Hammer Tobin J, Le Eli, Martin Alexia N, Moran Nancy A
Department of Integrative Biology, University of Texas at Austin, Austin, TX 78703.
Insectes Soc. 2021 Nov;68(4):287-301. doi: 10.1007/s00040-021-00837-1. Epub 2021 Sep 29.
Bumblebees () are charismatic and important pollinators. They are one of the best studied insect groups, especially in terms of ecology, behavior, and social structure. As many species are declining, there is a clear need to understand more about them. Microbial symbionts, which can influence many dimensions of animal life, likely have an outsized role in bumblebee biology. Recent research has shown that a conserved set of beneficial gut bacterial symbionts is ubiquitous across bumblebees. These bacteria are related to gut symbionts of honeybees, but have not been studied as intensively. Here we synthesize studies of bumblebee gut microbiota, highlight major knowledge gaps, and suggest future directions. Several patterns emerge, such as symbiont-host specificity maintained by sociality, frequent symbiont loss from individual bees, symbiont-conferred protection from trypanosomatid parasites, and divergence between bumblebee and honeybee microbiota in several key traits. For many facets of bumblebee-microbe interactions, however, underlying mechanisms and ecological functions remain unclear. Such information is important if we are to understand how bumblebees shape, and are shaped by, their gut microbiota. Bumblebees may provide a useful system for microbiome scientists, providing insights into general principles of host-microbe interactions. We also note how microbiota could influence bumblebee traits and responses to stressors. Finally, we propose that tinkering with the microbiota could be one way to aid bumblebee resilience in the face of global change.
熊蜂是极具魅力且重要的传粉者。它们是研究最为深入的昆虫群体之一,尤其是在生态学、行为学和社会结构方面。由于许多物种数量正在减少,显然有必要对它们有更多的了解。微生物共生体能够影响动物生活的诸多方面,在熊蜂生物学中可能发挥着巨大作用。最近的研究表明,一组保守的有益肠道细菌共生体在熊蜂中普遍存在。这些细菌与蜜蜂的肠道共生体有关,但尚未得到深入研究。在此,我们综合了关于熊蜂肠道微生物群的研究,突出了主要的知识空白,并提出了未来的研究方向。出现了几种模式,例如社会性维持的共生体 - 宿主特异性、单个蜜蜂频繁失去共生体、共生体赋予对锥虫寄生虫的保护,以及熊蜂和蜜蜂微生物群在几个关键特征上的差异。然而,对于熊蜂与微生物相互作用的许多方面,其潜在机制和生态功能仍不清楚。如果我们想要了解熊蜂如何塑造其肠道微生物群以及如何被肠道微生物群塑造,这些信息就很重要。熊蜂可能为微生物组科学家提供一个有用的系统,有助于深入了解宿主 - 微生物相互作用的一般原则。我们还指出了微生物群如何影响熊蜂的特征和对压力源的反应。最后,我们提出调整微生物群可能是帮助熊蜂在面对全球变化时恢复适应力的一种方式。