PFOS暴露对锦鲫自发运动与潜在游泳能力的影响

夏继刚, 曹振东, 付世建, 彭姜岚, 梁高杰, 何告龙, 杜雨欣

夏继刚, 曹振东, 付世建, 彭姜岚, 梁高杰, 何告龙, 杜雨欣. PFOS暴露对锦鲫自发运动与潜在游泳能力的影响[J]. 水生生物学报, 2013, 37(6): 1158-1163. DOI: 10.7541/2013.158
引用本文: 夏继刚, 曹振东, 付世建, 彭姜岚, 梁高杰, 何告龙, 杜雨欣. PFOS暴露对锦鲫自发运动与潜在游泳能力的影响[J]. 水生生物学报, 2013, 37(6): 1158-1163. DOI: 10.7541/2013.158
XIA Ji-Gang, CAO Zhen-Dong, FU Shi-Jian, PENG Jiang-Lan, LIANG Gao-Jie, HE GAO-Long, DU Yu-Xin. SPONTANEOUS ACTIVITY AND POTENTIAL SWIMMING ABILITY IN JUVENILE GOLDFISH,CARASSIUS AURATUS, IN RESPONSE TO PFOS TOXICITY[J]. ACTA HYDROBIOLOGICA SINICA, 2013, 37(6): 1158-1163. DOI: 10.7541/2013.158
Citation: XIA Ji-Gang, CAO Zhen-Dong, FU Shi-Jian, PENG Jiang-Lan, LIANG Gao-Jie, HE GAO-Long, DU Yu-Xin. SPONTANEOUS ACTIVITY AND POTENTIAL SWIMMING ABILITY IN JUVENILE GOLDFISH,CARASSIUS AURATUS, IN RESPONSE TO PFOS TOXICITY[J]. ACTA HYDROBIOLOGICA SINICA, 2013, 37(6): 1158-1163. DOI: 10.7541/2013.158

PFOS暴露对锦鲫自发运动与潜在游泳能力的影响

基金项目: 

重庆市自然科学基金(No.cstc2011jjA20006)

重庆市教委科研项目(No.KJ110606)资助

SPONTANEOUS ACTIVITY AND POTENTIAL SWIMMING ABILITY IN JUVENILE GOLDFISH,CARASSIUS AURATUS, IN RESPONSE TO PFOS TOXICITY

  • [1]

    Suja F,Pramanik B K,Zain S M.Contamination,bioaccumulation and toxic effects of perfluorinated chemicals (PFCs) in the water environment: a review paper[J].Water Science and Technology,2009,60(6): 1533-1544

    [2]

    Gebbink W A,Letcher R J,Burgess N M,et al. Perfluoroalkyl carboxylates and sulfonates and precursors in relation to dietary source tracers in the eggs of four species of gulls (Larids) from breeding sites spanning Atlantic to Pacific Canada[J].Environment International,2011,37(7): 1175-1182

    [3]

    Moody C A,Martin J W,Kwan W C,et al. Monitoring perfluorinated surfactants in biota and surface water samples following an accidental release of fire-fighting foam into Etobicoke Creek[J].Environmental Science Technology,2002,36(4): 545-551

    [4]

    Lin A Y C,Panchangam S C,Ciou P S.High levels of perfluorochemicals in Taiwan's wastewater treatment plants and downstream rivers pose great risk to local aquatic ecosystems[J].Chemosphere,2010,80(10): 1167-1174

    [5]

    Ahrens L,Xie Z,Ebinghaus R.Distribution of perfluoroalkyl compounds in seawater from Northern Europe,Atlantic Ocean,and Southern Ocean[J].Chemosphere,2010,78(8): 1011-1016

    [6]

    Rumsby P C,McLaughlin C L,Hall T.Perfluorooctane sulphonate and perfluorooctanoic acid in drinking and environmental waters[J].Philosophical Transactions of the Royal Society A: Mathematical,Physical and Engineering Sciences,2009,367(1904): 4119-4136

    [7]

    van Asselt E D,Rietra R,Rmkens P,et al. Perfluorooctane sulphonate (PFOS) throughout the food production chain[J].Food Chemistry,2011,128(1): 1-6

    [8]

    Jacquet N,Maire M A,Landkocz Y,et al. Carcinogenic potency of perfluorooctane sulfonate (PFOS) on Syrian hamster embryo (SHE) cells[J].Archives of Toxicology,2012,86(2): 305-314

    [9]

