A review of freshwater fish introductions to the Guangdong province, China

Authors

  • Hui Wei Pearl River Fisheries Research Institute, Chinese Academy of Fishery Sciences; Key Laboratory of Recreational Fisheries, Ministry of Agriculture and Rural Affairs, Guangdong Engineering Technology Research Center for Advanced Recreational Fisheries, Guangzhou, China
  • Yinchang Hu Pearl River Fisheries Research Institute, Chinese Academy of Fishery Sciences; Key Laboratory of Recreational Fisheries, Ministry of Agriculture and Rural Affairs, Guangdong Engineering Technology Research Center for Advanced Recreational Fisheries, Guangzhou, China
  • Shan Li Natural History Research Center, Shanghai Natural History Museum, Branch of Shanghai Science & Technology Museum, Shanghai, China
  • Fangcan Chen Guangzhou Qianjiang Water Ecology Technology Limited Company, Guangzhou, China
  • Du Luo Pearl River Fisheries Research Institute, Chinese Academy of Fishery Sciences; Key Laboratory of Recreational Fisheries, Ministry of Agriculture and Rural Affairs, Guangdong Engineering Technology Research Center for Advanced Recreational Fisheries, Guangzhou, China
  • Dangen Gu Pearl River Fisheries Research Institute, Chinese Academy of Fishery Sciences; Key Laboratory of Recreational Fisheries, Ministry of Agriculture and Rural Affairs, Guangdong Engineering Technology Research Center for Advanced Recreational Fisheries, Guangzhou, China
  • Meng Xu Pearl River Fisheries Research Institute, Chinese Academy of Fishery Sciences; Key Laboratory of Recreational Fisheries, Ministry of Agriculture and Rural Affairs, Guangdong Engineering Technology Research Center for Advanced Recreational Fisheries, Guangzhou, China
  • Xidong Mu Pearl River Fisheries Research Institute, Chinese Academy of Fishery Sciences; Key Laboratory of Recreational Fisheries, Ministry of Agriculture and Rural Affairs, Guangdong Engineering Technology Research Center for Advanced Recreational Fisheries, Guangzhou, China
  • Yexin Yang Pearl River Fisheries Research Institute, Chinese Academy of Fishery Sciences; Key Laboratory of Recreational Fisheries, Ministry of Agriculture and Rural Affairs, Guangdong Engineering Technology Research Center for Advanced Recreational Fisheries, Guangzhou, China

Keywords:

biological invasion, resource availability, biotic resistance, life-history traits, plasticity

Abstract

In the last few decades, non-native freshwater fishes have been introduced all over the world for economic purposes, including aquaculture and aquarium trade, as well as improvement for wild stocks resulting in adverse environmental and socio-economic effects. The Guangdong province of China is at a high risk of fish invasions owing to its warm and humid climate, abundance of water courses, flourishing aquaculture and ornamental fish trade, and extensive sea ports. A total of 160 non-native freshwater species were introduced in the Guangdong province and 71.9% of them were imported for aquarium purposes. Fourteen species have established self-sustaining populations and 21 species were found in the main river basin of the Guangdong province. Propagule pressure, rapid evolution and abundant resources in the environment were the factors likely to contribute to successful invasion by non-native fishes. The invasion of non-native fishes in the Guangdong province has already resulted in economic losses, decline of native species, as well as negative impacts on the functional diversity of native fish assemblages. To mitigate these effects and prevent future non-native fish invasions, scientists, policy makers and stakeholders should collaborate on the management of non-native fish introductions by developing risk assessments, statutory regulations, public education and scientific research.

References

Bomford, M.

, Barry, S.C.

, Lawrence, E.

, 2010. Predicting establishment success for introduced freshwater fishes: a role for climate matching. Biological Invasions 12(8), 2559–2571. doi:10.1007/s10530-009-9665-3

Britton, J.R.

, Gozlan, R.E.

, 2013. How many founders for a biological invasion? Predicting introduction outcomes from propagule pressure. Ecology 94(11), 2558–2566. doi:10.1890/13-0527.1

Britton, J.R.

, and Orsi, M.L.

, 2012. Non-native fish in aquaculture and sport fishing in Brazil: economic benefits versus risks to fish diversity in the upper River Parana Basin. Reviews in Fish Biology and Fisheries 22(3), 555–565. doi:10.1007/s11160-012-9254-x

Capps, K. A.

