Effects of stream velocity and phosphorus concentrations on alkaline phosphatase activity and carbon:phosphorus ratios in periphyton

被引:0
作者
Daniel L. Hiatt
Jeffrey A. Back
Ryan S. King
机构
[1] Baylor University,Department of Biology
[2] Baylor University,Center for Reservoir and Aquatic Systems Research
[3] University of Illinois,Department of Crop Sciences
来源
Hydrobiologia | 2019年 / 826卷
关键词
Flow regime; Flow intermittence; Water velocity; Stoichiometry; Exoenzymes; Eutrophication; Streams; Ecoenzymes; Benthic periphyton;
D O I
暂无
中图分类号
学科分类号
摘要
We studied several streams spanning a steep dissolved phosphorus (PO4–P) gradient to test the hypothesis that faster stream velocity would reduce alkaline phosphatase activity (APA) and carbon:phosphorus (C:P) of benthic periphyton because higher velocities should increase the supply rate of dissolved phosphorus at the community–water interface. We tested the hypothesis that the differences in APA and C:P between fast and slow velocity locations within a stream reach would decline as stream PO4–P concentrations increased, and, therefore, velocity effects should be the greatest at low levels of PO4–P. APA declined in response to both the increased water velocity and PO4–P, but the effect of velocity on APA was negligible at the highest levels of PO4–P. Further, we found a strong, negative relationship between periphyton C:P and PO4–P levels as hypothesized, but did not detect significant relationship between C:P and velocity after accounting for the effects of PO4–P. The lack of an effect of velocity on C:P is probably due to the higher levels of APA in low-velocity, low PO4–P reaches, as the higher APA rates reflect an alternative pathway for acquiring sufficient PO4–P to sustain periphytic growth and metabolism. These results have important implications for stream ecosystem function because of the increasing frequency of extreme weather events associated with the climate change, particularly droughts that reduce or eliminate perennial stream flow, and further illustrate the important effects of stream flow on biogeochemical processes.
引用
收藏
页码:173 / 182
页数:9
相关论文
共 50 条
[11]   Predicting lake chlorophyll from stream phosphorus concentrations [J].
Yuan, Lester L. ;
Paul, Michael J. .
JOURNAL OF THE AMERICAN WATER RESOURCES ASSOCIATION, 2025, 61 (01)
[12]   Benthic sediment influence on dissolved phosphorus concentrations in a headwater stream [J].
Noah R. Lottig ;
Emily H. Stanley .
Biogeochemistry, 2007, 84 :297-309
[13]   Benthic sediment influence on dissolved phosphorus concentrations in a headwater stream [J].
Lottig, Noah R. ;
Stanley, Emily H. .
BIOGEOCHEMISTRY, 2007, 84 (03) :297-309
[14]   Comparing Drivers of Spatial Variability in US Lake and Stream Phosphorus Concentrations [J].
Sabo, Robert D. ;
Pickard, Brian ;
Lin, Jiajia ;
Washington, Ben ;
Clark, Christopher M. ;
Compton, Jana E. ;
Pennino, Michael ;
Bierwagen, Britta ;
LeDuc, Stephen D. ;
Carleton, James N. ;
Weber, Marc ;
Fry, Meridith ;
Hill, Ryan ;
Paulsen, Steve ;
Herlihy, Alan ;
Stoddard, John L. .
JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES, 2023, 128 (08)
[15]   Presence and patterns of alkaline phosphatase activity and phosphorus cycling in natural riparian zones under changing nutrient conditions [J].
Wang, Peifang ;
Ren, Lingxiao ;
Wang, Chao ;
Qian, Jin ;
Hou, Jun .
JOURNAL OF LIMNOLOGY, 2015, 74 (01) :155-168
[16]   Significant influence of phosphorus resources on the growth and alkaline phosphatase activities of Microcystis aeruginosa [J].
Xie, En ;
Su, Yuping ;
Deng, Songqiang ;
Kontopyrgou, Maria ;
Zhang, Dayi .
ENVIRONMENTAL POLLUTION, 2021, 268
[17]   Interaction of alkaline phosphatase with minerals and sediments: Activities, kinetics and hydrolysis of organic phosphorus [J].
Zhu, Yuanrong ;
Wu, Fengchang ;
Feng, Weiying ;
Liu, Shasha ;
Giesy, John P. .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2016, 495 :46-53
[18]   Nitrogen and Phosphorus Additions Alter the Abundance of Phosphorus-Solubilizing Bacteria and Phosphatase Activity in Grassland Soils [J].
Widdig, Meike ;
Schleuss, Per-M ;
Weig, Alfons R. ;
Guhr, Alexander ;
Biederman, Lori A. ;
Borer, Elizabeth T. ;
Crawley, Michael J. ;
Kirkman, Kevin P. ;
Seabloom, Eric W. ;
Wragg, Peter D. ;
Spohn, Marie .
FRONTIERS IN ENVIRONMENTAL SCIENCE, 2019, 7
[19]   Phosphatase activity and phosphorus turnover rate in Lakes Ladoga and Onega [J].
A. V. Ryzhakov ;
A. V. Sabylina .
Russian Journal of General Chemistry, 2015, 85 :2938-2941
[20]   Phosphatase activity and phosphorus turnover rate in Lakes Ladoga and Onega [J].
Ryzhakov, A. V. ;
Sabylina, A. V. .
RUSSIAN JOURNAL OF GENERAL CHEMISTRY, 2015, 85 (13) :2938-2941