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潘恒丰,等 水产学报, 2025, 49(6): 069617
[16] 胡鸿钧, 魏印心. 中国淡水藻类: 系统、分类及生态 [M]. 北 in an earthen pond[J]. Marine Sciences, 2016, 40(4): 22-31 (in
京: 科学出版社, 2006: 23-903. Chinese).
Hu H J, Wei Y X. The freshwater algae of China: systematics, [25] Havens K E, East T L, Rodusky A J, et al. Littoral periphyton
taxonomy and ecology[M]. Beijing: Science Press, 2006: 23- responses to nitrogen and phosphorus: an experimental study in
903 (in Chinese). a subtropical lake[J]. Aquatic Botany, 1999, 63(3-4): 267-290.
[17] 章宗涉, 黄祥飞. 淡水浮游生物研究方法 [M]. 北京: 科学出 [26] Gaiser E. Periphyton as an indicator of restoration in the Flor-
版社, 1991: 252-288. ida Everglades[J]. Ecological Indicators, 2009, 9(S6): S37-S45.
Zhang Z S, Huang X F. Research methods of freshwater plank- [27] Özkan K, Jeppesen E, Johansson L S, et al. The response of
ton[M]. Beijing: Science Press, 1991: 252-288 (in Chinese). periphyton and submerged macrophytes to nitrogen and phos-
[18] Smith S M, Lee K D. Responses of periphyton to artificial phorus loading in shallow warm lakes: a mesocosm
nutrient enrichment in freshwater kettle ponds of Cape Cod experiment[J]. Freshwater Biology, 2010, 55(2): 463-475.
National Seashore[J]. Hydrobiologia, 2006, 571(1): 201-211. [28] Zhang X F, Mei X Y. Periphyton response to nitrogen and
[19] Kilroy C, Suren A M, Wech J A, et al. Epiphytic diatoms as phosphorus enrichment in a eutrophic shallow aquatic ecosys-
indicators of ecological condition in New Zealand’s lowland tem[J]. Chinese Journal of Oceanology and Limnology, 2013,
wetlands[J]. New Zealand Journal of Marine and Freshwater 31(1): 59-64.
Research, 2017, 51(4): 505-527. [29] Howard-Williams C, Davies B R, Cross R H M. The influence
[20] Rodusky A J, Anderson Jr R T. A comparison of epiphytic of periphyton on the surface structure of a Potamogeton pec-
communities on natural and artificial substrates in a large sub- tinatus L. leaf (an hypothesis)[J]. Aquatic Botany, 1978, 5: 87-
tropical lake (Lake Okeechobee, USA)[J]. Fundamental and 91.
Applied Limnology, 2013, 183(3): 189-204. [30] 董旭辉, 羊向东, 潘红玺. 长江中下游地区湖泊现代沉积硅藻
[21] Hao B B, Wu H P, Zhen W, et al. Warming effects on 分布基本特征 [J]. 湖泊科学, 2004, 16(4): 298-304.
periphyton community and abundance in different seasons are Dong X H, Yang X D, Pan H X. Distribution of modern lake
influenced by nutrient state and plant type: a shallow lake meso- sediment diatoms in the middle and lower reaches of Yangtze
cosm study[J]. Frontiers in Plant Science, 2020, 11: 404. River catchment[J]. Journal of Lake Sciences, 2004, 16(4): 298-
[22] Hao B B, Wu H P, Cao Y, et al. Comparison of periphyton 304 (in Chinese).
communities on natural and artificial macrophytes with con- [31] 胡建成, 郭姝含, 唐涛, 等. 基于着生硅藻多参数指标评价赤
trasting morphological structures[J]. Freshwater Biology, 2017, 水河生态状况 [J]. 中国环境监测, 2020, 36(3): 94-104.
62(10): 1783-1793. Hu J C, Guo S H, Tang T, et al. Using benthic diatom-based
[23] Sánchez M L, Pérez G L, Izaguirre I, et al. Influence of under- multi-metric indices to assess ecological conditions of the
water light climate on periphyton and phytoplankton communit- Chishui River[J]. Environmental Monitoring in China, 2020,
ies in shallow lakes from the Pampa plain (Argentina) with con- 36(3): 94-104 (in Chinese).
trasting steady states[J]. Journal of Limnology, 2013, 72(1): 62- [32] 薛浩, 姚志鹏, 孟凡生, 等. 倭肯河着生硅藻群落结构及其与
78. 环境因子的关系 [J]. 环境科学学报, 2019, 39(12): 4096-4105.
[24] 吴艳庆, 赵奎峰, 刘立明, 等. 池塘网箱投放不同附着基对附 Xue H, Yao Z P, Meng F S, et al. Community structures of
着生物演替及刺参保苗效果的影响 [J]. 海洋科学, 2016, periphyton and their relationship with aquatic environmental
40(4): 22-31. factors in the Woken River, China[J]. Acta Scientiae Circum-
Wu Y Q, Zhao K F, Liu L M, et al. Effects of substrate type on stantiae, 2019, 39(12): 4096-4105 (in Chinese).
succession of periphyton and intermediate seedling culture of [33] 薛浩, 王业耀, 孟凡生, 等. 汤旺河着生硅藻群落及其与环境
sea cucumber, Apostichopus japonius Selenka, in net cages set 因子的关系 [J]. 环境科学, 2020, 41(3): 1256-1264.
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