首页> 外文期刊>Journal of Medical Entomology >Thermal Tolerance Plasticity in Chagas Disease Vectors Rhodnius prolixus (Hemiptera: Reduviidae) and Triatoma infestans
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Thermal Tolerance Plasticity in Chagas Disease Vectors Rhodnius prolixus (Hemiptera: Reduviidae) and Triatoma infestans

机译:Chagas疾病患者的耐热耐受性rhodnius rolodnius(Hemiptera:Reduviidae)和三级豚鼠

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摘要

Temperature is recognized as the most influential abiotic factor on the distribution and dispersion of most insect species including Rhodnius prolixus (Stal, 1859) and Triatoma infestans (Klug, 1834), the two most important Chagas disease vectors. Although, these species thermotolerance range is well known their plasticity has never been addressed in these or any other triatomines. Herein, we investigate the effects of acclimation on thermotolerance range and resistance to stressful low temperatures by assessing thermal critical limits and 'chill-coma recovery time' (CCRT), respectively. We found positive effects of acclimation on thermotolerance range, especially on the thermal critical minimum of both species. In contrast, CCRT did not respond to acclimation in either. Our results reveal the plasticity of these Triatomines thermal tolerance in response to a wide range of acclimation temperatures. This presumably represents a physiological adaptation to daily or seasonal temperature variation with concomitant improvement in dispersion potential.
机译:温度被认为是最有影响力的非生物因素,对大多数昆虫物种的分布和分散,包括rhodnius渐渐(Stal,1859)和Triatoma infestans(Klug,1834),这两个最重要的噬菌体疾病载体。虽然,这些物种热能范围是众所周知,它们的可塑性从未在这些或任何其他三瘤中寻址。在此,我们通过评估热临界限制和'CHILL-COMA恢复时间'(CCRT)来研究加速度对热能范围和耐受胁迫低温的影响。我们发现适应对热能范围的积极影响,特别是在两个物种的热临界最小值上。相比之下,CCRT在也没有响应适应。我们的结果揭示了这些Trairiatomines热容差的可塑性,以响应各种适应温度。这可能是对日常或季节性温度变化的生理适应,随着分散电位的伴随改善。

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