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首页> 外文期刊>Oikos: A Journal of Ecology >Context dependency of relationships between biodiversity and ecosystem functioning is different for multiple ecosystem functions
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Context dependency of relationships between biodiversity and ecosystem functioning is different for multiple ecosystem functions

机译:生物多样性和生态系统功能之间关系的背景依存关系对于多种生态系统功能而言是不同的

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Increasing concern over the loss of biodiversity has led to attempts to quantify relationships between biodiversity and ecosystem functioning. While manipulative investigations have accumulated substantial evidence to support the notion that decreasing biodiversity can be detrimental to the functioning of ecosystems, recent investigations have identified the potential importance of physical processes in moderating biodiversity - ecosystem function relationships at larger geographical scales. In this study, the relationship between the genus richness of benthic macro-invertebrates and five measures of ecosystem functioning (macrofaunal biomass, depth of the apparent redox discontinuity, fluxes of ammonium and NOx and the abundance of nematodes) was determined over a large scale wave-induced bed shear stress gradient on the seabed of the northern Irish Sea. Ecosystem functioning was significantly correlated to genus richness for four out of five ecosystem functions. However, wave stress moderated the genus richness - ecosystem functioning relationship for only one of the ecosystem functions; genus richness had a positive effect on the depth of the apparent redox discontinuity in the sediment at high wave stress but not at low wave stress. These results indicate that the effects of biodiversity on some ecosystem functions may be sufficiently strong to generate patterns in ecosystems where other factors are also affecting ecosystem processes, but that the biodiversity-ecosystem function relationship for can be dependent on environmental conditions for specific ecosystem functions.
机译:对生物多样性丧失的关注日益增加,导致人们试图量化生物多样性与生态系统功能之间的关系。尽管操纵性调查已经积累了充分的证据来支持减少生物多样性可能有害于生态系统功能的观点,但最近的调查已经确定了物理过程在调节生物多样性方面的潜在重要性-在更大的地理尺度上。在这项研究中,确定了底栖大型无脊椎动物的属丰富度与生态系统功能的五种量度(宏观真菌生物量,表观氧化还原不连续深度,铵和NOx的通量以及线虫的丰度)之间的关系。引起的北爱尔兰海海床上的地层剪切应力梯度。在五分之四的生态系统功能中,生态系统功能与属丰富度显着相关。然而,海浪胁迫仅缓解了其中一种生态系统功能的丰富度-生态系统功能关系。属丰富度对高波浪应力下沉积物中表观氧化还原不连续的深度有积极影响,而在低波浪应力下则没有。这些结果表明,生物多样性对某些生态系统功能的影响可能足够强,足以在其他因素也影响生态系统过程的生态系统中产生模式,但是生物多样性与生态系统功能的关系可能取决于特定生态系统功能的环境条件。

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