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Forager bees (Apis mellifera) highly express immune and detoxification genes in tissues associated with nectar processing

机译:食蜂(Apis mellifera)在与花蜜加工相关的组织中高表达免疫和排毒基因

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摘要

Pollinators, including honey bees, routinely encounter potentially harmful microorganisms and phytochemicals during foraging. However, the mechanisms by which honey bees manage these potential threats are poorly understood. In this study, we examine the expression of antimicrobial, immune and detoxification genes in Apis mellifera and compare between forager and nurse bees using tissue-specific RNA-seq and qPCR. Our analysis revealed extensive tissue-specific expression of antimicrobial, immune signaling, and detoxification genes. Variation in gene expression between worker stages was pronounced in the mandibular and hypopharyngeal gland (HPG), where foragers were enriched in transcripts that encode antimicrobial peptides (AMPs) and immune response. Additionally, forager HPGs and mandibular glands were enriched in transcripts encoding detoxification enzymes, including some associated with xenobiotic metabolism. Using qPCR on an independent dataset, we verified differential expression of three AMP and three P450 genes between foragers and nurses. High expression of AMP genes in nectar-processing tissues suggests that these peptides may contribute to antimicrobial properties of honey or to honey bee defense against environmentally-acquired microorganisms. Together, these results suggest that worker role and tissue-specific expression of AMPs, and immune and detoxification enzymes may contribute to defense against microorganisms and xenobiotic compounds acquired while foraging.
机译:授粉媒介(包括蜜蜂)在觅食期间通常会遇到潜在有害的微生物和植物化学物质。但是,人们对蜜蜂处理这些潜在威胁的机制了解甚少。在这项研究中,我们检查了蜜蜂,蜜蜂和蜜蜂的抗菌,免疫和解毒基因的表达,并使用组织特异性RNA-seq和qPCR比较了觅食蜂和哺乳蜂。我们的分析揭示了抗菌,免疫信号和排毒基因的广泛组织特异性表达。在下颌和下咽腺(HPG)中,工人阶段之间的基因表达存在明显差异,其中觅食者富含编码抗微生物肽(AMPs)和免疫反应的转录本。此外,觅食的HPG和下颌腺富含编码解毒酶的转录本,其中包括一些与异源生物代谢有关的转录本。在独立数据集上使用qPCR,我们验证了觅食者和护士之间三个AMP和三个P450基因的差异表达。甘露糖加工组织中AMP基因的高表达表明,这些肽可能有助于蜂蜜的抗微生物特性,或者有助于蜜蜂抵抗环境获得的微生物。总之,这些结果表明,工人的作用以及AMPs的组织特异性表达以及免疫和解毒酶可能有助于防御觅食时获得的微生物和异源化合物。

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