Use of plastome and nuclear mutants of higher plants to study the genetic control of plastid formation and function.

R Hagemann, T Boerner, F Herrmann, R Knoth
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Abstract

We conducted comparative biochemical and electron-microscopic studies of several types of plastome and nuclear mutants of Antirrhinum majus and Pelargonium zonale. It was shown that specific blocking of the photosynthetic reaction occurs in plastome mutants of A. majus; Photosystem II was found to be damaged in the en:alba-1 mutant and photo-system I was affected in the en:viridis-1 mutant. The plastid mutations in these mutants caused loss of certain soluble lamellar proteins and pigment--protein complexes or a reduction in their content, which led to disappearance of photosynthetic activity. When the content of high-molecular ribosomal RNA in the leaves of normal and mutant P. zonale plants was compared, the normal plants were found to have four types of RNA: two types of cytoplasmic-ribosome RNA and two types of plastid-ribosome RNA. No plastid-ribosome RNA was detected in the mutant. These results were confirmed by electron-microscopic examination: no ribosomes were detected in the mutant plastids. Thus, use of plastome mutants made it possible to establish that the genetic information concentrated in the plastid DNA controls formation of ribosomes and lamellae in the chloroplasts and thus affects chloroplast photosynthetic function.

利用高等植物质体和核突变体研究质体形成和功能的遗传调控。
我们对Antirrhinum majus和Pelargonium zonale的几种质体体和核突变体进行了比较生化和电镜研究。结果表明,黄芪质体体突变体对光合作用具有特异性阻断作用;在en:alba-1突变体中发现光系统II受损,而在en:viridis-1突变体中发现光系统I受损。这些突变体的质体突变导致某些可溶性板层蛋白和色素蛋白复合物的丧失或其含量的减少,从而导致光合活性的消失。对正常植株和突变植株叶片中高分子核糖体RNA的含量进行比较,发现正常植株有四种类型的RNA:两种类型的细胞质核糖体RNA和两种类型的质体核糖体RNA。突变体中未检测到质体核糖体RNA。电镜检查证实了这些结果:突变质体中未检测到核糖体。因此,利用质体突变体可以确定集中在质体DNA中的遗传信息控制叶绿体中核糖体和片层的形成,从而影响叶绿体的光合功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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