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长期降雨控制实验中植物对模拟气候变化的表型响应:一项多物种研究

Phenotypic response of plants to simulated climate change in a long-term rain-manipulation experiment: a multi-species study.

作者信息

Hänel Sabine, Tielbörger Katja

机构信息

Plant Ecology Group, University of Tübingen, Auf der Morgenstelle 5, 72076, Tübingen, Germany.

出版信息

Oecologia. 2015 Apr;177(4):1015-24. doi: 10.1007/s00442-015-3231-8. Epub 2015 Feb 25.

Abstract

Many species will need to adapt to the observed climate change in order to persist. However, research about adaptation or phenotypic plasticity in response to climate change is rare. In particular, field studies are lacking that impose artificial selection for a sufficiently long time to elicit changes in phenotypic and genotypic structure of populations. Here, we present findings for an 8-year field experiment with 16 annual plant species that tested potentially adaptive phenotypic responses to precipitation change. In both a Mediterranean and a semi-arid site, annual precipitation was manipulated (±30%) and phenotypic response was recorded. We measured flowering time as a key trait related to climatic conditions and biomass and survival as fitness correlates. Differences in traits among treatments were compared to trait shifts between sites, according to space-for-time approaches. In the drier site, phenology was accelerated, but within that site, experimental drought delayed phenology, probably as a plastic response to delayed ontogenetic development. Biomass was smaller in the dry treatments of that site, but it was also reduced in irrigated plots in both sites, indicating more intense competition. The shifts from limitation by drought to limitation by competition corresponded to patterns along the gradient. This also implies a larger negative impact of climate change in the drier site. Our results suggest that experimental selection in the field caused directional responses in most species, but these were not necessarily adaptive. Furthermore, competitive release imposed by climate change may revert direct negative effects of rainfall change in determining plant performance.

摘要

许多物种需要适应观测到的气候变化才能存续。然而,关于适应气候变化或表型可塑性的研究却很少。特别是,缺乏能够进行足够长时间人工选择以引发种群表型和基因型结构变化的实地研究。在此,我们展示了一项针对16种一年生植物物种的为期8年的实地实验结果,该实验测试了对降水变化潜在的适应性表型反应。在地中海地区和半干旱地区,我们对年降水量进行了控制(±30%)并记录了表型反应。我们将开花时间作为与气候条件相关的关键性状进行测量,并将生物量和存活率作为适合度相关指标进行测量。根据时空替代法,将处理间性状的差异与不同地点间的性状变化进行比较。在较干旱的地点,物候期提前,但在该地点内,实验性干旱使物候期延迟,这可能是对个体发育延迟的一种可塑性反应。该地点干旱处理下的生物量较小,但两个地点的灌溉地块生物量也有所减少,这表明竞争更为激烈。从受干旱限制到受竞争限制的转变与沿梯度的模式相对应。这也意味着气候变化在较干旱地点的负面影响更大。我们的结果表明,实地实验选择在大多数物种中引起了定向反应,但这些反应不一定具有适应性。此外,气候变化导致的竞争释放可能会扭转降雨变化对植物表现的直接负面影响。

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