Saccà Maria Ludovica, Bianchi Giulia, Lo Scalzo Roberto
Council for Agricultural Research and Economics (CREA), Research Center for Agriculture and Environment (AA), Via di Corticella 133, 40128 Bologna, Italy.
Council for Agricultural Research and Economics (CREA), Research Centre for Engineering and Agro-Food Processing (IT), Via G. Venezian 26, 20133 Milan, Italy.
Microorganisms. 2021 Oct 26;9(11):2218. doi: 10.3390/microorganisms9112218.
Beehives are populated by bacterial species with a protective role against honey bee pathogens thanks to the production of bioactive metabolites. These compounds are largely unexploited despite their high potential interest for pest management. This study evaluated the capability of bacterial species associated with honey bees to produce 2-heptanone, a volatile organic compound with anesthetic properties of the parasitic mite . The production of this compound was quantified by SPME-GC-MS in a culture filtrate of nine bacterial strains isolated from the surface of honey bees, and the biosynthetic potential was evaluated in bacterial species associated with apiaries by searching for protein homologs putatively involved in its biosynthesis by using biocomputational tools. The findings pointed out that 2-heptanone was produced by , and isolates in concentrations between 1.5 and 2.6 ng/mL and that its production was strain-specific. Putative methylketone synthase homologs were found in , , , and Lactobacillaceae, and the protein sequence results were distributed in nine Sequence Similarity Network (SSN) clusters. These preliminary results support the hypothesis that 2-heptanone may act as a mediator of microbial relationships in hives and provide contributions to assess the role and biosynthetic potential of 2-heptanone in apiaries.
蜂箱中存在着一些细菌物种,它们通过产生生物活性代谢物对蜜蜂病原体起到保护作用。尽管这些化合物在害虫管理方面具有很高的潜在价值,但在很大程度上未被开发利用。本研究评估了与蜜蜂相关的细菌物种产生 2-庚酮的能力,2-庚酮是一种对寄生螨具有麻醉特性的挥发性有机化合物。通过固相微萃取-气相色谱-质谱联用(SPME-GC-MS)对从蜜蜂体表分离出的 9 株细菌菌株的培养滤液中该化合物的产量进行了定量,并通过使用生物计算工具搜索推测参与其生物合成的蛋白质同源物来评估与养蜂场相关的细菌物种中的生物合成潜力。研究结果指出,、和分离株产生了浓度在 1.5 至 2.6 ng/mL 之间的 2-庚酮,并且其产量具有菌株特异性。在、、、和乳杆菌科中发现了假定的甲基酮合酶同源物,蛋白质序列结果分布在九个序列相似性网络(SSN)簇中。这些初步结果支持了这样的假设,即 2-庚酮可能作为蜂巢中微生物关系的介质,并为评估 2-庚酮在养蜂场中的作用和生物合成潜力提供了依据。