Citation: | SU Zhixing, YUE Yanfeng, JIANG Keji, PENG Shiming, SHI Zhaohong. Research status of marine ornamental fish industry at home and abroad[J]. South China Fisheries Science, 2021, 17(1): 101-112. DOI: 10.12131/20200156 |
Marine ornamental fish trade, a key component of the marine aquarium trade industry, is worth more than one billion dollars industry with the trading volume reaches millions per year and rising demand, but the industry has been controversial due to current heavy reliance on wild-collected specimens. At present, 90%–95% of marine ornamental fish species are wild-caught, and over half of the known thousands of coral reef fish species are in trade with poor or no monitoring, which poses a serious threat to natural resources. The ornamental aquatic industry and consumers are a responsible to ensure the sustainable development of wild-caught species, and the cultivation of marine ornamental fish is considered as a responsible alternative to protecting wild resources, but there are still many technical constraints that hinder its development. Combining with relevant data and literature, this paper summarizes the current situation and the latest research progress of the international marine ornamental fish industry, discusses the existing problems, and puts forward some feasible solutions, aiming to provide references for the development of China's marine ornamental fish industry.
[1] |
BIONDO M V. Importation of marine ornamental fishes to Switzerland[J]. Glob Ecol Conserv, 2018, 15: e00418.
|
[2] |
Food and Agriculture Organisation (FAO). The state of world fisheries and aquaculture 2016: contributing to food security and nutrition for all[R/OL]. Rome: FAO, 2016: 4-179. http://www.fao.org/3/a-i5555e.pdf.
|
[3] |
MCCOLLUM B A. Consumer perspectives on the "web of causality" within the marine aquarium fish trade[J]. Live Reef Fish, 2007, 17: 20-30.
|
[4] |
SIRAJUDHEEN T K, SALIM S S, BIJUKUMAR A, et al. Problems and prospects of marine ornamental fish trade in Kerala, India[J]. J Fish Eco Dev, 2014, 1151: 14-30.
|
[5] |
POUIL S, TLUSTY M, RHYNE A, et al. Aquaculture of marine ornamental fish: overview of the production trends and the role of academia in research progress[J]. Rev Aquacult, 2019, 12(2): 1217-1230.
|
[6] |
CHEN J Y, ZENG C, JERRY D R, et al. Recent advances of marine ornamental fish larviculture: broodstock reproduction, live prey and feeding regimes, and comparison between demersal and pelagic spawners[J]. Rev Aquac, 2019: 1-24.
|
[7] |
马本贺, 马爱军, 孙志宾, 等. 海水观赏鱼产业现状及其存在的问题[J]. 海洋科学, 2016, 40(10): 151-159. doi: 10.11759//hykx20151015001
|
[8] |
SCHWERDTNER M K, DANDAVA L, EKAU W. Fishing the last frontier: the introduction of the marine aquarium trade and its impact on local fishing communities in Papua New Guinea[J]. Mar Policy, 2014, 44: 279-286. doi: 10.1016/j.marpol.2013.09.018
|
[9] |
RHYNE A L, TLUSTY M F, SZCZEBAK J, et al. Expanding our understanding of the trade in marine aquarium animals[J]. Peer J, 2017, 5: e2949. doi: 10.7717/peerj.2949
|
[10] |
OLIVIER K. The ornamental fish market[J]. Globefish Research Programme (FAO), 2001, 67: 91.
|
[11] |
PLOEG A. The volume of the ornamental fish trade[C]//PLOEG A, HENSEN R R, FOSSÅ S A. International transport of live fish in the ornamental aquatic industry. Montfoort, The Netherlands: Ornamental Fish International, 2012: 44-57.
|
[12] |
DOMINGUEZ L M, BOTELLA A S. An overview of marine ornamental fish breeding as a potential support to the aquarium trade and to the conservation of natural fish populations[J]. Int J Sustain Dev Plan, 2014, 9(4): 608-632. doi: 10.2495/SDP-V9-N4-608-632
|
[13] |
TRACEY A K. Wild caught ornamental fish: a perspective from the UK ornamental aquatic industry on the sustainability of aquatic organisms and livelihoods[J]. J Fish Biol, 2019, 94: 925-936. doi: 10.1111/jfb.13900
|
[14] |
SUGIYAMA S, STAPLES D J, SMITH S F. Status and potential of fisheries and aquaculture in Asia and the Pacific[M]//Rome: FAO, 2004: 53.
