丝状真菌的天然质粒。

A J Griffiths
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引用次数: 7

摘要

在真核生物中,在真菌和植物中发现了质粒,但在动物中没有发现。大多数质粒是线粒体。在丝状真菌中,质粒通常在自然种群分离物中遇到。个别种群可能表现出一种类型的优势,但一些质粒具有全球分布,经常跨越物种边界。调查显示,菌株可能含有不止一种类型的质粒,而且不同类型的质粒似乎是独立分布的。在杂交中,质粒通常是母系遗传的。水平传播是通过细胞接触。环状质粒仅在神经孢子菌中常见,但在许多真菌中发现了线状质粒。环状质粒具有一个编码DNA聚合酶或逆转录酶的开放阅读框(ORF)。线性质粒通常有两个orf,编码假定的DNA和RNA聚合酶,氨基酸基序与病毒聚合酶具有同源性。质粒通常获得高拷贝数,超过线粒体DNA。线性质粒的5'端有一个蛋白质,这被认为是复制引物。大多数质粒是中性的乘客,但一些线性质粒整合到线粒体DNA中,导致宿主培养物死亡。线性质粒orf的推断氨基酸序列已被用于绘制系统发育树,显示出与常规树的公平一致性。环状神经孢子菌质粒具有复制系统,似乎是RNA和DNA世界之间的进化中间体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Natural plasmids of filamentous fungi.

Among eukaryotes, plasmids have been found in fungi and plants but not in animals. Most plasmids are mitochondrial. In filamentous fungi, plasmids are commonly encountered in isolates from natural populations. Individual populations may show a predominance of one type, but some plasmids have a global distribution, often crossing species boundaries. Surveys have shown that strains can contain more than one type of plasmid and that different types appear to be distributed independently. In crosses, plasmids are generally inherited maternally. Horizontal transmission is by cell contact. Circular plasmids are common only in Neurospora spp., but linear plasmids have been found in many fungi. Circular plasmids have one open reading frame (ORF) coding for a DNA polymerase or a reverse transcriptase. Linear plasmids generally have two ORFs, coding for presumptive DNA and RNA polymerases with amino acid motifs showing homology to viral polymerases. Plasmids often attain a high copy number, in excess of that of mitochondrial DNA. Linear plasmids have a protein attached to their 5' end, and this is presumed to act as a replication primer. Most plasmids are neutral passengers, but several linear plasmids integrate into mitochondrial DNA, causing death of the host culture. Inferred amino acid sequences of linear plasmid ORFs have been used to plot phylogenetic trees, which show a fair concordance with conventional trees. The circular Neurospora plasmids have replication systems that seem to be evolutionary intermediates between the RNA and the DNA worlds.

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