Ihua, M.W.; Guihéneuf, F.; Mohammed, H.; Margassery, L.M.; Jackson, S.A.; Stengel, D.B.; Clarke, D.J.; Dobson, A.D.W.
Microbial Population Changes in Decaying Ascophyllum nodosum Result in Macroalgal-Polysaccharide-Degrading Bacteria with Potential Applicability in Enzyme-Assisted Extraction Technologies. Mar. Drugs 2019, 17, 200.
https://doi.org/10.3390/md17040200
AMA Style
Ihua MW, Guihéneuf F, Mohammed H, Margassery LM, Jackson SA, Stengel DB, Clarke DJ, Dobson ADW.
Microbial Population Changes in Decaying Ascophyllum nodosum Result in Macroalgal-Polysaccharide-Degrading Bacteria with Potential Applicability in Enzyme-Assisted Extraction Technologies. Marine Drugs. 2019; 17(4):200.
https://doi.org/10.3390/md17040200
Chicago/Turabian Style
Ihua, Maureen W., Freddy Guihéneuf, Halimah Mohammed, Lekha M. Margassery, Stephen A. Jackson, Dagmar B. Stengel, David J. Clarke, and Alan D. W. Dobson.
2019. "Microbial Population Changes in Decaying Ascophyllum nodosum Result in Macroalgal-Polysaccharide-Degrading Bacteria with Potential Applicability in Enzyme-Assisted Extraction Technologies" Marine Drugs 17, no. 4: 200.
https://doi.org/10.3390/md17040200
APA Style
Ihua, M. W., Guihéneuf, F., Mohammed, H., Margassery, L. M., Jackson, S. A., Stengel, D. B., Clarke, D. J., & Dobson, A. D. W.
(2019). Microbial Population Changes in Decaying Ascophyllum nodosum Result in Macroalgal-Polysaccharide-Degrading Bacteria with Potential Applicability in Enzyme-Assisted Extraction Technologies. Marine Drugs, 17(4), 200.
https://doi.org/10.3390/md17040200