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温度、克氏锥虫寄生虫负荷和营养之间的相互作用:它们对恰加斯病传播媒介罗氏沼虾发育和生命周期的影响。

The interplay between temperature, Trypanosoma cruzi parasite load, and nutrition: Their effects on the development and life-cycle of the Chagas disease vector Rhodnius prolixus.

机构信息

Vector Behavior and Pathogen Interaction Group, Instituto René Rachou, Fundação Oswaldo Cruz-FIOCRUZ, Belo Horizonte, Brazil.

出版信息

PLoS Negl Trop Dis. 2024 Feb 2;18(2):e0011937. doi: 10.1371/journal.pntd.0011937. eCollection 2024 Feb.

Abstract

Chagas disease, caused by the protozoan parasite Trypanosoma cruzi transmitted by blood-sucking insects of the subfamily Triatominae, is a major neglected tropical disease affecting 6 to 7 million of people worldwide. Rhodnius prolixus, one of the most important vectors of Chagas disease in Latin America, is known to be highly sensitive to environmental factors, including temperature. This study aimed to investigate the effects of different temperatures on R. prolixus development and life-cycle, its relationship with T. cruzi, and to gather information about the nutritional habits and energy consumption of R. prolixus. We exposed uninfected and infected R. prolixus to four different temperatures ranging from 24°C to 30°C, and monitored their survival, developmental rate, body and blood meal masses, urine production, and the temporal dynamics of parasite concentration in the excreted urine of the triatomines over the course of their development. Our results demonstrate that temperature significantly impacts R. prolixus development, life-cycle and their relationship with T. cruzi, as R. prolixus exposed to higher temperatures had a shorter developmental time and a higher mortality rate compared to those exposed to lower temperatures, as well as a lower ability to retain weight between blood meals. Infection also decreased the capacity of the triatomines to retain weight gained by blood-feeding to the next developmental stage, and this effect was proportional to parasite concentration in excreted urine. We also showed that T. cruzi multiplication varied depending on temperature, with the lowest temperature having the lowest parasite load. Our findings provide important insights into the potential impact of climate change on the epidemiology of Chagas disease, and can contribute to efforts to model the future distribution of this disease. Our study also raises new questions, highlighting the need for further research in order to understand the complex interactions between temperature, vector biology, and parasite transmission.

摘要

恰加斯病,由吸血昆虫锥蝽亚科传播的原生动物寄生虫克氏锥虫引起,是一种影响全球 600 至 700 万人的主要被忽视的热带病。在拉丁美洲,传播恰加斯病最重要的锥蝽之一——巨足长蝽,已知对环境因素,包括温度,高度敏感。本研究旨在调查不同温度对巨足长蝽发育和生命周期的影响、它与克氏锥虫的关系,并收集关于巨足长蝽营养习惯和能量消耗的信息。我们将未感染和感染的巨足长蝽暴露在 24°C 至 30°C 的四个不同温度下,监测它们的存活、发育速度、身体和血餐质量、尿液产生以及寄生虫在其发育过程中在排泄尿液中的浓度的时间动态。我们的结果表明,温度对巨足长蝽的发育、生命周期及其与克氏锥虫的关系有显著影响,因为暴露在较高温度下的巨足长蝽的发育时间更短,死亡率更高,与暴露在较低温度下的相比,它们在两次血餐之间的体重保持能力也较低。感染还降低了三锥虫在下一个发育阶段保留通过吸血获得的体重的能力,这种效果与排泄尿液中的寄生虫浓度成正比。我们还表明,克氏锥虫的繁殖随温度而异,最低温度的寄生虫负荷最低。我们的研究结果为气候变化对恰加斯病流行病学的潜在影响提供了重要的见解,并有助于为该疾病的未来分布建模做出努力。我们的研究还提出了新的问题,突出了需要进一步研究,以了解温度、媒介生物学和寄生虫传播之间的复杂相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f79/10866482/3a6c284e41a8/pntd.0011937.g001.jpg

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