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Comparing Effects of Nutrients on Algal Biomass in Streams in Two Regions with Different Disturbance Regimes and with Applications for Developing Nutrient Criteria

机译:营养物质对不同干扰制度的两个地区藻类生物量对藻类生物量的影响,以及营养标准的应用

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摘要

Responses of stream algal biomass to nutrient enrichment were studied in two regions where differences in hydrologic variability cause great differences in herbivory. Around northwestern Kentucky (KY) hydrologic variability constrains invertebrate biomass and their effects on algae, but hydrologic stability in Michigan (MI) streams permits accrual of high herbivore densities and herbivory of benthic algae. Multiple indicators of algal biomass and nutrient availability were measured in 104 streams with repeated sampling at each site over a 2−month period. Many measures of algal biomass and nutrient availability were positively correlated in both regions, however the amount of variation explained varied with measures of biomass and nutrient concentration and with region. Indicators of diatom biomass were higher in KY than MI, but were not related to nutrient concentrations in either region. Chl   a and % area of substratum covered by Cladophora were positively correlated to nutrient concentrations in both regions. Cladophora responded significantly more to nutrients in MI than KY. Total phosphorus (TP) and total nitrogen (TN) explained similar amounts of variation in algal biomass, and not significantly more variation in biomass than dissolved nutrient concentrations. Low N:P ratios in the benthic algae indicated N as well as P may be limiting their accrual. Most observed responses in benthic algal biomass occurred in nutrient concentrations between 10 and 30 μg TP  l −1 and between 400 and 1000 μg TN l −1 .
机译:流藻体响应养分富集两个区域进行了研究,其中在水文变化的差异造成取食很大的差异。围绕西北肯塔基(肯塔基州)水文变化约束的无脊椎动物生物质及其对藻类的影响,但在密歇根州(MI)水文稳定性流允许权责发生制高草食动物密度和底栖海藻取食。在104流测量在每个站点在2个月的周期进行重复取样的藻类生物质和养分有效性的多个指示器。藻类生物质和养分有效性的许多措施在这两个区域呈正相关,但变化量与解释的生物量和营养物浓度,并与区域措施变化。硅藻生物量的指标在KY比MI含量较高,但并没有涉及到营养物浓度在任一地区。叶绿素a和基质通过刚毛藻覆盖的面积%呈正相关营养物浓度在这两个区域。刚毛藻显著更多回应营养素MI比KY。总磷(TP)和总氮(TN)的藻类生物质解释变差的相似量,且在生物质不是溶解营养物浓度不显著更多的变化。低N:在底栖海藻P比所示的N个以及P可以限制它们的应计。在底栖藻类生物质最观察到的反应发生在营养物浓度在10和30微克TP升之间-1和400和1000微克TN升之间-1。

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