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蜂王和工蜂的抗氧化防御对吡虫啉的反应因年龄而异:老年蜂王具有抗性,而采集蜂则没有。

Antioxidation Defenses of Queens and Workers Respond to Imidacloprid in Different Age-Dependent Ways: Old Queens Are Resistant, Foragers Are Not.

作者信息

Paleolog Jerzy, Wilde Jerzy, Miszczak Artur, Gancarz Marek, Strachecka Aneta

机构信息

Department of Zoology and Animal Ecology, Faculty of Environmental Biology, University of Life Sciences in Lublin, Akademicka 13, 20-950 Lublin, Poland.

Department of Poultry Science and Apiculture, Faculty of Animal Bioengineering, Warmia and Mazury University in Olsztyn, ul. Słoneczna 48, 10-957 Olsztyn, Poland.

出版信息

Animals (Basel). 2021 Apr 26;11(5):1246. doi: 10.3390/ani11051246.

Abstract

We investigated how different antioxidant defenses (ADSs) were shaped by evolution in young/old workers and queens to broaden the limited knowledge on whether ADSs are effective in contemporary pesticide environments and to complete bee oxidative-aging theory. We acquired 1-day-old, 20-day-old, and 2-year-old queens and 1-day-old and 20-day-old workers (foragers) fed 0, 5, or 200 ppb imidacloprid, a pesticide oxidative stressor. The activities of catalase, glutathione peroxidase, glutathione S-transferase, and superoxide dismutase and the level of total antioxidant potential were determined in hemolymph. The ADS was upregulated in workers with age but downregulated in queens. Imidacloprid suppressed the ADS in all workers, particularly in foragers with an upregulated ADS, but it did not affect the ADS in 1-day-old queens. In contrast to foragers, the downregulated ADS of 2-year-old queens was unexpectedly highly upregulated by imidacloprid, which has not been previously shown in such old queens. The principal component analysis confirmed that queen and worker ADSs responded to imidacloprid in opposite ways, and ADS of 2-year-queens was markedly different from those of others. Thus, evolutionary shaped ADSs of older queens and workers may be of the limited use for foragers dwelling in pesticide ecosystems, but not for old queens.

摘要

我们研究了不同的抗氧化防御机制(ADSs)在年轻/年老工蜂和蜂后中是如何通过进化形成的,以拓宽关于ADSs在当代农药环境中是否有效的有限知识,并完善蜜蜂氧化衰老理论。我们获取了1日龄、20日龄和2岁的蜂后,以及1日龄和20日龄的工蜂(采蜜蜂),它们分别喂食了0、5或200 ppb的吡虫啉(一种农药氧化应激源)。测定了血淋巴中过氧化氢酶、谷胱甘肽过氧化物酶、谷胱甘肽S - 转移酶和超氧化物歧化酶的活性以及总抗氧化能力水平。ADS在工蜂中随年龄上调,但在蜂后中下调。吡虫啉抑制了所有工蜂的ADS,尤其是在ADS上调的采蜜蜂中,但它对1日龄蜂后的ADS没有影响。与采蜜蜂不同,2岁蜂后下调的ADS被吡虫啉意外地高度上调,这在如此年老的蜂后中以前未曾显示过。主成分分析证实,蜂后和工蜂的ADS对吡虫啉的反应相反,并证实2岁蜂后的ADS与其他蜂后的明显不同。因此,进化形成的老年蜂后和工蜂的ADS对生活在农药生态系统中的采蜜蜂可能用途有限,但对老年蜂后并非如此。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15ea/8145063/b9a38511ace7/animals-11-01246-g001.jpg

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