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温度和相对湿度对嗜卷书虱(蜱螨亚纲:粉螨科)发育及其变应原产生的影响:一项实验室实验

The influence of temperature and relative humidity on the development of Lepidoglyphus destructor (Acari: Glycyphagidae) and its production of allergens: a laboratory experiment.

作者信息

Danielsen Charlotte, Hansen Lise Stengård, Nachman Gösta, Herling Christian

机构信息

Danish Pest Infestation Laboratory, Ministry of Food, Agriculture and Fisheries, Skovbrynet 14, DK-2800 Kgs. Lyngby, Denmark.

出版信息

Exp Appl Acarol. 2004;32(3):151-70. doi: 10.1023/b:appa.0000021797.45372.64.

Abstract

Laboratory experiments with Lepidoglyphus destructor on a diet of mainly whole wheat were conducted to study the mite's development and production of a specific allergen, Lep d 2, at four different temperatures (5, 10, 15 and 20 degrees C) and three levels of relative humidity (ca. 70-88%). Statistical models were used to analyse the role played by temperature, relative humidity and time in explaining the observed number of L. destructor and the amount of allergen produced. Moreover, the life stage distributions of the mites were determined and related to the population growth. Based on a statistical model the intrinsic rate of natural increase, rm, was computed for a range of different temperatures and relative humidities. High relative humidity in combination with temperatures at about 25 degrees C will lead to the highest rm (ca. 0.15 day-1). The highest concentration of Lep d 2 was 3 micrograms g-1 grain, found at 20 degrees C and high relative humidity at a mite density of 254 mites g-1 grain. The concentration of allergens in the grain was best explained by a model that incorporated both the current and the cumulative numbers of mites.

摘要

以全麦为主食对粉尘螨进行了实验室实验,以研究该螨在四种不同温度(5、10、15和20摄氏度)和三种相对湿度水平(约70 - 88%)下的发育情况以及特定过敏原Lep d 2的产生情况。使用统计模型分析温度、相对湿度和时间在解释所观察到的粉尘螨数量和产生的过敏原量方面所起的作用。此外,确定了螨的生活阶段分布并将其与种群增长相关联。基于统计模型,计算了一系列不同温度和相对湿度下的内禀自然增长率rm。相对湿度高且温度约为25摄氏度时,rm最高(约0.15天-1)。Lep d 2的最高浓度为3微克/克谷物,在20摄氏度、高相对湿度以及螨密度为254只/克谷物的条件下测得。谷物中过敏原的浓度最好用一个纳入了当前螨数量和累积螨数量的模型来解释。

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