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在果蝇Buzzatii和D. koepferae之间的杂交种中,种间不相容的三基因座系统是雄性不育的基础。

A three-locus system of interspecific incompatibility underlies male inviability in hybrids between Drosophila buzzatii and D. koepferae.

作者信息

Carvajal A R, Gandarela M R, Naveira H F

机构信息

Departmento de Biología Celular y Molecular, Facultad de Ciencias, Universidad de La Coruña, Spain.

出版信息

Genetica. 1996 Jul;98(1):1-19. doi: 10.1007/BF00120214.

Abstract

In hybrids between the sibling species D. buzzatii and D. koepferae, both sexes are more or less equally viable in the F1. However, backcross males to D. buzzatii are frequently inviable, apparently because of interspecific genetic incompatibilities that are cryptic in the F1. We have performed a genetic dissection of the effects of the X chromosome from D. koepferae. We found only two cytological regions, termed hmi-1 and hmi-2, altogether representing 9% of the whole chromosome, which when introgressed into D. buzzatii cause inviability of hybrid males. Observation of the pattern of asynapsis of polytene chromosomes (incomplete pairing, marking introgressed material) in females and segregation analyses were the technique used to infer the X chromosome regions responsible for this hybrid male inviability. The comparison of these results with those previously obtained with the same technique for hybrid male sterility in this same species pair indicate that in the X chromosome of D. koepferae there are at least seven times more regions that produce hybrid male sterility than hybrid male inviability. We have also found that the inviability brought about by the introgression of hmi-1 is suppressed by the cointrogression of two autosomal sections from D. koepferae. Apparently, these three regions conform to a system of species-specific complementary factors involved in an X-autosome interaction that, when disrupted in backcross hybrids by recombination with the genome of its sibling D. buzzatii, brings about hybrid male inviability.

摘要

在近亲物种巴氏果蝇(D. buzzatii)和克氏果蝇(D. koepferae)的杂交后代中,F1代的雌雄个体存活能力大致相同。然而,将杂交雄性回交至巴氏果蝇时,它们常常无法存活,这显然是由于种间遗传不相容性在F1代中并不明显。我们对克氏果蝇的X染色体效应进行了遗传学剖析。我们仅发现了两个细胞学区域,分别称为hmi - 1和hmi - 2,它们总共占整个染色体的9%,当将这两个区域渗入巴氏果蝇时,会导致杂交雄性无法存活。观察雌性多线染色体的异联会模式(不完全配对,标记渗入的物质)以及进行分离分析,是用于推断导致这种杂交雄性无法存活的X染色体区域的技术。将这些结果与之前使用相同技术对同一物种对的杂交雄性不育进行研究所得的结果进行比较,表明在克氏果蝇的X染色体中,产生杂交雄性不育的区域数量至少是导致杂交雄性无法存活的区域数量的七倍。我们还发现,通过渗入克氏果蝇的两个常染色体片段,可以抑制hmi - 1渗入所导致的无法存活现象。显然,这三个区域符合一个物种特异性互补因子系统,该系统参与X - 常染色体相互作用,当在回交杂种中通过与其近亲巴氏果蝇的基因组重组而被破坏时,会导致杂交雄性无法存活。

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