, and

A. S. Flecker

. 2013. Invasive aquarium fish transform ecosystem nutrient dynamics Proceedings of the Royal Society B-Biological Sciences 280, e201315

Casimiro, A.C.R.

, Garcia, D.A.Z.

, Vidotto-Magnoni A.P.

, Britton, J.R.

, Agostinho, Â.A.

, Almeida, F.S.D.

, Orsi, M.L.

, 2018. Escapes of non-native fish from flooded aquaculture facilities: the case of Paranapanema River, southern Brazil. Zoologia (Curitiba) 35, e14638. doi:10.3897/zoologia.35.e14638

Chapman, D.

, 2010. Cyprinus carpio. Invasive Species Specialist Group. http://issg.org/database/species/ecology.asp?si=60&fr=1&sts=&lang=EN, Assessed 4 October 2010.

Charles, P.

, Stas, B.

, Mark, L.

, Harold, M.

, Mark, W.

, 2010. International cooperation in the solution to trade-related invasive species risks. Annals of the New York Academy of Sciences 1195(2010), 198–212.

Chen, G.

, 2010.

入侵种食蚊鱼与土著濒危物种唐鱼的种间关系研究. (Interspecific relationship between the invasive species Gambusia affinis and the native endangered species Tanichthys albonubes. In Chinese). Ph.D. dissertation, Jinan University, Guangzhou, China.

Chen, S.

, 1994a. 我国引进鱼类的种类及其生产效益的调查研究. (The study on the introduced fishes and their productive benefits. In Chinese). Modern Fisheries Information, 9(3), 5–9.

Chen, S.

, Ye, W.

, 1994b. 我国引进的罗非鱼类的初步研究. (Preliminary study of the introduced tilapia species of China. In Chinese). China Journal of Zoology 29 (3), 18–23.

China Fisheries Statistical Yearbook

., 2018. China Agriculture Press, Beijing. (In Chinese)

Copp, G.H.

, Bianco, P.

, Bogutskaya, N.

, Erős, T.

, Falka, I.

, Ferreira, M.

, Fox, M.

, Freyhof, J.

, Gozlan, R.

, Grabowska, J.

, 2005a. To be, or not to be, a non‐native freshwater fish? Journal of Applied Ichthyology 21(4), 242–262. doi:10.1111/j.1439-0426.2005.00690.x

Copp, G.H.

, Garthwaite, R.

, and Gozlan, R.E.

, 2005b. Risk identification and assessment of NN freshwater fishes: a summary of concepts and perspectives on protocols for the UK. Journal of Applied Ichthyology 21(4), 371–373. doi:10.1111/j.1439-0426.2005.00692.x

Copp, GH.

, Wesley, K.

, Vilizzi, L.

, 2005c. Pathways of ornamental and aquarium fish introductions into urban ponds of Epping Forest (London, England): the human vector. Journal of Applied Ichthyology 21(4), 263–274. doi:10.1111/j.1439-0426.2005.00673.x

Copp, G.H.

, Vilizzi, L.

, Gozlan, R.

, 2010. The demography of introduction pathways, propagule pressure and occurrences of non‐native freshwater fish in England. Aquatic Conservation: Marine and Freshwater Ecosystems 20(5), 595–601. doi:10.1002/aqc.1129

Copp, G.H.

, Russell, I.C.

, Peeler, E.J.

, Gherardi, F.

, Tricarico, E.

, Macleod, A.

, Cowx, I.G.

, Nunn, A.D.

, Occhipinti-Ambrogi, A.

, Savini, D.

, 2014. European non-native Species in Aquaculture Risk Analysis Scheme–a summary of assessment protocols and decision support tools for use of alien species in aquaculture. Fisheries Management & Ecology 23(1), 1–11. doi:10.1111/fme.12074

Copp, G.H.

, Vilizzi, L.

, Tilbury, H.

, Stebbing, P.

, Tarkan, A.S.

, Miossec, L.

, Goulletquer, P.

, 2016. Development of a generic decision-support tool for identifying potentially invasive aquatic taxa: AS-ISK. Management of Biological Invasions 7(4), 343–350. doi:10.3391/mbi.2016.7.4.04

Cui, Y.

, Yao, D.

, Lin, X.

, Liu, M.

, Wang, Z.

, Xu, Z.

, 2016. 广东从化地区不同生境食蚊鱼种群的繁殖生物学特征. (Reproductive Biology of Mosquito Fish (Gambusia affinis) in different Habitats in Conghua, Guangdong, In Chinese). Chinese Journal of Zoology 1(51), 57–65.

