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Geographical variation and the role of climate in leaf traits of a relict tree species across its distribution in China

机译:地理变异与气候在依赖树种中叶状性状的作用及其在中国分布分布

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摘要

Intraspecific trait variation and trait-climate relationships are crucial for understanding a species' response to climate change. However, these phenomena have rarely been studied for tree species. Euptelea pleiospermum is a relict tree species with a wide distribution in China that offers a novel opportunity to examine such relationships. Here, we measured 13 leaf traits of E.pleiospermum in 20 sites across its natural distribution in China. We investigated the extent of trait variation at local and regional scales, and developed geographic and climate models to explain trait variation at the regional scale. We documented intraspecific trait variation among leaf traits of E.pleiospermum at local and regional scales. Five traits exhibited relatively high trait variation: leaf area, leaf density and three leaf economic traits (leaf dry matter content, specific leaf area [SLA] and leaf phosphorus concentration). Significant trait-geography correlations were mediated by local climate. Most leaf trait variation could be explained (from 24% to 64%) by geographic or climate variables, except leaf width, leaf thickness, leaf dry matter content and leaf length-width ratio. Latitude and temperature were the strongest predictors of trait variation throughout the distribution of E.pleiospermum in China, and temperature explained more leaf trait variation than precipitation. In particular, we showed that leaves had longer petiole lengths, higher SLA and lower densities in northern E.pleiospermum populations. We suggest that northern E.pleiospermum populations are adapting to higher latitudinal environments via high growth rate (higher SLA) and low construction investment strategies (lower leaf densities), benefitting northern migration. Overall, we demonstrate that intraspecific trait variation reflects E.pleiospermum response to the local environment. We call for consideration of intraspecific trait variation to examine specific climate response questions. In addition, provenance experiments using widely distributed species are needed to separate trait variation resulting from genetic differentiation and plastic responses to environmental change.
机译:有条不劲的特质变异和特质气候关系对于了解物种对气候变化的反应至关重要。然而,这些现象很少研究树种。 Eupteleapleiospermum是一种relict树种,在中国具有广泛的分布,提供了研究这种关系的新机会。在这里,我们在中国自然分布的20个地点测量了e.pleiospermum的13个叶状性状。我们调查了地方和区域尺度的特质变异程度,并制定了地理和气候模型,以解释区域规模的特质变化。我们记录了当地和区域尺度E.PleiSpermum的叶状性状的有内径特性变异。五种特征表现出相对高的特质变异:叶面积,叶密度和三叶经济性状(叶片干物质含量,特定叶片区域[SLA]和叶磷浓度)。通过当地气候介导的显着性状相关性相关性。通过地理或气候变量可以解释大多数叶子性状变异(从24%到64%),除叶宽,叶厚,叶片干物质含量和叶长宽比外。纬度和温度是在中国欧洲综合症患者的分布过程中具有最强的特性变异预测因子,并且温度解释了比沉淀更多的叶子性状变异。特别是,我们表明,叶片具有更长的叶柄长度,北部北部的较高的SLA和更低的密度。我们建议北方E.PleiSpermum群体​​通过高增长率(更高的SLA)和低建设投资策略(较低的叶密度)来适应更高的延伸环境,从而受益于北方迁移。总体而言,我们证明了内部特性变异反映了对当地环境的北端症。我们要求考虑有内径特性变异以检查特定的气候响应问题。此外,需要使用广泛分布的物种来分类来分开由遗传分化和对环境变化的塑性反应产生的特性变异。

著录项

  • 来源
    《Plant biology》 |2017年第4期|共10页
  • 作者单位

    Chinese Acad Sci Wuhan Bot Garden Key Lab Aquat Bot &

    Watershed Ecol Wuhan 430074 Hubei Peoples R China;

    Chinese Acad Sci Wuhan Bot Garden Key Lab Aquat Bot &

    Watershed Ecol Wuhan 430074 Hubei Peoples R China;

    Univ Northern Colorado Dept Biol Sci Greeley CO USA;

    Chinese Acad Sci Wuhan Bot Garden Key Lab Aquat Bot &

    Watershed Ecol Wuhan 430074 Hubei Peoples R China;

    Chinese Acad Sci Wuhan Bot Garden Key Lab Aquat Bot &

    Watershed Ecol Wuhan 430074 Hubei Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

    Adaptation; local-regional scale; relict species; riparian areas; trait variation;

    机译:适应;地方 - 区域规模;依赖物种;河岸地区;特质变异;

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