Haque Md Tangigul, Paul Shatabdi, Herberstein Marie E, Khan Md Kawsar
School of Natural Sciences, Macquarie University, Sydney, New South Wales, Australia.
Centre for Taxonomy and Morphology, Leibniz Institute for the Analysis of Biodiversity Change, Hamburg, Germany.
R Soc Open Sci. 2025 Sep 3;12(9):251061. doi: 10.1098/rsos.251061. eCollection 2025 Sep.
Rising temperatures and frequent heatwaves pose a major threat to ectotherms due to their reliance on environmental temperature for physiological processes. Thermal tolerance, the ability to withstand varying temperature, determines how effectively and efficiently individuals can survive under extreme conditions. Host-microbial symbiotic interactions can influence thermal tolerance in insects; however, we have limited information especially for some endosymbionts such as gregarines, a group of apicomplexan endoparasites, which are commonly found in the guts of many aquatic and terrestrial insects. Gregarines are often considered parasitic, while a few recent studies have shown beneficial effects on hosts. Here, we tested the impact of gregarines on thermal tolerance in damselflies. We found that damselflies naturally infected with gregarines had higher thermal tolerance than damselflies without gregarine infections. Our findings provide evidence in support of gregarines as an endosymbiont of damselfly. Our study indicates that gregarine endosymbionts may assist damselfly and possibly other semi-aquatic insects to sustain extreme heat and highlights the importance of understanding host-symbiont interactions in the context of climate change and species conservation.
气温上升和频繁的热浪对变温动物构成了重大威胁,因为它们的生理过程依赖于环境温度。热耐受性,即承受温度变化的能力,决定了个体在极端条件下生存的有效性和效率。宿主与微生物的共生相互作用会影响昆虫的热耐受性;然而,我们掌握的信息有限,尤其是对于某些内共生体,如簇虫,这是一类顶复门内寄生虫,常见于许多水生和陆生昆虫的肠道中。簇虫通常被认为是寄生性的,而最近的一些研究显示它们对宿主有有益影响。在此,我们测试了簇虫对豆娘热耐受性的影响。我们发现,自然感染簇虫的豆娘比未感染簇虫的豆娘具有更高的热耐受性。我们的研究结果为簇虫作为豆娘的内共生体提供了证据支持。我们的研究表明,簇虫内共生体可能有助于豆娘以及其他半水生昆虫承受极端高温,并突出了在气候变化和物种保护背景下理解宿主与共生体相互作用的重要性。