|
[15] |
WHITTINGTON R J, CHONG R. Global trade in ornamental fish from an Australian perspective: the case for revised import risk analysis and management strategies[J]. Prev Vet Med, 2007, 81(1/2/3): 92-116.
|
[16] |
CATO J C, BROWN C L. Marine ornamental species: collection, culture and conservation[M]. Chichester, UK: John Wiley & Sons, 2008: 277-288.
|
[17] |
MURUGAN A, SREEPADA R A, SANAYE S V, et al. Captive breeding and rearing of the yellow seahorse, Hippocampus kuda (Bleeker, 1852) in support of the marine ornamental fish industry and conservation[J]. Ind J Mar Sci, 2017, 46(10): 1996-2002.
|
[18] |
RHYNE A L, TLUSTY M F, SCHOFIELD P J, et al. Revealing the appetite of the marine aquarium fish trade: the volume and biodiversity of fish imported into the United States[J]. PLoS One, 2012, 7: e35808. doi: 10.1371/journal.pone.0035808
|
[19] |
MONTICINI P. The ornamental fish trade, production and commerce of ornamental fish: technical-managerial and legislative aspects[J]. Globefish Research Programme, 2010, 102: 132.
|
[20] |
KUMAR T T A, GUNASUNDARI V, PRAKASH S. Breeding and rearing of marine ornamentals[M]//Advances in marine and brackishwater aquaculture. New Delhi: Springer, 2015: 101-107.
|
[21] |
AHILAN B, WALKHOM G. Some prime marine ornamental fishes of India[J]. Fishing Chim, 2007, 27(7): 50-52.
|
[22] |
WOOD E M. Collection of coral reef fish for aquaria: global trade, conservation issues and management strategies[R]. UK: Mar Conserv Soc, 2001: 7-59.
|
[23] |
LEAL M C, VAZ M C M, PUGA J, et al. Marine ornamental fish imports in the European Union: an economic perspective[J]. Fish Fish, 2016, 17(2): 459-468. doi: 10.1111/faf.12120
|
[24] |
WILKINSON C. Status of coral reefs of the world: 2008[C]. Townsville, Australia: Global Coral Reef Monitoring Network and Reef and Rainforest Research Centre, 2008: 198-233.
|
[25] |
HUGHES T P, BARNES M L, BELLWOOD D R, et al. Coral reefs in the Anthropocene[J]. Nature, 2017, 546(7656): 82. doi: 10.1038/nature22901
|
[26] |
BURKE L, SELIG L, SPALDING M. Reefs at risk in Southeast Asia[J]. WRI China, 2001, 83(12): 2008-2010.
|
[27] |
RUBEC P J, CRUZ F, PRATT V, et al. Cyanide-free net-caught fish for the marine aquarium trade[J]. Aquar Sci Conserv, 2001, 3(1/2/3): 37-51.
|
[28] |
GREEN E P, TAYLOR M L, WABNITZ C. From ocean to aquarium: the global trade in marine ornamental species[J]. Cogitare Enferm, 2003, 8(1): 72-78.
|
[29] |
MILITZ T A, KINCH J, FOALE S, et al. Fish rejections in the marine aquarium trade: an initial case study raises concern for village-based fisheries[J]. PLoS One, 2016, 11(3): e0151624. doi: 10.1371/journal.pone.0151624
|
[30] |
RHYNE A L, TLUSTY M F, KAUFMAN L. Long-term trends of coral imports into the United States indicate future opportunities for ecosystem and societal benefits[J]. Conserv Lett, 2012a, 5: 478-485. doi: 10.1111/j.1755-263X.2012.00265.x
|
[31] |
BIONDO M V. Quantifying the trade in marine ornamental fishes into Switzerland and an estimation of imports from the European Union[J]. Global Ecol Conserv, 2017, 11: 95-105. doi: 10.1016/j.gecco.2017.05.006
|
[32] |
JOB S. Marine ornamental fish culture[C]//FOTEDAR R K, PHILLIPS B F. Recent advances and new species in aquaculture. Chichester, UK: John Wiley & Sons, 2011: 277-317.
