...
首页> 外文期刊>Plant Ecology >Light heterogeneity interacts with plant-induced soil heterogeneity to affect plant trait expression
【24h】

Light heterogeneity interacts with plant-induced soil heterogeneity to affect plant trait expression

机译:光异质性与植物诱导的土壤异质性相互作用,影响植物性状表达

获取原文
获取原文并翻译 | 示例
           

摘要

Phenotypic plasticity, the expression of traits dependent on an individual's environment, should increase the range of communities in which a plant can establish, potentially influencing community assembly. Plasticity may be induced by either the mean or variance in conditions; however, plant responses to variance in the environment remain largely unquantified. We conducted a greenhouse experiment in northeastern Ohio using two congeneric pairs of perennial species in a design that crossed two soil heterogeneity and two light heterogeneity treatments. Nested within the soil heterogeneity treatment were patches of congener and conspecific origin, which tests the effects of possible plant-soil feedbacks on trait expression. We used plant biomass to measure performance and root:shoot ratio and specific leaf area (SLA) to measure resource acquisition and allocation. Plant biomass responded to the origin of the soil, consistent with the literature demonstrating that plant-soil feedbacks influence plant performance. Soil and light heterogeneity interacted to significantly affect resource acquisition traits (i.e., SLA) demonstrating that plants integrated both above- and belowground resource variance. All four species showed light-dependent, non-additive effects of soil mixture, though these effects were only marginally significant (P < 0.10). This is important in the context of community assembly because studies find the variance in environmental drivers to be as, or more, important than the means in determining community structure. This study provides some of the first evidence that plant trait expression responds to the variance of environmental drivers, including those driven by plant-soil feedbacks, as well as the means.
机译:表型可塑性,即依赖于个人环境的性状表达,应会增加植物可以建立的群落范围,从而可能影响群落组装。条件的均值或方差可以诱导可塑性。然而,植物对环境变化的反应在很大程度上仍未量化。我们在俄亥俄州东北部进行了一次温室实验,使用了两个对生的多年生物种对,其设计跨越了两种土壤异质性和两种光异质性处理方法。嵌套在土壤异质性处理中的是同类和同种起源的斑块,这些斑块测试了可能的植物-土壤反馈对性状表达的影响。我们使用植物生物量来衡量性能,并使用根:茎比率和比叶面积(SLA)来衡量资源获取和分配。植物生物量对土壤的起源做出了响应,这与文献表明植物-土壤的反馈影响植物的生长性能是一致的。土壤和光的异质性相互作用对资源获取特征(即SLA)产生重大影响,表明植物整合了地上和地下资源差异。这四个物种均显示出土壤混合物的光依赖性非加性效应,尽管这些效应仅具有很小的显着性(P <0.10)。这在社区集会的背景下非常重要,因为研究发现环境驱动因素的差异与确定社区结构的手段一样重要,甚至更重要。这项研究提供了一些第一个证据,表明植物性状表达对环境驱动因素的变化有响应,包括由植物-土壤反馈驱动的变异以及手段。

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