    Han J,Fang Z.Estrogenic effects,reproductive impairment and developmental toxicity in ovoviparous swordtail fish (Xiphophorus helleri) exposed to perfluorooctane sulfonate (PFOS)[J]. Aquatic toxicology,2010,99(2): 281-290

    [10]

    Shi X,Du Y,Lam P K,et al. Developmental toxicity and alteration of gene expression in zebrafish embryos exposed to PFOS[J].Toxicology and Applied Pharmacology,2008,230(1): 23-32

    [11]

    Butenhoff J L,Ehresman D J,Chang S C,et al. Gestational and lactational exposure to potassium perfluorooctanesulfonate (K+PFOS) in rats: Developmental neurotoxicity[J].Reproductive Toxicology,2009,27(3-4): 319-330

    [12]

    Qazi M R,Nelson B D,Depierre J W,et al. 28-Day dietary exposure of mice to a low total dose (7 mg/kg) of perfluorooctanesulfonate (PFOS) alters neither the cellular compositions of the thymus and spleen nor humoral immune responses: Does the route of administration play a pivotal role in PFOS-induced immunotoxicity[J]?Toxicology,2010,267(1-3): 132-139

    [13]

    Little E E,Archeski R D,Flerov B A,et al. Behavioral indicators of sublethal toxicity in rainbow trout[J].Archives of Environmental Contamination and Toxicology,1990,19(3): 380-385

    [14]

    Blake R W.Fish functional design and swimming performance[J].Journal of Fish Biology,2004, 65(5): 1193-1222

    [15]

    Fu S J,Peng Z G,Cao Z D,et al.Habitat-specific locomotor variation among Chinese hook snout carp (Opsariichthys bidens) along a river[J].PLOS One,2012,7(7): e40791

    [16]

    Domenici P,Kapoor B G.Fish locomotion: An Eco-ethological Perspective[M].Science Publishers,British Isles.2010

    [17]

    Oakes K D,Sibley P K,Martin J W,et al. Short-term exposures of fish to perfluorooctane sulfonate: Acute effects on fatty acyl-CoA oxidase activity,oxidative stress,and circulating sex steroids[J].Environmental Toxicology and Chemistry,2005,24(5): 1172-1181

    [18]

    Jeon J,Lim H K,Kannan K,et al. Effect of perfluorooctanesulfonate on osmoregulation in marine fish,Sebastes schlegeli,under different salinities[J].Chemosphere,2010,81(2): 228-234

    [19]

    Dorts J,Kestemont P,Marchand P A,et al. Ecotoxicoproteomics in gills of the sentinel fish species,Cottus gobio,exposed to perfluorooctane sulfonate (PFOS)[J].Aquatic Toxicology,2011,103(1-2): 1-8

    [20]

    Saglio P,Trijasse S.Behavioral responses to atrazine and diuron in goldfish[J].Archives of Environmental Contamination and Toxicology,1998,35(3): 484-491

    [21]

    Bjerselius R,Lundstedt-Enkel K,Olsn H,et al. Male goldfish reproductive behavior and physiology are severely affected by exogenous exposure to 17b-estradiol[J].Aquatic Toxicology,2001,53(2): 139-152

    [22]

    Ford T,Beitinger T L.Temperature tolerance in the goldfish,Carassius auratus[J].Journal of Thermal Biology,2005,30(2): 147-152

    [23]

    Tzaneva V,Gilmour K M,Perry S F.Respiratory responses to hypoxia or hypercapnia in goldfish (Carassius auratus) experiencing gill remodelling[J].Respiratory Physiology Neurobiology,2011,175(1): 112-120

    [24]

    Li X M,Cao Z D,Fu S J.The effect of exercise training on the metabolic interaction between feeding and locomotion in the juvenile southern catfish (Silurus meridionalis Chen)[J].Journal of Experimental Zoology,2010,313A (9): 557-563

    [25]

    Pang X,Cao Z D,Peng J L,et al. The effects of feeding on the swimming performance and metabolic response of juvenile southern catfish,Silurus meridionalis,acclimated at different temperatures[J].Comparative Biochemistry and Physiology,2010,155A (2): 253-258

    [26]

    Lee C G,Farrell A P,Lotto A,et al. The effect of temperature on swimming performance and oxygen consumption in adult sockeye (Oncorhynchus nerka) and coho (O.kisutch) salmon stocks[J].The Journal of Experimental Biology,2003,206(18): 3239-3251

    [27]

    Armitage J M,Schenker U,Scheringer M,et al. Modeling the global fate and transport of perfluorooctane sulfonate (PFOS) and precursor compounds in relation to temporal trends in wildlife exposure[J].Environmental Science Technology,2009,43(24): 9274-9280