|
[33] |
CALLAN C K, BURGESS A I, ROTHE C R, et al. Development of improved feeding methods in the culture of yellow tang, Zebrasoma flavescens[J]. J World Aquacult Soc, 2018, 49: 493-503. doi: 10.1111/jwas.12496
|
[34] |
PALMTAG M R. The marine ornamental species trade[C]//CALADO R, OLIVOTTO I, OLIVER MP, et al. Marine ornamental species aquaculture. Chichester, UK: John Wiley & Sons Ltd, 2017: 3-14.
|
[35] |
LAIDLEY C W, BURNELL A F, SHIELDS R J, et al. Marine ornamentals: captive culture progress at the Oceanic Institute[J]. Global Aquac Adv, 2004, 7(2): 53-54.
|
[36] |
BUSHNELL M E, CLAISSE J T, LAIDLEY C W. Lunar and seasonal patterns in fecundity of an indeterminate, multiple-spawning surgeonfish, the yellow tang Zebrasoma flavescens[J]. J Fish Biol, 2010, 76(6): 1343-1361. doi: 10.1111/j.1095-8649.2010.02569.x
|
[37] |
HOLT G J, LUE M Y, CALLAN C K, et al. Large angelfish and other pelagic spawners[C]//CALADO R, OLIVOTTO I, OLIVER M P, et al. Marine ornamental species aquaculture. Chichester, UK: Wiley-Blackwell, 2017: 251-274.
|
[38] |
SANG H M, LAM H S. Reproductive biology of blue tang fish (Paracanthurus hepatus Linnaeus, 1776) in Khanh Hoa seawater, Viet Nam[J]. Indian J Mar Sci, 2018, 47(4): 839-845.
|
[39] |
SANG H M, LAM H S, HO L K H, et al. Changes in plasma and ovarian steroid hormone level in wild female blue tang fish Paracanthurus hepatus during a reproductive cycle[J]. Animals, 2019, 9(11): 889. doi: 10.3390/ani9110889
|
[40] |
KUSUMAWATI D, SETIAWATI K M, PRIONO B. Perkembangan embrio dan larva ikan letter six, Paracanthurus hepatus[J]. J Ris Akua, 2015, 10(2): 177-185.
|
[41] |
DIMAGGIO M A, CASSIANO E J, BARDEN K P, et al. First record of captive larval culture and metamorphosis of the Pacific blue tang, Paracanthurus hepatus[J]. J World Aquacult Soc, 2017, 48(3): 393-401. doi: 10.1111/jwas.12426
|
[42] |
岳彦峰, 彭士明, 张晨捷. 狐篮子鱼的人工繁育技术研究[J]. 水产养殖, 2017, 38(11): 26-27. doi: 10.3969/j.issn.1004-2091.2017.11.009
|
[43] |
洪文霆. 小型海水神仙鱼人工繁育初步研究[D]. 厦门: 集美大学, 2019: 1-58.
|
[44] |
HØJGAARD J K, HANSEN B W, HWANG J S. Prey capture capabilities by juveniles of the false percula clownfish (Amphiprion ocellaris) fed calanoid nauplii vs. adults[J]. Mar Freshw Behav Physiol, 2017, 50(5/6): 387-396.
|
[45] |
BURGESS A I, CALLAN C K. Effects of supplemental wild zooplankton on prey preference, mouth gape, osteological development and survival in first feeding cultured larval yellow tang (Zebrasoma flavescens)[J]. Aquaculture, 2018, 495: 738-748. doi: 10.1016/j.aquaculture.2018.06.046
|
[46] |
LEU M Y, SUN Y H, MENG P J. First results of larval rearing and development of the bluestriped angelfish Chaetodontoplus septentrionalis (Temminck & Schlegel) from hatching through juvenile stage with notes on its potential for aquaculture[J]. Aquac Res, 2015, 46(5): 1087-1100. doi: 10.1111/are.12265
|
[47] |
SHEI M R P, RODRIGUES R V, SAMPAIO L A. Use of commercial live feeds enrichment during first feeding period of the barber goby Elacatinus figaro[J]. Aquac Aquar Conserv Legis, 2012, 5(1): 9-12.
