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在经过预热处理(快速热硬化)的 Apis mellifera 蜂王的子代工蜂在热应激过程中,热休克蛋白和热休克因子表达的动力学。

Dynamics of heat shock proteins and heat shock factor expression during heat stress in daughter workers in pre-heat-treated (rapid heat hardening) Apis mellifera mother queens.

机构信息

Department of Plant Production, Faculty of Agriculture, Jordan University of Science and Technology, Jordan.

Department of Basic Medical Veterinary Sciences, Jordan University of Science and Technology, Jordan.

出版信息

J Therm Biol. 2022 Feb;104:103194. doi: 10.1016/j.jtherbio.2022.103194. Epub 2022 Jan 30.

Abstract

Honeybees have a limited capacity to control their body temperature when exposed to thermal changes in the atmosphere. Environmental changes, such as thermal climate change, have an adverse effect on honeybee survival. Insects can be pre-heat-treated (rapid heat hardening) with a mild heat stressor to induce Hsp gene expression and protect them from future stresses. Sixty accepted mother queen (MQ) larvae at the age of 7 days were selected and divided into two incubation treatment groups (n = 30). The control group (non-heat-treated mother queens, nH-T MQ) was maintained at 34.5 °C for 15 min and 70% relative humidity (RH), and the pre-heat-treated (pre-heat-treated mother queens, pH-T MQ) group was subjected to 41 °C for 15 min and 70% RH. To evaluate the effect of larval pre-heat-treatment on thermotolerance acquisition of daughter workers, about 500 workers were collected from brood combs of each treatment group. The worker bees in their cages were incubated in digital-controlled thermo-incubators for 1 h under each of the following temperatures: 35, 40, 45, 50, 55, and 60 °C. The expression of Hsp40, Hsp60, Hsp70, HSC70-3, HSC70-4, HSC70-5, Hsp83, and Hsp90 genes in both head and thorax were evaluated by relative quantitative real-time qPCR (RT-qPCR). In general, the pH-T MQ workers exhibited a higher ability to tolerate temperature than nH-T MQ workers under extreme conditions. Furthermore, we reported for the first time that pre-heat treatment of the mother queen's larvae alters the basal and dynamic expression of heat shock proteins (Hsp40, Hsp60, Hsp70, and Hsp90) and heat shock factor (HSF) during thermoneutral conditions and during heat stress of daughter workers, probably indicating a substantial improvement of honeybees' thermotolerance acquisition in arid and semi-arid regions, and improvement of honeybee longevity and management strategies.

摘要

当蜜蜂暴露于大气中的温度变化时,它们控制体温的能力有限。环境变化,如热气候的变化,对蜜蜂的生存有不利影响。昆虫可以通过轻度热应激物进行预热处理(快速热硬化),以诱导 Hsp 基因表达并保护它们免受未来的应激。选择 60 只接受的蜂王(MQ)幼虫,年龄为 7 天,分为两组孵育处理(n=30)。对照组(非热处理的蜂王,nH-T MQ)保持在 34.5°C 15 分钟,相对湿度(RH)为 70%,预热处理组(预热处理的蜂王,pH-T MQ)组在 41°C 下处理 15 分钟,相对湿度为 70%。为了评估幼虫预热处理对获得耐热性的女儿工蜂的影响,从每个处理组的育雏巢脾中收集约 500 只工蜂。将笼子里的工蜂在数字控制的恒温培养箱中在以下每个温度下孵育 1 小时:35、40、45、50、55 和 60°C。通过相对定量实时 qPCR(RT-qPCR)评估 Hsp40、Hsp60、Hsp70、HSC70-3、HSC70-4、HSC70-5、Hsp83 和 Hsp90 基因在头部和胸部的表达。总的来说,与 nH-T MQ 工蜂相比,pH-T MQ 工蜂在极端条件下具有更高的耐热能力。此外,我们首次报道,蜂王幼虫的预热处理改变了热休克蛋白(Hsp40、Hsp60、Hsp70 和 Hsp90)和热休克因子(HSF)在热中性条件下和女儿工蜂热应激期间的基础和动态表达,可能表明在干旱和半干旱地区蜜蜂耐热性获得了实质性提高,以及提高了蜜蜂的寿命和管理策略。

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