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首页> 外文期刊>Sociobiology >Food Niche Overlap Among Neotropical Carpenter Bees (Hymenoptera: Apidae: Xylocopini) in an Agricultural System
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Food Niche Overlap Among Neotropical Carpenter Bees (Hymenoptera: Apidae: Xylocopini) in an Agricultural System

机译:农业系统中新热带木匠蜜蜂(膜翅目:Apidae:Xylocopini)的食物生态位重叠

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In the present study, we used niche overlap analysis and a network approach to investigate the use of floral resources by carpenter bees (Xylocopa spp.). We assessed the frequency of visit to different plant species and the activity time of carpenter bees in an agricultural system. Six species of carpenter bees were collected visiting flowers. Among the 48 interactions that were theoretically possible in the interaction network, only 19 were recorded (Connectance = 39.58%). The temporal overlap between pairs of species measured by the Shannon index (0 to 0.648) was lower than dietary overlap (0 to 0.967). The network analysis also showed that bees separated their niches more strongly in the temporal dimension (E = 0.72, P < 0.001) than in the dietary dimension (E = 0.55, P < 0.001). The levels of dietary and temporal overlap were strongly correlated with each other, as well as the time of highest frequency of visit coincided with the time of availability of resources by the most important plants (Moringa oleifera, Passiflora edulis, and Solanum palinacanthum). The correlation between dietary and temporal overlap is biologically explained by the presence of plants that structure the system by exerting a strong influence not only on the plant choice by foraging bees, but also on the time of resource collection.
机译:在本研究中,我们使用利基重叠分析和网络方法来调查木匠蜜蜂(Xylocopa spp。)对花卉资源的利用。我们评估了在农业系统中访问不同植物物种的频率以及木匠蜜蜂的活动时间。收集了六种木匠蜜蜂来访花卉。从理论上讲,在交互网络中可能进行的48种交互中,仅记录了19个(连接= 39.58%)。通过香农指数测量的成对物种之间的时间重叠(0至0.648)低于饮食重叠(0至0.967)。网络分析还表明,蜜蜂在时间维度(E = 0.72,P <0.001)上比在饮食维度(E = 0.55,P <0.001)上的位置更强。饮食和时间重叠的水平相互之间密切相关,探视频率最高的时间与最重要植物(辣木(Moringa oleifera),西番莲(Passiflora edulis)和茄(Solanum palinacanthum))的资源可获得时间一致。从饮食上和时间上的重叠之间的相关关系可以用生物学上的解释来解释,因为植物的存在不仅通过觅食蜜蜂对植物的选择产生巨大影响,而且对资源收集的时间也产生了强大的影响,从而构成了系统。

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