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Physical and gene mapping of chloroplast DNA from Atriplex triangularis and Cucumis sativa.

机译:三角滨藜和黄瓜的叶绿体DNA的物理和基因作图。

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摘要

A rapid and simple method for constructing restriction maps of large DNAs (100-200 kb) is presented. The utility of this method is illustrated by mapping the Sal I, Sac I, and Hpa I sites of the 152 kb Atriplex triangularis chloroplast genome, and the Sal I and Pvu II sites of the 155 kb Cucumis sativa chloroplast genome. These two chloroplast DNAs are very similar in organization; both feature the near-universal chloroplast DNA inverted repeat sequence of 22-25 kb. The positions of four different genes have been localized on these chloroplast DNAs. In both genomes the 16S and 23S ribosomal RNAs are encoded by duplicate genes situated at one end of the inverted repeat, while genes for the large subunit of ribulose-1,5-bisphosphate carboxylase and a 32 kilodalton photosystem II polypeptide are separated by 55 kb of DNA within the large single copy region. The physical and genetic organization of these DNAs is compared to that of spinach chloroplast DNA.
机译:提出了一种快速简单的构建大DNA(100-200 kb)限制性酶切图的方法。通过绘制152 kb三角滨藜叶绿体基因组的Sal I,Sac I和Hpa I位点,以及155 kb枯草叶绿体基因组的Sal I和Pvu II位点,可以说明该方法的实用性。这两个叶绿体DNA的组织结构非常相似。两者均具有22-25 kb的近乎通用的叶绿体DNA反向重复序列。四个不同基因的位置已定位在这些叶绿体DNA上。在两个基因组中,16S和23S核糖体RNA均由位于反向重复序列一端的重复基因编码,而核糖-1,5-双磷酸羧化酶大亚基的基因和32千达尔顿光系统II多肽的间隔为55 kb。大单拷贝区域内的DNA片段。将这些DNA的物理和遗传组织与菠菜叶绿体DNA的物理和遗传组织进行比较。

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