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International Journal of Aquaculture, 2013, Vol.3, No.26, 152
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157
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recent years. Moreover, Chinese government has
supported the researches on the methods of sea
cucumber culture by offering funds, such as National
Key Project of Scientific and Technical Supporting
Programs funded by Ministry of Science &
Technology of China (Grant No.2006BAD09A01,
2006BAD09A06), and National Science Foundation
of China (Grant No.30400333) and so on.
Acknowledgements
The project was founded by National Key Project of Scientific and
Technical Supporting Programs funded by Ministry of Science &
Technology of China (Grant No.2012BAD18B02), Guangdong Planning
Project of Science and Technology (Grant No. 2011B020307002),
Promoting Marine Fisheries Science and Technology of Guangdong
Province (Grant No. A201101E01) and Maoming Planning Project of
Science and Technology (Grant No. 2011A01001). The author would also
like to acknowledge Aihua Chen for provided sea cucumber farm data and
Liping Zhang for her revision.
References
Chang Y., Yu C., and Song X., 2004, Pond culture of sea cucumbers,
Apostichopus japonicus
, in Dalian. In: CONAND, C., PURCELL, S.,
UTHICKE, S., HAMEL, J.-F. & MERCIER, A. (Eds.) Advances in sea
cucumber aquaculture and management. FAO fisheries technical paper
.
Rome, FAO.
Chen J., 2004, Present status and prospects of sea cucumber industry in
China
,
Rome, FAO Fisheries Technical Paper.
Gasca-Leyva E., Leon C.J., Hernandez J.M., and Vergara J.M., 2002,
Bioeconomic analysis of production location of sea bream (
Sparus
aurata
) cultivation, Aquaculture
,
213: 219-232
http://dx.doi.org/10.1016/S0044-8486(02)00031-5
Hudson I.R., Wigham B.D., Solan M., and Rosenberg R., 2005, Feeding
behaviour of deep-sea dwelling holothurians: Inferences from a
laboratory investigation of shallow fjordic species, Journal of Marine
Systems
,
57: 201-218
http://dx.doi.org/10.1016/j.jmarsys.2005.02.004
Ionno P.N.D., Wines G.L., Jones P.L., and Collins R.O., 2006, A
bioeconomic evaluation of a commercial scale recirculating finfish
growout system—AnAustralian perspective, Aquaculture
,
259: 315-327
http://dx.doi.org/10.1016/j.aquaculture.2006.05.047
Kang K.H., Kwon J.Y., and Kim Y.M., 2003, A beneficial coculture: charm
abalone
Haliotis discus hannai
and sea cucumber
Stichopus japonicus
,
Aquaculture
,
216: 87-93
http://dx.doi.org/10.1016/S0044-8486(02)00203-X
Lee C.-S., Leung P.-S., and Su M.-S., 1997, Bioeconomic evaluation of
different fry production systems for milkfish (
chanos chanos
),
Aquaculture
,
155: 367-376
http://dx.doi.org/10.1016/S0044-8486(97)00104-X
Michio K., Kengo K., Yasunori K., Hitoshi M., Takayuki Y., Hideaki Y., and
Hiroshi S., 2003, Effects of deposit feeder
Stichopus japonicus
on algal
bloom and organic matter contents of bottom sediments of the enclosed
sea, Marine Pollution Bulletin
,
47: 118-125
http://dx.doi.org/10.1016/S0025-326X(02)00411-3
Ponce-Marban D., Hernandez J.M., and Gasca-Leyva E., 2006, Simulating
the economic viability of Nile tilapia and Australian redclaw crayfish
polyculture in Yucatan, Mexico, Aquaculture
,
261: 151-159
http://dx.doi.org/10.1016/j.aquaculture.2006.06.047
Primavera J.H., 2006, Overcoming the impacts of aquaculture on the coastal
zone, Ocean & Coastal Management
,
49: 531-545
http://dx.doi.org/10.1016/j.ocecoaman.2006.06.018
Purcell S.W., Patrois J., and Fraisse N., 2006, Experimental evaluation of
co-culture of juvenile sea cucumbers, Holothuria scabra (Jaeger), with
juvenile blue shrimp, Litopenaeus stylirostris (Stimpson), Aquaculture
Research
,
37
Qin C.-X., Dong S.-L., Niu Y.-F., Tian X.-L., Fang F., Gao Q.-F., and Dong
Y.-W., 2009, Effects of Shelter Type on the Growth and Survival Rate
of Sea Cucumber,Apostichopus japonicus Selenka,in Earthen Pond,
Periodical of Ocean University of China
,
39: 392-396
Slater M.J., and Carton A.G., 2007, Survivorship and growth of the sea
cucumber
Australostichopus
(
Stichopus
)
mollis
(Hutton 1872) in
polyculture trials with green-lipped mussel farms, Aquaculture
,
Uthicke S., and Karezc R., 1999, Sediment patch selectivity in tropical sea
cucumbers (Holothurioidea: Aspidochirotida) analysed with multiple
choice experiments, Journal of Experimental Marine Biology and
Ecology, J. Exp. Mar. Biol. Ecol.
,
236: 69-87
Yingst J.Y., 1976, The utilization of organic matter in shallow marine
sediments by an epibenthic deposit-feeding holothurian, Journal of
Experimental Marine Biology and Ecology
,
23: 55-69
http://dx.doi.org/10.1016/0022-0981(76)90085-X
Yingst J.Y., 1982, Factors influencing rates of sediment ingestion by
Parastichopus parvimensis (Clark), an epibenthic deposit-feeding
holothurian, Estuarine, Coastal and Shelf Science
,
14: 119-134
http://dx.doi.org/10.1016/S0302-3524(82)80040-6
Zhou Y., Yang H., Liu S., Yuan X., Mao Y., Ying Liu, Xu X., and Zhang F.,
2006, Feeding and growth on bivalve biodeposits by the deposit feeder
Stichopus japonicus
Selenka (
Echinodermata: Holothuroidea)
co-cultured in lantern nets, Aquaculture
,
256: 510-520
http://dx.doi.org/10.1016/j.aquaculture.2006.02.005