Transfert aux micro-organismes
95
longue (79Se). ARET-Actualités. Numéro
spécial « Effet des toxiques chimiques/
radioactifs sur le vivant » 36-41.
Chasteen TG, Bentley R (2003). Biomethylation of selenium and tellurium: microorganisms and plants. Chern Rev, 103 : 1-25.
Connan O, Tessier E, Maro D, Amouroux D,
Hébert D, Rozet M, Voiseux C, Solier L
(2008). Water to atmosphere fluxes of 1311
in relation with alkyl-iodide compounds
from the Seine Estuary (France). J Environ
Radioact, 99 : 1102-1110.
Cournoyer B, Watanabe Y, Vivian A (1998).
A tellurite-resistance genetic determinant
from phytopathogenic pseudomonads
encodes a thiopurine methyltransferase:
evidence of a widely-conserved family of
methyltransferases. Biochim Biophys Acta,
1397 : 161-168.
DeMoll-Decker H, Macy JM (1993). The periplasmic nitrite reductase of Thauera selenatis may catalyze the reduction of selenite
to elemental selenium. Arch Microbiol,
160 : 241-247.
de Souza MP, Amini A, Dojka MA, Pickering
1J, Dawson SC, Pace NR, Terry N (2001).
Identification and Characterization of Bacteria in a Selenium-Contaminated Hypersaline Evaporation Pond. Appl Environ
Microbiol, 67 : 3785-3794.
Deneux-Mustin S, Roussel-Debet S, Mustin
C, Henner P, Munier-Lamy C, Colle C,
Berthelin J, Garnier-Laplace J, Leyval C
(2003). Mobilité et transfert racinaire des
éléments en traces : influence des microorganismes du sol. Tec & Doc Lavoisier,
Paris.
Dohnalkova A, Marshall MJ, Kennedy DW,
Gorby YA, Shi L, Beliaev A, Apkarian R,
Fredrickson JK (2005). The role of bacterial exopolymers in metal sorption and
reduction. Microsc Microanal, 11 : 116117.
Dowdle PR, Oremland RS (1998). Microbial
oxidation of elemental selenium in soil
slurries and bacterial cultures. Environ Sci
Technol, 32 : 3749-3755.
Dungan RS, Frankenberger WT (1998).
Reduction of selenite to elemental sélénium by Enterobacter cloacae SLDla-1.
J Environ Qual, 27 : 1301-1306.
Dungan RS, Yates SR, Frankenberger WT
(2003). Transformations of sélénate and
selenite by Stenotrophomonas maltophilia
isolated from a seleniferous agricultural
drainage pond sediment. Environ Microbiol, 5 : 287-295.
Dupré de Boulois H, Joner EJ, Leyval C,
Jakobsen I, Chen BD, Roos P, Thiry
Y, Rufyikiri G, Delvaux B, Declerck S
(2008a). Impact of arbuscular mycorrhizal
fungi on uranium accumulation by plants.
J Environ Radioact, 99 : 775-784.
Dupré de Boulois H, Joner EJ, Leyval C,
Jakobsen I, Chen BD, Roos P, Thiry
Y, Rufyikiri G, Delvaux B, Declerck S
(2008b). Role and influence of mycorrhizal
fungi on radiocesium accumulation by
plants. J Environ Radioact, 99 : 785-800.
Frankenberger Jr WT, Engberg RA (1998).
Environmental Chemistry of Selenium.
Marcel Dekker, New York.
Garbisu C, Gonzalez S, Yang WH, Yee BC,
Carlson DL, Yee A, Smith NR, Otero R,
Buchanan B, Leighton T (1995). Physiological mechanisms regulating the conversion of selenite to elemental selenium by
Bacillus subtilis. Biofactors, 5 : 29-37.
Ghosh A, Mohod AM, Paknikar KM, Jain RK
(2008). Isolation and characterization of selenite- and selenate-tolerant microorganisms
from selenium-contaminated sites. World J
Microbiol Biotechnol, 24 : 1607-1611.
Gillow JB, Dunn M, Francis AJ, Lucero DA,
Papenguth HW (2000). The potential of
subterranean microbes in facilitating actinide migration at the Grimsel Test Site
and Waste Isolation Pilot Plant. Radiochim
Acta, 88 : 769-774.
Harrison G, Curie C, Laishley EJ (1984).
Purification and characterization of an
inducible dissimilatory type sulfite reductase from Clostridium pasteurianum. Arch
Microbiol, 138 : 72-78.
Harper RM, Kantar C, Honeyman BD (2008).
Binding of Pu(IV) to galacturonic acid and
extracellular polymeric substances (EPS)
from Shewanella putrefaciens, Clostridium sp. and Pseudomonas fluorescens.
Radiochim Acta, 96 : 753-762.
