[1] 胡晓钟,徐奎栋,宋微波. 扇贝外套腔内的共栖纤毛虫蠕形康纤虫的形态学研究[J]. 青岛海洋大学学报,1996,26(2):65-68. [2] IGLESIAS R,PARAMÁ A,ALVAREZ M F,et al.Philasterides dicentrarchi(Ciliophora, Scuticociliatida)as the causative agent of scuticociliatosis in farmed turbot Scophthalmus maximus in Galicia(NW Spain)[J]. Diseases of Aquatic Organisms,2001,46(1):47-55. [3] SONG J Y,KITAMURA S I,OH M J,et al.Pathogenicity of Miamiensis avidus(syn. Philasterides dicentrarchi),Pseudocohnilembus persalinus, Pseudocohnilembus hargisi and Uronema marinum(Ciliophora, Scuticociliatida)[J]. Diseases of Aquatic Organisms,2009,83(2):133-143. [4] 潘蒙蒙. 16种淡水寡膜纲纤毛虫的形态学和系统学研究[D]. 哈尔滨:哈尔滨师范大学,2020. [5] 高晓田,王玉梅,张立坤,等. 1种牙鲆致病性纤毛虫的鉴定[J]. 水生态学杂志,2008,28(4):128-129. [6] HARIKRISHNAN R,BALASUNDARAM C,HEO M S.Scuticociliatosis and its recent prophylactic measures in aquaculture with special reference to South Korea: Taxonomy,diversity and diagnosis of scuticociliatosis:Part I Control strategies of scuticociliatosis: Part II[J]. Fish and Shellfish Immunology,2010,29(1):15-31. [7] 陈相瑞,岑哲科. 我国海水养殖病害纤毛虫的研究概述[J]. 生物学教学,2016,41(8):5-6. [8] 宋微波,王梅. 海水养殖水体中的病害纤毛虫[J]. 海洋科学,1993,17(4):41-47. [9] 王重女. 盾纤类纤毛虫海洋尾丝虫在毒死蜱胁迫下的响应机制[D]. 哈尔滨:哈尔滨师范大学,2020. [10] 刘莎,黄小丽,李良玉,等. 氨氮、亚硝酸盐胁迫对小龙虾的影响[J]. 水产养殖,2021,42(1):56-57. [11] BUOSI P R B,PAULETO G M,LANSAC F A,et al. Ciliate community associated with aquatic macrophyte roots: effects of nutrient enrichment on the community composition and species richness[J]. European Journal of Protistology,2011,47(2):86-102. [12] DING T T,DU S L,HUANG Z Y,et al.Water quality criteria and ecological risk assessment for ammonia in the Shaying River Basin,China[J]. Ecotoxicology and Environmental Safety,2021,215:112141. [13] LUAN X,LIU X,FANG C,et al.Ecotoxicological effects of disinfected wastewater effluents: a short review of in vivo toxicity bioassays on aquatic organisms[J]. Environmental Science: Water Research and Technology,2020,6(9):2275-2286. [14] 王彩蕴,李丹,宋松伟,等. 水产养殖污染现状及治理措施[J]. 黑龙江水产,2020,39(1):10-13. [15] 蔡继晗,沈奇宇,郑向勇,等. 氨氮污染对水产养殖的危害及处理技术研究进展[J]. 浙江海洋学院学报(自然科学版),2010,29(2):167-172,195. [16] 刘炎,石小荣,崔益斌,等. 高浓度氨氮胁迫对纤细裸藻的毒性效应[J]. 环境科学,2013,34(11):4386-4391. [17] 王梦杰,马本贺,王玮欣,等. 慢性氨氮胁迫对台湾泥鳅幼鱼生长、免疫及组织结构的影响[J]. 水生生物学报,2021,45(2):267-274. [18] 肖炜,李大宇,徐杨,等. 慢性氨氮胁迫对吉富罗非鱼幼鱼生长、免疫及代谢的影响[J]. 南方水产科学,2015,11(4):81-87. [19] 康彩霞,戴星照,刘艳. 高浓度氨氮或磷胁迫对亚洲苦草生理特性的影响[J]. 安全与环境工程,2018,25(3):72-77. [20] 周永欣,章宗泽. 水生生物毒性试验方法[M]. 北京:中国农业出版社,1989. [21] TAYLOR W D.Growth responses of ciliate protozoa to the abundance of their bacterial prey[J]. Microbial Ecology,1977,4(3):207-214. [22] 潘莹,姜勇,张伟,等. 不同温度对3种海洋纤毛虫种群增长的影响[J]. 应用与环境生物学报,2010,16(6):807-811. [23] 周平. 氨氮对水产养殖的危害及防治措施[J]. 中国水产,2013(8):63-64. [24] KLIMEK B,FYDA J,STÓC A P,et al. Toxicity of ammonia nitrogen to ciliated protozoa Stentor coeruleus and Coleps hirtus isolated from activated sludge of wastewater treatment plants[J]. Bulletin of Environmental Contamination and Toxicology,2012,89(5):970-977. [25] 赵志刚,张志生,程杰,等. 大型溞母溞暴露于氨氮所产子代对氨氮毒性的耐受性[J]. 环境科学研究,2011,24(2):205-209. [26] 胡萍华,金一春,曲学伟,等. 氨氮对白斑狗鱼成鱼的急性毒性研究[J]. 湖南农业科学,2010(3):109-111. [27] 王甜,杜劲松,高攀,等. 氨氮对白斑狗鱼幼鱼的急性毒性研究[J]. 水产学杂志,2010,23(3):37-39. [28] RODRIGUES R V,SCHWARZ M H,DELBOS B C,et al.Acute exposure of juvenile cobia Rachycentron canadum to nitrate induces gill, esophageal and brain damage[J]. Aquaculture,2011,322:223-226. [29] HAMLIN H J.Nitrate toxicity in Siberian sturgeon (Acipenser baeri)[J]. Aquaculture,2005,25(3):1255-1267. [30] 齐红莉,汤荣成,徐海龙,等. 三氯异氰尿酸对海洋拟阿脑虫种群生长的影响[J]. 水生态学杂志,2018,39(3):94-98. [31] 王红宇,吕湘琳,石雪,等. 4种药物对贪食迈阿密虫种群生长的影响[J]. 天津农学院学报,2021,28(3):46-49. [32] 季道德,马洪钢,张绍丽,等. 哈氏伪康纤虫的培养与摄食条件研究[J]. 动物学报,2001,47(S1):1-5. [33] 彭军辉,陈丽英,程长洪,等. 氨氮对拟穴青蟹的急性毒性及对其血清免疫相关酶活力的影响[J]. 动物学报,2018,39(5):114-121. [34] 陈思涵,彭瑞冰,黄晨,等. 急性氨氮胁迫对虎斑乌贼肝脏、鳃和脑组织结构的影响[J]. 水产学报,2018,42(9):1348-1357. [35] 程媛媛,顾若波,王小林,等. 氨氮对萼花臂尾轮虫的急性毒性及其抗氧化生理响应[J]. 安徽农业科学,2015,43(36):81-84. |