Environmental DNA (eDNA) Metabarcoding as a Sustainable Tool …
225
Simpfendorfer CA, Kyne PM, Noble TH, Goldsbury J, Basiita RK, Lindsay R, Shields A, Perry
C, Jerry DR (2016) Environmental DNA detects critically endangered largetooth sawfish in the
wild. Endangered Species Res 30:109–116
Stat M, Huggett MJ, Bernasconi R, DiBattista JD, Berry TE, Newman SJ, Harvey ES, Bunce M
(2017) Ecosystem biomonitoring with eDNA: metabarcoding across the tree of life in a tropical
marine environment. Sci Rep 7(1):12240
Stoeckle MY, Soboleva L, Charlop-Powers Z (2017) Aquatic environmental DNA detects seasonal
fish abundance and habitat preference in an urban estuary. PLoS ONE 12:e0175186
Strayer DL, Eviner VT, Jeschke JM, Pace ML (2006) Understanding the long-term effects of species
invasions. Trends Ecol Evol 21(11):645–651
Taberlet P, Coissac E, Hajibabaei M, Rieseberg LH (2012) Environmental DNA. Mol Ecol
21:1789–1793
Takahara T, Minamoto T, Doi H (2013) Using environmental DNA to estimate the distribution of
an invasive fish species in ponds. PLoS ONE 8:e56584
Thomsen PF, Kielgast J, Iversen LL, Møller PR, Rasmussen M, Willerslev E (2012a) Detection
of a diverse marine fish fauna using environmental DNA from seawater samples. PLoS ONE
7:e41732
Thomsen P, Kielgast J, Iversen LL, Wiuf C, Rasmussen M, Gilbert MTP, Orlando L, Willerslev
E (2012b) Monitoring endangered freshwater biodiversity using environmental DNA. Mol Ecol
21:2565–2573
Turak E, Harrison I, Dudgeon D, Abell R, Bush A, Darwall W, Finlayson CM, Ferrier S, Freyhof
J, Hermoso V (2016) Essential biodiversity variables for measuring change in global freshwater
biodiversity. Biol. Conserv. 213(2017):272–279
Van Geenhuizen M (2013) From ivory tower to living lab: accelerating the use of university knowledge. Environ Plann C: Govern Policy 31(6):1115–1132
WWF, World Wildlife Fund (2014) Living planet report. Retrieved from: https://www.wwf.or.jp/
activities/data/WWF_LPR_2014.pdf
225
Simpfendorfer CA, Kyne PM, Noble TH, Goldsbury J, Basiita RK, Lindsay R, Shields A, Perry
C, Jerry DR (2016) Environmental DNA detects critically endangered largetooth sawfish in the
wild. Endangered Species Res 30:109–116
Stat M, Huggett MJ, Bernasconi R, DiBattista JD, Berry TE, Newman SJ, Harvey ES, Bunce M
(2017) Ecosystem biomonitoring with eDNA: metabarcoding across the tree of life in a tropical
marine environment. Sci Rep 7(1):12240
Stoeckle MY, Soboleva L, Charlop-Powers Z (2017) Aquatic environmental DNA detects seasonal
fish abundance and habitat preference in an urban estuary. PLoS ONE 12:e0175186
Strayer DL, Eviner VT, Jeschke JM, Pace ML (2006) Understanding the long-term effects of species
invasions. Trends Ecol Evol 21(11):645–651
Taberlet P, Coissac E, Hajibabaei M, Rieseberg LH (2012) Environmental DNA. Mol Ecol
21:1789–1793
Takahara T, Minamoto T, Doi H (2013) Using environmental DNA to estimate the distribution of
an invasive fish species in ponds. PLoS ONE 8:e56584
Thomsen PF, Kielgast J, Iversen LL, Møller PR, Rasmussen M, Willerslev E (2012a) Detection
of a diverse marine fish fauna using environmental DNA from seawater samples. PLoS ONE
7:e41732
Thomsen P, Kielgast J, Iversen LL, Wiuf C, Rasmussen M, Gilbert MTP, Orlando L, Willerslev
E (2012b) Monitoring endangered freshwater biodiversity using environmental DNA. Mol Ecol
21:2565–2573
Turak E, Harrison I, Dudgeon D, Abell R, Bush A, Darwall W, Finlayson CM, Ferrier S, Freyhof
J, Hermoso V (2016) Essential biodiversity variables for measuring change in global freshwater
biodiversity. Biol. Conserv. 213(2017):272–279
Van Geenhuizen M (2013) From ivory tower to living lab: accelerating the use of university knowledge. Environ Plann C: Govern Policy 31(6):1115–1132
WWF, World Wildlife Fund (2014) Living planet report. Retrieved from: https://www.wwf.or.jp/
activities/data/WWF_LPR_2014.pdf
