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Characterization of Genomic Variants Associated with Scout and Recruit Behavioral Castes in Honey Bees Using Whole-Genome Sequencing

机译:使用全基因组测序表征与蜜蜂侦察兵和新兵行为种姓相关的基因组变异

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摘要

Among forager honey bees, scouts seek new resources and return to the colony, enlisting recruits to collect these resources. Differentially expressed genes between these behaviors and genetic variability in scouting phenotypes have been reported. Whole-genome sequencing of 44 Apis mellifera scouts and recruits was undertaken to detect variants and further understand the genetic architecture underlying the behavioral differences between scouts and recruits. The median coverage depth in recruits and scouts was 10.01 and 10.7 X, respectively. Representation of bacterial species among the unmapped reads reflected a more diverse microbiome in scouts than recruits. Overall, 1,412,705 polymorphic positions were analyzed for associations with scouting behavior, and 212 significant (p-value < 0.0001) associations with scouting corresponding to 137 positions were detected. Most frequent putative transcription factor binding sites proximal to significant variants included Broad-complex 4, Broad-complex 1, Hunchback, and CF2-II. Three variants associated with scouting were located within coding regions of ncRNAs including one codon change (LOC102653644) and 2 frameshift indels (LOC102654879 and LOC102655256). Significant variants were also identified on the 5’UTR of membrin, and 3’UTRs of laccase 2 and diacylglycerol kinase theta. The 60 significant variants located within introns corresponded to 39 genes and most of these positions were > 1000 bp apart from each other. A number of these variants were mapped to ncRNA LOC100578102, solute carrier family 12 member 6-like gene, and LOC100576965 (meprin and TRAF-C homology domain containing gene). Functional categories represented among the genes corresponding to significant variants included: neuronal function, exoskeleton, immune response, salivary gland development, and enzymatic food processing. These categories offer a glimpse into the molecular support to the behaviors of scouts and recruits. The level of association between genomic variants and scouting behavior observed in this study may be linked to the honey bee’s genomic plasticity and fluidity of transition between castes.
机译:在觅食的蜜蜂中,侦察兵寻找新资源并返回殖民地,招募新兵来收集这些资源。在侦查表型中这些行为和遗传变异之间差异表达的基因已有报道。进行了全基因组测序的44个蜜蜂蜜蜂和新兵,以检测变体并进一步了解作为新兵和新兵行为差异基础的遗传结构。新兵和侦察兵的中位覆盖深度分别为10.01和10.7X。未映射的读段中细菌种类的表示反映了侦察兵中的微生物组比新兵更多样化。总体而言,分析了1,412,705个多态性位点与侦查行为的关联,并检测到212个与137个位置相对应的与侦查行为相关的重要(p值<0.0001)。最接近显着变异体的最常见的推定转录因子结合位点包括宽复合体4,宽复合体1,驼峰和CF2-II。与侦查相关的三个变体位于ncRNA的编码区域内,包括一个密码子变化(LOC102653644)和2个移码插入/缺失(LOC102654879和LOC102655256)。在膜蛋白的5'UTR和漆酶2和二酰基甘油激酶theta的3'UTR上也发现了重要的变体。位于内含子内的60个重要变体对应于39个基因,并且这些位置中的大多数彼此相距> 1000 bp。将这些变体中的许多定位于ncRNA LOC100578102,溶质载体家族12成员6样基因和LOC100576965(含有美普林和TRAF-C同源域的基因)。在与重要变体相对应的基因中代表的功能类别包括:神经元功能,外骨骼,免疫反应,唾液腺发育和酶促食品加工。这些类别提供了对侦察员和新兵行为的分子支持的一瞥。在这项研究中观察到的基因组变异与侦察行为之间的关联水平可能与蜜蜂的基因组可塑性和种姓之间过渡的流动性有关。

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