...
首页> 外文期刊>Journal of Theoretical Biology >Temporal model of fluid-feeding mechanisms in a long proboscid orchid bee compared to the short proboscid honey bee
【24h】

Temporal model of fluid-feeding mechanisms in a long proboscid orchid bee compared to the short proboscid honey bee

机译:与短孔隙植物蜂窝蜂窝蜂窝蜂窝中的流体喂养机制的时间模型

获取原文
获取原文并翻译 | 示例
           

摘要

Bees (Apidae) are flower-visiting insects that possess highly efficient mouthparts for the ingestion of nectar and other sucrose fluids. Their mouthparts are composed of mandibles and a tube-like proboscis. The proboscis forms a food canal, which encompasses a protrusible and hairy tongue to load and imbibe nectar, representing a fluid-feeding technique with a low Reynolds number. The western honey bee, Apis mellifera ligustica, can rhythmically erect the tongue microtrichia to regulate the glossal shape, achieving a tradeoff between nectar intake rate and viscous drag. Neotropical orchid bees (Euglossa imperialis) possess a proboscis longer than the body and combines this lapping-sucking mode of fluid-feeding with suction feeding. This additional technique of nectar uptake may have different biophysics. In order to reveal the effect of special structures of mouthparts in terms of feeding efficiency, we build a temporal model for orchid bees considering fluid transport in multi-states including active suction, tongue protraction and viscous dipping. Our model indicates that the dipping technique employed by honey bees can contribute to more than seven times the volumetric and energetic intake rate at a certain nectar concentration compared with the combined mode used by orchid bees. The high capability of the honey bee's proboscis to ingest nectar may inspire micropumps for transporting viscous liquid with higher efficiency. (C) 2019 Elsevier Ltd. All rights reserved.
机译:蜜蜂(Apidae)是花卉昆虫,具有高效的口感,用于摄入花蜜和其他蔗糖液。他们的嘴巴由颌骨和管状的悬料组成。高潮形成一种食品运河,它包括突起和毛茸茸的舌头来装载和吸收花蜜,其代表具有低雷诺数的流体供给技术。西部蜂蜜蜜蜂,Apis Mellifera Ligustica可以有节奏地直立舌头Microtrichia来调节助理的形状,实现花蜜进气率和粘性阻力之间的权衡。新植物兰花蜜蜂(Euglossa Imperialis)具有比身体更长的高效,并结合了用吸入进料的流体喂养的研磨吸吮模式。这种Nectar摄取的额外技术可能具有不同的生物物理学。为了揭示口腔特殊结构在喂养效率方面的影响,考虑到多状态的流体输送,建立兰花蜜蜂的时间模型,包括主动吸力,舌伸部和粘性浸渍。我们的模型表明,与兰花蜜蜂使用的组合模式相比,蜂蜜蜜蜂采用的浸渍技术可以有助于某种花蜜浓度的体积和精力充沛的进气率超过7倍。蜂蜜蜜蜂的高效摄入花蜜的高能力可以激发微泵,以具有更高效率的粘性液体。 (c)2019年elestvier有限公司保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号