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荒漠甲虫(鞘翅目:皮蠹科)对干燥和低温的交叉耐受。

Cross-tolerance to Desiccation and Cold in Khapra Beetle (Coleoptera: Dermestidae).

机构信息

Lethbridge Research and Development Centre, Agriculture and Agri-Food Canada, Lethbridge, AB, Canada.

Department of Biological Sciences, University of Lethbridge, Lethbridge, AB, Canada.

出版信息

J Econ Entomol. 2020 Apr 6;113(2):695-699. doi: 10.1093/jee/toz316.

Abstract

Khapra beetle, Trogoderma granarium Everts, is unusual in two key respects. First, they are among the most cold hardy of stored-product insect pests even though they originate in hot and dry regions of the Indian subcontinent. Second, their larvae can enter into diapause to survive harsh environmental conditions. In the present study, we examined whether these two phenomena are related, i.e., due to cross-tolerance. Cross-tolerance is the tolerance to one ecological stress when induced by a separate stress. To investigate this, khapra beetle larvae were reared at different relative humidities (3, 28, 49, and 79%) in either nondiapausing or diapausing conditions. Then the cold tolerance of larvae was estimated by measuring mortality after different durations at -10°C. For nondiapausing larvae, relative humidity had little effect on cold tolerance with the lethal time to 50% mortality (LT50) occurring between 2 and 4 d. For diapausing larvae, cold tolerance increased with greater desiccation stress with LT50's of 5, 7, 10, and 18 d at 79, 49, 28, and 3% RH, respectively. This suggests that the physiological mechanisms that protect diapausing larvae from desiccation may also increase cold tolerance, even though these insects may rarely be exposed to low temperatures.

摘要

麦蛾,Trogoderma granarium Everts,在两个关键方面与众不同。首先,它们是最耐寒的储藏物害虫之一,尽管它们起源于印度次大陆的炎热和干燥地区。其次,它们的幼虫可以进入休眠状态以生存恶劣的环境条件。在本研究中,我们研究了这两个现象是否有关联,即是否由于交叉耐受。交叉耐受是指由于另一种应激而诱导对一种生态应激的耐受。为了研究这一点,麦蛾幼虫在不同的相对湿度(3、28、49 和 79%)下,在非休眠或休眠条件下进行培养。然后,通过测量在-10°C 下不同时间后的死亡率来估计幼虫的耐寒性。对于非休眠幼虫,相对湿度对耐寒性的影响很小,致死时间(LT50)发生在 2 至 4 天之间。对于休眠幼虫,耐寒性随脱水应激的增加而增加,在 79、49、28 和 3%RH 下,LT50 分别为 5、7、10 和 18 天。这表明,保护休眠幼虫免受脱水的生理机制也可能增加耐寒性,尽管这些昆虫可能很少暴露在低温下。

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