Imsande J, Pittig J, Palmer R G, Wimmer C, Gietl C
Department of Agronomy, Iowa State University, Ames, Iowa, USA.
J Hered. 2001 Jul-Aug;92(4):333-8. doi: 10.1093/jhered/92.4.333.
The mitochondrial malate dehydrogenase-1 (Mdh1) gene of soybean [Glycine max (L.) Merr.] spontaneously mutates to a null phenotype at a relatively high rate. To determine the molecular basis for the instability of the Mdh1 gene, the gene was cloned and sequenced. The null phenotype correlated with the deletion of specific genomic restriction fragments that encode the Mdh1 gene. The composition of the Mdh1 gene and its environs were compared with those of the more stable MDH2 gene. Several possible causes of the observed instability were found, including duplications, repeats, and two regions with similarity to a soybean catalase. The most likely cause of instability, however, appeared to be a 1233 bp region with 58.9% identity to the Cyclops retrotransposons. Translation of a 714 bp segment of this region produced a peptide composed of 238 amino acid residues that showed 35-40% identity and 55-60% similarity to several putative Cyclops gag-pol proteins (group-specific antigen polyprotein). This short peptide also contained a segment that corresponded to the protease active site of the gag-pol protein. Thus in an appropriate genetic background, a retrotransposon, whether whole or fractured, could promote genetic rearrangements.
大豆[Glycine max (L.) Merr.]的线粒体苹果酸脱氢酶-1 (Mdh1)基因会以相对较高的频率自发突变为无效表型。为了确定Mdh1基因不稳定的分子基础,对该基因进行了克隆和测序。无效表型与编码Mdh1基因的特定基因组限制片段的缺失相关。将Mdh1基因及其周边区域的组成与更稳定的MDH2基因的组成进行了比较。发现了几个观察到的不稳定性的可能原因,包括重复、序列重复,以及两个与大豆过氧化氢酶相似的区域。然而,最可能的不稳定原因似乎是一个与Cyclops反转录转座子有58.9%同源性的1233 bp区域。该区域一段714 bp片段的翻译产生了一个由238个氨基酸残基组成的肽段,该肽段与几种假定的Cyclops gag-pol蛋白(群特异性抗原多蛋白)有35 - 40%的同源性和55 - 60%的相似性。这个短肽还包含一个与gag-pol蛋白的蛋白酶活性位点相对应的片段。因此,在合适的遗传背景下,一个反转录转座子,无论完整与否,都可能促进基因重排。