RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN >> 2022, Vol. 31 >> Issue (9): 1906-1917.doi: 10.11870/cjlyzyyhj202209004

Previous Articles     Next Articles

Current Status of Fish Community and Its Diversity in Lake Taihu, China

LIU Yan-shan1, LI Da-ming1, ZHU Ming-sheng2, LU Jian-ming2, JIA Wen-fang2, ZHANG Feng-xia3, SHEN Dong-dong1, ZHANG Zeng1,WU Tian-zhu2, ZHANG Tong-qing1   

  1. (1.Freshwater Fisheries Research Institute of Jiangsu Province, Key Laboratory of Fisheries Resources in Inland Water, Nanjing 210017, China;2.Taihu Fishery Management Committee Office of Jiangsu Province, Suzhou 215104, China;3.Suzhou Agricultural Comprehensive Administrative Law Enforcement Detachment, Suzhou 215000, China)
  • Online:2022-09-20 Published:2022-09-29

Abstract: A field survey in Lake Taihu was performed from May 2019 to September 2020 before a full fishing ban was implemented. We analyzed the community structure and diversity of fish by using Shannon-Wiener diversity index, Margalef’s species richness index, Pielou’s evenness index, analysis of similarity and abundance-biomass comparison curves. In total, 65 species were collected, belonging to 51 genera, 17 families, and 9 orders. Cyprinidae had the largest number of species, accounting for 55.38% of the total species captured. Tridentiger trigonocephalus and Anguilla marmorata were first recorded in Lake Taihu. Settled fish species were the most frequent of the three ecological groups, and pelagic fish species were the most frequent of the three habitat types, whereas carnivore and omnivore fish species were the most frequent of the five feeding functional groups. The catch per unit effort (CPUE) using gill net and cage net were 4 287.03±515.94 and 626.32±91.24 g·net-1·12h-1, respectively. Coilia nasus, Carassius auratus, and Cultrichthys erythropterus were the dominant species. The mean values of Shannon-Wiener diversity index, Margalef’s species richness index, and Pielou’s evenness index were 2.34, 2.10 and 0.68, indicating that its fish diversity level was moderate, with the fact of miniaturization of fish. ANOSIM (analysis of similarity) revealed that the fish species composition of Lake Taihu varied significantly in spatio-temporal distribution patterns (P<0.05). Abundance-biomass curves (ABC) of fish community indicated that the community was seriously disturbed. The study can provide a scientific basis for protection and management of fishery resources in Lake Taihu.

No related articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] SUN Huihui, ZHANG Xinping, LUO Zidong, SHANG ChengPeng, HE Xinguang, RAO Zhiguo. Analyses on Characteristics of Extreme Precipitation Indices in the #br# Yangtze River Basin in the Past 53 Years#br#[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(08): 1879 .
[2] . EVOLUTION OF ECOSYSTEM RESILIENCE IN MOUNTAINOUS CITIES OF KARST——TAKING GUIYANG URBAN AREA AS AN EXAMPLE[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, , (): 0 .
[3] BI Xue-cheng, GU Ren-xu, SU Qin.  

Regional Industrial Specialization, Co-opetition Relations and Division of Labor in the manufacturing industryEconometric Analysis Based on Panel Data in Jiangsu Province [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(10): 2201 -2213 .

[4] LV Le-ting, WANG Xiao-rui, SUN Cai-zhi, ZHANG Jie. Study on the Spatiotemporal Variations of Blue and Green Water Resources in Xi River Basin Using the SWAT Model[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2019, 28(01): 39 -47 .
[5] WANG Quan, LI Yang-bing, LIU Ya-xiang. Comparative Study of Land Use Change in Karst Hillside-Trough Dam Area[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2019, 28(01): 122 -133 .
[6] YANG Gao-sheng, XIE Qiu-hao. Study on Spatial and Temporal Differentiation of Green Water Resources Efficiency in the Yangtze River Economic Belt[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2019, 28(02): 349 -358 .
[7] LI Yan, MA Bai-sheng, YANG Xuan. Impact of Two Types of ENSO Events on the Extreme Precipitation in Eastern China[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2019, 28(02): 469 -482 .
[8] liuchonggang liuchonggangliuchonggang. CORRELATION EVALUATION OF WATER SENSITIVITY AND CONSTRUCTION LAND EXPANSION IN TAIHU LAKE BASIN[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, , (): 0 .
[9] YAN Dong-sheng, WANG Hui, SUN Wei. Research on Driving Factors Evolution of Regional Development Gap in the Yangtze River Delta[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2019, 28(03): 517 -529 .
[10] YANG Zi-jiang, HAN Wei-chao, YANG En-xiu. A System Dynamic Model and Simulation for Water Resources Carrying Capacity in Kunming[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2019, 28(03): 594 -602 .