[1] |
张续同, 李卫明, 张坤, 等. 长江宜昌段桥边河大型底栖动物功能摄食类群时空分布特征[J]. 生态学报, 2022, 42: 2559-2570.
|
[2] |
HILL B H, HERLIHY A T, KAUFMANN P R, et al. Assessment of streams of the eastern United States using a periphyton index of biotic integrity[J]. Ecological Indicators, 2003, 2: 325-338. doi: 10.1016/S1470-160X(02)00062-6
|
[3] |
BHADRECHA M H, KHATRI N, TYAGI S. Rapid integrated water quality evaluation of Mahisagar river using benthic macroinvertebrates[J]. Environmental Monitoring and Assessmeent, 2016, 188: 254. doi: 10.1007/s10661-016-5256-9
|
[4] |
贺玉晓, 李珂, 任玉芬, 等. 春季北京市河流大型底栖动物群落结构特征及影响因子分析[J]. 环境科学, 2020, 41(6): 2951-2962.
|
[5] |
RIATO L, LEIBOWITZ S G, WEBER M H. The use of multiscale stressors with biological condition assessments: A framework to advance the assessment and management of streams[J]. Science of the Total Environment, 2020, 737: 139699. doi: 10.1016/j.scitotenv.2020.139699
|
[6] |
渠晓东, 陈军, 陈皓阳, 等. 大型底栖动物快速生物评价指数在城市河流生态评估中的应用[J]. 水生态学杂志, 2021, 42(3): 14-22.
|
[7] |
胡小红, 左德鹏, 刘波, 等. 北京市北运河水系底栖动物群落与水环境驱动因子的关系及水生态健康评价[J]. 环境科学, 2022, 43(1): 247-255.
|
[8] |
GOLOVATYUK L V, ZINCHENKO T D, NAZAROVA L B. Macrozoobenthic communities of the saline Bolshaya Samoroda River (Lower Volga region, Russia): Species composition, density, biomass and production[J]. Aquatic Ecology, 2019, 54: 57-74.
|
[9] |
魏秘, 朱爱民, 王瑞, 等. 赤水河春季浮游植物群落结构变化及其优势种生态位分析[J]. 水生态学杂志, 2022, 43(5): 49-59.
|
[10] |
LIU F, WANG X, WANG M R, et al. Diet partitioning and trophic guild structure of fish assemblages in Chishui River, the last undammed tributary of the upper Yangtze River, China[J]. River Research and Applications, 2019, 35: 1530-1539. doi: 10.1002/rra.3519
|
[11] |
代堂刚, 余仲相, 杨中兰. 云南省境内赤水河流域水资源水生态现状分析
J]. 人民长江, 2021, 52(S1): 47-51.
|
[12] |
中华人民共和国生态环境保护部. 生物多样性观测技术指导-淡水底栖大型无脊椎动物: HJ 710.8-2014, [S]. 北京: 中国环境科学出版社, 2014.
|
[13] |
刘爱玲, 黄绵达, 刘旻璇, 等. 八里湖大型底栖动物群落结构及水质生物学评价[J]. 人民长江, 2022, 53(10): 37-44.
|
[14] |
LI Q, WANG G, WANG H, et al. Macrozoobenthos variations in shallow connected lakes under the influence of intense hydrologic pulse changes[J]. Journal of Hydrology, 2020, 584.
|
[15] |
NOURIANI H, EZZATI R. Application of Simpson quadrature rule and iterative method for solving nonlinear fuzzy delay integral equations.[J]. Fuzzy Sets and Systems, 2020, 400: 147-161. doi: 10.1016/j.fss.2020.01.007
|
[16] |
WEI X, LI J, CHEN Y Y, et al. Determinants of community structure of zooplankton in heavily polluted river ecosystems[J]. Science Report, 2016, 6: 22043. doi: 10.1038/srep22043
|
[17] |
闵文武, 黄福江, 王伟. 赤水河秋季浮游动物群落结构及其与环境因子关系[J]. 安徽农业科学, 2021, 49(11): 75-79.
