Effects of continuous and diel intermittent feeding regimes on food consumption, growth and gonad production of the sea urchin Strongylocentrotus intermedius of different size classes
详细信息    查看全文
  • 作者:Chong Zhao (1) (2)
    Weijie Zhang (2)
    Yaqing Chang (2)
    Haisen Zhou (2)
    Jian Song (2)
    Shibin Luo (2)
  • 关键词:Body size ; Diurnal ; Feeding regime ; Strongylocentrotus intermedius ; Nocturnal
  • 刊名:Aquaculture International
  • 出版年:2013
  • 出版时间:June 2013
  • 年:2013
  • 卷:21
  • 期:3
  • 页码:699-708
  • 全文大小:474KB
  • 参考文献:1. Barnes D, Crook A (2001) Quantifying behavioural determinants of the coastal European sea-urchin Paracentrotus lividus. Mar Bio 138:1205鈥?212 CrossRef
    2. Buurma B, Diana J (1994) Effects of feeding frequency and handling on growth and mortality of cultured walking catfish Clarias fuscus. J World Aquacul Soc 25:175鈥?82 CrossRef
    3. Carpenter RC (1984) Predator and population density control of homing behavior in the Caribbean echinoid Diadema antillarum Phillippi. Mar Bio 82:101鈥?08 CrossRef
    4. Chang Y, Ding J, Song J, Yang W (2004) Biology and aquaculture of sea cucumbers and sea urchins. Ocean Press, Beijing
    5. Cho SH, Lim YS, Lee JH, Lee JK, Park S, Lee SM (2003) Effects of feeding rate and feeding frequency on survival, growth, and body composition of Ayu post-larvae Plecoglossus altivelis. J World Aquacul Soc 34:85鈥?1 CrossRef
    6. Dance C (1987) Patterns of activity of the sea urchin Paracentrotus lividus in the Bay of Port-Cros (Var, France, Mediterranean). Mar Ecol 8:131鈥?42 CrossRef
    7. Ding J, Chang Y, Wang C, Cao X (2007) Evaluation of the growth and heterosis of hybrids among three commercially important sea urchins in China: Strongylocentrotus nudus, S. intermedius and Anthocidaris crassispina. Aquaculture 272:273鈥?80 CrossRef
    8. Dobson SH, Holmes RM (1984) Compensatory growth in the rainbow trout, Salmo gairdneri Richardson. J Fish Biol 25:649鈥?56 CrossRef
    9. Ebling FJ, Hawkins AD, Kitching JA, Muntz L, Pratt VM (1966) The ecology of Lough Ine XVI. Predation and diurnal migration in the Paracentrotus community. J Anim Ecol 35:559鈥?66 CrossRef
    10. Fuji A (1967) Ecological studies on the growth and food consumption of Japanese common littoral sea urchin, Strongylocentrotus intermedius (A. Agassiz). Memoirs of the Faculty of Fisheries Hokkaido University 15:83鈥?60
    11. James DW (2000) Diet, movement, and covering behavior of the sea urchin Toxopneustes roseus in rhodolith beds in the Gulf of California. Mexico Mar Biol 137:913鈥?23 CrossRef
    12. Jobling M, Koskela J (1996) Interindividual variations in feeding and growth in rainbow trout during restricted feeding and in a subsequent period of compensatory growth. J Fish Biol 49:658鈥?67 CrossRef
    13. K盲nk盲nen M, Pirhonen J (2009) The effect of intermittent feeding on feed intake and compensatory growth of whitefish Coregonus lavaretus L. Aquaculture 288:92鈥?7 CrossRef
    14. LaMontagne JM, Jackson LJ, Barclay RMR (2003) Compensatory growth responses of Potamogeton pectinatus to foraging by migrating trumpeter swans in spring stop over areas. Aquat Bot 76:235鈥?44 CrossRef
    15. Lawrence JM, Hughes-Games L (1972) The diurnal rhythm of feeding and passage of food through the gut of Diadema setosum (Echinodermata: Echinoidea). Isr J Zool 21:13鈥?6
    16. Lawrence JM, Plank LR, Lawrence AL (2003) The effect of feeding frequency on consumption of food, absorption efficiency, and gonad production in the sea urchin Lytechinus variegatus. Comp Biochem Phys A 134:69鈥?5 CrossRef
    17. Lin Q, Zhang D, Lin J (2009) Effects of light intensity, stocking density, feeding frequency and salinity on the growth of sub-adult seahorses Hippocampus erectus Perry, 1810. Aquaculture 292:111鈥?16 CrossRef
    18. McCarron E, Burnell G, Mouzakitis G (2009) Growth assessment on three size classes of the purple sea urchin Paracentrotus lividus using continuous and intermittent feeding regimes. Aquaculture 288:83鈥?1 CrossRef