Daehler, C.C.

, 2001. Darwin's naturalization hypothesis revisited. American Naturalist 158(3), 324–330.

Datri, C.W.

, Pray, C.L.

, Zhang, Y.

, Nowlin, W.H.

, 2015. Nutrient enrichment scarcely affects ecosystem impacts of a non-native herbivore in a spring-fed river. Freshwater Biology 60(3), 551–562. doi:10.1111/fwb.12503

Davies, K.F.

, Chesson, P.

, Harrison, S.

, Inouye, B.D.

, Melbourne, B.A.

, Rice, K.J.

, 2005. Spatial heterogeneity explains the scale dependence of the native-exotic diversity relationship. Ecology 86(6), 1602–1610. doi:10.1890/04-1196

Davis, M.A.

, Grime, J.P.

, Thompson, K.

, 2000. Fluctuating resources in plant communities: a general theory of invasibility. Journal of Ecology 88(3), 528–534. doi:10.1046/j.1365-2745.2000.00473.x

de Mérona B.

, Rankin-de-Mérona, J.

, 2004, Food resource partitioning in a fish community of the central Amazon floodplain. Neotropical Ichthyology 2(2), 75–84. doi:10.1590/S1679-62252004000200004

Diez, J.M.

, D'Antonio, C.M.

, Dukes, J.S.

, Grosholz, E.D.

, Olden, J.D.

, Sorte, C.J.B.

, Blumenthal, D.M.

, Bradley, B.A.

, Early, R.

, Ibanez, I.

, Jones, S.J.

, Lawler, J.J.

, Miller, L.P.

, 2012. Will extreme climatic events facilitate biological invasions? Frontiers in Ecology and the Environment 10(5), 249–257. doi:10.1890/110137

Duggan, I.C.

, Rixon, C.A.

, MacIsaac, H.J.

, 2006. Popularity and propagule pressure: determinants of introduction and establishment of aquarium fish. Biological invasions 8(2), 377–382. doi:10.1007/s10530-004-2310-2

Early, R.

, Bradley, B.A.

, Dukes, J.S.

, Lawler, J.J.

, Olden, J.D.

, Blumenthal, D.M.

, Gonzalez, P.

, Grosholz, E.D.

, Ibañez, I.

, Miller, L.P.

, 2016. Global threats from invasive alien species in the twenty-first century and national response capacities. Nature Communications 7e, 12485. doi:10.1038/ncomms12485

Facon, B.

, Jarne, P.

, Pointier, J.

, David, P.

, 2005. Hybridization and invasiveness in the freshwater snail Melanoides tuberculata: hybrid vigour is more important than increase in genetic variance. Journal of Evolutionary Biology 18(3), 524–535. doi:10.1111/j.1420-9101.2005.00887.x

Figueredo, C.C.

, Giani, A.

, 2005. Ecological interactions between Nile tilapia (Oreochromis niloticus, L.) and the phytoplanktonic community of the Furnas Reservoir (Brazil). Freshwater Biology 50(8), 1391–1403. doi:10.1111/j.1365-2427.2005.01407.x

Fox, M.G.

, Copp, G.H.

, 2014. Old world versus new world: life-history alterations in a successful invader introduced across Europe. Oecologia 174(2), 435–446. doi:10.1007/s00442-013-2776-7

Froese, R.

, Pauly D.

, 2018. FishBase. World Wide Web electronic publication. www.fishbase.org, (Assessed 06/2018).

Gallardo, B.

, Clavero, M.

, Sánchez, M.I.

, Vilà, M.

, 2015. Global ecological impacts of invasive species in aquatic ecosystems. Global Change Biology 22(1), 151–163. doi:10.1111/gcb.13004

Genovesi, P.

, Carboneras, C.

, Vilà, M.

, Walton, P.

, 2015. EU adopts innovative legislation on invasive species: a step towards a global response to biological invasions? Biological Invasions 17(5), 1307–1311. doi:10.1007/s10530-014-0817-8

Gozlan, R.E.

, Newton, A.C.

, 2009. Biological invasions: benefits versus risks. Science 324(5930):1015–1015. doi:10.1126/science.324_1015a

Gozlan, R.E.

, Britton, J.R.

, Cowx, I.

, Copp, G.H.

