4He MY, Li XY, Guo L, et al. 2010. Characterization and genomie analysis of chromate resistant and reducing Bacillus cereus strain SJI. BMC Microbiology, (10) : 221. 被引量:1
5He M, Li X, Liu H, et al. 2011. Characterization and genomic a- nalysis of a highly chromate resistant and reducing bacterial strain Ly- sinibacillusfusiformis ZC1. Journal of Hazardous Materials , 185 (2 - 3 ) : 682 - 688. 被引量:1
6Henne KL, Nakatsu CH, Thompson DK, et al. 2009. High - level chromate resistance in Arthrobacter sp. strain 171124 requires previous- ly uneharacterized accessory genes. BMC Microbiology, (9) :199. 被引量:1
7Hasin AI, Gurman SJ, Murphy LM, et al. 2010. Remediation of chromium(VI) by a methane -oxidizing bacterium. Environmental Science & Technology ,44( 1 ) : 400 -405. 被引量:1
8Kilic NK, Stensballe A, Qtz,,en DE, et al. 2010. Proteomic changes in response to chromium (VI) toxicity in Pseudomonas aerugina-a. Bioresource Technolo-', 101.(7) : 2134 -2140. 被引量:1
9Chourey K, Thompson MR, Morrell - Falvey J, et al. 2006. Global molecular and morphological effeetz of 24 -hour chromium(VI) ex- posure on Shewanella oneidensis MR - 1. Applied and Environmental Microbiology ,72 ( 9 ) : 6331 - 6344. 被引量:1
10Bencheikh - Latmani R, Williams SM, ttaucke L, et al. 2005. Global transcriptional profiling of Shewanella o-iden.-is MR - 1 dur- ing Cr(VI) and U(VI) reduction. Applied and Environmental Mi- crobiolo71 ( 11 ) : 7453 - 7,$60%%. 被引量:1
2Aiyar J, Flora S D, Wetterhahn K E. 1992. Reduction of chromium(Ⅵ) to chromium(Ⅴ) by rat liver cytosolic and microsomal fractions: is DTdiaphorase involved? [J]. Carcinogenesis, 13:1159-1166. 被引量:1
3Bandara L R , Kennedy S. 2002. Toxicoproteomics-a new preclinical tool[J]. Drug Discov Today,7:4112-4181. 被引量:1
4Bae W, Chen X. 2004. Proteomic study for the cellular responses to Cd2+ in Schizosaccharomyces pombe through amino acid-coded mass tagging and liquid chromatography tandem mass spectrometry [ J ]. Molecular & Cellular Proteomics, 3: 596-607. 被引量:1
5Brien T J, Ceryak S, Patierno S R. 2003. Complexities of chromium carcinogenesis: role of cellular response repair and recovery mechanisms [ J ]. Mutation Research, 533: 3-36. 被引量:1
6Chen D R, Mark W T, Mata J, et al. 2003. Global transcriptional responses of fission yeast to environmental stress [ J]. Molecular Biology of the Cell, 14:214-229. 被引量:1
7Dubrovskayal V A, Wetterhahn K E. 1998. Effects of Cr(Ⅵ) on the expression of the oxidative stress genes in human lung cells [ J ].Carcinogenesis, 19:1401-1407. 被引量:1
8Madesh M, Hajnóczky G. 2001. VDAC-dependent permeabilization of the outer mitochondrial membrane by superoxide induces rapid and massive cytochrome C release[J]. The Journal of Cell Biology, 155: 1003-1015. 被引量:1
9Rao P V, Krishna C M, Zigler J S. 1992. Identification and characterization of the enzymatic activity of zeta-crystallin from guinea pig lens. A novel NADPH: quinone oxidoreductase[ J]. J Biol Chem, 267: 96-102. 被引量:1
10Reynolds M, Peterson E, Quievryn G, et al. 2004. Human nucleotide excision repair efficiently removes chromium-DNA phosphate adducts and protects cells against chromate toxicity[J]. J Biol Chem, 279: 30419-30424. 被引量:1