Identification and Analysis of a Novel Gene Cluster Involves in Fe2+ Oxidation in Acidithiobacillus ferrooxidans ATCC 23270, a Typical Biomining Acidophile

被引:0
|
作者
Chenbing Ai
Yuting Liang
Bo Miao
Miao Chen
Weimin Zeng
Guanzhou Qiu
机构
[1] Central South University,School of Minerals Processing and Bioengineering
[2] Central South University,Key Laboratory of Biometallurgy of Ministry of Education
[3] CSIRO Process Science and Engineering,undefined
来源
Current Microbiology | 2018年 / 75卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Iron-oxidizing Acidithiobacillus spp. are applied worldwide in biomining industry to extract metals from sulfide minerals. They derive energy for survival through Fe2+ oxidation and generate Fe3+ for the dissolution of sulfide minerals. However, molecular mechanisms of their iron oxidation still remain elusive. A novel two-cytochrome-encoding gene cluster (named tce gene cluster) encoding a high-molecular-weight cytochrome c (AFE_1428) and a c4-type cytochrome c552 (AFE_1429) in A. ferrooxidans ATCC 23270 was first identified in this study. Bioinformatic analysis together with transcriptional study showed that AFE_1428 and AFE_1429 were the corresponding paralog of Cyc2 (AFE_3153) and Cyc1 (AFE_3152) which were encoded by the extensively studied rus operon and had been proven involving in ferrous iron oxidation. Both AFE_1428 and AFE_1429 contained signal peptide and the classic heme-binding motif(s) as their corresponding paralog. The modeled structure of AFE_1429 showed high resemblance to Cyc1. AFE_1428 and AFE_1429 were preferentially transcribed as their corresponding paralogs in the presence of ferrous iron as sole energy source as compared with sulfur. The tce gene cluster is highly conserved in the genomes of four phylogenetic-related A. ferrooxidans strains that were originally isolated from different sites separated with huge geographical distance, which further implies the importance of this gene cluster. Collectively, AFE_1428 and AFE_1429 involve in Fe2+ oxidation like their corresponding paralog by integrating with the metalloproteins encoded by rus operon. This study provides novel insights into the Fe2+ oxidation mechanism in Fe2+-oxidizing A. ferrooxidans ssp.
引用
收藏
页码:818 / 826
页数:8
相关论文
共 13 条
  • [1] Identification and Analysis of a Novel Gene Cluster Involves in Fe2+ Oxidation in Acidithiobacillus ferrooxidans ATCC 23270, a Typical Biomining Acidophile
    Ai, Chenbing
    Liang, Yuting
    Miao, Bo
    Chen, Miao
    Zeng, Weimin
    Qiu, Guanzhou
    CURRENT MICROBIOLOGY, 2018, 75 (07) : 818 - 826
  • [2] Simulating compatible solute biosynthesis using a metabolic flux model of the biomining acidophile, Acidithiobacillus ferrooxidans ATCC 23270
    Khaleque, Himel Nahreen
    Nazem-Bokaee, Hadi
    Gumulya, Yosephine
    Carlson, Ross P.
    Kaksonen, Anna H.
    RESEARCH IN MICROBIOLOGY, 2024, 175 (1-2)
  • [3] Formation of jarosite during Fe2+ oxidation by Acidithiobacillus ferrooxidans
    Daoud, J.
    Karamanev, D.
    MINERALS ENGINEERING, 2006, 19 (09) : 960 - 967
  • [4] Real-time PCR analysis of different Fe ion shock responses of mpsA gene in Acidithiobacillus ferrooxidans ATCC 23270
    School of Minerals Processing and Bioengineering, Central South University, Changsha 410083, China
    Zhongnan Daxue Xuebao (Ziran Kexue Ban), 2009, 6 (1471-1475):
  • [5] Increase in Fe2+-producing activity during growth of Acidithiobacillus ferrooxidans ATCC23270 on sulfur
    Sugio, Tsuyoshi
    Taha, Taher M.
    Kanao, Tadayoshi
    Takeuchi, Fumiaki
    BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 2007, 71 (11) : 2663 - 2669
  • [6] Genome wide identification of Acidithiobacillus ferrooxidans (ATCC 23270) transcription factors and comparative analysis of ArsR and MerR metal regulators
    Hoedar, Christian
    Moreno, Pablo
    di Genova, Alex
    Latorre, Mauricio
    Reyes-Jara, Angelica
    Maass, Alejandro
    Gonzalez, Mauricio
    Cambiazo, Veronica
    BIOMETALS, 2012, 25 (01) : 75 - 93
  • [7] Genome wide identification of Acidithiobacillus ferrooxidans (ATCC 23270) transcription factors and comparative analysis of ArsR and MerR metal regulators
    Christian Hödar
    Pablo Moreno
    Alex di Genova
    Mauricio Latorre
    Angélica Reyes-Jara
    Alejandro Maass
    Mauricio González
    Verónica Cambiazo
    BioMetals, 2012, 25 : 75 - 93
  • [8] Regulation of CO2 Fixation Gene Expression in Acidithiobacillus ferrooxidans ATCC 23270 by Lix984n Shock
    Wang, Wei
    Xiao, Shuiming
    Chao, Jing
    Chen, Qijiong
    Qiu, Guanzhou
    Liu, Xueduan
    JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY, 2008, 18 (11) : 1747 - 1754
  • [9] Kinetics of Fe2+ oxidation by Acidithiobacillus ferrooxidans using total organic carbon measurement
    Kim, IS
    Jang, HY
    Lee, JU
    JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY, 2002, 12 (02) : 268 - 272
  • [10] Fe2+ oxidation and mineralization properties of Acidithiobacillus ferrooxidans immobilized on three secondary iron minerals
    Song, Yong-Wei
    Wang, Rui
    Yang, Lin-Lin
    Wang, He-Ru
    Yang, Jun
    Cao, Yan-Xiao
    Zhongguo Huanjing Kexue/China Environmental Science, 2020, 40 (05): : 2073 - 2080