Transfert aux micro-organismes
97
Roux M, Sarret G, Pignot-Paintrand I, Fontecave M, Coves J (2001). Mobilization of
selenite by Ralstonia metallidurans CH34.
Appl Environ Microbiol, 67: 769-773.
Sabaty M, Avazeri C, Pignol D, Vermeglio A
(2001). Characterization of the reduction of
selenate and tellurite by nitrate reductases.
Appl Environ Microbiol, 67 : 5122-5126.
Schroder I, Rech S, Krafft T, Macy JM (1997).
Purification and characterization of the
selenate reductase from Thauera selenatis.
J Biol Chern, 272 : 23765-23768.
Shelobolina ES, Coppi MV, Korenevsky AA,
DiDonato LN, Sullivan SA, Konishi H, Xu
H, Leang C, Butler JE, Kim B, Lovley DR
(2007). Importance of c-type cytochromes
for Lf(VI) reduction by Geobacter sulfurreducens. BMC Microbiol, 7 : 16.
Siddique T, Okeke BC, Zhang Y, Arshad M,
Han SK, Frankenberger Jr. WT (2005).
Bacterial diversity in selenium reduction of
agricultural drainage water amended with
rice straw. J Environ Qual, 34 : 217-226.
Stolz JF, Gugliuzza T, Blum JS, Oremland
RS, Murillo FM (1997). Differential cytochrome content and reductase activity in
Geospirillum barnesii strain SES3. Arch
Microbiol, 167 : 1-5.
Suzuki Y, Kelly SD, Kemner KM, Banfield JF
(2005). Direct microbial reduction and subsequent preservation of uranium in natural
near surface sediment. Applied Environ
Microbiol, 71 : 1790-1797.
Switzer Blum J, Burns Bindi A, Buzzeli J,
Stolz JF, Oremland RS (1998). Bacillus
arsenicoselenatis sp. nov., and Bacillus
selenitireducens, sp. nov.: two haloalkaliphiles from Mono Lake, California that
respire oxyanions of selenium and arsenic.
Arch Microbiol, 171 : 19-30.
Terry N, Zayed AM, de Souza MP, Tarun AS
(2000). Selenium in higher plants. Annu
Rev Plant Physiol Plant Mol Biol, 51 : 401 -
432.
Wall JD, Krumholz LR (2006). Uranium
reduction. Annu Rev Microbiol, 60 : 14966.
Watts CA, Ridley H, Condie KL, Leaver JT,
Richardson DJ, Butler CS (2003). Selenate reduction by Enterobacter cloacae
SLDla-1 is catalysed by a molybdenumdependent membrane-bound enzyme that is
distinct from the membrane-bound nitrate
reductase. FEMS Microbiol Lett, 228 :
273-279.
Wu J, Norvell WA, Welch RM (2006). Kriging
on highly skewed data for dtpa-extractable
soil Zn with auxiliary information for ph
and organic carbon. Geoderma, 134 : 187199.
Yanke LJ, Bryant RD, Laishley EJ (1995).
Hydrogenase (I) of Clostridium pasteurianum functions a novel selenite reductase.
Anaerobe, 1 : 61-67.
Zhang YC, Frankenberger Jr. WT (1999).
Effect of soil moisture, depth, and organic
amendments on selenium volatilization.
J Environ Qual, 28 : 1321-1326.
Zhdanova NN, Tugay T, Dighton J, Zheltonozhsky V, McDermott P (2004). Ionizing
radiation attracts soil fungi. Mycol Res,
108 : 1089-1096.
97
Roux M, Sarret G, Pignot-Paintrand I, Fontecave M, Coves J (2001). Mobilization of
selenite by Ralstonia metallidurans CH34.
Appl Environ Microbiol, 67: 769-773.
Sabaty M, Avazeri C, Pignol D, Vermeglio A
(2001). Characterization of the reduction of
selenate and tellurite by nitrate reductases.
Appl Environ Microbiol, 67 : 5122-5126.
Schroder I, Rech S, Krafft T, Macy JM (1997).
Purification and characterization of the
selenate reductase from Thauera selenatis.
J Biol Chern, 272 : 23765-23768.
Shelobolina ES, Coppi MV, Korenevsky AA,
DiDonato LN, Sullivan SA, Konishi H, Xu
H, Leang C, Butler JE, Kim B, Lovley DR
(2007). Importance of c-type cytochromes
for Lf(VI) reduction by Geobacter sulfurreducens. BMC Microbiol, 7 : 16.
Siddique T, Okeke BC, Zhang Y, Arshad M,
Han SK, Frankenberger Jr. WT (2005).
Bacterial diversity in selenium reduction of
agricultural drainage water amended with
rice straw. J Environ Qual, 34 : 217-226.
Stolz JF, Gugliuzza T, Blum JS, Oremland
RS, Murillo FM (1997). Differential cytochrome content and reductase activity in
Geospirillum barnesii strain SES3. Arch
Microbiol, 167 : 1-5.
Suzuki Y, Kelly SD, Kemner KM, Banfield JF
(2005). Direct microbial reduction and subsequent preservation of uranium in natural
near surface sediment. Applied Environ
Microbiol, 71 : 1790-1797.
Switzer Blum J, Burns Bindi A, Buzzeli J,
Stolz JF, Oremland RS (1998). Bacillus
arsenicoselenatis sp. nov., and Bacillus
selenitireducens, sp. nov.: two haloalkaliphiles from Mono Lake, California that
respire oxyanions of selenium and arsenic.
Arch Microbiol, 171 : 19-30.
Terry N, Zayed AM, de Souza MP, Tarun AS
(2000). Selenium in higher plants. Annu
Rev Plant Physiol Plant Mol Biol, 51 : 401 -
432.
Wall JD, Krumholz LR (2006). Uranium
reduction. Annu Rev Microbiol, 60 : 14966.
Watts CA, Ridley H, Condie KL, Leaver JT,
Richardson DJ, Butler CS (2003). Selenate reduction by Enterobacter cloacae
SLDla-1 is catalysed by a molybdenumdependent membrane-bound enzyme that is
distinct from the membrane-bound nitrate
reductase. FEMS Microbiol Lett, 228 :
273-279.
Wu J, Norvell WA, Welch RM (2006). Kriging
on highly skewed data for dtpa-extractable
soil Zn with auxiliary information for ph
and organic carbon. Geoderma, 134 : 187199.
Yanke LJ, Bryant RD, Laishley EJ (1995).
Hydrogenase (I) of Clostridium pasteurianum functions a novel selenite reductase.
Anaerobe, 1 : 61-67.
Zhang YC, Frankenberger Jr. WT (1999).
Effect of soil moisture, depth, and organic
amendments on selenium volatilization.
J Environ Qual, 28 : 1321-1326.
Zhdanova NN, Tugay T, Dighton J, Zheltonozhsky V, McDermott P (2004). Ionizing
radiation attracts soil fungi. Mycol Res,
108 : 1089-1096.
