1,386
Views
4
CrossRef citations to date
0
Altmetric
Articles

Detecting a spreading non-indigenous species using multiple methodologies

ORCID Icon, ORCID Icon, , &

References

  • Ackerman JD, Sim B, Nichols SJ, Claudi R. 1994. A review of the early life history of zebra mussels (Dreissena polymorpha): comparisons with marine bivalves. Can J Zool. 72(7):1169–1179. doi:10.1139/z94-157.
  • Adams AAY, Lardner B, Knox AJ, Reed RN. 2018. Inferring the absence of an incipient population during a rapid response for an invasive species. PLoS One. 13(9):e0204302. doi:10.1371/journal.pone.0204302.
  • Ardura A, Zaiko A, Borrell Y, Samuiloviene A, Garcia-Vazquez E. 2017. Novel tools for early detection of a global aquatic invasive, the zebra mussel Dreissena polymorpha. Aquatic Conserv. 27(1):165–176. doi:10.1002/aqc.2655.
  • Bobeldyk AM, Bossenbroek JM, Evans-White MA, Lodge DM, Lamberti GA. 2005. Secondary spread of zebra mussels (Dreissena polymorpha) in coupled lake-stream systems. Ecoscience. 12(3):339–346. doi:10.2980/i1195-6860-12-3-339.1.
  • Bogich TL, Liebhold AM, Shea K. 2008. To sample or eradicate? A cost minimization model for monitoring and managing an invasive species. J Appl Ecol. 45(4):1134–1142. doi:10.1111/j.1365-2664.2008.01494.x.
  • Brunskill GJ, Elliott SEM, Campbell P. 1980. Morphometry, hydrology, and watershed data pertinent to the limnology of Lake Winnipeg. Can Manuscr Rep Fish Aquat Sci. 1556:32.
  • Buskey EJ, Hyatt CJ. 2006. Use of the FlowCam for semi-automated recognition and enumeration of red tide cells (Karenia brevis) in natural plankton samples. Harmful Algae. 5(6):685–692. doi:10.1016/j.hal.2006.02.003.
  • Camoying MG, Yñiguez AT. 2016. FlowCAM optimization: attaining good quality images for higher taxonomic classification resolution of natural phytoplankton samples. Limnol Oceanogr Methods. 14(5):305–314. doi:10.1002/lom3.10090.
  • Chadès I, Nicol S, Rout TM, Péron M, Dujardin Y, Pichancourt JB, Hastings A, Hauser CE. 2017. Optimization methods to solve adaptive management problems. Theor Ecol. 10(1):1–20. doi:10.1007/s12080-016-0313-0.
  • Conservation and Water Stewardship (CWS). 2015. Manitoba conservation and water stewardship reports fall monitoring show zebra mussels are now present in the north basin of Lake Winnipeg. http://news.gov.mb.ca/news/?item=36496.
  • Counihan TD, Bollens SM. 2017. Early detection monitoring for larval dreissenid mussels: how much plankton sampling is enough? Environ Monit Assess. 189(3):98. doi:10.1007/s10661-016-5737-x.
  • Coutts SR, Helmstedt KJ, Bennett JR. 2018. Invasion lags: the stories we tell ourselves and our inability to infer process from pattern. Divers Distrib. 24(2):244–251. doi:10.1111/ddi.12669.
  • Culverhouse PF, Williams R, Benfield M, Flood PR, Sell AF, Mazzocchi MG, Buttino I, Sieracki M. 2006. Automatic image analysis of plankton: future perspectives. Mar Ecol Prog Ser. 312:297–309. doi:10.3354/meps312297.
  • Egan SP, Grey E, Olds B, Feder JL, Ruggiero ST, Tanner CE, Lodge DM. 2015. Rapid molecular detection of invasive species in ballast and harbor water by integrating environmental DNA and light transmission spectroscopy. Environ Sci Technol. 49(7):4113–4121. doi:10.1021/es5058659.
