Sagona Simona, Fronte Baldassare, Coppola Francesca, Tafi Elena, Giusti Matteo, Palego Lionella, Betti Laura, Giannaccini Gino, Guglielminetti Lorenzo, Felicioli Antonio
Department of Veterinary Sciences, University of Pisa, viale delle Piagge 2, 56124 Pisa, Italy.
Department of Pharmacy, University of Pisa, Via Bonanno 6, 56126 Pisa, Italy.
Vet Sci. 2021 Jul 13;8(7):130. doi: 10.3390/vetsci8070130.
β-glucans can activate the animal innate immune system by acting as immune-modulators and inducing various stimulatory effects. The aim of this study was to investigate the effect of 1,3-1,6 β-glucans administered orally for 96 h on workers (newly emerged and nurse bees). β-glucans were included in honey and syrup. Survival rate and phenoloxidase activity were measured. In both newly emerged and nurse bees, β-glucans supplementation did not affect survival rate ( > 0.05). Conversely, phenoloxidase activity was higher in both newly emerged bees ( = 0.048) and nurse bees ( = 0.014) fed with a honey diet enriched with β-glucans compared to those fed with only honey. In both the newly emerged and nurse bees, no statistical differences in phenoloxidase activity were recorded between the group fed with a syrup-based diet enriched with β-glucans and the control group ( > 0.05). The absence of significant variation in survival suggests that the potential negative effect of β-glucans in healthy bees could be mitigated by their metabolism. Conversely, the inclusion of β-glucans in a honey-based diet determined an increase of phenoloxidase activity, suggesting that the effect of β-glucan inclusion in the diet of healthy bees on phenoloxidase activity could be linked to the type of base-diet. Further investigations on β-glucans metabolism in bees, on molecular mechanism of phenoloxidase activation by 1,3-1,6 β-glucans, and relative thresholds are desirable. Moreover, investigation on the combined action of honey and β-glucans on phenoloxidase activity are needed.
β-葡聚糖可作为免疫调节剂,通过诱导各种刺激作用来激活动物的先天免疫系统。本研究旨在调查口服1,3-1,6 β-葡聚糖96小时对工蜂(新羽化出房的蜜蜂和哺育蜂)的影响。β-葡聚糖被添加到蜂蜜和糖浆中。测量了存活率和酚氧化酶活性。在新羽化出房的蜜蜂和哺育蜂中,补充β-葡聚糖均不影响存活率(P>0.05)。相反,与仅喂食蜂蜜的蜜蜂相比,喂食富含β-葡聚糖蜂蜜的新羽化出房的蜜蜂(P = 0.048)和哺育蜂(P = 0.014)的酚氧化酶活性更高。在新羽化出房的蜜蜂和哺育蜂中,喂食富含β-葡聚糖糖浆的组与对照组之间的酚氧化酶活性均未记录到统计学差异(P>0.05)。存活率没有显著变化表明,β-葡聚糖在健康蜜蜂中的潜在负面影响可能会因其代谢作用而减轻。相反,在以蜂蜜为基础的饮食中添加β-葡聚糖会使酚氧化酶活性增加,这表明在健康蜜蜂饮食中添加β-葡聚糖对酚氧化酶活性的影响可能与基础饮食的类型有关。需要对蜜蜂体内β-葡聚糖的代谢、1,3-1,6 β-葡聚糖激活酚氧化酶的分子机制以及相关阈值进行进一步研究。此外,还需要研究蜂蜜和β-葡聚糖对酚氧化酶活性的联合作用。