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Pollen limitation and reproduction of three plant species across a temperature gradient in western Greenland

机译:格陵兰西部温度梯度上三种植物花粉的限制和繁殖

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摘要

Rapid climate change in the Arctic may increase sexual reproduction in plants because of changes in both abiotic factors, such as temperature, and biotic factors, such as pollination. Pollination may currently limit plant reproduction in the Arctic, where cold temperatures hinder pollinator activity. To understand how warming may affect pollination and plant reproduction, we studied three plant species in western Greenland. Two species were hermaphroditic and insect-pollinated (Vaccinium uliginosum and Chamerion latifolium ), and one was dioecious and insect- and wind-pollinated (Salix glauca ). We measured how pollinator visitation and plant reproduction varied across three temperature zones. We also conducted pollinator exclusion and pollen supplementation experiments to measure pollinator dependence and pollen limitation. Proportion of fruit set in Vaccinium and Salix was pollen limited in every temperature zone, and Vaccinium and Chamerion depended on pollinator-mediated outcrossing for maximum reproductive success. Furthermore, higher pollinator visitation to Vaccinium in the warmer temperature zones mirrored lower pollen limitation and higher fruit set, suggesting that temperature zone indirectly influenced reproduction via changes in pollination. Taken together, our results demonstrate that both abiotic factors and pollination are important in limiting reproduction in the Arctic and that plant–pollinator interactions can mediate the response of plant reproduction to warming.
机译:由于非生物因素(例如温度)和生物因素(例如授粉)的变化,北极的快速气候变化可能会增加植物的有性繁殖。目前,授粉可能会限制北极的植物繁殖,因为那里的低温阻碍了传粉媒介的活动。为了了解变暖如何影响授粉和植物繁殖,我们研究了格陵兰西部的三种植物。两种物种是雌雄同体的和昆虫授粉的(Vaccinium uliginosum和Chamerion latifolium),一种是雌雄异体的,是昆虫和风授粉的(Salix glauca)。我们测量了传粉媒介在三个温度区域的访视和植物繁殖的变化。我们还进行了授粉媒介排除和花粉补充实验,以测量授粉媒介的依赖性和花粉限制。在每个温度区中,在牛痘和 lix蒲中坐果的比例受花粉限制,牛痘和 Chamerion依靠传粉媒介介导的杂交获得最大的繁殖成功。此外,在较暖的温度区中较高的传粉媒介对疫苗的访问反映出较低的花粉限制和较高的坐果,这表明温度区通过授粉的变化间接影响繁殖。综上所述,我们的结果表明,非生物因素和授粉都对限制北极的繁殖很重要,而且植物与授粉媒介的相互作用可以介导植物繁殖对变暖的响应。

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