  • Fisheries and Oceans Canada (DFO). 2014. Science response 2014/031 – Lake Winnipeg zebra mussel treatment. http://www.dfo-mpo.gc.ca/csas-sccs/publications/scr-rs/2014/2014_031-eng.html.
  • Fluid Imaging Technologies Inc. 2011. FlowCam manual version 3.0. http://www.ihb.cas.cn/fxcszx/fxcs_xgxz/201203/P020120329576952031804.pdf.
  • Fluid Imaging Technologies Inc. 2017. FlowCam application note. http://info.fluidimaging.com/hs-fs/hub/300163/file-1868360604-pdf/documents/Application_Notes/Invasive-Species-Birefringence-App-Note.pdf?t=1498652528613.
  • Frischer ME, Kelly KL, Nierzwicki-Bauer S. 2012. Accuracy and reliability of Dreissena spp. larvae detection by cross-polarized light microscopy, imaging flow cytometry, and polymerase chain reaction assays. Lake Reserv Manag. 28(4):265–276. doi:10.1080/07438141.2012.731027.
  • Frischer ME, McGrath BR, Hansen AS, Vescio PA, Wyllie JA, Wimbush J, Nierzwicki-Bauer SA. 2005. Introduction pathways, differential survival of adult and larval zebra mussels (Dreissena polymorpha), and possible management strategies, in an Adirondack lake, Lake George, NY. Lake Reserv Manag. 21(4):391–402. doi:10.1080/07438140509354444.
  • Gingera TD, Bajno R, Docker MF, Reist JD. 2017. Environmental DNA as a detection tool for zebra mussels Dreissena polymorpha (Pallas, 1771) at the forefront of an invasion event in Lake Winnipeg, Manitoba, Canada. Management of Biological Invasions 8:287–300. doi: 10.3391/mbi.2017.8.3.03.
  • Graham MD, Cook J, Graydon J, Kinniburgh D, Nelson H, Pilieci S, Vinebrooke RD. 2018. High-resolution imaging particle analysis of freshwater cyanobacterial blooms. Limnol Oceanogr Methods. 16(10):669–679. doi:10.1002/lom3.10274.
  • Harvey CT, Qureshi SA, MacIsaac HJ. 2009. Detection of a colonizing, aquatic, non-indigenous species. Divers Distrib. 15(3):429–437. doi:10.1111/j.1472-4642.2008.00550.x.
  • Hauser CE, McCarthy MA. 2009. Streamlining “search and destroy”: cost-effective surveillance for invasive species management. Ecol Lett. 12(7):683–692.
  • Hebert PDN, Muncaster BW, Mackie GL. 1989. Ecological and genetic studies on Dreissena polymorpha (Pallas) a new mollusc in the Great Lakes. Can J Fish Aquat Sci. 46(9):1587–1591. doi:10.1139/f89-202.
  • Herberich E, Sikorski J, Hothorn T. 2010. A robust procedure for comparing multiple means under heteroscedasticity in unbalanced designs. PLoS One. 5(3):e9788. doi:10.1371/journal.pone.0009788.
  • Higgins SN, Vander Zanden MJ. 2010. What a difference a species makes: a meta-analysis of dreissenid mussel impacts on freshwater ecosystems. Ecol Monogr. 80(2):179–196. doi:10.1890/09-1249.1.
  • Hoffman JC, Kelly JR, Trebitz AS, Peterson GS, West CW. 2011. Effort and potential efficiencies for aquatic non- native species early detection. Can J Fish Aquat Sci. 68:264–2079.
  • Hoffman JC, Schloesser J, Trebitz AS, Peterson GS, Gutsch M, Quinlan H, Kelly JR. 2016. Sampling design for early detection of aquatic invasive species in Great Lakes ports. Fisheries. 41(1):26–37. doi:10.1080/03632415.2015.1114926.
