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Effects of Invasive Watermilfoil and...
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Van Goethem, Ryan R.
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Effects of Invasive Watermilfoil and Seasonal Dynamics on Primary Production in Littoral Zones of North-Temperate Lakes.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Effects of Invasive Watermilfoil and Seasonal Dynamics on Primary Production in Littoral Zones of North-Temperate Lakes./
作者:
Van Goethem, Ryan R.
出版者:
Ann Arbor : ProQuest Dissertations & Theses, : 2019,
面頁冊數:
101 p.
附註:
Source: Masters Abstracts International, Volume: 80-11.
Contained By:
Masters Abstracts International80-11.
標題:
Ecology. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=13424516
ISBN:
9781392172049
Effects of Invasive Watermilfoil and Seasonal Dynamics on Primary Production in Littoral Zones of North-Temperate Lakes.
Van Goethem, Ryan R.
Effects of Invasive Watermilfoil and Seasonal Dynamics on Primary Production in Littoral Zones of North-Temperate Lakes.
- Ann Arbor : ProQuest Dissertations & Theses, 2019 - 101 p.
Source: Masters Abstracts International, Volume: 80-11.
Thesis (M.S.)--Michigan Technological University, 2019.
This item must not be sold to any third party vendors.
Climate change and species invasion are two agents of global change altering aquatic ecosystems worldwide. Submerged aquatic macrophytes control lake ecosystem processes through their direct and indirect interactions with other primary producers, but how their interactions may be altered by species invasions or how they function over full seasonal cycles in temperate lakes is poorly understood. We first addressed whether the presence of invasive watermilfoil (IWM) altered standing crops and gross primary pro-duction (GPP) of other littoral primary producers (macrophytes, phytoplankton, attached algae or periphyton) in littoral zones of 6 Michigan lakes. We found no differences in primary producer standing crops or GPP between plots with or without IWM. Macrophyte standing crop predicted rates of benthic periphyton GPP and standing crops of all other primary producers across all study plots, along with water temperature, nutrient concentrations, and water clarity. Second, we studied year-round dynamics of littoral primary producers in 2 lakes located on the Keweenaw Peninsula of the Upper Peninsula of Michigan. Standing crops of primary producers were present all year and changed seasonally, although they were lowest during winter. Water temperature explained 34% of phytoplankton GPP and 57% of plot-level GPP, which incorporated all primary producers. Water under the ice was hypoxic during winter. Together, the results of these studies suggest that macrophyte biomass, temperature and ice cover are important drivers of littoral zone productivity among lakes and over seasons, which has implications for understanding possible effects of climate change on ecosystem processes in north temperate lakes.
ISBN: 9781392172049Subjects--Topical Terms:
516476
Ecology.
Effects of Invasive Watermilfoil and Seasonal Dynamics on Primary Production in Littoral Zones of North-Temperate Lakes.
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Climate change and species invasion are two agents of global change altering aquatic ecosystems worldwide. Submerged aquatic macrophytes control lake ecosystem processes through their direct and indirect interactions with other primary producers, but how their interactions may be altered by species invasions or how they function over full seasonal cycles in temperate lakes is poorly understood. We first addressed whether the presence of invasive watermilfoil (IWM) altered standing crops and gross primary pro-duction (GPP) of other littoral primary producers (macrophytes, phytoplankton, attached algae or periphyton) in littoral zones of 6 Michigan lakes. We found no differences in primary producer standing crops or GPP between plots with or without IWM. Macrophyte standing crop predicted rates of benthic periphyton GPP and standing crops of all other primary producers across all study plots, along with water temperature, nutrient concentrations, and water clarity. Second, we studied year-round dynamics of littoral primary producers in 2 lakes located on the Keweenaw Peninsula of the Upper Peninsula of Michigan. Standing crops of primary producers were present all year and changed seasonally, although they were lowest during winter. Water temperature explained 34% of phytoplankton GPP and 57% of plot-level GPP, which incorporated all primary producers. Water under the ice was hypoxic during winter. Together, the results of these studies suggest that macrophyte biomass, temperature and ice cover are important drivers of littoral zone productivity among lakes and over seasons, which has implications for understanding possible effects of climate change on ecosystem processes in north temperate lakes.
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