Hau HH, Gilbert A, Coursolle D, Gralnick
JA (2008). Mechanism and Consequen-
95
longue (79Se). ARET-Actualités. Numéro
spécial « Effet des toxiques chimiques/
radioactifs sur le vivant » 36-41.
Chasteen TG, Bentley R (2003). Biomethylation of selenium and tellurium: microorganisms and plants. Chern Rev, 103 : 1-25.
Connan O, Tessier E, Maro D, Amouroux D,
Hébert D, Rozet M, Voiseux C, Solier L
(2008). Water to atmosphere fluxes of 1311
in relation with alkyl-iodide compounds
from the Seine Estuary (France). J Environ
Radioact, 99 : 1102-1110.
Cournoyer B, Watanabe Y, Vivian A (1998).
A tellurite-resistance genetic determinant
from phytopathogenic pseudomonads
encodes a thiopurine methyltransferase:
evidence of a widely-conserved family of
methyltransferases. Biochim Biophys Acta,
1397 : 161-168.
DeMoll-Decker H, Macy JM (1993). The periplasmic nitrite reductase of Thauera selenatis may catalyze the reduction of selenite
to elemental selenium. Arch Microbiol,
160 : 241-247.
de Souza MP, Amini A, Dojka MA, Pickering
1J, Dawson SC, Pace NR, Terry N (2001).
Identification and Characterization of Bacteria in a Selenium-Contaminated Hypersaline Evaporation Pond. Appl Environ
Microbiol, 67 : 3785-3794.
Deneux-Mustin S, Roussel-Debet S, Mustin
C, Henner P, Munier-Lamy C, Colle C,
Berthelin J, Garnier-Laplace J, Leyval C
(2003). Mobilité et transfert racinaire des
éléments en traces : influence des microorganismes du sol. Tec & Doc Lavoisier,
Paris.
Dohnalkova A, Marshall MJ, Kennedy DW,
Gorby YA, Shi L, Beliaev A, Apkarian R,
Fredrickson JK (2005). The role of bacterial exopolymers in metal sorption and
reduction. Microsc Microanal, 11 : 116117.
Dowdle PR, Oremland RS (1998). Microbial
oxidation of elemental selenium in soil
slurries and bacterial cultures. Environ Sci
Technol, 32 : 3749-3755.
Dungan RS, Frankenberger WT (1998).
Reduction of selenite to elemental sélénium by Enterobacter cloacae SLDla-1.
J Environ Qual, 27 : 1301-1306.
Dungan RS, Yates SR, Frankenberger WT
(2003). Transformations of sélénate and
selenite by Stenotrophomonas maltophilia
isolated from a seleniferous agricultural
drainage pond sediment. Environ Microbiol, 5 : 287-295.
Dupré de Boulois H, Joner EJ, Leyval C,
Jakobsen I, Chen BD, Roos P, Thiry
Y, Rufyikiri G, Delvaux B, Declerck S
(2008a). Impact of arbuscular mycorrhizal
fungi on uranium accumulation by plants.
J Environ Radioact, 99 : 775-784.
Dupré de Boulois H, Joner EJ, Leyval C,
Jakobsen I, Chen BD, Roos P, Thiry
Y, Rufyikiri G, Delvaux B, Declerck S
(2008b). Role and influence of mycorrhizal
fungi on radiocesium accumulation by
plants. J Environ Radioact, 99 : 785-800.
Frankenberger Jr WT, Engberg RA (1998).
Environmental Chemistry of Selenium.
Marcel Dekker, New York.
Garbisu C, Gonzalez S, Yang WH, Yee BC,
Carlson DL, Yee A, Smith NR, Otero R,
Buchanan B, Leighton T (1995). Physiological mechanisms regulating the conversion of selenite to elemental selenium by
Bacillus subtilis. Biofactors, 5 : 29-37.
Ghosh A, Mohod AM, Paknikar KM, Jain RK
(2008). Isolation and characterization of selenite- and selenate-tolerant microorganisms
from selenium-contaminated sites. World J
Microbiol Biotechnol, 24 : 1607-1611.
Gillow JB, Dunn M, Francis AJ, Lucero DA,
Papenguth HW (2000). The potential of
subterranean microbes in facilitating actinide migration at the Grimsel Test Site
and Waste Isolation Pilot Plant. Radiochim
Acta, 88 : 769-774.
Harrison G, Curie C, Laishley EJ (1984).
Purification and characterization of an
inducible dissimilatory type sulfite reductase from Clostridium pasteurianum. Arch
Microbiol, 138 : 72-78.
Harper RM, Kantar C, Honeyman BD (2008).
Binding of Pu(IV) to galacturonic acid and
extracellular polymeric substances (EPS)
from Shewanella putrefaciens, Clostridium sp. and Pseudomonas fluorescens.
Radiochim Acta, 96 : 753-762.
Hau HH, Gilbert A, Coursolle D, Gralnick
JA (2008). Mechanism and Consequen-
