...
首页> 外文期刊>Journal of international management >Effects of two centuries of global environmental variation on phenology and physiology of Arabidopsis thaliana
【24h】

Effects of two centuries of global environmental variation on phenology and physiology of Arabidopsis thaliana

机译:两个世纪的影响对拟南芥候生理学和生理学的影响

获取原文
获取原文并翻译 | 示例

摘要

Intraspecific trait variation is caused by genetic and plastic responses to environment. This intraspecific diversity is captured in immense natural history collections, giving us a window into trait variation across continents and through centuries of environmental shifts. Here we tested if hypotheses based on life history and the leaf economics spectrum explain intraspecific trait changes across global spatiotemporal environmental gradients. We measured phenotypes on a 216-year time series of Arabidopsis thaliana accessions from across its native range and applied spatially varying coefficient models to quantify region-specific trends in trait coordination and trait responses to climate gradients. All traits exhibited significant change across space or through time. For example, delta N-15 decreased over time across much of the range and leaf C:N increased, consistent with predictions based on anthropogenic changes in land use and atmosphere. Plants were collected later in the growing season in more recent years in many regions, possibly because populations shifted toward more spring germination and summer flowering as opposed to fall germination and spring flowering. When climate variables were considered, collection dates were earlier in warmer years, while summer rainfall had opposing associations with collection date depending on regions. There was only a modest correlation among traits, indicating a lack of a single life history/physiology axis. Nevertheless, leaf C:N was low for summer- versus spring-collected plants, consistent with a life history-physiology axis from slow-growing winter annuals to fast-growing spring/summer annuals. Regional heterogeneity in phenotype trends indicates complex responses to spatiotemporal environmental gradients potentially due to geographic genetic variation and climate interactions with other aspects of environment. Our study demonstrates how natural history collections can be used to broadly characterize trait responses to environment, revealing heterogeneity in response to anthropogenic change.
机译:有内径特性变异是由对环境的遗传和塑料反应引起的。这种拆散多样性在巨大的自然历史上捕获,使我们成为跨大陆特质的窗口,并通过几个世纪的环境变化。在这里,我们在基于寿命历史和叶经济学谱的假设中测试了跨全球时空环境梯度的内部特性变化。我们以216岁的拟南芥拟南芥序列测量了表型,并从其天然范围内应用了空间不同的系数模型,以量化特质的特异性趋势,以及对气候梯度的特征反应。所有特征在空间或通过时间内表现出显着变化。例如,ΔN-15随着时间的范围和叶片C:N的增加而降低,与基于土地利用和大气的人为变化的预测一致。植物在近年来在许多地区的近年来近年来,可能是因为群体转向更多的春季萌发和夏季开花,而不是堕落萌发和春天开花。当考虑气候变量时,收集日期在较近的较早较近,而夏季降雨将根据地区与收集日期相反的联合。特征之间只有适度的相关性,表明缺乏单一的生命历史/生理轴。然而,叶C:n对于夏季与弹簧收集的植物来说是低的,与生命历史生理轴一致,从生长缓慢增长的冬季,以快速增长的春季/夏季。表型趋势中的区域异质性表明,由于地理遗传变异和与环境的其他方面的气候相互作用,可能是对时空环境梯度的复杂反应。我们的研究证明了自然历史收集如何用于广泛表征对环境的特征反应,揭示异质性以应对人为变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号