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Folivory has long‐term effects on sexual but not on asexual reproduction in woodland strawberry

机译:叶酸对林地草莓的性繁殖有长期影响但对无性繁殖没有影响

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摘要

Plant fitness is often a result of both sexual and asexual reproductive success and, in perennial plants, over several years. Folivory can affect both modes of reproduction. However, little is known about the effects of folivory on resource allocation to the two modes of reproduction simultaneously and across years. In a 2‐year common garden experiment, we examined the effects of different levels of folivory by the strawberry leaf beetle, Galerucella tenella, on current growth, as well as current and future sexual and asexual reproduction (runners) of perennial woodland strawberry, Fragaria vesca. In addition, we measured the chlorophyll content in leaves in the year of experimental damage to determine whether there was increased photosynthetic activity, and, thus, a compensatory response to herbivory. Finally, we tested whether the previous year's folivory, as a result of its effect on plant fitness, affected the level of natural herbivory the plant experienced during the subsequent year. In the year of experimental damage, plants that were exposed to moderate and high levels of folivory (25% and 50% leaf area consumed, respectively) increased their photosynthetic activity compared to control plants. However, only plants exposed to high folivory exhibited negative effects, with a lower probability of flowering compared to control plants, indicating that plants exposed to low or moderate folivory were able to compensate for the damage. Negative effects of folivory were carried over to the subsequent year. Plants that were exposed to moderate folivory (25% leaf area consumed) during first year produced fewer flowers and fruits in the subsequent year. Runner production was consistently unaffected by folivory. The effects of experimental folivory on the level of natural herbivory were mediated via its effects on plant fitness. Our results show that the negative effects of folivory only influence sexual reproduction in woodland strawberry. Furthermore, even though woodland strawberry can tolerate moderate amounts of folivory in the short term, the negative effects on fitness appear later; this highlights the importance of studying the effects of herbivory over consecutive years in perennial plants.
机译:植物适应性通常是有性和无性繁殖成功的结果,并且在多年生植物中,是几年来的结果。食味会影响两种繁殖方式。但是,人们几乎不了解叶面食对同时和跨年两种繁殖方式的资源分配的影响。在一项为期2年的常规花园实验中,我们研究了草莓叶甲虫Galerucella tenella不同水平的叶面食味对多年生林地草莓Fragaria的当前生长以及当前和未来的有性和无性繁殖(繁殖)的影响vesca。此外,我们测量了实验损害年份叶片中的叶绿素含量,以确定是否有增加的光合作用活性,从而确定对草食动物的补偿性反应。最后,我们测试了前一年的食叶植物是否由于其对植物适应性的影响而影响了第二年植物所经历的天然草食动物的水平。在实验破坏的一年中,与对照植物相比,暴露于中度和高水平叶酸(分别消耗25%和50%的叶面积)的植物提高了其光合活性。然而,仅暴露于高叶面的植物表现出负面影响,与对照植物相比开花的可能性更低,这表明暴露于低叶或中度叶面的植物能够补偿损害。叶食的负面影响一直延续到下一年。在第一年暴露于中度叶状(占叶面积的25%)的植物在第二年产生的花朵和果实较少。赛跑者的生产始终不受叶子的影响。实验性叶肉对天然草食动物水平的影响是通过其对植物适应性的影响而介导的。我们的结果表明,叶酸的负面影响仅影响林地草莓的有性生殖。此外,即使林地草莓在短期内可以忍受适量的叶酸,对身体健康的负面影响也会在稍后出现。这突出了研究多年生植物连续多年食草性影响的重要性。

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