, 2010. Current knowledge on non-native freshwater fish introductions. Journal of Fish Biology 76(4), 751–786. doi:10.1111/j.1095-8649.2010.02566.x

Gu, D.

, Mu, X.

, Luo, D.

, Li, Y.

, Wang, X.

, Song, H.

, Luo, J.

, Hu, Y.

, 2012a. 广东省主要水系外来水生动物初步调查. (The distribution of alien aquatic animals in the main rivers of Guangdong Province, China, In Chinese)

. Journal of Biosafty 21(4), 272–276. doi:10.1016/j.bse.2015.01.004

Gu, D.

, Mu, X.

, Luo, D.

, Li, Y.

, Yang, Y.

, Xu, M.

, Hu, Y.

, 2012b. 广东省主要水系罗非鱼的建群状况. (The establishment of Oreochromis niloticus in the main rivers of Guangdong Province, China, In Chinese).

Journal of Biosafty 21(4), 277–282. doi:10.1016/j.bse.2015.01.004

Gu, D.

, Ma, G.

, Zhu, Y.

, Xu, M.

, Luo, D.

, Li, Y.

, Wei, H.

, Mu, X.

, Luo, J.

, Hu, Y.

, 2015. The impacts of invasive Nile tilapia (Oreochromis niloticus) on the fisheries in the main rivers of Guangdong Province, China. Biochemical Systematics and Ecology 59(2015), 1–7. doi:10.1016/j.bse.2015.01.004

Gu, D.

, Mu, X.

, Xu, M.

, Luo, D.

, Wei, H.

, Li, Y.

, Zhu, Y.

, Luo, J.

, Hu, Y.

, 2016. Identification of wild tilapia species in the main rivers of south China using mitochondrial control region sequence and morphology. Biochemical Systematics & Ecology 65(0), 100–107. doi:10.1016/j.bse.2016.02.007

Gu, D.

, Hu, Y.

, Xu, M.

, Wei, H.

, Luo, D.

, Yang, Y.

, Yu, F.

, Mu, X.

, 2018. Fish invasion in the river systems of Guangdong Province, South China: Several possible indicators of their success. Fisheries Management and Ecology 25(1), 44–53. doi:10.1111/fme.12265

Guangdong Meteorological Service

, 2013. 广东省气候特征.(Climate characteristics of Guangdong Province. In Chinese). http://www.grmc.gov.cn/qxgk/tjsj/201310/t20131022_21888.html (Accessed 22 October 2013).

Hodgins, K.A.

, Bock, D.G.

, Rieseberg, L.H.

, 2018. Trait Evolution in Invasive Species. Annual Plant Reviews 1(0), 1–37.

Kahilainen, K.K.

, Ostbye, K.

, Harrod, C.

, Shikano, T.

, Malinen, T.

, Merila, J.

, 2011. Species introduction promotes hybridization and introgression in Coregonus: is there sign of selection against hybrids? Molecular Ecology 20(18), 3838–3855. doi:10.1111/j.1365-294X.2011.05209.x

Keane, R.M.

, Crawley, M.J.

, 2002. Exotic plant invasions and the enemy release hypothesis. Trends in Ecology & Evolution 17(4), 164–170. doi:10.1016/S0169-5347(02)02499-0

Kolar, C.S.

, Lodge, D.M.

, 2002. Ecological predictions and risk assessment for alien fishes in North America. Science 298(5596), 1233–1236. doi:10.1126/science.1075753

Kottek, M.

, Grieser, J.

, Beck, C.

, Rudolf, B.

, Rubel, F.

, 2006. World Map of the Köppen-Geiger climate classification updated. Meteorologische Zeitschrift 15(3), 259–263. doi:10.1127/0941-2948/2006/0130

Li, G.

, Zhao, J.

, Zhu, X.

, Zhang, D.

, Zhao, H.

, Liu, L.

, 2013. 广东省渔业资源调查与研究. (Investigation and Research on Freshwater Fish Resources of Guangdong. In Chinese). Science Press, Beijing, China.

Li, J.

, Dong Z

, Li, Y.

, Wang, C.

, 2007.中国外来水生动植物. (Alien Aquatic Plants and Animals in China, In Chinese). Shanghai Scientific and Technical Publishers, Shanghai, China.

Li X.

, Chen F.

, Liang P.

, 珠江水系鱼类原色图集(广东段)2018. (Atlas of fish species in Pearl River Basin (Guangdong section). In Chinese), 2018. Science Press, Beijing.