  • Horvath TG, Crane L. 2010. Hydrodynamic forces affect larval zebra mussel (Dreissena polymorpha) mortality in a laboratory setting. AI. 5(4):379–385. doi:10.3391/ai.2010.5.4.07.
  • Hosler DM. 2011. Early detection of dreissenid species: Zebra/Quagga mussels in water systems. AI. 6(2):217–222. doi:10.3391/ai.2011.6.2.10.
  • Hulme PE. 2009. Trade, transport and trouble: managing invasive species pathways in an era of globalization. J Appl Ecol. 46(1):10–18. doi:10.1111/j.1365-2664.2008.01600.x.
  • Johnson LE. 1995. Enhanced early detection and enumeration of zebra mussel (Dreissena spp.) veligers using cross-polarized light microscopy. Hydrobiologia. 312(2):139–146. doi:10.1007/BF00020769.
  • Johnson LE, Carlton JT. 1996. Post-establishment spread in large-scale invasions: dispersal mechanisms of the zebra mussel Dreissena polymorpha. Ecology. 77(6):1686–1690. doi:10.2307/2265774.
  • Keitt KH, Lewis MA, Holt RD. 2001. Allee effects, invasion pinning, and species' borders. Am Nat. 157(2):203–216. doi:10.1086/318633.
  • Le Bourg B, Cornet-Barthaux V, Pagano M, Blanchot J. 2015. FlowCam as a tool for studying small (80–1000 µm) metazooplankton communities. J Plankton Res. 37(4):666–670. doi:10.1093/plankt/fbv025.
  • Lusher AL, Welden NA, Sobral P, Cole M. 2017. Sampling, isolating and identifying microplastics ingested by fish and invertebrates. Anal Methods. 9(9):1346–1360. doi:10.1039/C6AY02415G.
  • MacIsaac HJ, Sprules G, Johannson OE, Leach JH. 1992. Filtering impacts of larval and sessile zebra mussels (Dreissena polymorpha) in western Lake Erie. Oecologia. 92(1):30–39. doi:10.1007/BF00317259.
  • Marsden JE. 1992. Standard protocols for monitoring and sampling zebra mussels. Champaign (IL): Illinois Natural History Survey Biological Notes.
  • Nalepa TF. 2014. Relative comparison and perspective on invasive species in the Laurentian and Swedish Great Lakes. Aquat Ecosyst Health Manag. 17(4):394–403. doi:10.1080/14634988.2014.972494.
  • Ogle DH, Wheeler P, Dinno A. 2020. FSA: Fisheries Stock Analysis. R package version 0.8.30.9000. https://github.com/droglenc/FSA.
  • Peñarrubia L, Alcaraz C, B, de Vaate A, Sanz N, Pla C, Vidal O, Viñas J. 2016. Validated methodology for quantifying infestation levels of dreissenid mussels in environmental DNA (eDNA) samples. Sci Rep. 6:39067. doi:10.1038/srep39067.
  • R Development Core Team. 2020. R: a language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. http://www.R-project.org.
  • Reed DP, Herod JJ, Sickel JB. 1998. Variations in zebra mussel (Dreissena polymorpha) veliger densities throughout 1996 at Dam 52 on the lower Ohio River. J Freshw Ecol. 13(3):255–261. doi:10.1080/02705060.1998.9663617.
  • Rees HC, Maddison BC, Middleditch DJ, Patmore JRM, Gough KC. 2014. The detection of aquatic animal species using environmental DNA—a review of eDNA as a survey tool in ecology. J Appl Ecol. 51(5):1450–1459. doi:10.1111/1365-2664.12306.
  • Rehmann CR, Stoeckel J, Schneider DW. 2003. Effect of turbulence on the mortality of zebra mussel veligers. Can J Zool. 81(6):1063–1069. doi:10.1139/z03-090.
