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首页> 外文期刊>Ecology and Evolution >Three QTL in the honey bee Apis mellifera L. suppress reproduction of the parasitic mite Varroa destructor
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Three QTL in the honey bee Apis mellifera L. suppress reproduction of the parasitic mite Varroa destructor

机译:蜜蜂Apis mellifera L.中的三个QTL抑制寄生螨Varroa破坏因子的繁殖

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摘要

AbstractVarroa destructor is a highly virulent ectoparasitic mite of the honey bee Apis mellifera and a major cause of colony losses for global apiculture. Typically, chemical treatment is essential to control the parasite population in the honey bee colony. Nevertheless a few honey bee populations survive mite infestation without any treatment. We used one such Varroa mite tolerant honey bee lineage from the island of Gotland, Sweden, to identify quantitative trait loci (QTL) controlling reduced mite reproduction. We crossed a queen from this tolerant population with drones from susceptible colonies to rear hybrid queens. Two hybrid queens were used to produce a mapping population of haploid drones. We discriminated drone pupae with and without mite reproduction, and screened the genome for potential QTL using a total of 216 heterozygous microsatellite markers in a bulk segregant analysis. Subsequently, we fine mapped three candidate target regions on chromosomes 4, 7, and 9. Although the individual effect of these three QTL was found to be relatively small, the set of all three had significant impact on suppression of V. destructor reproduction by epistasis. Although it is in principle possible to use these loci for marker-assisted selection, the strong epistatic effects between the three loci complicate selective breeding programs with the Gotland Varroa tolerant honey bee stock.
机译:摘要瓦罗阿(Varroa)破坏者是蜜蜂蜂(Apis mellifera)的一种极强的外寄生螨,是全球养蜂业丧失殖民地的主要原因。通常,化学处理对于控制蜜蜂群体中的寄生虫种群至关重要。然而,一些蜜蜂种群在未经任何治疗的情况下仍能幸免于螨侵扰。我们使用了一种来自瑞典哥得兰岛的耐Varroaro螨的蜜蜂谱系,以鉴定控制螨虫繁殖减少的数量性状基因座(QTL)。我们将这种耐性种群中的一个女王与从易感菌落到后方杂交女王的无人机进行了杂交。两个杂交皇后被用来产生单倍体无人机的作图群体。我们区分有无螨繁殖的无人机dr,并在整体分离分析中使用总共216个杂合微卫星标记物筛选了可能的QTL基因组。随后,我们在染色体4、7和9上精细映射了三个候选目标区域。尽管发现这三个QTL的个体作用相对较小,但所有这三个QTL的集合对抑制上皮细胞的V.破坏者繁殖具有重要影响。 。尽管原则上可以将这些基因座用于标记辅助选择,但三个基因座之间的强上位性效应使选择育种计划与哥得兰岛耐瓦尔罗亚蜜蜜蜂种群复杂化。

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