欢迎来到膜翅目酒店:利用群落科学和代谢编码监测穴巢蜜蜂和黄蜂的分布及其营养相互作用

bioRxiv Pub Date : 2024-07-16 DOI:10.1101/2024.07.10.602935
Sage Handler, K. Coveny, Thomas W. A. Braukmann, N. E. Raine, Dirk Steinke
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引用次数: 0

摘要

基本生态系统服务由许多相互作用提供,包括植物-传粉者、捕食者-猎物和寄主-寄生虫。这些服务通过授粉和害虫控制为食物和自然系统提供支持,但对它们进行定性具有挑战性,以往的观察研究可能低估了它们的复杂性。穴巢膜翅目昆虫就是一个很好的例子,它们展示了所有这三种相互作用,而且可以使用诱捕巢对其进行监测。在这项研究中,社区科学家在加拿大各地的学校安装了诱捕巢,以调查穴巢蜜蜂和黄蜂的分布和相互作用。DNA 代谢编码被用来识别居住者及其食物来源。发现了新的蜜蜂和黄蜂分布,这可能是以前采样不足或最近范围扩大的结果。描述物种相互作用的详细二方和三方网络表明,蜜蜂、黄蜂和寄生虫之间存在一些新的联系。这些结果鼓励使用分子方法进一步研究这些相互作用,因为详细的分布图和网络可为自然历史学家和保护主义者提供信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Welcome to Hotel Hymenoptera: monitoring cavity-nesting bee and wasp distribution and their trophic interactions using community science and metabarcoding
Essential ecosystem services are provided by many interactions, including plant-pollinator, predator-prey, and host-parasitoid. These services support food and natural systems through pollination and pest control, however they are challenging to qualify, and previous observational studies may underestimate their complexity. The cavity nesting Hymenoptera are a good example showing all these three interactions and they can be monitored using trap nests. For this study, trap nests were installed at schools across Canada by community scientists to investigate cavity-nesting bee and wasp distributions and interactions. DNA metabarcoding was used to identify the occupants and their food sources. New bee and wasp distributions were found that might be the result of previous under-sampling or recent range expansions. Detailed bipartite and tripartite networks describing species interactions suggest some novel bee, wasp, and parasite associations. These results encourage further investigation into these interactions using molecular methods as detailed range maps and networks provide information to natural historians and conservationists alike.
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