首页> 美国卫生研究院文献>Journal of Bacteriology >The tigA gene is a transcriptional fusion of glycolytic genes encoding triose-phosphate isomerase and glyceraldehyde-3-phosphate dehydrogenase in oomycota.
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The tigA gene is a transcriptional fusion of glycolytic genes encoding triose-phosphate isomerase and glyceraldehyde-3-phosphate dehydrogenase in oomycota.

机译:tigA基因是卵菌中编码甘油三磷酸异构酶和甘油三磷酸脱氢酶的糖酵解基因的转录融合。

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摘要

Genes encoding triose-phosphate isomerase (TPI) and glyceraldehyde-3-phosphate dehydrogenase (GAPDH) are fused and form a single transcriptional unit (tigA) in Phytophthora species, members of the order Pythiales in the phylum Oomycota. This is the first demonstration of glycolytic gene fusion in eukaryotes and the first case of a TPI-GAPDH fusion in any organism. The tigA gene from Phytophthora infestans has a typical Oomycota transcriptional start point consensus sequence and, in common with most Phytophthora genes, has no introns. Furthermore, Southern and PCR analyses suggest that the same organization exists in other closely related genera, such as Pythium, from the same order (Oomycota), as well as more distantly related genera, Saprolegnia and Achlya, in the order Saprolegniales. Evidence is provided that in P. infestans, there is at least one other discrete copy of a GAPDH-encoding gene but not of a TPI-encoding gene. Finally, a phylogenetic analysis of TPI does not place Phytophthora within the assemblage of crown eukaryotes and suggests TPI may not be particularly useful for resolving relationships among major eukaryotic groups.
机译:编码甘油三磷酸磷酸异构酶(TPI)和甘油三磷酸甘油脱氢酶(GAPDH)的基因融合在一起,并在疫霉属(Phytophthora)中形成单一的转录单位(tigA),这是卵菌门中的腐霉菌。这是真核生物中糖酵解基因融合的首次证明,也是任何生物中TPI-GAPDH融合的第一例。来自致病疫霉的tigA基因具有典型的卵菌转录起点共有序列,并且与大多数疫霉基因相同,没有内含子。此外,Southern和PCR分析表明,在其他紧密相关的属中存在相同的组织,例如来自同一顺序(Oomycota)的腐霉属,以及在更远的相关的属中,有腐霉属和Achlya,以腐霉属存在。有证据表明,在致病疫霉中,GAPDH编码基因至少有一个其他的离散拷贝,而TPI编码基因则没有。最后,对TPI的系统发育分析并未将疫霉菌置于冠状真核生物的集合体中,这表明TPI对于解决主要的真核生物之间的关系可能不是特别有用。

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