Lin, Y.

, Gao, Z.

, Zhan, A.

, 2015. Introduction and use of non‐native species for aquaculture in China: status, risks and management solutions. Reviews in Aquaculture 7(0), 28–53. doi:10.1111/raq.12052

Liu, C.

, Comte, L.

, Olden, J.D.

, 2017. Heads you win, tails you lose: Life‐history traits predict invasion and extinction risk of the world's freshwater fishes. Aquatic Conservation-Marine and Freshwater Ecosystems 27(4), 1–7.

Liu, X.

, McGarrity, M.E.

, Li, Y.

, 2012. The influence of traditional Buddhist wildlife release on biological invasions. Conservation Letters 5(2), 107–114. doi:10.1111/j.1755-263X.2011.00215.x

Lockwood, J.L.

, Cassey, P.

, Blackburn, T.

, 2005. The role of propagule pressure in explaining species invasions. Trends in Ecology & Evolution 20(5), 223–228. doi:10.1016/j.tree.2005.02.004

Mouillot, D.

, Graham, N.A.

, Villéger, S.

, Mason, N.W.

, Bellwood, D.R.

, 2013. A functional approach reveals community responses to disturbances. Trends in Ecology & Evolution 28(3), 167–177. doi:10.1016/j.tree.2012.10.004

Moyle, P.B.

, Light, T.

, 1996. Fish invasions in California: do abiotic factors determine success? Ecology 77(6), 1666–1670. doi:10.2307/2265770

Muhlfeld, C.C.

, Kovach, R.P.

, Jones, L.A.

, Al-Chokhachy, R.

, Boyer, M.C.

, Leary, R.F.

, Lowe, W.H.

, Luikart, G.

, Allendorf, F.W.

, 2014. Invasive hybridization in a threatened species is accelerated by climate change. Nature Climate Change 4, 620. doi:10.1038/nclimate2252

Naylor, R.L.

, Williams S.L.

, Strong D.R.

, 2001. Aquaculture–A gateway for exotic species. Science 294(5547), 1655–1656 doi:10.1126/science.1064875

Peng, C.

, Liang, X.

, Qin, Y.

, Wu, G.

, 1992.纹鳢鱼种培育试验. (Breeding trail of Channa striatus. In Chinese). Fisheries Science & Technology Information 1992(03), 74–75.

Ricciardi, A.

, Mottiar, M.

, 2006. Does Darwin's Naturalization Hypothesis Explain Fish Invasions. Biological Invasions 8(6), 1403–1407. doi:10.1007/s10530-006-0005-6

Ricciardi, A.

, Blackburn, T.M.

, Carlton, J.T.

, Dick, J.T.

, Hulme, P.E.

, Iacarella, J.C.

, Jeschke, J.M.

, Liebhold, A.M.

, Lockwood, J.L.

, Macisaac, H.J.

, 2017. Invasion Science: A Horizon Scan of Emerging Challenges and Opportunities. Trends in Ecology & Evolution 32(6), 464–474. doi:10.1016/j.tree.2017.03.007

Richardson, D.M.

, Pyšek P.

, Rejmánek M.

, Barbour M.G.

, Panetta F.D.

,West C.J.

, 2000. Naturalization and invasion of alien plants: concepts and definitions. Diversity and Distributions 6, 93–107. doi:10.1046/j.1472-4642.2000.00083.x

Rius, M.

, Darling, J.A.

, 2014. How important is intraspecific genetic admixture to the success of colonising populations? Trends in Ecology & Evolution 29(4), 233–242. doi:10.1016/j.tree.2014.02.003

Roy, H.E.

, Rabitsch, W.

, Scalera, R.

, Stewart, A.

, Gallardo, B.

, Genovesi, P.

, Essl, F.

, Adriaens, T.

, Bacher, S.

, Booy, O.

, Branquart, E.

, Brunel, S.

, Copp, G.H.

, Dean, H.

, D’hondt, B.

, Josefsson, M.

, Kenis, M.

, Kettunen, M.

, Linnamagi, M.

, Lucy, F.

, Martinou, A.M.

, Moore, N.

, Nentwig, W.

, Nieto, A.

, Pergl, J.

, Peyton, J.

, Roques, A.

, Schindler, S.

, Schönrogge, K.

, Solarz, W.

, Stebbing, P.D.

, Trichkova, T.

, Vanderhoeven, S.

, van Valkenburg, J.

