. 以渔改碱 开发利用我国盐碱地之良方[N]. 中国渔业报, 2009-06-29(04).
, 张兆琪, 张美昭. 澎泽鲫幼鱼对盐度和碱度耐受性的研究[J]. 集美大学学报: 自然科学版, 2004, 9(2): 127−130.
, 耿龙武, 李池陶, 等. 大鳞鲃的人工繁殖、胚胎发育和耐盐碱测定[J]. 水产学报, 2011,35(2): 255−260.
, 徐伟, 李池陶, 等. 盐碱对大鳞鲃血清渗透压、离子含量及鳃丝Na~+/K~+-ATP酶活力的影响[J]. 中国水产科学, 2011(2): 458−465.
, 徐伟, 蔺玉华, 等. 大鳞鲃人工繁育技术初报[J]. 吉林农业大学学报, 2010(2): 218−220.
Bachman P M, Rand G M. Effects of salinity on native estuarine fish species in South Florida[J]. Ecotoxicology, 2008, 17(7): 591-597.
Barron S, Weber C, Marino R, et al. Effects of varying salinity on phytoplankton growth in a low-salinity coastal pond under two nutrient conditions[J]. Biolog Bull, 2002, 203(2): 260-261.
Simpson E P, Hurlbert S H. Salinity effects on the growth, mortality and shell strength of Balanus amphitrite from the Salton Sea, California[J]. Hydrobiologia, 1998, 381(1-3): 179-190.
, 张兆琪. 盐度和碱度对澎泽鲫幼鱼耗氧率和排氨率的影响[J]. 水产养殖, 2003(6): 38−41.
. 我国某些鱼类对达里湖碳酸盐型半咸水的适应能力[J]. 水生生物学集刊, 1981, 7(3): 359−369.
Lee C L. The effect of salinity and temperature on the larval development of the freshwater prawn, Macrobrachium australiense Holthuis, 1950 from south eastern Queensland, Australia[J]. Aquaculture, 1981, 26(1-2): 167−
. 动物毒理学[M]. 北京: 中国农业出版社, 2004: 83−
, 杨爽, 杨广. 盐度对黄颡鱼幼鱼生长与饲料利用率的影响[J]. 安徽农业科学, 2010(10): 5132−
, 张雅芝, 林越赳, 等. 盐度对漠斑牙鲆幼鱼生长与存活的影响[J]. 水产学杂志, 2010(04): 1−
Imsland A K, Foss A, Gunnarsson S, et al. The interaction of temperature and salinity on growth and food conversion in juvenile turbot (Scophthalmus maximus)[J]. Aquaculture, 2001, 198(3–4): 353−
Resley M J, Webb Jr. K A, Holt G J. Growth and survival of juvenile cobia, Rachycentron canadum, at different salinities in a recirculating aquaculture system[J]. Aquaculture, 2006, 253(1–4): 398−
, 蔺玉华, 姜秋俚, 等. 盐度对咸海卡拉白鱼生长及组织学特征的影响[J]. 中国水产科学, 2008, 16(5): 808−
, 黄金田, 王爱民. 碱度对异育银鲫摄食·生长和存活的影响[J]. 安徽农业科学, 2007, 35(22):-
, 董双林, 沈成钢. 碳酸盐碱度对鱼类毒性作用的研究[J]. 水产学报, 1985(2): 171−
, 秦克静. 盐度对鲤能量收支的影响[J]. 水产学报, 1995, (1): 35−
Luz R K, Martínez-álvarez R M, De Pedro N, et al. Growth, food intake regulation and metabolic adaptations in goldfish (Carassius auratus) exposed to different salinities[J]. Aquaculture, 2008, 276(1–4): 171−
Imsland A K, Gústavsson A, Gunnarsson S, et al. Effects of reduced salinities on growth, feed conversion efficiency and blood physiology of juvenile Atlantic halibut (Hippoglossus hippoglossus L.)[J]. Aquaculture, 2008, 274(2–4): 254−
, 区又君, 李加儿, 等. 卵形鲳鲹消化酶活性的研究Ⅱ盐度和昼夜变化对幼鱼消化酶活性的影响[J]. 海洋渔业, 2010, 32(1): 54-58.
, 李加儿, 区又君. 盐度对黄鳍鲷幼鱼消化酶活性的影响及消化酶活性的昼夜变化[J]. 海洋水产研究, 2006(1): 40−
, 庄平, 高露姣. 生态因子对鱼类消化酶活力影响的研究进展[J]. 海洋渔业, 2006(2): 158−
Evans D H, Piermarini P M, Choe K P. The multifunctional fish gill: dominant site of gas exchange, osmoregulation, acid-base regulation, and excretion of nitrogenous waste[J]. Physiol Rev, 2005, 85(1): 97−
Uchida K, Kaneko T, Yamauchi K, et a1. M orphometrical analysis of chloride cell activity in the gill filaments and lamellae and changes in Na, K-ATPase activity during seawater adaptation in chum salmon fry[J]. J Exp Zool, 1996, 276: l93−200.
Hirai N, Tagawa M, Kaneko T, et a1. Distributional changes in branchial chloride cells during freshwater adaptation in Japanese sea bass Lateolabrax japonicus[J]. Zool Sci, 1999, l6: 43−49.
, 陈立侨, 庄平, 等. 不同盐度驯化下施氏鲟幼鱼鳃泌氯细胞结构的变化[J]. 水产学报, 2006, 30(3): 316−
王信海, 蔺玉华, 姜秋俚, 等. 盐度对咸海卡拉白鱼生长及组织学特征的影响[J]. 中国水产科学, 2008, 16(5): 808−
姜明, 汝少国, 刘晓云, 等. 不同盐度下蓝非鲫鳃泌氯细胞的结构变化[J]. 青岛海洋大学学报: 自然科学版, 1998 (4): 603−608.