|
[48] |
OLIVOTTO I, STEFANO M D, ROSETTI S, et al. Live prey enrichment, with particular emphasis on HUFAs, as limiting factor in false percula clownfish (Amphiprion ocellaris, Pomacentridae) larval development and metamorphosis: molecular and biochemical implications[J]. Comp Biochem Physiol A, 2011, 159(3): 207-218. doi: 10.1016/j.cbpa.2011.02.004
|
[49] |
LAM H S, HUE N T N, AN D T, et al. Effect of enriching live feeds with HUFA on growth and survival of clownfish Amphiprion ocellaris (Cuvier, 1830) larvae[J]. Vie J Mar Sci Technol, 2019, 19(4A): 191-199.
|
[50] |
IWATA E, NAGAI Y, HYOUDOU M, et al. Social environment and sex differentiation in false clown anemonefish, Amphiprion ocellaris[J]. Zool Sci, 2008, 25: 123-128. doi: 10.2108/zsj.25.123
|
[51] |
IWATA E, YOSHIDA T, ABE T, et al. Behavioural differences between breeding and nonbreeding pairs of protandry monogamous false clown anemonefish Amphiprion ocellaris[J]. J Fish, 2020, 8(2): 808-816.
|
[52] |
CHEN T H, HSIEH C Y. Fighting Nemo: effect of 17 alpha-ethinylestradiol (EE2) on aggressive behavior and social hierarchy of the false clown anemonefish Amphi[J]. Mar Pollut Bull, 2017, 124(2): 760-766. doi: 10.1016/j.marpolbul.2016.12.042
|
[53] |
IWATA E, SUZUKI N, OHNO S. Influence of social stability on the sex determination process in false clown anemonefish (Amphiprion ocellaris)[J]. Mar Freshw Behav Physiol, 2019, 52(3): 107-119. doi: 10.1080/10236244.2019.1655408
|
[54] |
IWATA E, SUZUKI N. Steroidal regulation of the aromatase gene and dominant behavior in the false clown anemonefish Amphiprion ocellaris[J]. Fish Sci, 2020, 86: 457-463. doi: 10.1007/s12562-020-01408-2
|
[55] |
王成龙, 关文志, 李永强, 等. 17β-雌二醇诱导黄颡鱼雌性化的研究[J]. 南方水产科学, 2020, 16(3): 26-30.
|
[56] |
ABDUH M Y, THUONG N P, ABOL-MUNAFI A B, et al. Producing false clownfish (Amphiprion ocellaris) male broodstock by administering 17á-methyltestosterone to protandrous hermaphrodite juveniles[J]. Aquac Aquar Conserv Legis, 2020, 13(2): 746-759.
|
[57] |
THUONG P N, SUNG Y Y, AMBAK M A, et al. The hormone 17â-estradiol promotes feminization of juveniles protandrous hermaphrodite false clownfish (Amphiprion ocellaris)[J]. Mar Freshw Behav Physiol, 2017, 50(3): 195-204. doi: 10.1080/10236244.2017.1361788
|
[58] |
KUWAMURA T, KADOTA T, SUZUKI S. Testing the low-density hypothesis for reversed sex change in polygynous fish: experiments in Labroides dimidiatus[J]. Sci Rep, 2015, 4: 4369. doi: 10.1038/srep04369
|
[59] |
黄文, 杨宪宽, 徐新, 等. 激素诱导斜带石斑鱼 (Epinephelus coioides) 雄性化的研究[J]. 海洋与湖沼, 2014, 45(6): 1317-1323.
|
[60] |
陈淑吟, 张志勇, 刘海林, 等. 池养黑鲷 (Acanthopagrus schlegeli) 性逆转组织学观察[J]. 海洋科学, 2017, 41(7): 51-57. doi: 10.11759/hykx20161214005
|
[61] |
BOOTH M A, WARNER-SMITH R J, ALLAN G. Effects of dietary astaxanthin source and light manipulation on the skin color of Australian snapper Pagrus auratus (Bloch & Schneider, 1801)[J]. Aquac Res, 2004, 35(5): 458-464. doi: 10.1111/j.1365-2109.2004.01038.x
|
[62] |
ROHMAWATY O. Analisis kelayakan pengembangan usaha ikan hias air tawar pada arifin fish farm, Desa Ciluar, Kecamatan Bogor Utara, Kota Bogor[J]. IPB, 2010, 107: 1-67.
