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Relationships in ecological health between connected stream and estuary ecosystems

机译:连接流和河口生态系统之间生态健康关系

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摘要

Estuaries are the endpoints of rivers, which shape their physical and biological characteristics, yet few tools are available to link the health of estuaries to their upstream sources. As a first step towards the use of macroinvertebrate indices for setting ecological health thresholds in streams that also protect estuaries, we examined relationships between the ecological health of streams and their receiving estuaries over a wide geographic scale in New Zealand. Eight macroinvertebrate biotic indices known to respond to key physico-chemical stressors (fine sediment, organic enrichment and metals) were used. We explored whether correlation strength between the stream and estuary indices varied with survey time difference (i.e., the number of years the stream survey was conducted prior to the estuary survey) and estuary type at the catchment/estuary scale. Significant positive correlations (rho= 0.30-0.78) were detected between many of the stream and estuary indices responding to fine sediment and (either) organic enrichment. Index correlation strength tended to increase with increasing survey time difference (usually up to at least a decade), indicating a temporal lag in ecological health between the streams and estuaries. Correlation strength also varied across estuary type and there was at least one moderate correlation for each of three types (deep and shallow drowned estuaries, tidal lagoons) representing a variety of geomorphological characteristics. We also used linear mixed models to determine the influence of estuary and stream characteristics, as well as survey time difference, on index relationship strength. The relationships were influenced by estuary site location and volume, and survey time difference. For spatially integrated management purposes, our results are a step towards demonstrating that macroinvertebrate indices could be used to set ecological thresholds for streams and that also consider protection of estuary health from impacts of fine sediment and organic enrichment. Overall, our study highlights the value of using biotic indices to compare the ecological health of connected ecosystems.
机译:河口是河流的终点,它塑造了他们的物理和生物学特性,但很少有工具可用于将河口的健康联系在上游来源。作为利用Macroinvertebrets指数的第一步,用于在溪流中设定生态健康阈值,这些股票也保护河口,我们在新西兰广泛的地理规模上审查了溪流生态健康及其接受河口之间的关系。已知八种Macroinvertebrate生物指数,用于响应关键的物理化学压力(细沉积物,有机富集和金属)。我们探讨了流和浅月指之间的相关强度是否随着调查时间差而变化(即,在河口调查之前进行了流调查的年数)和河口类型的河口类型。在许多流和呼应指数之间检测到显着的正相关(RHO = 0.30-0.78),响应细沉积物和(或)有机富集。索引相关强度随着调查时间差的增加而增加(通常至少是十年),表明流和河口之间生态健康中的时间滞后。相关强度在河口类型中也变化,三种类型(深和浅淹没的河口,潮汐Lagoons)中的每种具有至少一个中等相关性,代表各种地貌特征。我们还使用了线性混合模型来确定河口和流特征的影响,以及对指标关系强度的调查时间差。这种关系受到河口网站位置和体积的影响,以及调查时间差。出于空间综合的管理目的,我们的结果是朝着证明Macroinvertebrets指数可用于设定流的生态阈值,并考虑保护河口的影响免受细沉积物和有机富集的影响。总体而言,我们的研究突出了使用生物指数比较连接生态系统的生态健康的价值。

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