Honeybee Research Institute, Jiangxi Agricultural University, Nanchang, 330045 Jiangxi, China.
Mol Biol Rep. 2012 Mar;39(3):3067-71. doi: 10.1007/s11033-011-1069-7. Epub 2011 Jun 18.
The complementary sex determination (csd) gene is the primary gene determining the gender of honey bees (Apis spp). In this study we analyzed the polymorphism of csd gene in six Apis mellifera subspecies. The genomic region 3 of csd gene in these six A. mellifera was cloned, and identified. A total of 79 haplotypes were obtained from these six subspecies. Analysis showed that region 3 of csd gene has a high level of polymorphism in all the six A. mellifera subspecies. The A. m. anatolica subspecies has a slightly higher nucleotide diversity (π) than other subspecies, while the π values showed no significant difference among the other five subspecies. The phylogenetic tree showed that all the csd haplotypes from different A. mellifera subspecies are scattered throughout the tree, without forming six different clades. Population differentiation analysis showed that there are significant genetic differentiations among some of the subspecies. The NJ phylogenetic tree showed that the A. m. caucasica and A. m. carnica have the closest relationship, followed by A. m. ssp, A. m. ligustica, A. m. carpatica and A. m. anatolica that were gathered in the tree in turn.
性别的互补决定基因(csd)是决定蜜蜂(Apis spp.)性别的主要基因。在本研究中,我们分析了 6 个西方蜜蜂亚种 csd 基因的多态性。从这 6 个西方蜜蜂亚种中克隆并鉴定了 csd 基因的第 3 个基因组区域。从这 6 个亚种中获得了总共 79 种单倍型。分析表明,csd 基因第 3 区在所有 6 个西方蜜蜂亚种中具有高度多态性。A. m. anatolica 亚种的核苷酸多样性(π)略高于其他亚种,而其他 5 个亚种的π值没有显著差异。系统发育树显示,来自不同西方蜜蜂亚种的所有 csd 单倍型在整个树中分散,没有形成 6 个不同的分支。种群分化分析表明,一些亚种之间存在显著的遗传分化。NJ 系统发育树显示,A. m. carnica 和 A. m. caucasica 亚种的亲缘关系最密切,其次是 A. m. ssp、A. m. ligustica、A. m. carpatica 和 A. m. anatolica 亚种依次聚集在树上。