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脱水会改变蚊子中肠的转录水平,这可能有助于在吸食血液后快速补充水分。

Dehydration Alters Transcript Levels in the Mosquito Midgut, Likely Facilitating Rapid Rehydration following a Bloodmeal.

作者信息

Holmes Christopher J, Brown Elliott S, Sharma Dhriti, Warden Matthew, Pathak Atit, Payton Blaine, Nguyen Quynh, Spangler Austin, Sivakumar Jaishna, Hendershot Jacob M, Benoit Joshua B

机构信息

Department of Biological Sciences, University of Cincinnati, Cincinnati, OH 45221, USA.

出版信息

Insects. 2023 Mar 9;14(3):274. doi: 10.3390/insects14030274.

Abstract

The mosquito midgut is an important site for bloodmeal regulation while also acting as a primary site for pathogen exposure within the mosquito. Recent studies show that exposure to dehydrating conditions alters mosquito bloodfeeding behaviors as well as post-feeding regulation, likely altering how pathogens interact with the mosquito. Unfortunately, few studies have explored the underlying dynamics between dehydration and bloodmeal utilization, and the overall impact on disease transmission dynamics remains veiled. In this study, we find that dehydration-based feeding in the yellow fever mosquito, , prompts alterations to midgut gene expression, as well as subsequent physiological factors involving water control and post-bloodfeeding (pbf) regulation. Altered expression of ion transporter genes and aquaporin 2 (AQP2) in the midgut of dehydrated mosquitoes as well as the rapid reequilibration of hemolymph osmolality after a bloodmeal indicate an ability to expedite fluid and ion processing. These alterations ultimately indicate that female employ mechanisms to ameliorate the detriments of dehydration by imbibing a bloodmeal, providing an effective avenue for rehydration. Continued research into bloodmeal utilization and the resulting effects on arthropod-borne transmission dynamics becomes increasingly important as drought prevalence is increased by climate change.

摘要

蚊子的中肠是调节血餐摄取的重要部位,同时也是蚊子体内病原体暴露的主要部位。最近的研究表明,暴露于脱水条件会改变蚊子的吸血行为以及吸血后的调节过程,这可能会改变病原体与蚊子之间的相互作用方式。不幸的是,很少有研究探讨脱水与血餐利用之间的潜在动态关系,其对疾病传播动态的总体影响仍不明确。在本研究中,我们发现黄热病蚊子基于脱水的进食方式会促使中肠基因表达发生改变,以及随后涉及水分控制和吸血后(pbf)调节的生理因素发生变化。脱水蚊子中肠中离子转运蛋白基因和水通道蛋白2(AQP2)的表达改变,以及吸血后血淋巴渗透压的快速重新平衡,表明其具有加快液体和离子处理的能力。这些变化最终表明,雌性蚊子通过摄取血餐来采用机制改善脱水的不利影响,为补充水分提供了一条有效途径。随着气候变化导致干旱发生率增加,对血餐利用及其对节肢动物传播疾病动态的影响进行持续研究变得越来越重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfb2/10056721/9e040b14f6cc/insects-14-00274-g001.jpg

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