    [28]

    Zhang S,Lerner D N.Review of physical and chemical properties of perfluorooctanyl sulphonate (PFOS) with respect to its potential contamination on the environment[J].Advanced Materials Research,2012,518-523: 2183-2191

    [29]

    Scott G R,Sloman K A.The effects of environmental pollutants on complex fish behaviour: integrating behavioural and physiological indicators of toxicity[J].Aquatic Toxicology,2004,68(4): 369-392

    [30]

    Xia J G,Niu C J,Pei X J.Effects of chronic exposure to nonylphenol on locomotor activity and social behavior in zebrafish (Danio rerio)[J].Journal of Environmental Sciences,2010,22(9): 1435-1440

    [31]

    Van Gossum H,Bots J,Snijkers T,et al.Behaviour of damselfly larvae (Enallagma cyathigerum) (Insecta,Odonata) after long-term exposure to PFOS[J].Environmental Pollution,2009, 157(4): 1332-1336

    [32]

    Lee J W,Park J J,Jin Y G,et al.Effect of chronic exposure of PFOS (Perfluorooctane Sulfonate) on survival,activity,growth,and organ structure of the melania snail,Semisulcospira gottschei(Gastropoda: Pleuroceridae)[J].Journal of Environmental Toxicology,2007, 22(2): 119-128

    [33]

    Jensen C S,Garsdal L,Baatrup E.Acetylcholinesterase inhibition and altered locomotor behavior in the carabid beetlePterostichus cupreus.A linkage between biomarkers at two levels of biological complexity[J].Environmental Toxicology and Chemistry,1997,16(8): 1727-1732

    [34]

    Sorensen F F,Weeks J M,Baatrup E.Altered locomotory behaviour in woodlice (Oniscus asellus L.) collected at a polluted site[J].Environmental Toxicology and Chemistry,1997,16(4): 685-690

    [35]

    Correia A D,Goncalves R,Scholze M,et al.Biochemical and behavioral responses in gilthead seabream (Sparus aurata) to phenanthrene[J].Journal of Experimental Marine Biology and Ecology,2007,347(1-2): 109-122

    [36]

    Wakeling J M,Johnston I A.Muscle power output limits fast-start performance in fish[J].Journal of Experimental Biology,1998,201(Pt 10): 1505-1526

    [37]

    Lyon J P,Ryan T J,Scroggie M P.Effects of temperature on the fast-start swimming performance of an Australian freshwater fish[J].Ecology of Freshwater Fish,2008,17(1): 184-188

    [38]

    Pang X,Yuan X Z,Cao Z D,et al.The effects of dissolved oxygen levels on resting oxygen consumption and swimming performance in juvenile darkbarbel catfishPeltebagrus vachelli[J].Acta Hydrobiologica Sinica,2012,36(2): 255-261[庞旭,袁兴中,曹振东,等.溶氧水平对瓦氏黄颡鱼幼鱼静止耗氧率和临界游泳运动能力的影响.水生生物学报,2012, 36(2): 255-261]

    [39]

    Wibe A E,Nordtug T,Jenssen B M.Effects of bis (tributyltin)oxide on antipredator behavior in threespine sticklebackGasterosteus aculeatus L.[J].Chemosphere,2001,44(3): 475-481

    [40]

    Preston B L,Cecchine G,Snell T W.Effects of pentachlorophenol on predator avoidance behavior of the rotiferBrachionus calyciflorus[J].Aquatic Toxicology,1998,44(3): 201-212

    [41]

    Janssens L,Stoks R.How does a pesticide pulse increase vulnerability to predation? Combined effects on behavioral antipredator traits and escape swimming[J].Aquatic Toxicology,2012,110-111: 91-98

    [42]

    Trekels H,Van de Meutter F,Stoks R.Species-specific patterns of swimming escape performance and cholinesterase activity in a guild of aquatic insects exposed to endosulfan[J].Environmental Pollution,2012,163(4): 127-133

    [43]

    Schulte P M,Moyes C D,Hochachka P W.Integrating metabolic pathways in post-exercise recovery of white muscle[J].Journal of Experimental Biology,1992,166: 181-195

    [44]

    Fang X,Gao G,Xue H,et al.Exposure of perfluorononanoic acid suppresses the hepatic insulin signal pathway and increases serum glucose in rats[J].Toxicology,2012,294(2-3): 109-115

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出版历程
  • 收稿日期:  2012-11-25
  • 修回日期:  2013-06-16
  • 发布日期:  2013-11-24

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