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种内性状变异性塑造了叶片性状对改变的火干扰的响应。

Intraspecific trait variability shapes leaf trait response to altered fire regimes.

机构信息

School of Earth and Sustainability, Northern Arizona University, Flagstaff, AZ, USA.

Department of Biology, Duke University, Durham, NC, USA.

出版信息

Ann Bot. 2021 Mar 24;127(4):543-552. doi: 10.1093/aob/mcaa179.

Abstract

BACKGROUND AND AIMS

Understanding impacts of altered disturbance regimes on community structure and function is a key goal for community ecology. Functional traits link species composition to ecosystem functioning. Changes in the distribution of functional traits at community scales in response to disturbance can be driven not only by shifts in species composition, but also by shifts in intraspecific trait values. Understanding the relative importance of these two processes has important implications for predicting community responses to altered disturbance regimes.

METHODS

We experimentally manipulated fire return intervals in replicated blocks of a fire-adapted, longleaf pine (Pinus palustris) ecosystem in North Carolina, USA and measured specific leaf area (SLA), leaf dry matter content (LDMC) and compositional responses along a lowland to upland gradient over a 4 year period. Plots were burned between zero and four times. Using a trait-based approach, we simulate hypothetical scenarios which allow species presence, abundance or trait values to vary over time and compare these with observed traits to understand the relative contributions of each of these three processes to observed trait patterns at the study site. We addressed the following questions. (1) How do changes in the fire regime affect community composition, structure and community-level trait responses? (2) Are these effects consistent across a gradient of fire intensity? (3) What are the relative contributions of species turnover, changes in abundance and changes in intraspecific trait values to observed changes in community-weighted mean (CWM) traits in response to altered fire regime?

KEY RESULTS

We found strong evidence that altered fire return interval impacted understorey plant communities. The number of fires a plot experienced significantly affected the magnitude of its compositional change and shifted the ecotone boundary separating shrub-dominated lowland areas from grass-dominated upland areas, with suppression sites (0 burns) experiencing an upland shift and annual burn sites a lowland shift. We found significant effects of burn regimes on the CWM of SLA, and that observed shifts in both SLA and LDMC were driven primarily by intraspecific changes in trait values.

CONCLUSIONS

In a fire-adapted ecosystem, increased fire frequency altered community composition and structure of the ecosystem through changes in the position of the shrub line. We also found that plant traits responded directionally to increased fire frequency, with SLA decreasing in response to fire frequency across the environmental gradient. For both SLA and LDMC, nearly all of the observed changes in CWM traits were driven by intraspecific variation.

摘要

背景与目的

了解干扰格局变化对群落结构和功能的影响是群落生态学的一个关键目标。功能特征将物种组成与生态系统功能联系起来。在群落尺度上,功能特征的分布变化不仅可以由物种组成的变化驱动,还可以由种内特征值的变化驱动。了解这两个过程的相对重要性,对于预测群落对改变干扰格局的反应具有重要意义。

方法

我们在美国北卡罗来纳州的一个适应火灾的长叶松(Pinus palustris)生态系统的重复区块中,实验性地操纵火灾返回间隔,并在 4 年内沿低地到高地梯度测量特定叶面积(SLA)、叶干物质含量(LDMC)和组成响应。这些地块的燃烧次数从 0 到 4 次不等。通过基于特征的方法,我们模拟了假设情景,使物种的存在、丰度或特征值随时间而变化,并将这些情景与观测到的特征进行比较,以了解这三个过程中每一个过程对研究地点观测到的特征模式的相对贡献。我们提出了以下问题。(1)火灾格局的变化如何影响群落组成、结构和群落水平特征响应?(2)这些影响在火灾强度梯度上是否一致?(3)在应对改变的火灾格局时,物种更替、丰度变化和种内特征值变化对观测到的群落加权均值(CWM)特征变化的相对贡献是什么?

主要结果

我们有强有力的证据表明,改变的火灾返回间隔影响了林下植物群落。一个地块经历的火灾次数显著影响了其组成变化的幅度,并改变了将灌木主导的低地与草主导的高地分隔开来的生态交错带边界,抑制区(0 次燃烧)经历了高地的转移,而每年燃烧区经历了低地的转移。我们发现火灾制度对 SLA 的 CWM 有显著影响,并且 SLA 和 LDMC 的观测变化主要是由种内特征值的变化驱动的。

结论

在一个适应火灾的生态系统中,增加火灾频率通过改变灌丛线的位置改变了生态系统的群落组成和结构。我们还发现,植物特征对增加的火灾频率有方向性的响应,在整个环境梯度上,SLA 随火灾频率的增加而降低。对于 SLA 和 LDMC,CWM 特征的几乎所有观测变化都是由种内变异驱动的。

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