|
[63] |
DEVI K N, KUMAR T T A, BALASUBRAMANIAN T. Pigment deficiency correction in captive clown fish, amphiprion ocellaris using different carotenoid sources[J]. J Fish Sci Com, 2016, 9(4): 72-79.
|
[64] |
李翔, 徐国辉, 姜光朋, 等. 南极磷虾粉替代鱼粉对公子小丑鱼生长性能、饲料利用和体色的影响[J]. 青岛农业大学学报 (自然科学版), 2019, 36(3): 214-217.
|
[65] |
MÜGE A H, KÜRAT F, AHIN S, et al. Effect of supplemented algal carotenoid diets on skin color of tomato clownfish, Amphiprion frenatus[J]. Pak J Zool, 2017, 49(2): 663-668. doi: 10.17582/journal.pjz/2017.49.2.663.668
|
[66] |
马本贺, 孙志宾, 马爱军, 等. 环境光色对白条双锯鱼(Amphiprion frenatus)幼鱼的影响及相关基因克隆研究[J]. 海洋与湖沼, 2017, 48(1): 148-154.
|
[67] |
YULIANTI E S, MAHARANI H W, DIANTARI R. Efektivitas pemberian astaxanthin pada peningkatan kecerahan warna ikan badut (Amphiprion ocellaris)[J]. Rek Teknologi Bud Pera, 2014, 3(1): 313-318.
|
[68] |
JIANG J, NUEZ-ORTIN W, ANGELL A, et al. Enhancing the colouration of the marine ornamental fish Pseudochromis fridmani using natural and synthetic sources of astaxanthin[J]. Algal Res, 2019, 42: 101596. doi: 10.1016/j.algal.2019.101596
|
[69] |
HASANAH U, DAMAYANTI A A, AZHAR F. Pengaruh laju pemuasaan secara periodik terhadap pertumbuhan kelangsungan hidup dan kecerahan warna ikan badut Amphiprion ocellaris[J]. J Biol Trop, 2020, 20(1): 46-53.
|
[70] |
李泽滨, 李云, 蔡生力, 等. 温度与光照周期对公子小丑鱼幼鱼生长及相关生长基因表达的影响[J]. 上海海洋大学学报, 2017, 26(3): 322-329.
|
[71] |
赵旺, 牛津, 胡静, 等. 饲料糖水平对眼斑双锯鱼幼鱼生长性能和体成分的影响[J]. 南方水产科学, 2017, 13(3): 67-72.
|
[72] |
胡静, 吴开畅, 叶乐, 等. 急性盐度胁迫对克氏双锯鱼幼鱼过氧化氢酶的影响[J]. 南方水产科学, 2015, 11(6): 73-78. doi: 10.3969/j.issn.2095-0780.2015.06.010
|
[73] |
RHYNE A L. The importance of open access in technology transfer for marine ornamental aquaculture: the case of hobbyist-led breeding initiatives[J]. Aquac Aquar Conserv Legis, 2010, 3(3): 269-272.
|
[74] |
WATSON I, ROBERTS D. Literature review: the benefits of wild caught ornamental aquatic organisms[R/OL]. Westbury: OATA, 2015: 84-90. https://ornamentalfish.org/wp-content/uploads/Literature-Review-The-Benefits-of-Wild-Caught-Ornamental-Aquatic-Organisms.pdf.
|
[75] |
DEE L E, HORII SS, THORNHILL D J. Conservation and management of ornamental reef wildlife: success, shortcomings, and future directions[J]. Biol Conserv, 2014, 169: 225-237. doi: 10.1016/j.biocon.2013.11.025
|
[76] |
曹坳程, 张国良. 外来入侵物种法律法规汇编[M]. 北京: 科学出版社, 2010: 293-300.
|
[77] |
GOODLAND R. Ecolabeling: opportunities for progress toward sustainability[M]. Washington, D. C.: Consumer's Choice Council, 2002: 52.
|