, Zenetos, A.

, 2017. Developing a framework of minimum standards for the risk assessment of alien species. Journal of Applied Ecology 55(2), 526–538. doi:10.1111/1365-2664.13025

Sato, M.

, Kawaguchi, Y.

, Yamanaka, H.

, Okunaka, T.

, Nakajima, J.

, Mitani, Y.

, Shimatani, Y.

, Mukai, T.

, Onikura, N.

, 2010. Predicting the spatial distribution of the invasive piscivorous chub (Opsariichthys uncirostris uncirostris) in the irrigation ditches of Kyushu, Japan: a tool for the risk management of biological invasions. Biological Invasions 12(11), 3677–3686. doi:10.1007/s10530-010-9762-3

Schultz, A.A.

, Maughan, O.E.

, Bonar, S.A.

, Matter, W.J.

, 2003. Effects of flooding on abundance of native and nonnative fishes downstream from a small impoundment. North American Journal of Fisheries Management 23(2), 503–511. doi:10.1577/1548-8675(2003)023<0503:EOFOAO>2.0.CO;2

Shiu, H.

, Stokes, L.

, 2008. Buddhist animal release practices: historic, environmental, public health and economic concerns. Contemporary Buddhism 9(2), 181–196. doi:10.1080/14639940802556529

Shuai, F.

, Lek, S.

, Li, X.

, Zhao, T.

, 2018. Biological invasions undermine the functional diversity of fish community in a large subtropical river. Biological invasions 20(10), 2981–2996. doi:10.1007/s10530-018-1751-y

Singh, A.K.

, Lakra, W.S.

, 2011. Risk and benefit assessment of alien fish species of the aquaculture and aquarium trade into India. Reviews in Aquaculture 3(1), 3–18. doi:10.1111/j.1753-5131.2010.01039.x

Starling, F.

, Lazzaro, X.

, Cavalcanti, C.

, Moreira, R.

, 2002. Contribution of omnivorous tilapia to eutrophication of a shallow tropical reservoir: evidence from a fish kill. Freshwater Biology 47(12), 2443–2452. doi:10.1046/j.1365-2427.2002.01013.x

Stearns, S.C.

, Koella, J.C.

, 1986. The evolution of phenotypic plasticity in life-history traits: predictions of reaction norms for age and size at maturity. Evolution 40, 893–913 doi:10.2307/2408752

Wang, X.

, 锦鲤的养护与鉴赏. 2017 (The appreciation and culture of Koi. In Chinese). Guangdong science and technology press, 2017.Guangzhou, China.

Wang, X.

, Mu, X.

, 2007. 中国观赏鱼贸易综述.(A review of ornamental fish trade in China. In Chinese) Fishery Information and Strategy 2007 (3), 24–29.

Wei, H.

, Copp, G.H.

, Vilizzi, L.

, Liu, F.

, Gu, D.

, Luo, D.

, Xu, M.

, Mu, X.

, Hu, Y.

, 2017. The distribution, establishment and life-history traits of non-native sailfin catfishes Pterygoplichthys spp. in the Guangdong Province of China. Aquatic Invasions 12(2), 241–249. doi:10.3391/ai.2017.12.2.11

Wei, H.

, Chaichana, R.

, Liu, F.

, Luo, D.

, Qian, Y.

, Gu, D.

, Mu, X.

, Xu, M.

, Hu, Y.

, 2018. Nutrient enrichment alters life-history traits of non-native fish Pterygoplichthys spp. in sub-tropical rivers. Aquatic Invasions 13(3), 421–432. doi:10.3391/ai.2018.13.3.09

Wilson, K.L.

, De Gisi, J.

, Cahill, C.L.

, Barker, O.E.

, Post, J.R.

, 2019. Life‐history variation along environmental and harvest clines of a northern freshwater fish: plasticity and adaptation. Journal of Animal Ecology 0, 1–17. doi:10.1111/1365-2656.12965

Xiong, W.

, Sui, X.

, Liang, S.H.

, Chen, Y.

, 2015. Non-native freshwater fish species in China. Reviews in Fish Biology and Fisheries 25(4), 651–687. doi:10.1007/s11160-015-9396-8

Zhong, Y.

, Power, G.

, 1997. Fisheries in China: progress, problems, and prospects. Canadian Journal of Fisheries & Aquatic Sciences 54(54), 224–238. doi:10.1139/f96-265

Published

2019-10-02