Open Access
Issue
Knowl. Manag. Aquat. Ecosyst.
Number 420, 2019
Article Number 30
Number of page(s) 6
DOI https://doi.org/10.1051/kmae/2019022
Published online 07 June 2019
  • Bianchini I, Cunha-Santino, MB, Milan, JAM, Rodrigues CJ, Dias JHP. 2010. Growth of Hydrilla verticillata (Lf) Royle under controlled conditions. Hydrobiologia 644: 301–312. [CrossRef] [Google Scholar]
  • Bonar SA, Bolding B, Divens M. 2002. Effects of triploid grass carp on aquatic plants, water quality, and public satisfaction in Washington State. North Am J Fish Manag 22: 96–105. [CrossRef] [Google Scholar]
  • Cao W. 1960. A biological study of Megalobrama amblycephala and Megalobrama terminalis of Lake Liangzi. Acta Hydrobio Sinica (in Chinese) 1: 57–82. [Google Scholar]
  • Fulvio M, Alessio B, Ramon F, Lorenzo M, Anna B, Erika B, Luca P. 2014. Effects of dietary lipid level on growth and feed utilisation of Gilthead Seabream (Sparus Aurata L.) reared at mediterranean summer temperature. Ital J Anim Sci 13: 29–34. [Google Scholar]
  • Gail TF, Kenneth A. 2003. Interactive effects of light and salinity stress on the growth, reproduction, and photosynthetic capabilities of Vallisneria americana (wild celery). Estuar Coast 26: 1255–1268. [CrossRef] [Google Scholar]
  • Ganga G, Sulochana CJ, Senthamil SR, Manoharan T. 1985. Influence of food plants on the food utilization and chemical composition of Henosepilachna septima (Coleoptera: coccinellidae). Proc Anim Sci 94: 161–167. [CrossRef] [Google Scholar]
  • Ganthy F, Soissons L, Sauriau PG, Verney R, Sottolichio A. 2015. Effects of short flexible seagrass Zostera noltei on flow, erosion and deposition processes determined using flume experiments. Sedimentology 62: 997–1023. [CrossRef] [Google Scholar]
  • Gopal B, Goel U. 1993. Competition and allelopathy in aquatic plant communities. Botan Rev 59: 155–210. [CrossRef] [Google Scholar]
  • Hayashi H, Maehara R, Hirabayashi K. 1988. Growth of Elodea muttallii and changes of phosphorus in Lake Kizaki (in Japanese). Bull Limnol Soc Ko-Shin-Etsu District 13: 27–32. [Google Scholar]
  • Hilt S, Gross EM, Hupfer M, Morscheid H, Maehlmann J, Melzer A, Poltz J, Sandrock S, Scharf EM, Schneider S, van de Weyer K. 2006. Restoration of submerged vegetation in shallow eutrophic lakes − a guideline and state of the art in Germany. Limnologica 36: 155–171. [CrossRef] [Google Scholar]
  • Hussner A, Stiers I, Verhofstad MJJM, Bakker ES, Grutters BMC, Haury J, van Valkenburg JLCH, Brundu G, Newman J, Clayton JS, Anderson LWJ, Hofstra D. 2017. Management and control methods of invasive alien freshwater aquatic plants: a review. Aquat Bot 136: 112–137. [CrossRef] [Google Scholar]
  • Langeland KA. 1996. Hydrilla verticillata (LF) Royle (Hydrocharitaceae), “the perfect aquatic weed”. Castanea 61: 293–304. [Google Scholar]
  • Leslie AJ, Dyke JMV, Hestand III RS, Thompson BZ. 1987. Management of aquatic plants in multiuse lakes with grass carp (Ctenopharyngodon idella). Lake Reservoir Manage 3: 266–276. [CrossRef] [Google Scholar]
  • Li K, Liu Z, Gu B. 2010. Compensatory growth of a submerged macrophyte (Vallisneria spiralis) in response to partial leaf removal: effects of sediment nutrient levels. Aquat Ecol 44: 701–707. [CrossRef] [Google Scholar]
  • Lodge DM. 1991. Herbivory on freshwater macrophytes. Aquat Bot 41: 195–224. [CrossRef] [Google Scholar]
  • Pípalová I. 2006. A review of grass carp use for aquatic weed control and its impact on water bodies. Aquat Plant Manag 44: 1–12. [Google Scholar]
  • Planes S, Raventos N, Ferrari B, Alcoverro T. 2011. Fish herbivory leads to shifts in seagrass Posidonia oceanica investments in sexual reproduction. Mar Ecol Prog Ser 431: 205–213. [CrossRef] [Google Scholar]
  • Smith CS, Adams MS. 1986. Phosphorus transfer from sediment by Myriophyllum spicatum . Limnol Oceanogr 31: 1312–1321. [CrossRef] [Google Scholar]
  • Tang Y, Fu B, Zhang X, Liu Z. 2019. Nutrient addition delivers growth advantage to Hydrilla verticillata over Vallisneria natans: a mesocosm study. Knowl Manag Aquat Ecosyst 420: 12. [CrossRef] [Google Scholar]
  • Valentine JF, Heck KL, Busby J, Web, D. 1997. Experimental evidence that herb-ivory increases shoot density and productivity in a subtropical turtlegrass (Thalassia testudinum) meadow. Oecologia 112: 193–200. [CrossRef] [PubMed] [Google Scholar]
  • Valk AGV. 2006. The biology of fresh water wetlands. Oxford: OUP, pp. 113–145. [Google Scholar]
  • Van TK, Wheeler GS, Center TD. 1998.Competitive interactions between Hydrilla (Hydrilla verticillata) and Vallisneria (Vallisneria americana) as influenced by insect herbivory. Biol Control 11: 185–192. [CrossRef] [Google Scholar]
  • Van TK, Wheeler GS, Center TD. 1999. Competition between Hydrilla verticillata and Vallisneria americana as influenced by soil fertility. Aquat Bot 62: 225–233. [CrossRef] [Google Scholar]
  • Xiao K, Yu D, Xu X, Xiong W. 2007. Benefits of clonal integration between interconnected ramets of Vallisneria spiralis in heterogeneous light environments. Aquat Bot 189: 76–82. [CrossRef] [Google Scholar]
  • Zhen W, Zhang X, Guan B, Yin C, Yu J, Jeppesen E, Zhao X, Liu Z. 2018. Stocking of herbivorous fish in eutrophic shallow clear-water lakes to reduce standing height of submerged macrophytes while maintaining their biomass. Ecol Eng 113: 61–64. [CrossRef] [Google Scholar]

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