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Phenotypic plasticity in response to temperature fluctuations is genetically variable and relates to climatic variability of origin in Arabidopsis thaliana

机译:在拟南芥中响应温度波动的表型可塑性是遗传变量并且与起源的气候变异性有关

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摘要

Under current climate change, increasing mean temperatures are not only causing hotter summers, but temperature variability is increasing as well. Phenotypic plasticity can help plants to overcome negative effects of temperature variability and allow them to rapidly adjust traits to adverse conditions. Moreover, genetic variation in such plasticity could provide potential for adaptive evolution in response to changing climate variability. Here, we conducted an experiment with 11 Arabidopsis thaliana genotypes to investigate intraspecific variation in plant responses to two aspects of variable temperature stress: timing and frequency. We found that the timing but not frequency of temperature stress affected the phenology, growth, reproduction and allocation strategy of plants, and that genotypes differed substantially in their responses. Moreover, trait plasticity was positively related to precipitation variability of origin, suggesting an adaptive role of plasticity. Our results indicate that the developmental stage of a plant during heat stress is a key determinant of its response, and that plasticity to temperature variability is an evolving and possibly adaptive trait in natural populations of A. thaliana. More generally, our study demonstrates the usefulness of studying plant responses to climatic variability per se, given that climatic variability is predicted to increase in the future.
机译:在当前的气候变化下,平均温度升高不仅会导致夏季炎热,而且温度变化性也会增加。表型可塑性可以帮助植物克服温度变化的负面影响,并使植物迅速适应不利条件的性状。此外,这种可塑性的遗传变异可为适应气候变化而适应性进化提供潜力。在这里,我们进行了11种拟南芥基因型的实验,以研究植物对变温胁迫两个方面的植物种内变异:时间和频率。我们发现温度胁迫的时机而非频率会影响植物的物候,生长,繁殖和分配策略,并且基因型在其响应上有很大不同。此外,性状的可塑性与原产地降水的变异性呈正相关,暗示了可塑性的适应性作用。我们的结果表明,在热胁迫下植物的发育阶段是决定其响应的关键因素,而对温度变异性的可塑性是拟南芥自然种群中一种不断发展的适应性状。更普遍地讲,鉴于预计未来的气候变异性会增加,因此我们的研究表明研究植物对气候变异性本身的反应的有用性。

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