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大尺度和局部尺度环境梯度对表型分化的交互作用。

Interactive effects of large- and local-scale environmental gradients on phenotypic differentiation.

作者信息

Benes Kylla, Bracken Matthew E S

机构信息

Department of Ecology & Evolutionary Biology, University of California Irvine, 321 Steinhaus Hall, Irvine, California, 92697-2525, USA.

Davidson Honors College, University of Montana, 32 Campus Drive, Missoula, Montana, 59812, USA.

出版信息

Ecology. 2020 Aug;101(8):e03078. doi: 10.1002/ecy.3078. Epub 2020 Jun 15.

Abstract

Intraspecific differentiation across a steep environmental gradient depends on the relative influences of evolutionary, organismal, and environmental processes. But steep environmental gradients may be nested within larger-scale, regional conditions that could influence these processes at the local scale. Therefore, we hypothesized that phenotypic differentiation along a steep environmental gradient would vary among regions. To test this hypothesis, we conducted a reciprocal transplant experiment on rocky intertidal shores, a habitat characterized by gradients in abiotic and biotic stress, in three regions of the Gulf of Maine. We used the ubiquitous and ecologically important rockweed species Fucus vesiculosus to quantify differentiation in growth, tissue nitrogen, and nitrogen productivity between upper and lower intertidal individuals. We found that phenotypic differentiation between tide heights varied among traits and regions. Although tissue nitrogen did not vary among any treatment combinations, growth and nitrogen productivity response were region specific. A strong effect of transplant height was found in all regions; however, an effect of home (source) height was only detectable in the central Gulf of Maine. Our study reveals that intraspecific responses to steep environmental gradients vary among populations, but the mechanisms underlying these patterns remain unknown. Given the roles that rockweeds play as food and habitat, these in situ patterns of growth and nitrogen productivity could have important community- and ecosystem-level consequences.

摘要

在陡峭的环境梯度上的种内分化取决于进化、生物体和环境过程的相对影响。但是,陡峭的环境梯度可能嵌套在更大尺度的区域条件之中,而这些区域条件可能会在局部尺度上影响这些过程。因此,我们推测沿着陡峭环境梯度的表型分化在不同区域会有所不同。为了验证这一假设,我们在缅因湾的三个区域的岩石潮间带上进行了一项相互移植实验,该栖息地的特点是存在非生物和生物胁迫梯度。我们使用了常见且具有重要生态意义的墨角藻属物种岩藻来量化潮间带上部和下部个体在生长、组织氮含量和氮生产力方面的差异。我们发现,潮位之间的表型分化因性状和区域而异。尽管在任何处理组合中组织氮含量都没有变化,但生长和氮生产力响应具有区域特异性。在所有区域都发现了移植高度的强烈影响;然而,只有在缅因湾中部才能检测到原生(源)高度的影响。我们的研究表明,种内对陡峭环境梯度的响应在不同种群之间存在差异,但这些模式背后的机制仍然未知。鉴于岩藻作为食物和栖息地所起的作用,这些生长和氮生产力的原位模式可能会对群落和生态系统层面产生重要影响。

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