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跳跃基因(Hop),一种活跃于尖孢镰刀菌基因组中的类转座子元件。

Hop, an active Mutator-like element in the genome of the fungus Fusarium oxysporum.

作者信息

Chalvet Fabienne, Grimaldi Christine, Kaper Fiona, Langin Thierry, Daboussi Marie-Josée

机构信息

Institut de Génétique et Microbiologie, Université Paris-Sud, Orsay Cedex, France.

出版信息

Mol Biol Evol. 2003 Aug;20(8):1362-75. doi: 10.1093/molbev/msg155. Epub 2003 May 30.

Abstract

A new type of active DNA transposon has been identified in the genome of Fusarium oxysporum by its transposition into the niaD target gene. Two insertions within the final exon, in opposite orientations at the same nucleotide site, have been characterized. These elements, called Hop, are 3,299 bp long, with perfect terminal inverted repeats (TIRs) of 99 bp. The sequencing of genomic copies reveals a 9-bp target site duplication and no apparent sequence specificity at the insertion sites. The sequencing of a cDNA indicates that Hop does not contain an intron and encodes a putative transposase of 836 amino acids. The structural features (length, TIRs size, and 9-bp duplication), together with the presence of conserved domains in the transposase, strongly suggest that Hop is a Mutator-like element (MULE). Hop is thus the first active member of this family found beyond plants. The high rate of excision observed indicates that Hop is very active and thus represents a promising efficient tagging system for the isolation of fungal genes. The distribution of Hop elements within the Fusarium genus revealed that they are present in different species, suggesting that related elements could be present in other fungal genomes. In fact, Hop-related sequences have been identified in the survey of the entire genome sequence of three other ascomycetes, Magnaporthe grisea, Neurospora crassa, and Aspergillus fumigatus.

摘要

通过转座进入niaD靶基因,在尖孢镰刀菌基因组中鉴定出一种新型活性DNA转座子。已对最终外显子内的两个插入进行了表征,它们位于同一核苷酸位点,方向相反。这些元件称为Hop,长度为3299 bp,具有99 bp的完美末端反向重复序列(TIR)。基因组拷贝的测序揭示了一个9 bp的靶位点重复,且插入位点没有明显的序列特异性。cDNA的测序表明Hop不包含内含子,编码一个836个氨基酸的推定转座酶。其结构特征(长度、TIR大小和9 bp重复),以及转座酶中保守结构域的存在,强烈表明Hop是一种类Mutator元件(MULE)。因此,Hop是该家族在植物之外发现的首个活性成员。观察到的高切除率表明Hop非常活跃,因此是用于分离真菌基因的一种很有前景的高效标签系统。Hop元件在镰刀菌属内的分布表明它们存在于不同物种中,这表明相关元件可能存在于其他真菌基因组中。事实上,在对另外三种子囊菌——稻瘟病菌、粗糙脉孢菌和烟曲霉的全基因组序列调查中,已鉴定出与Hop相关的序列。

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