224
Z. A. Danial Hariz and M. A. Noor Adelyna
Evans J, Jones R, Karvonen A, Millard L, Wendler J (2015) Living labs and co-production: university
campuses as platforms for sustainability science. Curr Opin Environ Sustain 16:1–6
Evans NT, Olds BP, Renshaw MA, Turner CR, Li Y, Jerde CL, Mahon AR, Pfrender ME, Lamberti
GA, Lodge DM (2016) Quantification of mesocosm fish and amphibian species diversity via
environmental DNA metabarcoding. Mol Ecol Resour 16:29–41
FAO (2016) The state of world fisheries and aquaculture 2016. Contributing to food security and
nutrition for all. Rome, 200 pp
Ficetola GF, Miaud C, Pompanon F, Taberlet P (2008) Species detection using environmental DNA
from water samples. Biol Let 4:423–425
Fisheries FAO (2011) Aquaculture department. 2013. Global aquaculture production statistics for
the year. Retrieved from http://www.fao.org/docrep/019/i3507t/i3507t.pdf
Foley JA, DeFries R, Asner GP, Barford C, Bonan G, Carpenter SR, Chapin FS, Coe MT, Daily GC,
Gibbs HK, Helkowski JH (2005) Global consequences of land use. Science 309(5734):570–574
Hankin DG, Reeves GH (1988) Estimating total fish abundance and total habitat area in small
streams based on visual estimation methods. Can J Fish Aquat Sci 45:834–844
Hebert PDN, Cywinska A, Ball SL (2003) Biological identifications through DNA barcodes. Proc
R Soc Lond B: Biol Sci 270:313–321
Jerde CL, Chadderton WL, Mahon AR, Renshaw MA, Corush J, Budny ML, Mysorekar S, Lodge
DM (2013) Detection of Asian carp DNA as part of a Great Lakes basin-wide surveillance
program. Can J Fish Aquat Sci 70:522–526
Kelly RP, Port JA, Yamahara KM, Crowder LB (2014) Using environmental DNA to census marine
fishes in a large mesocosm. PLoS ONE 9:e86175
Klymus KE, Richter CA, Chapman DC, Paukert C (2015) Quantification of eDNA shedding rates
from invasive bighead carp Hypophthalmichthys nobilis and silver carp Hypophthalmichthys
molitrix. Biol Cons 183:77–84
Laramie MB, Pilliod DS, Goldberg CS (2015) Characterizing the distribution of an endangered
salmonid using environmental DNA analysis. Biol Conserv 183:29–37
Miya M, Sato Y, Fukunaga T, Sado T, Poulsen JY, Sato K, Minamoto T, Yamamoto S, Yamanaka H,
Araki H (2015) MiFish, a set of universal PCR primers for metabarcoding environmental DNA
from fishes: detection of more than 230 subtropical marine species. R Soc Open Sci 2:150088
Pedersen MW, Overballe-Petersen S, Ermini L, Der Sarkissian C, Haile J, Hellstrom M, Spens J,
Thomsen PF, Bohmann K, Cappellini E (2015) Ancient and modern environmental DNA. Phil
Trans R Soc B 370:20130383
Pilliod DS, Goldberg CS, Arkle RS, Waits LP (2013) Estimating occupancy and abundance of
stream amphibians using environmental DNA from filtered water samples. Can J Fish Aquat Sci
70:1123–1130
Rees HC, Maddison BC, Middleditch DJ, Patmore JRM, Gough KC (2014) The detection of aquatic
animal species using environmental DNAña review of eDNA as a survey tool in ecology. J Appl
Ecol 51:1450–1459
Rottmann RW, Francis-Floyd R, Durborow R (1992) The role of stress in fish disease. Southern
Regional Aquaculture Center, Stoneville, MS, p 474
Schmeller DS, Böhm M, Arvanitidis C, Barber-Meyer S, Brummitt N, Chandler M, Chatzinikolaou
E, Costello MJ, Ding H, GarcÌa-Moreno J (2017) Building capacity in biodiversity monitoring
at the global scale. Biodivers Conserv 26:2765–2790
Schnell IB, Thomsen PF, Wilkinson N, Rasmussen M, Jensen LRD, Willerslev E, Bertelsen
MF, Gilbert MTP (2012) Screening mammal biodiversity using DNA from leeches. Curr Biol
22:R262–R263
Shaw JLA, Clarke LJ, Wedderburn SD, Barnes TC, Weyrich LS, Cooper A (2016) Comparison of
environmental DNA metabarcoding and conventional fish survey methods in a river system. Biol
Cons 197:131–138
Shaw JLA, Weyrich L, Cooper Alan (2017) Using environmental (e) DNA sequencing for aquatic
biodiversity surveys: a beginnerís guide. Mar Freshw Res 68:20–33
