Purugganan M D, Wessler S R
Department of Botany, University of Georgia, Athens 30602.
Proc Natl Acad Sci U S A. 1994 Nov 22;91(24):11674-8. doi: 10.1073/pnas.91.24.11674.
The magellan transposable element is responsible for a spontaneous 5.7-kb insertion in the maize wx-M allele. This element has the sequence and structural characteristics of a Ty3/gypsy-like retrotransposon. The magellan element is present in all Zea species and Tripsacum andersonii; it is absent, however, in the genomes of all other Tripsacum species analyzed. The genetic distances between magellan elements suggest that this retrotransposon is evolving faster than other Zea nuclear loci. The phylogeny of magellan within Zea and T. andersonii also reveals a pattern of interspecies transfers, resulting in the movement of magellan subfamilies between different species genomes. Interspecific hybridization may be a major mechanism by which this retrotransposon invades and establishes itself in new taxa.
麦哲伦转座元件导致了玉米wx - M等位基因中一个自发的5.7千碱基对的插入。该元件具有类Ty3/gypsy逆转录转座子的序列和结构特征。麦哲伦元件存在于所有玉米属物种以及三裂叶野黍中;然而,在所分析的所有其他三裂叶野黍物种的基因组中却不存在。麦哲伦元件之间的遗传距离表明,这种逆转录转座子的进化速度比其他玉米属核基因座更快。麦哲伦元件在玉米属和三裂叶野黍中的系统发育也揭示了种间转移的模式,导致麦哲伦亚家族在不同物种基因组之间移动。种间杂交可能是这种逆转录转座子侵入并在新分类群中定殖的主要机制。