Camilli R, Reddy CM, Yoerger DR et al (2010) Tracking hydrocarbon plume transport and
biodegradation at deepwater horizon. Science 330:201–204. https://doi.org/10.1126/science.
1195223
Camphuysen CJ (2007) Chronic oil pollution in Europe, a status report. Report Royal Netherlands
Institute for Sea Research, commissioned by International Fund for Animal Welfare (IFAW),
Brussels, p 85
Catania V, Santisi S, Signa G et al (2015) Intrinsic bioremediation potential of a chronically
polluted marine coastal area. Mar Pollut Bull 99:138–149. https://doi.org/10.1016/j.
marpolbul.2015.07.042
Cerniglia CE (1981) Aromatic hydrocarbons: metabolism by bacteria, fungi and algae. In:
Hodgson E, Bend JR, Philpot RM (eds) Reviews in biochemical toxicology. Elsevier/North
Holland, New York, pp 321–361
Cerniglia C (1992) Biodegradation of polycyclic aromatic hydrocarbons. Biodegradation
3:351–368. https://doi.org/10.1007/BF00129093
Cerniglia CE, Gibson DT, Van Baalen C (1979) Algal oxidation of aromatic hydrocarbons:
formation of 1-naphthol from naphthalene by Agmenellum quadruplicatum strain PR-6.
Biochem Biophys Res Comm 88:50–58. https://doi.org/10.1016/0006-291X(79)91695-4
Cerniglia C, Van Baalen C, Gibson DT (1980a) Metabolism of naphthalene by the cyanobacterium
Oscillatoria sp., strain JCM. Microbiology 116:485–494. https://doi.org/10.1099/00221287116-2-485
Cerniglia CE, Gibson DT, Van Baalen C (1980b) Oxidation of naphthalene by cyanobacteria and
microalgae. J of Gen Microbiol 116:495–500. https://doi.org/10.1099/00221287-116-2-495
Cerniglia CE, Van Baalen C, Gibson DT (1980c) Oxidation of biphenyl by the cyanobacterium
Oscillatoria sp. strain JCM. Arch Microbiol 125:203–209. https://doi.org/10.1007/BF00446877
Cerniglia CE, Gibson DT, Van Baalen C (1982) Naphthalene metabolism by diatoms isolated from
the Kachemak Bay Region of Alaska. J Gen Microbiol 128:987–990. https://doi.org/10.1099/
00221287-128-5-987
Chandra S, Sharma R, Singh K et al (2013) Application of bioremediation technology in the
environment contaminated with petroleum hydrocarbon. Ann Microbiol 63:417–431. https://
doi.org/10.1007/s13213-012-0543-3
Chaillan F, Gugger M, Saliot A, Coute A, Oudot J (2006) Role of cyanobacteria in the biodegradation of crude oil by a tropical cyanobacterial mat. Chemosphere 62(10):1574–1582
Chaudhry Q, Blom-Zandstra M, Gupta S et al (2005) Utilising the synergy between plants and
rhizosphere microorganisms to enhance breakdown of organic pollutants in the environment.
Environ Sci Pollut Res 12:34–48. https://doi.org/10.1065/espr2004.08.213
Clarens A, Resurreccion E, White M et al (2010) Environmental life cycle comparison of algae to
other bioenergy feedstocks. Environ Sci Technol 44:1813–1819. https://doi.org/10.1021/
es902838n
Clark RC, Brown DW (1977) Petroleum: properties and analyses in biotic and abiotic systems. In:
Malins DC (ed) Effects of petroleum on arctic and subarctic marine environments and organisms, vol I. Academic Press, New York, pp 1–89
Cohen Y (2002) Bioremediation of oil by marine microbial mats. Int Microbiol 5:189–193. https://
doi.org/10.1007/s10123-002-0089-5
Cole JJ (1982) Interactions between bacteria and algae in aquatic ecosystems. Ann rev Ecol sys
13:291– 314. https://doi.org/10.1146/annurev.es.13.110182.001451
Cooney JJ, Silver SA, Beck EA (1985) Factor influencing hydrocarbon degradation at three
freshwater lakes. Microb Ecol 11:127–137. https://doi.org/10.1007/BF02010485
Coulon FBA, McKew AM, Osborn TJ et al (2007) Effects of temperature and biostimulation on
oil-degrading microbial communities in temperate estuarine waters. Environ Microbiol
9:177–186. https://doi.org/10.1111/j.1462-2920.2006.01126.x
Coulon F, Chronoupolou P-M, Fahy A et al (2012) Central role of dynamic tidal biofilms dominated
by aerobic hydrocarbonoclastic bacteria and diatoms in the biodegradation of hydrocarbons in
216
R. Denaro et al.
biodegradation at deepwater horizon. Science 330:201–204. https://doi.org/10.1126/science.