  • Riessen HP, Ferro TA, Kamman A. 1993. Distribution of zebra mussel (Dreissena polymorpha) veligers in eastern Lake Erie during the first year of colonization In: Nalepa T, Schloesser D, editors. Zebra mussels: biology, impacts, and control. Boca Raton (FL): Lewis Publishers; p. 143–152.
  • Roos BR, Van Cleeff MRA, Githui WA, Kivihya-Ndugga L, Odhiambo JA, Kibuga DK, Klatser PR. 1998. Cost-effectiveness of the polymerase chain reaction versus smear examination for the diagnosis of tuberculosis in Kenya: a theoretical model. Int J Tuberc Lung Dis. 2:235–241.
  • Schlatter RP, Matte U, Polanczyk CA, Koehler-Santos P, Ashton-Prolla P. 2015. Costs of genetic testing: supporting Brazilian public policies for the incorporating of molecular diagnostic technologies. Genet Mol Biol. 38(3):332–337. doi:10.1590/S1415-475738320140204.
  • Spaulding BW. 2009. Early detection can help eradicate invasive mussels. J Am Water Works Ass. 101(11):19–20. doi:10.1002/j.1551-8833.2009.tb09977.x.
  • Stanislawczyk K, Johansson ML, MacIsaac HJ. 2018. Microscopy versus automated imaging flow cytometry for detecting and identifying rare zooplankton. Hydrobiologia. 807(1):53–65. doi:10.1007/s10750-017-3382-1.
  • Taberlet P, Coissac E, Hajibabaei M, Rieseberg LH. 2012. Environmental DNA. Mol Ecol. 21(8):1789–1793. doi:10.1111/j.1365-294X.2012.05542.x.
  • Thorpe JH, Rogers DC. 2010. Field guide to freshwater invertebrates of North America. Boca Raton, FL: Academic Press; 304p.
  • Trebitz AS, Hoffman JC, Darling JA, Pilgrim EM, Kelly JR, Brown EA, Chadderton WL, Egan SP, Grey EK, Hashsham SA, et al. 2017. Early detection monitoring for aquatic non-indigenous species: optimizing surveillance, incorporating advanced technologies, and identifying research needs. J Environ Manage. 202(Pt 1):299–310. doi:10.1016/j.jenvman.2017.07.045.
  • Vander Zanden MJ, Hansen GJA, Higgins SN, Kornis MS. 2010. A pound of prevention, plus a pound of cure: early detection and eradication of invasive species in the Laurentian Great Lakes. J Great Lakes Res. 36(1):199–205. doi:10.1016/j.jglr.2009.11.002.
  • Wang C, Wu X, Tian C, Li Q, Tian Y, Feng B, Xiao B. 2015. A quantitative protocol for rapid analysis of cell density and size distribution of pelagic and benthic Microcystis colonies by FlowCam. J. Appl. Phycol. 27:711–720. doi:10.1007/s10811-014-0352-0.
  • Wassenaar LI, Rao YR. 2012. Lake Winnipeg: the forgotten great lake. J Great Lakes Res. 38:1–5. doi:10.1016/j.jglr.2012.04.004.
  • Xia Z, Johansson ML, Gao Y, Zhang L, Haffner GD, MacIsaac HJ, Zhan A. 2018. Conventional versus real-time quantitative PCR for rare species detection. Ecol Evol. 8(23):11799–11807. doi:10.1002/ece3.4636.
  • Zaiko A, Martinez JL, Ardura A, Clusa L, Borrell YJ, Samuiloviene A, Roca A, Garcia-Vazquez E. 2015. Detecting nuisance species using NGST: methodology shortcomings and possible application in ballast water monitoring. Mar Environ Res. 112(Pt B):64–72. doi:10.1016/j.marenvres.2015.07.002.
  • Zhao J, Rao YR, Wassenaar LI. 2012. Numerical modeling of hydrodynamics and tracer dispersion during ice-free period in Lake Winnipeg. J Great Lakes Res. 38:147–157. doi:10.1016/j.jglr.2011.02.005.