the posterior end of the cell. The absence of a pyrenoid body, the accumulation of starch, and the disorganization of the eyespot may all result from the absence of thylakoids. The ultrastructure of lts1 mutant strains is similar to but distinct from that of previously described white and yellow mutant strains of C. reinhardtii and is similar to that of naturally colorless algae of the Polytoma group.
机译:缺乏八氢番茄红素合酶(类胡萝卜素生物合成的首个酶)的衣藻衣藻是白色的。它们缺乏类胡萝卜素色素,叶绿素含量极低,并且只能在黑暗中异养生长。我们的电子和荧光显微镜研究表明,这种突变菌株(lts1-204)的质体包膜有增生,但质体中没有类囊体膜的堆叠。它积累了看起来是自噬液泡的胞质区室,其中充满了膜状物质。 lts1突变体显然缺乏类胡萝卜素体,该类体通常容纳核糖双磷酸羧化酶加氧酶(Rubisco),并积累了许多淀粉颗粒。尽管这些突变菌株无法合成存在于光致细胞器(眼点)中的类胡萝卜素和类胡萝卜素色素,但我们研究的突变体却形成了残留的眼点,该眼点杂乱无章,经常错位到细胞的后端。类胡萝卜素体的缺乏,淀粉的积累和眼点的混乱都可能是由于类囊体的缺乏。 lts1突变菌株的超微结构类似于但不同于先前描述的莱茵衣藻的白色和黄色突变菌株的超微结构,并且与Polytoma组的天然无色藻类的超微结构相似。

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