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菠菜的核 DNA 和质体 DNA 之间的同源性。

Homologies between nuclear and plastid DNA in spinach.

机构信息

CSIRO Division of Horticultural Research, GPO Box 350, 5001, Adelaide, South Australia, Australia.

出版信息

Theor Appl Genet. 1984 Jan;67(2-3):279-88. doi: 10.1007/BF00317055.

Abstract

Homologies between spinach nuclear (n) DNA and Chloroplast (pt) DNA, have been detected with a clone bank of spinach ptDNA as hybridization probes to restriction fragments of nDNA prepared from purified root nuclei. Every cloned fragment of ptDNA showed homologies to discrete restriction fragments of nDNA, different from those of ptDNA, indicating integration of these homologies into nDNA. While most ptDNA clones were relatively large and probably contained several genes, sequence homologies were also found to the cloned plastid gene for RuBP carboxylase and the β subunit of ptATPase. Many of the homologies in nDNA occur in regions of the genome that are highly methylated and are not digested by the methylation sensitive restriction endonucleases HpaII and MspI. In contrast these enzymes cleave ptDNA into small fragments which allows the nDNA homologies to be distinguished in total root DNA. The sequence homologies observed were not due to contaminating non nuclear sequences as shown by hybridization to mitochondrial (mt) and bacterial DNAs. The total amount of homology to ptDNA in nDNA is equivalent to about five copies of the plastome per haploid nuclear genome. The homologies generally appear to be in individual segments of less than 2 kbp in length, integrated into several different places in the genome.

摘要

菠菜核(n)DNA 与叶绿体(pt)DNA 之间的同源性,已通过菠菜 ptDNA 的克隆库作为杂交探针来检测,该克隆库用于探测从纯化的根核中制备的 nDNA 的限制片段。每个克隆的 ptDNA 片段都与 nDNA 的离散限制片段显示同源性,与 ptDNA 的不同,表明这些同源性整合到 nDNA 中。虽然大多数 ptDNA 克隆相对较大,可能包含几个基因,但也发现了与克隆质体基因 RuBP 羧化酶和 ptATPase 的β亚基的序列同源性。nDNA 中的许多同源性发生在基因组中高度甲基化且不受甲基敏感限制内切酶 HpaII 和 MspI 消化的区域。相比之下,这些酶将 ptDNA 切割成小片段,从而可以在总根 DNA 中区分 nDNA 同源性。如通过杂交到线粒体(mt)和细菌 DNA 所显示的,观察到的序列同源性不是由于污染的非核序列引起的。nDNA 中与 ptDNA 的同源总量相当于每个单倍体核基因组中约五个拷贝的质体基因组。这些同源性通常似乎是长度小于 2kbp 的单个片段,整合到基因组的几个不同位置。

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