1195223
Camphuysen CJ (2007) Chronic oil pollution in Europe, a status report. Report Royal Netherlands
Institute for Sea Research, commissioned by International Fund for Animal Welfare (IFAW),
Brussels, p 85
Catania V, Santisi S, Signa G et al (2015) Intrinsic bioremediation potential of a chronically
polluted marine coastal area. Mar Pollut Bull 99:138–149. https://doi.org/10.1016/j.
marpolbul.2015.07.042
Cerniglia CE (1981) Aromatic hydrocarbons: metabolism by bacteria, fungi and algae. In:
Hodgson E, Bend JR, Philpot RM (eds) Reviews in biochemical toxicology. Elsevier/North
Holland, New York, pp 321–361
Cerniglia C (1992) Biodegradation of polycyclic aromatic hydrocarbons. Biodegradation
3:351–368. https://doi.org/10.1007/BF00129093
Cerniglia CE, Gibson DT, Van Baalen C (1979) Algal oxidation of aromatic hydrocarbons:
formation of 1-naphthol from naphthalene by Agmenellum quadruplicatum strain PR-6.
Biochem Biophys Res Comm 88:50–58. https://doi.org/10.1016/0006-291X(79)91695-4
Cerniglia C, Van Baalen C, Gibson DT (1980a) Metabolism of naphthalene by the cyanobacterium
Oscillatoria sp., strain JCM. Microbiology 116:485–494. https://doi.org/10.1099/00221287116-2-485
Cerniglia CE, Gibson DT, Van Baalen C (1980b) Oxidation of naphthalene by cyanobacteria and
microalgae. J of Gen Microbiol 116:495–500. https://doi.org/10.1099/00221287-116-2-495
Cerniglia CE, Van Baalen C, Gibson DT (1980c) Oxidation of biphenyl by the cyanobacterium
Oscillatoria sp. strain JCM. Arch Microbiol 125:203–209. https://doi.org/10.1007/BF00446877
Cerniglia CE, Gibson DT, Van Baalen C (1982) Naphthalene metabolism by diatoms isolated from
the Kachemak Bay Region of Alaska. J Gen Microbiol 128:987–990. https://doi.org/10.1099/
00221287-128-5-987
Chandra S, Sharma R, Singh K et al (2013) Application of bioremediation technology in the
environment contaminated with petroleum hydrocarbon. Ann Microbiol 63:417–431. https://
doi.org/10.1007/s13213-012-0543-3
Chaillan F, Gugger M, Saliot A, Coute A, Oudot J (2006) Role of cyanobacteria in the biodegradation of crude oil by a tropical cyanobacterial mat. Chemosphere 62(10):1574–1582
Chaudhry Q, Blom-Zandstra M, Gupta S et al (2005) Utilising the synergy between plants and
rhizosphere microorganisms to enhance breakdown of organic pollutants in the environment.
Environ Sci Pollut Res 12:34–48. https://doi.org/10.1065/espr2004.08.213
Clarens A, Resurreccion E, White M et al (2010) Environmental life cycle comparison of algae to
other bioenergy feedstocks. Environ Sci Technol 44:1813–1819. https://doi.org/10.1021/
es902838n
Clark RC, Brown DW (1977) Petroleum: properties and analyses in biotic and abiotic systems. In:
Malins DC (ed) Effects of petroleum on arctic and subarctic marine environments and organisms, vol I. Academic Press, New York, pp 1–89
Cohen Y (2002) Bioremediation of oil by marine microbial mats. Int Microbiol 5:189–193. https://
doi.org/10.1007/s10123-002-0089-5
Cole JJ (1982) Interactions between bacteria and algae in aquatic ecosystems. Ann rev Ecol sys
13:291– 314. https://doi.org/10.1146/annurev.es.13.110182.001451
Cooney JJ, Silver SA, Beck EA (1985) Factor influencing hydrocarbon degradation at three
freshwater lakes. Microb Ecol 11:127–137. https://doi.org/10.1007/BF02010485
Coulon FBA, McKew AM, Osborn TJ et al (2007) Effects of temperature and biostimulation on
oil-degrading microbial communities in temperate estuarine waters. Environ Microbiol
9:177–186. https://doi.org/10.1111/j.1462-2920.2006.01126.x
Coulon F, Chronoupolou P-M, Fahy A et al (2012) Central role of dynamic tidal biofilms dominated
by aerobic hydrocarbonoclastic bacteria and diatoms in the biodegradation of hydrocarbons in
216
R. Denaro et al.
