Saccà Maria Ludovica, Manici Luisa Maria
Council for Agricultural Research and Economics (CREA), Research Center for Agriculture and Environment, Via di Corticella 133, 40128, Bologna, Italy.
Council for Agricultural Research and Economics (CREA), Research Center for Agriculture and Environment, Via di Corticella 133, 40128, Bologna, Italy.
Microbiol Res. 2021 Nov;252:126860. doi: 10.1016/j.micres.2021.126860. Epub 2021 Sep 9.
Honey bee-associated bacteria are a source of natural compounds of interest for controlling hive decline which is threatening bee health globally. Genes involved in the biosynthesis of a series of extracellular compounds released by bacteria living on the external surface of honey bees were investigated. A biosynthetic gene-based approach was adopted by developing a battery of primers to target the genes involved in the biosynthesis of four groups of bioactive compounds (pyrrolizidine alkaloids, surfactin, 2-heptanone and helveticin J). The primers were tested on 51 bacterial isolates belonging to Bacillus thuringiensis, Acetobacteraceae bacterium, Bifidobacterium asteroides and Apilactobacillus kunkeei. The developed primers led to species-specific detection and characterization of the functional genes involved in the production of three out of four groups of compounds selected for this study. The findings suggest that microbial populations inhabiting apiaries harbor genes involved in the biosynthesis of metabolites linked to the reduction of important honey bee pathogens such as Varroa destructor, Paenibacillus larvae and Nosema ceranae. The gene-based approach adopted for evaluating the biosynthetic potential of bioactive compounds in hives is promising for investigating further compounds for low input control strategies of bee enemies.
与蜜蜂相关的细菌是天然化合物的一个来源,这些化合物对于控制正在全球范围内威胁蜜蜂健康的蜂群衰退具有重要意义。对生活在蜜蜂体表的细菌释放的一系列细胞外化合物生物合成中涉及的基因进行了研究。通过设计一系列引物来靶向参与四类生物活性化合物(吡咯里西啶生物碱、表面活性素、2-庚酮和瑞士乳杆菌素J)生物合成的基因,采用了一种基于生物合成基因的方法。这些引物在属于苏云金芽孢杆菌、醋酸杆菌科细菌、星状双歧杆菌和昆氏蜂乳酸杆菌的51株细菌分离物上进行了测试。所开发的引物实现了对本研究选择的四类化合物中三类化合物生产所涉及的功能基因进行物种特异性检测和表征。研究结果表明,栖息在养蜂场的微生物群体含有与减少诸如狄斯瓦螨、幼虫芽孢杆菌和蜜蜂微孢子虫等重要蜜蜂病原体相关的代谢物生物合成所涉及的基因。用于评估蜂箱中生物活性化合物生物合成潜力的基于基因的方法,对于进一步研究用于蜜蜂敌害低投入控制策略的化合物具有广阔前景。