Z. A. Danial Hariz and M. A. Noor Adelyna
Evans J, Jones R, Karvonen A, Millard L, Wendler J (2015) Living labs and co-production: university
campuses as platforms for sustainability science. Curr Opin Environ Sustain 16:1–6
Evans NT, Olds BP, Renshaw MA, Turner CR, Li Y, Jerde CL, Mahon AR, Pfrender ME, Lamberti
GA, Lodge DM (2016) Quantification of mesocosm fish and amphibian species diversity via
environmental DNA metabarcoding. Mol Ecol Resour 16:29–41
FAO (2016) The state of world fisheries and aquaculture 2016. Contributing to food security and
nutrition for all. Rome, 200 pp
Ficetola GF, Miaud C, Pompanon F, Taberlet P (2008) Species detection using environmental DNA
from water samples. Biol Let 4:423–425
Fisheries FAO (2011) Aquaculture department. 2013. Global aquaculture production statistics for
the year. Retrieved from http://www.fao.org/docrep/019/i3507t/i3507t.pdf
Foley JA, DeFries R, Asner GP, Barford C, Bonan G, Carpenter SR, Chapin FS, Coe MT, Daily GC,
Gibbs HK, Helkowski JH (2005) Global consequences of land use. Science 309(5734):570–574
Hankin DG, Reeves GH (1988) Estimating total fish abundance and total habitat area in small
streams based on visual estimation methods. Can J Fish Aquat Sci 45:834–844
Hebert PDN, Cywinska A, Ball SL (2003) Biological identifications through DNA barcodes. Proc
R Soc Lond B: Biol Sci 270:313–321
Jerde CL, Chadderton WL, Mahon AR, Renshaw MA, Corush J, Budny ML, Mysorekar S, Lodge
DM (2013) Detection of Asian carp DNA as part of a Great Lakes basin-wide surveillance
program. Can J Fish Aquat Sci 70:522–526
Kelly RP, Port JA, Yamahara KM, Crowder LB (2014) Using environmental DNA to census marine
fishes in a large mesocosm. PLoS ONE 9:e86175
Klymus KE, Richter CA, Chapman DC, Paukert C (2015) Quantification of eDNA shedding rates
from invasive bighead carp Hypophthalmichthys nobilis and silver carp Hypophthalmichthys
molitrix. Biol Cons 183:77–84
Laramie MB, Pilliod DS, Goldberg CS (2015) Characterizing the distribution of an endangered
salmonid using environmental DNA analysis. Biol Conserv 183:29–37
Miya M, Sato Y, Fukunaga T, Sado T, Poulsen JY, Sato K, Minamoto T, Yamamoto S, Yamanaka H,
Araki H (2015) MiFish, a set of universal PCR primers for metabarcoding environmental DNA
from fishes: detection of more than 230 subtropical marine species. R Soc Open Sci 2:150088
Pedersen MW, Overballe-Petersen S, Ermini L, Der Sarkissian C, Haile J, Hellstrom M, Spens J,
Thomsen PF, Bohmann K, Cappellini E (2015) Ancient and modern environmental DNA. Phil
Trans R Soc B 370:20130383
Pilliod DS, Goldberg CS, Arkle RS, Waits LP (2013) Estimating occupancy and abundance of
stream amphibians using environmental DNA from filtered water samples. Can J Fish Aquat Sci
70:1123–1130
Rees HC, Maddison BC, Middleditch DJ, Patmore JRM, Gough KC (2014) The detection of aquatic
animal species using environmental DNAña review of eDNA as a survey tool in ecology. J Appl
Ecol 51:1450–1459
Rottmann RW, Francis-Floyd R, Durborow R (1992) The role of stress in fish disease. Southern
Regional Aquaculture Center, Stoneville, MS, p 474
Schmeller DS, Böhm M, Arvanitidis C, Barber-Meyer S, Brummitt N, Chandler M, Chatzinikolaou
E, Costello MJ, Ding H, GarcÌa-Moreno J (2017) Building capacity in biodiversity monitoring
at the global scale. Biodivers Conserv 26:2765–2790
Schnell IB, Thomsen PF, Wilkinson N, Rasmussen M, Jensen LRD, Willerslev E, Bertelsen
MF, Gilbert MTP (2012) Screening mammal biodiversity using DNA from leeches. Curr Biol
22:R262–R263
Shaw JLA, Clarke LJ, Wedderburn SD, Barnes TC, Weyrich LS, Cooper A (2016) Comparison of
environmental DNA metabarcoding and conventional fish survey methods in a river system. Biol
Cons 197:131–138
Shaw JLA, Weyrich L, Cooper Alan (2017) Using environmental (e) DNA sequencing for aquatic
biodiversity surveys: a beginnerís guide. Mar Freshw Res 68:20–33
