Impact of land-use and flow conditions on the phytoplankton of the Sabie River, South Africa

被引:5
作者
Barnard, Sandra [1 ]
Morgenthal, Theunis L. [1 ]
Stolz, Micaela [1 ]
Venter, Arthurita [1 ]
机构
[1] North West Univ, Unit Environm Sci & Management, Private Bag X6001, ZA-2520 Potchefstroom, North West Prov, South Africa
关键词
river; water quality; cyanobacteria; drought; phytoplankton biomass; KRUGER-NATIONAL-PARK; WATER-QUALITY; CLIMATE-CHANGE; CATCHMENT;
D O I
10.38201/btha.abc.v51.i1.6
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Background: The understanding of the impact of land-use on the dynamics of phytoplankton assemblages during varying climate conditions on rivers is limited. Objective: To determine the impact of land-use types and flow on phytoplankton assemblages in the Sabie River. Methods: The relationships between land-use patterns, water quality and phytoplankton assemblages were analysed using canonical correspondence analyses (CCA). Results: Six main land-use types could be distinguished in the eight identified sub-catchments of the river. The CCA results showed that the land-use had a stronger correlation with phytoplankton classes during the higher flow conditions than during low flow conditions. The forestry land-use type had the strongest correlation with nitrate-nitrite concentrations in the Sabie River. Chlorophyll-a concentrations were higher during 2016, and a slightly lower number of genera were observed for the class Chlorophyceae. During 2017 the number of genera of the class Cyanophyceae decreased together with chlorophyll-a and total cell concentrations. Conclusion: Low flow conditions favoured filamentous genera that are common to mesotrophic conditions while higher flow conditions favoured single-celled small genera more common to oligotrophic waters with higher disturbance. This study showed that flow has the potential to enhance the impact of land-use on phytoplankton community dynamics in a river system and thereby may have further impacts on the health and activities of surrounding communities.
引用
收藏
页码:75 / 92
页数:18
相关论文
共 39 条
[31]  
Swanepoel A., 2008, CONDENSED LAB METHOD
[32]  
Taylor JC., 2007, WATER RES COMMISSION
[33]  
Ter Braak C.J., 2002, CANOCO REFERENCE MAN, P119
[34]  
Tlou T., 2011, 9712 WP DEP WAT AFF, P2
[35]   The impact of land use and spatial mediated processes on the water quality in a river system [J].
Vrebos, Dirk ;
Beauchard, Olivier ;
Meire, Patrick .
SCIENCE OF THE TOTAL ENVIRONMENT, 2017, 601 :365-373
[36]  
Wehr J.D., 2014, Freshwater Algae of North America: Ecology and Classification
[37]   Phytoplankton response to a changing climate [J].
Winder, Monika ;
Sommer, Ulrich .
HYDROBIOLOGIA, 2012, 698 (01) :5-16
[38]  
Xizhi L., 2017, NAT ENVIRON POLLUT T, V16, P307
[39]   Aggregating land use quantity and intensity to link water quality in upper catchment of Miyun Reservoir [J].
Xu, Erqi ;
Zhang, Hongqi .
ECOLOGICAL INDICATORS, 2016, 66 :329-339