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Warmer temperatures advance flowering in a spring plant more strongly than emergence of two solitary spring bee species

机译:较温暖的温度推动春季植物开花的过程比出现两种孤独的春季蜂种更强烈

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摘要

Climate warming has the potential to disrupt plant-pollinator interactions or to increase competition of co-flowering plants for pollinators, due to species-specific phenological responses to temperature. However, studies focusing on the effect of temperature on solitary bee emergence and the flowering onset of their food plants under natural conditions are still rare. We studied the effect of temperature on the phenology of the two spring bees Osmia cornuta and Osmia bicornis, by placing bee cocoons on eleven grasslands differing in mean site temperature. On seven grasslands, we additionally studied the effect of temperature on the phenology of the red-list plant Pulsatilla vulgaris, which was the first flowering plant, and of co-flowering plants with later flowering. With a warming of 0.1°C, the abundance-weighted mean emergence of O. cornuta males advanced by 0.4 days. Females of both species did not shift their emergence. Warmer temperatures advanced the abundance-weighted mean flowering of P. vulgaris by 1.3 days per 0.1°C increase, but did not shift flowering onset of co-flowering plants. Competition for pollinators between P. vulgaris and co-flowering plants does not increase within the studied temperature range. We demonstrate that temperature advances plant flowering more strongly than bee emergence suggesting an increased risk of pollinator limitation for the first flowers of P. vulgaris.
机译:由于物种对温度的特定物候响应,气候变暖有可能破坏植物与传粉媒介的相互作用或增加共同开花植物对传粉媒介的竞争。然而,关注温度对自然条件下其蜜蜂单株出苗及其食用植物开花的影响的研究仍然很少。通过将蜜蜂茧放在平均位点温度不同的11个草地上,我们研究了温度对两种春季蜜蜂Osmia cornuta和Osmia bicornis物候的影响。在七个草原上,我们还研究了温度对红色榜单植物白头翁(Pulsatilla vulgaris)(最早开花的植物)和共同开花植物随后开花的物候学的影响。在0.1°C的升温下,玉米角O雄性的丰度加权平均出苗时间增加了0.4天。两个物种的雌性都没有改变它们的出现。温暖的温度使每增加0.1°C,寻常型百日草的丰富加权平均开花期增加1.3天,但并未改变共同开花植物的开花起点。在所研究的温度范围内,寻常性假单胞菌与共同开花植物之间的传粉媒介竞争不会增加。我们证明,温度提高植物开花比蜜蜂出芽更强烈,表明对普通寻常的第一批花授粉限制的风险增加。

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  • 期刊名称 other
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  • 年(卷),期 -1(14),6
  • 年度 -1
  • 页码 e0218824
  • 总页数 15
  • 原文格式 PDF
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