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热应激对捕食性瓢虫的影响以及……(原文不完整)

Impact of Heat Stress on the Predatory Ladybugs and .

作者信息

Yang Qing, Liu Jinping, Wyckhuys Kris A G, Yang Yizhong, Lu Yanhui

机构信息

College of Horticulture and Plant Protection, Yangzhou University, Yangzhou 225007, China.

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

出版信息

Insects. 2022 Mar 20;13(3):306. doi: 10.3390/insects13030306.

Abstract

In cotton-growing regions of northwestern China, (Goeze) and (Linnaeus) (Coleoptera: Coccinellidae) are key natural enemies of hemipteran pests. As only can be encountered in hot, arid production areas, the thermal responses and climatic adaptability of both species likely differ substantially. In this study, we assessed the survival, longevity, fecundity, prey consumption rate, and antioxidant capacity of both species under laboratory conditions at 32-38 °C. The (negative) impacts of elevated temperatures (i.e., 35 and 38 °C) on adult survival and reproduction were more pronounced for than for . Similarly, high temperatures exhibited the strongest negative impacts on the prey consumption rates of . At elevated temperatures, superoxide dismutase and catalase activity increased, while glutathione-S-transferases activity decreased for both species. However, for , peroxidase activity and total antioxidant capacity progressively declined. Antioxidant responses thus constitute a key physiological adaptation of ladybugs to heat stress, reflecting a superior thermal tolerance of . Our work emphasizes how laboratory assays can explain spatiotemporal distribution patterns of individual ladybugs and inform strategies to bolster their ensuing biological control under conditions of global warming or extreme weather events.

摘要

在中国西北的棉花种植区,多异瓢虫(Goeze)和七星瓢虫(Linnaeus)(鞘翅目:瓢虫科)是半翅目害虫的主要天敌。由于在炎热干旱的产区只能遇到多异瓢虫,这两个物种的热反应和气候适应性可能有很大差异。在本研究中,我们评估了这两个物种在32-38°C实验室条件下的存活率、寿命、繁殖力、猎物消耗率和抗氧化能力。高温(即35°C和38°C)对多异瓢虫成虫存活和繁殖的(负面)影响比对七星瓢虫更明显。同样,高温对多异瓢虫的猎物消耗率负面影响最强。在高温下,两个物种的超氧化物歧化酶和过氧化氢酶活性增加,而谷胱甘肽-S-转移酶活性降低。然而,对于七星瓢虫,过氧化物酶活性和总抗氧化能力逐渐下降。因此,抗氧化反应是瓢虫对热应激的关键生理适应,反映了多异瓢虫具有更强的耐热性。我们的工作强调了实验室测定如何能够解释单个瓢虫的时空分布模式,并为在全球变暖和极端天气事件条件下加强其后续生物防治的策略提供依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfc8/8955401/07c795973510/insects-13-00306-g001.jpg

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