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Differential gene expression between hygienic and non-hygienic honeybee ( Apis mellifera L.) hives

机译:卫生和非卫生蜜蜂(API Mellifera L.)蜂房之间的差异基因表达

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Hygienic behavior is a complex, genetically-based quantitative trait that serves as a key defense mechanism against parasites and diseases in Apis mellifera. Yet, the genomic basis and functional pathways involved in the initiation of this behavior are still unclear. Deciphering the genomic basis of hygienic behavior is a prerequisite to developing an extensive repertoire of genetic markers associated to the performance level of this quantitative trait. To fill this knowledge gap, we performed an RNA-seq on brain samples of 25 honeybees per hives from five hygienic and three non-hygienic hives. This analysis revealed that a limited number of functional genes are involved in honeybee hygienic behavior. The genes identified, and especially their location in the honeybee genome, are consistent with previous findings. Indeed, the genomic sequences of most differentially expressed genes were found on the majority of the QTL regions associated to the hygienic behavior described in previous studies. According to the Gene Ontology annotation, 15 genes are linked to the GO-terms DNA or nucleotide binding, indicating a possible role of these genes in transcription regulation. Furthermore, GO-category enrichment analysis revealed that electron carrier activity is over-represented, involving only genes belonging to the cytochrome P450. Cytochrome P450 enzymes’ overexpression can be explained by a disturbance in the regulation of expression induced by changes in transcription regulation or sensitivity to xenobiotics. Over-expressed cytochrome P450 enzymes could potentially degrade the odorant pheromones or chemicals that normally signal the presence of a diseased brood before activation of the removal process thereby inhibit hygienic behavior. These findings improve our understanding on the genetics basis of the hygienic behavior. Our results show that hygienic behavior relies on a limited set of genes linked to different regulation patterns (expression level and biological processes) associated with an over-expression of cytochrome P450 genes.
机译:卫生行为是一种复杂的基于遗传学的定量特征,作为对抗Apis Mellifera寄生虫和疾病的关键防御机制。然而,参与该行为引发的基因组和功能途径仍不清楚。破译卫生行为的基因组基础是开发与这种定量特征的性能水平相关的广泛遗传标记的先决条件。为了填补这种知识差距,我们对来自五种卫生和三种非卫生荨麻疹的25个蜂窝的脑样本上进行了RNA-SEQ。该分析显示,有限数量的功能基因涉及蜜骨卫生行为。鉴定的基因,特别是它们在蜜细胞基因组中的位置,与先前的发现一致。实际上,在与先前研究中描述的卫生行为相关的大多数QTL区域上发现了大多数差异表达基因的基因组序列。根据基因本体的注释,15个基因与Go-术语DNA或核苷酸结合相关,表明这些基因在转录调节中的可能作用。此外,去分类富集分析显示,电子载体活性被过度代表,涉及属于细胞色素P450的基因。细胞色素P450酶的过表达可以通过调节通过转录调节或对异恶素敏感性的变化诱导的表达调节的扰动来解释。过表达的细胞色素P450酶可能会降解通常表示在去除过程中抑制卫生行为之前患者患者患者患者存在的气味的信息素或化学物质。这些发现改善了我们对卫生行为的遗传学的理解。我们的结果表明,卫生行为依赖于与不同调节模式(表达水平和生物学过程)相关的有限基因,与细胞色素P450基因的过表达相关。

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