    19. Minor MA, Scheibling RE (1997) Effects of food ration and feeding regime on growth and reproduction of the sea urchin Strongylocentrotus droebachiensis. Mar Biol 129:159鈥?67 CrossRef
    20. Nelson BV, Vance RR (1979) Diel foraging patterns of the sea urchin Centrostephanus coronatus as a predator avoidance strategy. Mar Biol 51:251鈥?58 CrossRef
    21. Quinton JC, Blake RW (1990) The effect of feed cycling and ration level on the compensatory growth response in rainbow trout, Oncorhynchus mykiss. J Fish Biol 37:33鈥?1 CrossRef
    22. Silva CR, Gomes LC, Brand茫o FR (2007) Effect of feeding rate and frequency on tambaqui (Colossoma macropomum) growth, production and feeding costs during the first growth phase in cages. Aquaculture 264:135鈥?39 CrossRef
    23. Stefansson SO, Imsland AK, Handeland SO (2009) Food-deprivation, compensatory growth and hydro-mineral balance in Atlantic salmon (Salmo salar) post-smolts in sea water. Aquaculture 290:243鈥?49 CrossRef
    24. Thornton IWB (1956) Diurnal migration of the echinoid Diadema setosum. Brit J Anim Behav 4:143鈥?46 CrossRef
    25. Tian X, Qin J (2003) A single phase of food deprivation provoked compensatory growth in barramundi Lates calcarifer. Aquaculture 224:169鈥?79 CrossRef
    26. Tuya F, Martin JA, Luque A (2004) Patterns of nocturnal movement of the long-spined sea urchin Diadema antillarum (Philippi) in Gran Canaria (the Canary Islands, central East Atlantic Ocean). Helgoland Mar Res 58:26鈥?1 CrossRef
    27. Va茂tilingon D, Rasolofonirina R, Jangoux M (2003) Feeding preferences, seasonal gut repletion indices, and diel feeding patterns of the sea urchin Tripneustes gratilla (Echinodermata: Echinoidea) on a coastal habitat off Toliara (Madagascar). Mar Biol 143:451鈥?58 CrossRef
    28. Wang Y, Kong LJ, Li K, Bureau DP (2007) Effects of feeding frequency and ration level on growth, feed utilization and nitrogen waste output of cuneate drum (Nibea miichthioides) reared in net pens. Aquaculture 271:350鈥?56 CrossRef
    29. Weatherley AH, Gill HS (1981) Recovery growth following periods of restricted rations and starvation in rainbow trout Salmo gairdneri Richardson. J Fish Biol 18:195鈥?08 CrossRef
    30. Yamamoto T, Shima T, Furuita H, Sugita T, Suzuki N (2007) Effects of feeding time, water temperature, feeding frequency and dietary composition on apparent nutrient digestibility in rainbow trout Oncorhynchus mykiss and common carp Cyprinus carpio. Fisheries sci 73:161鈥?70 CrossRef
    31. Yoshida M (1966) Photosensitivity. In: Boolootian RA (ed) Physiology of echinoderms. Interscience Publishers, New York, pp 435鈥?64
  • 作者单位:Chong Zhao (1) (2)
    Weijie Zhang (2)
    Yaqing Chang (2)
    Haisen Zhou (2)
    Jian Song (2)
    Shibin Luo (2)

    1. College of Marine Life Science, Ocean University of China, Qingdao, 266003, China
    2. Key Laboratory of Mariculture & Stock Enhancement in North China鈥檚 Sea, Ministry of Agriculture, Dalian Ocean University, Dalian, 116023, China
  • ISSN:1573-143X
文摘
We investigated effects of a continuous and three diel feeding regimes on food consumption, growth and gonad production of cultured Strongylocentrotus intermedius of three size classes. There was no significant difference of food consumption, body weight and gonad production between nocturnal and diurnal feeding regimes of S. intermedius of all size classes, greatly challenging the old paradigm on the diel feeding preference of cultured S. intermedius. The continuous and three diel intermittent feeding regimes did not significantly affect body weight of sea urchins of all size classes. However, sea urchins in the large and small size classes which were fed continuously had significantly higher gonad wet weight and gonad index than those fed intermittently. Gonad of sea urchins in the medium size class did not change with feeding regime. The present study increases our understanding of the feeding behavior of cultured S. intermedius, with a potential of direct application in aquaculture.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700