Lindström Sandra A M, Herbertsson Lina, Rundlöf Maj, Bommarco Riccardo, Smith Henrik G
Department of Ecology, Swedish University of Agricultural Sciences, 750 07 Uppsala, Sweden
Swedish Rural Economy and Agricultural Society, 291 09 Kristianstad, Sweden.
Proc Biol Sci. 2016 Nov 30;283(1843). doi: 10.1098/rspb.2016.1641.
While addition of managed honeybees (Apis mellifera) improves pollination of many entomophilous crops, it is unknown if it simultaneously suppresses the densities of wild insects through competition. To investigate this, we added 624 honeybee hives to 23 fields of oilseed rape (Brassica napus L.) over 2 years and made sure that the areas around 21 other fields were free from honeybee hives. We demonstrate that honeybee addition depresses the densities of wild insects (bumblebees, solitary bees, hoverflies, marchflies, other flies, and other flying and flower-visiting insects) even in a massive flower resource such as oilseed rape. The effect was independent of the complexity of the surrounding landscape, but increased with the size of the crop field, which suggests that the effect was caused by spatial displacement of wild insects. Our results have potential implications both for the pollination of crops (if displacement of wild pollinators offsets benefits achieved by adding honeybees) and for conservation of wild insects (if displacement results in negative fitness consequences).
虽然引入人工饲养的蜜蜂(西方蜜蜂)能改善许多虫媒作物的授粉情况,但尚不清楚这是否会通过竞争同时抑制野生昆虫的密度。为了对此进行研究,我们在两年时间里,向23块油菜(甘蓝型油菜)田添加了624个蜂箱,并确保另外21块田周围区域没有蜂箱。我们证明,即使在油菜这种拥有大量花卉资源的环境中,引入蜜蜂也会降低野生昆虫(大黄蜂、独居蜂、食蚜蝇、大蚊、其他苍蝇以及其他飞行和访花昆虫)的密度。这种影响与周围景观的复杂性无关,但会随着农田面积的增大而增强,这表明这种影响是由野生昆虫的空间位移导致的。我们的研究结果对作物授粉(如果野生传粉者的位移抵消了引入蜜蜂所带来的益处)和野生昆虫保护(如果位移导致负面的适应性后果)都具有潜在影响。