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Significant effects of temperature on the reproductive output of the forest herb Anemone nemorosa L

机译:温度对森林草本荷叶银莲花生殖产量的显着影响

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Climate warming is already influencing plant migration in different parts of the world. Numerous models have been developed to forecast future plant distributions. Few studies, however, have investigated the potential effect of warming on the reproductive output of plants. Understorey forest herbs in particular, have received little attention in the debate on climate change impacts. This study focuses on the effect of temperature on sexual reproductive output (number of seeds, seed mass, germination percentage and seedling mass) of Anemone nemorosa L., a model species for slow colonizing herbaceous forest plants. We sampled seeds of A. nemorosa in populations along a 2400km latitudinal gradient from northern France to northern Sweden during three growing seasons (2005, 2006 and 2008). This study design allowed us to isolate the effects of accumulated temperature (Growing Degree Hours; GDH) from latitude and the local abiotic and biotic environment. Germination and seed sowing trials were performed in incubators, a greenhouse and under field conditions in a forest. Finally, we disentangled correlations between the different reproductive traits of A. nemorosa along the latitudinal gradient. We found a clear positive relationship between accumulated temperature and seed and seedling traits: reproductive output of A. nemorosa improved with increasing GDH along the latitudinal gradient. Seed mass and seedling mass, for instance, increased by 9.7% and 10.4%, respectively, for every 1000pCh increase in GDH. We also derived strong correlations between several seed and seedling traits both under field conditions and in incubators. Our results indicate that seed mass, incubator-based germination percentage (Germ%Inc) and the output of germinable seeds (product of number of seeds and Germ%Inc divided by 100) from plants grown along a latitudinal gradient (i.e. at different temperature regimes) provide valuable proxies to parameterize key population processes in models. We conclude that (1) climate warming may have a pronounced positive impact on sexual reproduction of A. nemorosa and (2) climate models forecasting plant distributions would benefit from including the temperature sensitivity of key seed traits and population processes.
机译:气候变暖已经在影响世界各地的植物迁移。已经开发了许多模型来预测未来的工厂分布。然而,很少有研究调查变暖对植物生殖输出的潜在影响。在有关气候变化影响的辩论中,尤其是林下草本植物很少受到关注。这项研究的重点是温度对银莲花银莲花的有性繁殖产量(种子数量,种子质量,发芽率和幼苗质量)的影响,银莲花是慢生草本森林植物的模型物种。我们在三个生长季节(2005年,2006年和2008年)从法国北部到瑞典北部沿2400 km的纬度梯度对种群中的A. nemorosa种子进行了采样。这项研究设计使我们能够从纬度和当地非生物和生物环境中分离出积温(生长小时数; GDH)的影响。在孵化器,温室和森林中的田间条件下进行了发芽和种子播种试验。最后,我们解开了沿纬度梯度的土壤线虫不同生殖性状之间的相关性。我们发现积温与种子和幼苗性状之间存在明显的正相关关系:随着GDH沿纬度梯度的增加,A。nemorosa的繁殖产量提高。例如,GDH每增加1000pCh,种子质量和幼苗质量分别增加9.7%和10.4%。我们还得出了田间条件下和孵化器中几种种子和幼苗性状之间的强相关性。我们的结果表明,沿横向梯度(即在不同温度条件下)生长的植物的种子质量,基于培养箱的发芽率(Germ%Inc)和可发芽种子的产量(种子数和Germ%Inc的乘积除以100)。 )提供有价值的代理,以参数化模型中的关键总体流程。我们得出的结论是:(1)气候变暖可能会对棉铃虫的有性繁殖产生明显的积极影响;(2)预测植物分布的气候模型将受益于关键种子性状和种群过程的温度敏感性。

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