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首页> 外文期刊>Functional Plant Biology >Interspecific variation in functional traits in relation to species climatic niche optima in andean Polylepis (Rosaceae) tree species: evidence for climatic adaptations.
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Interspecific variation in functional traits in relation to species climatic niche optima in andean Polylepis (Rosaceae) tree species: evidence for climatic adaptations.

机译:与安第斯蔷薇科(蔷薇科)树种的物种生态位最适有关的功能性状的种间变化:气候适应的证据。

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摘要

Plant functional traits can be genetically determined or phenotypically plastic. We assessed the degree of genetic determinism in the functional traits of Andean Polylepis tree species among 14 important traits that enable the species to withstand cold and dry conditions. We conducted a common garden experiment and related the species-specific means of the functional traits to the variables of climatic niche optima of the species (mean annual temperature and annual precipitation), deducing that if the interspecific variation in the functional trait is related to the species climatic niche optima according to the theoretically-expected pattern of climate-trait relationship, the variation of the trait must be genetically determined. In general, the traits were related either to species temperature or precipitation optima. For example, leaf size, maximum photosynthesis rate and root tip abundance were related to temperature, whereas light compensation and light saturation points were related to precipitation. Only leaf size showed a significant phylogenetic signal, indicating that most of the manifested climate-trait relationships are not caused purely by phylogeny, but are mainly a result of species specialisation along an environmental gradient. However, in many cases the relationships were rather weak. This suggests that important functional traits of Polylepis species involve both genetic and phenotypic components aiming to maximise the overall fitness of the species at high elevations.
机译:植物功能性状可以通过遗传确定或在表型上可塑性。我们评估了14个重要性状中的安第斯波利斯树种功能性状的遗传决定论程度,这些特征使该种能够经受寒冷和干燥的条件。我们进行了一项常见的花园实验,并将功能性状的特定物种手段与该物种的气候生态位最适变量(平均年温度和年降水量)相关联,从而推断出,如果功能性状的种间变化与根据气候-特征关系的理论预期模式,对物种的气候生态位进行优化,必须通过遗传确定特征的变化。一般而言,性状与物种温度或最佳降水量有关。例如,叶片大小,最大光合作用速率和根尖丰度与温度有关,而光补偿和光饱和点与降水有关。只有叶的大小显示出显着的系统发生信号,这表明大多数表现出的气候-性状关系并不是纯粹由系统发生引起的,而是主要是沿着环境梯度的物种专门化的结果。但是,在许多情况下,这种关系很弱。这表明Polylepis物种的重要功能性状涉及遗传和表型成分,旨在最大限度地提高该物种在高海拔地区的整体适应性。

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