Qian Q, Keeling P J
Canadian Institute for Advanced Research, Department of Botany, University of British Columbia, Vancouver, Canada.
Protist. 2001 Sep;152(3):193-201. doi: 10.1078/1434-4610-00059.
Lateral gene transfer refers to the movement of genetic information from one genome to another, and the integration of that foreign DNA into its new genetic environment. There are currently only a few well-supported cases of prokaryote-to-eukaryote transfer known that do not involve mitochondria or plastids, but it is not clear whether this reflects a lack of such transfer events, or poor sampling of diverse eukaryotes. One gene where this process is apparently active is glyceraldehyde-3-phosphate dehydrogenase (GAPDH), where lateral transfer has been implicated in the origin of euglenoid and kinetoplastid genes. We have characterised GAPDH genes from diplonemids, heterotrophic flagellates that are closely related to kinetoplastids and euglenoids. Two distinct classes of diplonemid GAPDH genes were found in diplonemids, however, neither class is closely related to any other euglenozoan GAPDH. One diplonemid GAPDH is related to the cytosolic gapC of eukaryotes, although not to either euglenoids or kinetoplastids, and the second is related to cyanobacterial and proteobacterial gap3. The bacterial gap3 gene in diplonemids provides one of the most well-supported examples of lateral gene transfer from a bacterium to a eukaryote characterised to date, and may indicate that diplonemids have acquired a novel biochemical capacity through lateral transfer.
横向基因转移是指遗传信息从一个基因组转移到另一个基因组,并将外源DNA整合到其新的遗传环境中。目前已知仅有少数得到充分支持的原核生物到真核生物的转移案例不涉及线粒体或质体,但尚不清楚这是反映了此类转移事件的缺乏,还是对多样真核生物的采样不足。一个此过程明显活跃的基因是甘油醛-3-磷酸脱氢酶(GAPDH),横向转移与眼虫类和动基体基因的起源有关。我们对双鞭毛虫(与动基体和眼虫类密切相关的异养鞭毛虫)的GAPDH基因进行了表征。在双鞭毛虫中发现了两类不同的双鞭毛虫GAPDH基因,然而,这两类基因均与任何其他眼虫纲的GAPDH没有密切关系。一种双鞭毛虫GAPDH与真核生物的胞质gapC相关,尽管与眼虫类或动基体均无关联,第二种则与蓝细菌和变形菌的gap3相关。双鞭毛虫中的细菌gap3基因是迄今为止所表征的从细菌到真核生物横向基因转移最有力的例子之一,可能表明双鞭毛虫通过横向转移获得了一种新的生化能力。