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真核生物的水平基因获取是适应性进化的驱动因素。

Horizontal gene acquisitions by eukaryotes as drivers of adaptive evolution.

机构信息

Department of Botany, Oklahoma State University, Stillwater, OK, USA.

出版信息

Bioessays. 2014 Jan;36(1):9-20. doi: 10.1002/bies.201300095. Epub 2013 Nov 13.

Abstract

In contrast to vertical gene transfer from parent to offspring, horizontal (or lateral) gene transfer moves genetic information between different species. Bacteria and archaea often adapt through horizontal gene transfer. Recent analyses indicate that eukaryotic genomes, too, have acquired numerous genes via horizontal transfer from prokaryotes and other lineages. Based on this we raise the hypothesis that horizontally acquired genes may have contributed more to adaptive evolution of eukaryotes than previously assumed. Current candidate sets of horizontally acquired eukaryotic genes may just be the tip of an iceberg. We have recently shown that adaptation of the thermoacidophilic red alga Galdieria sulphuraria to its hot, acid, toxic-metal laden, volcanic environment was facilitated by the acquisition of numerous genes from extremophile bacteria and archaea. Other recently published examples of horizontal acquisitions involved in adaptation include ice-binding proteins in marine algae, enzymes for carotenoid biosynthesis in aphids, and genes involved in fungal metabolism. Editor's suggested further reading in BioEssays Jumping the fine LINE between species: Horizontal transfer of transposable elements in animals catalyses genome evolution Abstract.

摘要

与亲代到后代的垂直基因转移相反,水平(或横向)基因转移在不同物种之间移动遗传信息。细菌和古菌经常通过水平基因转移来适应。最近的分析表明,真核生物基因组也通过来自原核生物和其他谱系的水平转移获得了许多基因。基于这一点,我们提出假设,水平获得的基因可能比以前假设的对真核生物的适应性进化贡献更大。目前候选的水平获得的真核基因集可能只是冰山一角。我们最近表明,嗜热嗜酸红藻 Galdieria sulphuraria 对其热、酸、有毒金属含量高的火山环境的适应是通过从极端微生物细菌和古菌中获得大量基因来促进的。其他最近发表的与适应有关的水平获得的例子包括海洋藻类中的冰结合蛋白、蚜虫中类胡萝卜素生物合成的酶以及真菌代谢中涉及的基因。编辑推荐的生物进化中的进一步阅读 在物种之间跳跃细微的界限:动物中转座元件的水平转移促进了基因组进化 摘要。

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