

FOLLOWUS
1.Key Laboratory of Aquatic Biodiversity and Conservation of Chinese Academy of Sciences, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China
2.Key Laboratory of Sustainable Fisheries and Environmental Protection for Lakes of Northern Jiangsu, Huai'an Research Center, Institute of Hydrobiology, Chinese Academy of Sciences, Huai'an 223002, China
Fei CHENG, E-mail: chengfei@ihb.ac.cn
收稿:2019-11-16,
录用:2020-1-7,
网络首发:2020-02-29,
纸质出版:2021-03
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A comparison of zooplankton assemblages in Nansi Lake and Hongze Lake, potential influences of the East Route of the South-to-North Water Transfer Project, China[J]. 海洋湖沼学报(英文), 2021,39(2):623-636.
Kandathil Radhakrishnan DIVYA, Shasha ZHAO, Yushun CHEN, et al. A comparison of zooplankton assemblages in Nansi Lake and Hongze Lake, potential influences of the East Route of the South-to-North Water Transfer Project, China[J]. Journal of Oceanology and Limnology, 2021, 39(2): 623-636.
A comparison of zooplankton assemblages in Nansi Lake and Hongze Lake, potential influences of the East Route of the South-to-North Water Transfer Project, China[J]. 海洋湖沼学报(英文), 2021,39(2):623-636. DOI: 10.1007/s00343-020-9288-1.
Kandathil Radhakrishnan DIVYA, Shasha ZHAO, Yushun CHEN, et al. A comparison of zooplankton assemblages in Nansi Lake and Hongze Lake, potential influences of the East Route of the South-to-North Water Transfer Project, China[J]. Journal of Oceanology and Limnology, 2021, 39(2): 623-636. DOI: 10.1007/s00343-020-9288-1.
Nansi Lake and Hongze Lake are both water storage lakes along the East Route of the South-to-North Water Transfer project (ESNT). Frequent changes in hydrologic properties are responsible factors for controlling the zooplankton community assemblages in both lakes
so we studied the possible influence of water transfer and environmental factors on zooplankton community structure and abundance. Zooplankton assemblages were investigated seasonally for one year in both lakes; a total of 133 and 122 zooplankton taxa were identified in Nansi Lake and Hongze Lake
respectively. The most dominant rotifer species were littoral
e.g.
Keratella tecta
Keratella valga
and
Lecane lunaris
in Nansi Lake and
Brachionus angularis
Brachionus forficula
and
Polyarthra vulgaris
in Hongze Lake. Comparatively
Nansi Lake had a higher Shannon-Wiener diversity index value (5.13)
while Hongze Lake had a higher species richness index (4.21). The average number of zooplankton across seasons in Nansi Lake (protozoa: 774±63 ind./L
rotifers: 4 817±212 ind./L
cladocerans: 896±14 ind./L
copepod: 435±42 ind./L) was comparatively lower than Hongze Lake (protozoa: 1 238±63 ind./L
rotifers: 6 576±112 ind./L
cladocerans: 1 013±20 ind./L
copepod: 534±25 ind./L). Canonical correspondence analysis identified differing environmental gradients that were most responsible for influencing zooplankton communities in the two lakes (Hongze Lake: NH
4
-N
total nitrogen
transparency and pH; Nansi: pH
temperature and total phosphorus). Frequent changes related to water transfer in lakes favoured the diversity of rotifers and protozoa communities. Zooplankton habitat preference
changes in community structure and opportunistic peaks and extinction of certain taxa were also observed in the study lakes.
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