Torres F P, Fonte L F M, Valente V L S, Loreto E L S
Programa de Pós-Graduação em Genética e Biologia Molecular, Departamento de Genética, Universidade Federal do Rio Grande do Sul (UFRGS), Porto Alegre, Rio Grande do Sul, Brazil.
Genetica. 2006 Jan;126(1-2):101-10. doi: 10.1007/s10709-005-1436-1.
The hobo transposable element can occur under three forms in the Drosophila genome: as a complete element (also called canonical), as internally deleted copies, or as hobo-related sequences (relics). Some evidence indicated that canonical elements and internally deleted copies are recent acquisitions of Drosophila genomes, while the "relics" are old components, normally degenerated and immobile. Here we present the characterization of a hobo-related sequence, found in the genome of a hypermutable strain of D. simulans, which insertion into the white locus raised a de novo white mutation. It is a shorter hobo related element presenting, overall, roughly 18% of divergence at the DNA level from the canonical hobo, with many indels that make clear this element is defective. However, its ITRs and flanking regions are extremely conserved. This is the first hobo "relic" showed to be mobilizable. We suggest, and point up some evidences, toward the idea that this sequence could have been mobilized by the canonical element. The presence of a similar "relic" element in D. sechellia allows us to suggest that these elements have been maintained mobilizable since the time of divergence between these species.
hobo转座元件在果蝇基因组中可以以三种形式出现:作为完整元件(也称为典型元件)、作为内部缺失的拷贝或者作为与hobo相关的序列(遗迹)。一些证据表明典型元件和内部缺失的拷贝是果蝇基因组近期获得的,而“遗迹”是古老的组分,通常已经退化且不可移动。在此我们展示了在一个易变的拟暗果蝇品系基因组中发现的一个与hobo相关序列的特征,其插入到白眼基因座引发了一个新的白眼突变。它是一个较短的与hobo相关的元件,总体而言,在DNA水平上与典型hobo的分歧约为18%,有许多插入缺失表明该元件有缺陷。然而,它的末端反向重复序列(ITRs)和侧翼区域极其保守。这是首个被证明可移动的hobo“遗迹”。我们提出并指出一些证据,支持该序列可能已被典型元件移动的观点。在塞舌尔果蝇中存在类似的“遗迹”元件,这使我们认为自这些物种分化以来这些元件一直保持可移动状态。