|
[18] |
胡芳, 刘聚涛, 温春云, 等. 抚河流域底栖动物群落结构及基于完整性指数的健康评价[J]. 水生态学杂志, 2022, 43(1): 30-39.
|
[19] |
PABURU P, MAVUTI K M, HARPER D M, et al. Population structure and secondary productivity of Limnodrilus hoffmeisteri (Claparede) and Branchiura sowerbyi Beddard in the profundal zone of Lake Naivasha, Kenya[J]. Hydrobiologia, 2002, 488: 153-161. doi: 10.1023/A:1023382631822
|
[20] |
沙婧婧, 杜小媛, 刘欣禹, 等. 2016-2018年夏季渤海浮游生物和大型底栖动物多样性与优势种的时空变化研究[J]. 海洋通报, 2022, 41(3): 268-280. doi: 10.11840/j.issn.1001-6392.2022.03.004
|
[21] |
XU K, WANG R Q, GUO W H, et al. Factors affecting community structures of benthic macroinvertebrates and microorganisms in Yellow River Delta wetlands: Seasons, habitats, and interactions of organisms[J]. Ecohydrology & Hydrobiology, 2020, 20: 570-583.
|
[22] |
邹亮华, 邹伟, 张庆吉, 等. 鄱阳湖大型底栖动物时空演变特征及驱动因素[J]. 中国环境科学, 2021, 41: 2881-2892.
|
[23] |
张泽豪, 张景晓, 于淼, 等. 淮河干流信阳段大型底栖动物功能摄食类群时空分布及水质评价[J/OL]. 应用生态学报: 1-10[2023-10-19]. http://kns.cnki.net/kcms/detail/21.1253.q.20230726.1048.002.html.
|
[24] |
郝韵, 尚光霞, 丁森, 等. 湟水河流域秋季大型底栖动物群落结构及关键影响因子识别[J]. 水生态学杂志, 2023, 44(2): 64-72. doi: 10.15928/j.1674-3075.202110210364
|
[25] |
黎明杰, 张又, 张颖, 等. 湖滨带开发利用对大型底栖动物群落结构的影响: 以洪泽湖为例[J]. 湖泊科学, 2022, 34: 2055-2070.
|
[26] |
BARTOLI M, BENELLI S, MAGRI M, et al. Contrasting effects of bioturbation studied in intact and reconstructed estuarine sediments[J]. Water, 2020, 12.
|
[27] |
REN S Z. Community structure of macroinvertebrates and trophic level of several small lakes in Beijing city[J]. Chinese Journal of Applied Ecology, 1991, 2: 221-225.
|
[28] |
李艳, 刘苗, 余业鑫, 等. 氨氮对软体动物生长的影响: 以铜锈环棱螺为例[J]. 水生生物学报, 2023, 47(1): 45-54.
|
[29] |
薛庆举, 蔡永久, 龚志军. 不同温度条件下霍甫水丝蚓(Limnodrilus hoffmeisteri)的氮磷排泄[J]. 应用与环境生物学报, 2016, 22(6): 1089-1095.
|
[30] |
张志远, 张思九, 林育青, 等. 怒江源区不同层级河流底栖动物群落结构特征及影响因子分析[J/OL]. 环境科学学报: 1-12. (3-10-19].https://doi.org/10.13671/j.hjkxxb.2023.0172.
3-10-19].https://doi.org/10.13671/j.hjkxxb.2023.0172.
|
[31] |
BEISEL J N, POLATERA P U, THOMAS S, et al. Stream community structure in relation to spatial variation: the influence of mesohabitat characteristics. [J]. Hydrobiologia. 1998, 389: 73-88.
|
[32] |
王燕妮, 田伊林, 刘雨薇, 等. 新疆巩乃斯河枯、丰水期大型底栖动物群落结构与环境因子的关系[J]. 生态科学, 2022, 41(5): 208-218.
|