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工蜂(Apis mellifera)在巢脾上的农药残留的亚致死效应及其对发育和寿命的影响。

Sub-lethal effects of pesticide residues in brood comb on worker honey bee (Apis mellifera) development and longevity.

机构信息

Department of Entomology, Washington State University, Pullman, Washington, United States of America.

出版信息

PLoS One. 2011 Feb 23;6(2):e14720. doi: 10.1371/journal.pone.0014720.

Abstract

BACKGROUND

Numerous surveys reveal high levels of pesticide residue contamination in honey bee comb. We conducted studies to examine possible direct and indirect effects of pesticide exposure from contaminated brood comb on developing worker bees and adult worker lifespan.

METHODOLOGY/PRINCIPAL FINDINGS: Worker bees were reared in brood comb containing high levels of known pesticide residues (treatment) or in relatively uncontaminated brood comb (control). Delayed development was observed in bees reared in treatment combs containing high levels of pesticides particularly in the early stages (day 4 and 8) of worker bee development. Adult longevity was reduced by 4 days in bees exposed to pesticide residues in contaminated brood comb during development. Pesticide residue migration from comb containing high pesticide residues caused contamination of control comb after multiple brood cycles and provided insight on how quickly residues move through wax. Higher brood mortality and delayed adult emergence occurred after multiple brood cycles in contaminated control combs. In contrast, survivability increased in bees reared in treatment comb after multiple brood cycles when pesticide residues had been reduced in treatment combs due to residue migration into uncontaminated control combs, supporting comb replacement efforts. Chemical analysis after the experiment confirmed the migration of pesticide residues from treatment combs into previously uncontaminated control comb.

CONCLUSIONS/SIGNIFICANCE: This study is the first to demonstrate sub-lethal effects on worker honey bees from pesticide residue exposure from contaminated brood comb. Sub-lethal effects, including delayed larval development and adult emergence or shortened adult longevity, can have indirect effects on the colony such as premature shifts in hive roles and foraging activity. In addition, longer development time for bees may provide a reproductive advantage for parasitic Varroa destructor mites. The impact of delayed development in bees on Varroa mite fecundity should be examined further.

摘要

背景

许多调查显示,蜜蜂巢中的农药残留污染水平很高。我们进行了研究,以检查受污染的幼虫巢中农药暴露对正在发育的工蜂和成年工蜂寿命的直接和间接影响。

方法/主要发现:在含有已知高浓度农药残留的幼虫巢(处理)或相对未受污染的幼虫巢(对照)中饲养工蜂。在含有高水平农药的处理巢中饲养的蜜蜂发育延迟,特别是在工蜂发育的早期(第 4 天和第 8 天)。在发育过程中暴露于受污染的幼虫巢中的农药残留中的蜜蜂的成虫寿命缩短了 4 天。在多个幼虫周期后,从含有高农药残留的巢中迁移的农药残留污染了对照巢,这使我们对残留物通过蜡层移动的速度有了更深入的了解。在受污染的对照巢中经过多个幼虫周期后,更高的幼虫死亡率和延迟的成虫出现。相比之下,在处理巢中经过多个幼虫周期后,当由于残留物迁移到未受污染的对照巢中而降低了处理巢中的残留物水平时,蜜蜂的存活率增加了,这支持了巢替换工作。实验后的化学分析证实了农药残留从处理巢迁移到先前未受污染的对照巢中。

结论/意义:这项研究首次证明了受污染幼虫巢中农药残留对工蜂的亚致死影响。亚致死效应,包括幼虫发育和成虫出现延迟或成虫寿命缩短,会对蜂群产生间接影响,例如蜂群角色和觅食活动的提前转变。此外,蜜蜂的发育时间延长可能为寄生瓦螨提供了繁殖优势。还应进一步研究蜜蜂发育延迟对瓦螨繁殖力的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c492/3044129/0e17b032a438/pone.0014720.g001.jpg

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