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[具体对象]对高温胁迫的生理代谢响应。 (原文中“of”后面缺少具体内容)

Physiological Metabolic Responses of to High Temperature Stress.

作者信息

Chen Hongsong, Solangi Ghulam Sarwar, Zhao Chenchen, Yang Lang, Guo Jianying, Wan Fanghao, Zhou Zhongshi

机构信息

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.

Guangxi Key Laboratory for Biology of Crop Diseases and Insect Pests, Institute of Plant Protection, Guangxi Academy of Agricultural Sciences, Nanning, China.

出版信息

Front Physiol. 2019 Aug 27;10:1053. doi: 10.3389/fphys.2019.01053. eCollection 2019.

Abstract

Considering the predicted rising temperatures under current climate change and heat wave scenarios, organisms are expected to suffer more intense and frequent thermal stress. Induced heat is accumulated by organisms and can cause a variety of physiological stress responses. is an effective biological control agent of common ragweed, , but the responses of this biocontrol agent to heat stress have not been fully elucidated and, therefore, its potential responses to climate change are uncertain. We investigated the physiological metabolism of subsequent adults after: (1) different developmental stages (egg, larval, pupal, and adult) were exposed to thermal stress for 3 h each day for 3, 5, 5, and 5 days, respectively (by stage); and (2) individuals were exposed to thermal stress throughout the egg-to-adult period for 3 h each day. The high temperatures of 40, 42, and 44°C were used to induce thermal stress. A control group was reared at 28 ± 2°C. The results showed that short- or long-term exposure to daily phasic high temperatures significantly decreased water and lipid contents and significantly increased glycogen and glycerol contents in all adults (i.e., after exposure of different stages or throughout the egg-to-adult period). However, the total sugar content significantly increased in adults after the eggs and larvae were exposed to brief short-term thermal stress. Compared to the control, the total sugar content was also significantly higher in the adults and pupae exposed to 44°C. Total sugar content in females increased significantly in response to long-term phasic thermal stress at 40°C. However, sugar content of males exposed to 44°C decreased significantly. After long-term phasic thermal stress, water and glycogen contents in males were significantly higher than in females; however, females had higher total sugar and lipid contents. Therefore, our study provides a basic understanding of the metabolic responses of to thermal stress and offers insights into its potential as a natural biocontrol agent against during the summer season and under predicted climate change scenarios.

摘要

考虑到在当前气候变化和热浪情景下预测的气温上升,生物体预计将遭受更强烈和频繁的热应激。生物体积累的诱导热会引发各种生理应激反应。豚草卷蛾是豚草的一种有效的生物防治剂,但这种生物防治剂对热应激的反应尚未完全阐明,因此,其对气候变化的潜在反应尚不确定。我们研究了后续豚草卷蛾成虫的生理代谢情况:(1)不同发育阶段(卵、幼虫、蛹和成虫)分别每天暴露于热应激3小时,持续3天、5天、5天和5天(按阶段);(2)个体在从卵到成虫的整个时期每天暴露于热应激3小时。使用40、42和44°C的高温来诱导热应激。对照组在28±2°C下饲养。结果表明,短期或长期暴露于每日阶段性高温会显著降低所有成虫(即不同阶段暴露后或从卵到成虫整个时期暴露后)的水分和脂质含量,并显著增加糖原和甘油含量。然而,卵和幼虫暴露于短暂短期热应激后,成虫的总糖含量显著增加。与对照组相比,暴露于44°C的成虫和蛹中的总糖含量也显著更高。在40°C的长期阶段性热应激下,雌性的总糖含量显著增加。然而,暴露于44°C的雄性的糖含量显著下降。长期阶段性热应激后,雄性的水分和糖原含量显著高于雌性;然而,雌性的总糖和脂质含量更高。因此,我们的研究提供了对豚草卷蛾热应激代谢反应的基本理解,并深入了解了其在夏季和预测的气候变化情景下作为豚草天然生物防治剂的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fe5/6718515/8fce8f028dbe/fphys-10-01053-g001.jpg

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