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不同温度和湿度条件下粉尘螨(Dermatophagoides farinae)的种群增长与呼吸作用

Population growth and respiration in the dust mite Dermatophagoides farinae under different temperature and humidity regimes.

作者信息

Vackova Tereza, Pekar Stano, Klimov Pavel B, Hubert Jan

机构信息

Crop Research Institute, Drnovska 507/73, 161 06, Prague 6 - Ruzyne, Czechia.

Department of Parasitology, Faculty of Science, Charles University, Vinicna 1594/7, 128 44, Prague 2 - New Town, Czechia.

出版信息

Exp Appl Acarol. 2023 Feb;89(2):157-169. doi: 10.1007/s10493-022-00775-y. Epub 2023 Feb 1.

Abstract

Dermatophagoides farinae is an important house dust mite species that causes allergies in humans worldwide. In houses, these mites are commonly found in actively used mattresses and pillows, which provide food (i.e. sloughed skin and microorganisms), moisture, and increased temperature for faster mite development. In mattresses, feeding mites prefer the upper sector, as close as possible to the resting human (temperature 32-36 °C, humidity between 55 and 59%). However, mites that are not actively feeding prefer staying at deeper zones of the mattress. Here, we analyzed mite responses to different temperatures (15-35 °C) and relative humidity (62-94% RH) in terms of their population size growth and respiration (CO production) using lab mite cultures. The intrinsic rate of population increase had a single maximum at approximately 28 °C and 85% RH. At 30 °C, there were two respiration peaks at RH 90% (smaller peak) and 65% (larger peak). Therefore, there is a mismatch between the optimal temperature/humidity for the population size increase vs. respiration. We propose preliminary hypotheses explaining the two respiration peaks and suggest that future research should be done to elucidate the nature of these peaks.

摘要

粉尘螨是一种重要的屋尘螨,可在全球范围内引发人类过敏。在房屋中,这些螨虫常见于频繁使用的床垫和枕头中,这些地方为螨虫提供了食物(即脱落的皮肤和微生物)、水分以及更高的温度,以加速螨虫发育。在床垫中,进食的螨虫更喜欢靠近熟睡的人上方的区域(温度32 - 36°C,湿度55%至59%)。然而,不进食的螨虫更喜欢待在床垫更深的区域。在此,我们使用实验室螨虫培养物,从种群数量增长和呼吸作用(二氧化碳产生量)方面分析了螨虫对不同温度(15 - 35°C)和相对湿度(62 - 94%RH)的反应。种群内在增长率在约28°C和85%RH时出现单一最大值。在30°C时,相对湿度为90%(较小峰值)和65%(较大峰值)时出现两个呼吸峰值。因此,种群数量增长的最佳温度/湿度与呼吸作用的最佳温度/湿度之间存在不匹配。我们提出了初步假说来解释这两个呼吸峰值,并建议未来应开展研究以阐明这些峰值的本质。

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