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变暖将如何影响盐沼基础物种大米草及其生态作用?

How will warming affect the salt marsh foundation species Spartina patens and its ecological role?

机构信息

Department of Ecology and Evolutionary Biology, Brown University, Providence, RI 02912, USA.

出版信息

Oecologia. 2010 Oct;164(2):479-87. doi: 10.1007/s00442-010-1661-x. Epub 2010 May 20.

DOI:10.1007/s00442-010-1661-x
PMID:20490551
Abstract

Foundation species structure environments and create refuge from environmental stress. In New England high salt marsh, the grass Spartina patens is a foundation species that reduces salinity, anoxia, desiccation, and thermal stresses through canopy shading and root proliferation. In a factorial S. patens-removal and warming field experiment, foundation species removal strongly impacted every aspect of the community, reiterating the important role of the foundation species S. patens in the high marsh. Given this central role, we hypothesized that facilitation by the foundation species would be even more important under warmer conditions by ameliorating more severe thermal stress. However, the ecological role of S. patens was unaffected by experimental warming, and, independent of the presence of the foundation species, warming had only weak effects on the salt marsh ecological community. Only the foundation species itself responded strongly to warming, by significantly increasing aboveground production in warmed plots. Apparently, amelioration of thermal stress is not as important for salt marsh ecosystem function as S. patens' moderation of salinity and desiccation stresses. From these experimental results, we anticipate that climate change-associated thermal stress will not greatly affect S. patens-dominated high marsh communities. In contrast, foundation species loss, an emergent conservation issue in Atlantic salt marshes, represents a critical threat to salt marsh ecosystem function.

摘要

基础物种结构环境,并创造抵御环境压力的避难所。在新英格兰高盐沼中,草莎草是一种基础物种,通过冠层遮荫和根系增殖来降低盐分、缺氧、干旱和热应激。在莎草去除和升温的现场实验中,基础物种的去除强烈影响了群落的各个方面,再次强调了基础物种莎草在高沼中的重要作用。鉴于这种核心作用,我们假设,在更温暖的条件下,通过缓解更严重的热应激,基础物种的促进作用将更加重要。然而,莎草的生态作用不受实验升温的影响,而且,独立于基础物种的存在,升温对盐沼生态群落的影响很弱。只有基础物种本身对变暖有强烈的反应,在变暖的地段显著增加地上生物量。显然,热应激的缓解对盐沼生态系统功能不如莎草对盐度和干旱胁迫的调节重要。从这些实验结果来看,我们预计与气候变化相关的热应激不会对莎草为主的高沼群落产生重大影响。相比之下,基础物种的丧失是大西洋盐沼中一个新出现的保护问题,是对盐沼生态系统功能的一个关键威胁。

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