[1] 李志华, 王军霞, 谢松. 环境因子在虾类养殖中的作用分析 [J]. 水利渔业 2004. [2] 张志峰, 王思锋, 霍继革, 邵明瑜, 康庆浩, ZHANG Zhi-Feng, WANG Si-Feng, HUO Ji-Ge, SHAO Ming-Yu, KANG Kyoung-Ho. 单环刺螠对硫化物暴露的呼吸代谢适应 [J]. 中国海洋大学学报(自然科学版) 2006.doi:10.3969/j.issn.1672-5174.2006.04.026 [3] 王宏伟, 曹向可, 钱庆增, 王亚斌, WANG Hong-wei, CAO Xiang-ke, QIAN Qing-zeng, WANG Ya-bin. 饲料中锰对日本沼虾抗氧化酶活性的影响 [J]. 河北大学学报(自然科学版) 2008.doi:10.3969/j.issn.1000-1565.2008.03.019 [4] Abe H, Hirai S, Okada S. Metabolic responses and arginine kinase expression under hypoxic stress of the kuruma prawn Marsupenaeus japonicus [J]. Comparative biochemistry and physiology, Part A. Molecular and integrative physiology 2007, 1(1). [5] Mugnier C, Zipper E, Goarant C, Lemonnier H. Combined effect of exposure to ammonia and hypoxia on the blue shrimp Litopenaeus stylirostris survival and physiological response in relation to molt stage [J]. Aquaculture 2008, 2/4(2/4). [6] CHARMANTIER G, SOYEZ C, AQUACOP. Effect of molt stage and hypoxia on osmoregulatory capac-ity in the peneid shrimp Penaeus vannamei [J]. Journal of Experimental Marine Biology and Ecology 1994, 178. [7] Cheng W, Liu CH, Hsu JP, Chen JC. Effect of hypoxia on the immune response of giant freshwater prawn Macrobrachium rosenbergii and its susceptibility to pathogen Enterococcus [J]. Fish & Shellfish Immunology 2002, 5(5). [8] LE MOULLAC G, SOYEZ C, SAULNIER D. Effect of hypoxic stress on the immune response and the resistance to vibriosis of the shrimp Penaeus stylirostris [J]. Fish and Shellfish Immunology 1998, 8. [9] Li YuQuan, Li Jian, Wang QingYin. The effects of dissolved oxygen concentration and stocking density on growth and non-specific immunity factors in Chinese shrimp, Fenneropenaeus chinensis. [J]. Aquaculture 2006, 1/4(1/4). [10] DE OLIVEIRA U O, DA ROSA ARAUJO A S, BELL-KLEIN A. Effects of environmental anoxia and different periods of reoxygenation on oxidative balance in gills of the estuarine crab Chasmagnathus granulata [J]. Comparative Biochemistry and Physiology 2004, 140B(01). [11] Zenteno-Savin T, Saldierna R, Ahuejote-Sandoval M. Superoxide radical production in response to environmental hypoxia in cultured shrimp [J]. Comparative biochemistry and physiology. Toxicology & pharmacology: CBP 2006, 3/4(3/4). [12] AFFONOSO E G, POLCZ V L P, CORREA C F. Physiological responses to sulfide toxicity by the air-breathing catifish, Hoplosternum littorale(Siluriformes, Callichthyidae) [J]. Comparative Biochemistry and Physiology 2004, 139C(04). [13] XIAO Shuhua, FENG Jianjun, GUO Huifang. Effects of mebendazol, albendazol, and praziquantel on succinate dehydrogenase, fumarate reductase, and malate dehydrogenase in Echinococcus granulosus cysts harbored in mice [J]. Acta Pharmacologica Sinica 1993, 14(02). [14] BRADFORD M M. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye-binding [J]. Analytical Biochemistry 1976, 72. [15] SIMON M M, ROBIN E D. Relationship of cytochrome oxidase activity to vertebrate total and organ oxygen consumption [J]. International Journal of Biochemistry 1971, 2. [16] Cohen A, Nugegoda D, Gagnon MM. Metabolic responses of fish following exposure to two different oil spill remediation techniques. [J]. Ecotoxicology and Environmental Safety 2001, 3(3). [17] Aloysius G. M. Tielens, Jaap J. Van Hellemond. The electron transport chain in anaerobically functioning eukaryotes [J]. Biochimica et biophysica acta. Bioenergetics 1998, 1/2(1/2). [18] SCHTTLER U, BENNET E M, ANNELID S. In life without oxygen [M]. London:Chapman and Hall 1991. [19] GRIESHABER M K, HARDEWING I, KREUTZER U. Hypoxia and sulfide tolerance in some marine invertebrates [J]. Verh Dtsch Zool Ge 1992, 85. [20] PRTNER H O, HEISLER N, GRIESHABER M K. Oxygen consumption and mode of energy production in the intertidal worm Sipunculus nudus L.:definition and characterization of the critical Po2 for an oxyconformer [J]. Respiratory Physiology & Neurobiology 1985, 59. [21] VIRU M. Difference in effects of various training regimens on metabolism of skeletal muscles [J]. Journal of Sports Medicine and Physical Fitness 1994, 34(03). [22] MAURO N A, MALECHA S R. The effects of hypoxia on blood pH and lactate level in Macrobrachium rosenbergii [J]. Comparative Biochemistry and Physiology 1984, 77A(01). [23] RACOTTA I S, PALACIOS E, MENDEZ L. Metabolic responses to short and long-term exposure to hypoxia in white shrimp(Penaeus vannamei) [J]. Marine and Freshwater Behaviour and Physiology 2002, 35. [24] Arun S., Subramanian P.. Antioxidant enzymes in freshwater prawn Macrobrachium malcolmsonii during embryonic and larval development [J]. Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology 1998, 3(3). |