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衣藻的色素突变体,其质体变形,叶绿体核酸水平升高。

Pigment mutants of Chlamydomonas with deformed plastids and increased levels of chloroplast nucleic acids.

作者信息

Wilson R E, Swift H, Chiang K S

出版信息

J Cell Sci. 1980 Apr;42:127--52. doi: 10.1242/jcs.42.1.127.

Abstract

The chloroplast ultrastructure of two Chlamydomonas reinhardtii pigment variant mutants, U3N and U3A, is strikingly different from that of the wild type. The mutant chloroplast has greatly lowered levels of chlorophyll a and b, and lacks the usual ordered thylakoid membrane structure. The amount of chloroplast ribosomes is increased, but the pyrenoid and surrounding starch grains appear to be unaltered. Our biochemical analyses have shown that, while the properties of chloroplast DNA, ribosomal RNA, and ribosomes in these mutants appeared to be normal, their relative amounts per cell increased markedly when compared to the wild type. In U3N these increases were approximately 60% for chloroplast DNA and 80% for chloroplast ribosomes. However, the ratio of chloroplast rDNA genes to total chloroplast DNA remained unchanged as shown by DNA-rRNA hybrdization. We propose that (1) The enhanced level of chloroplast ribosomes in these mutants is a direct consequence of the elevated amount of chloroplast DNA. Both of these increases may, in turn, arise from defective mechanism for their control. (2) These mutants grow successfully in the absence of functional photosynthesis, provided an external carbon source is available to them, but functional plastid DNA, ribosomes and protein synthesis may still be a requirement for normal starch metabolism.

摘要

莱茵衣藻(Chlamydomonas reinhardtii)的两个色素变异突变体U3N和U3A的叶绿体超微结构与野生型显著不同。突变体叶绿体中叶绿素a和b的水平大幅降低,且缺乏通常有序的类囊体膜结构。叶绿体核糖体的数量增加,但蛋白核及其周围的淀粉粒似乎未发生改变。我们的生化分析表明,虽然这些突变体中叶绿体DNA、核糖体RNA和核糖体的性质看似正常,但与野生型相比,每个细胞中它们的相对含量显著增加。在U3N中,叶绿体DNA增加约为60%,叶绿体核糖体增加约为80%。然而,DNA-rRNA杂交显示,叶绿体rDNA基因与总叶绿体DNA的比例保持不变。我们提出:(1)这些突变体中叶绿体核糖体水平的提高是叶绿体DNA含量增加的直接结果。这两种增加反过来可能源于其控制机制的缺陷。(2)只要有外部碳源,这些突变体在没有功能性光合作用的情况下也能成功生长,但功能性质体DNA、核糖体和蛋白质合成可能仍是正常淀粉代谢所必需的。

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