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拟果蝇中水手转座元件的遗传学与进化:全球分布及实验种群动态

The genetics and evolution of the mariner transposable element in Drosophila simulans: worldwide distribution and experimental population dynamics.

作者信息

Russell A L, Woodruff R C

机构信息

Department of Ecology and Evolutionary Biology, University of Tennessee, Knoxville 37996-1610, USA.

出版信息

Genetica. 1999;105(2):149-64. doi: 10.1023/a:1003760123429.

Abstract

We have studied both the frequency and biogeographical distribution of the transposable DNA element mariner in natural populations of Drosophila simulans and the short-term evolutionary characteristics of mariner in experimental populations. The mariner element has been identified in natural populations of D. simulans from Africa, Europe, the Middle East, Japan, Australia, several Pacific islands, North America, and South America. Only four lines out of 296 were devoid of active mariner elements, as measured by the presence of functional mariner transposase. A slight correlation was found between the latitudinal coordinate of the collection sites and the level of mariner activity in the populations; this correlation became highly significant in Australia where a cline in mariner activity was observed along the eastern coast of the continent. We also observed that wild-type laboratory strains kept for several years as small populations might lose mariner activity over time. Using experimental populations, we modeled what might happen when naturally occurring populations exhibiting high and low levels of mariner activity encounter one another. We found that active mariner elements either will tend to lose their activity over time and gradually become inactive or possibly will be lost from the population; in either case, this will lead to the pattern seen in this experiment of a significant loss of mariner activity over time.

摘要

我们研究了果蝇自然种群中转座DNA元件水手(mariner)的频率和生物地理分布,以及实验种群中水手元件的短期进化特征。在来自非洲、欧洲、中东、日本、澳大利亚、几个太平洋岛屿、北美洲和南美洲的拟暗果蝇自然种群中都鉴定出了水手元件。通过功能性水手转座酶的存在来衡量,296个品系中只有4个没有活跃的水手元件。在采集地点的纬度坐标与种群中水手元件的活性水平之间发现了轻微的相关性;在澳大利亚,这种相关性变得非常显著,在该国大陆东海岸观察到了水手元件活性的渐变群。我们还观察到,作为小种群饲养数年的野生型实验室品系可能会随着时间的推移而失去水手元件的活性。利用实验种群,我们模拟了具有高水平和低水平水手元件活性的自然种群相互接触时可能发生的情况。我们发现,活跃的水手元件要么会随着时间的推移而趋于失去活性并逐渐变得不活跃,要么可能会从种群中消失;在这两种情况下,这都会导致本实验中观察到的随着时间的推移水手元件活性显著丧失的模式。

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