Gadau J, Page R E, Werren J H
Department of Entomology, University of California, Davis, California 95616, USA.
Genetics. 1999 Dec;153(4):1731-41. doi: 10.1093/genetics/153.4.1731.
According to theory, F(2) hybrid breakdown (lethality or sterility) is due to incompatibilities between interacting genes of the different species (i.e., the breaking up of coadapted gene complexes). Detection of such incompatibilities is particularly straightforward in haplodiploid species, because virgin F(1) hybrid females will produce haploid recombinant F(2) males. This feature allows for screening of the complete genome for recessive genetic incompatibilities. Crosses were performed between Nasonia vitripennis (v) and its sibling species N. giraulti (g). First, a linkage map was produced using RAPD markers. RAPD markers showed an overall bias toward vitripennis alleles, a pattern not predicted by the basic two-interactor Dobzhansky-Muller model. Recovery patterns of visible markers were consistent with those of linked RAPD markers. If particular genetic interactions between two loci are causing hybrid lethality, then those genotypes should be underrepresented or absent among adult F(2) males. Four sets of significant incompatibilities were detected by performing pairwise comparisons of markers on different chromosomes. Likely explanations for the observed patterns are maternal effect-zygotic gene incompatibilities or clustering of incompatibility loci. Due to the short generation time, advantages of haplodiploidy, and availability of markers, Nasonia promises to be a productive system for investigating the genetics of hybrid inviability.
根据理论,F(2)杂种衰败(致死或不育)是由于不同物种相互作用基因之间的不相容性(即协同适应基因复合体的瓦解)。在单双倍体物种中检测这种不相容性特别直接,因为未交配的F(1)杂种雌性会产生单倍体重组F(2)雄性。这一特性允许对整个基因组进行隐性遗传不相容性的筛选。在丽蝇蛹集金小蜂(v)与其近缘物种吉氏集金小蜂(g)之间进行了杂交。首先,利用随机扩增多态性DNA(RAPD)标记构建了连锁图谱。RAPD标记总体上偏向于丽蝇蛹集金小蜂的等位基因,这一模式并非基本的双相互作用者多布赞斯基-穆勒模型所预测的。可见标记的恢复模式与连锁的RAPD标记一致。如果两个位点之间的特定基因相互作用导致杂种致死,那么在成年F(2)雄性中,那些基因型的比例应该较低或不存在。通过对不同染色体上的标记进行成对比较,检测到了四组显著的不相容性。对观察到的模式的可能解释是母本效应-合子基因不相容性或不相容位点的聚集。由于世代时间短、单双倍体的优势以及标记的可用性,集金小蜂有望成为研究杂种 inviability 遗传学的一个富有成效的系统。