TCA Cycle Replenishing Pathways in Photosynthetic Purple Non-Sulfur Bacteria Growing with Acetate

被引:15
|
作者
Petushkova, Ekaterina [1 ]
Mayorova, Ekaterina [1 ,2 ]
Tsygankov, Anatoly [1 ]
机构
[1] Russian Acad Sci, Pushchino Sci Ctr Biol Res, Inst Basic Biol Problems, 2 Inst Skaya Str, Pushchino 142290, Moscow Region, Russia
[2] Fed State Budget Educ Inst Higher Educ, Pushchino State Inst Nat Sci, 3 Prospekt Nauki, Pushchino 142290, Moscow Region, Russia
来源
LIFE-BASEL | 2021年 / 11卷 / 07期
基金
俄罗斯科学基金会;
关键词
purple non-sulfur bacteria; tricarboxylic acid cycle; anaplerotic pathways; glyoxylate pathway; ethylmalonyl-CoA pathway; citramalate cycle; methylaspartate cycle; RIBULOSE 1,5-BISPHOSPHATE CARBOXYLASE; TRICARBOXYLIC-ACID CYCLE; CARBON-DIOXIDE FIXATION; SIGNAL-TRANSDUCTION SYSTEM; RHODOBACTER-CAPSULATUS; ESCHERICHIA-COLI; CO2; FIXATION; RHODOSPIRILLUM-RUBRUM; PHOTOHETEROTROPHIC GROWTH; ISOCITRATE LYASE;
D O I
10.3390/life11070711
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Purple non-sulfur bacteria (PNSB) are anoxygenic photosynthetic bacteria harnessing simple organic acids as electron donors. PNSB produce a-aminolevulinic acid, polyhydroxyalcanoates, bacteriochlorophylls a and b, ubiquinones, and other valuable compounds. They are highly promising producers of molecular hydrogen. PNSB can be cultivated in organic waste waters, such as wastes after fermentation. In most cases, wastes mainly contain acetic acid. Therefore, understanding the anaplerotic pathways in PNSB is crucial for their potential application as producers of biofuels. The present review addresses the recent data on presence and diversity of anaplerotic pathways in PNSB and describes different classifications of these pathways.
引用
收藏
页数:37
相关论文
共 50 条
  • [1] Differences in possible TCA cycle replenishing pathways in purple non-sulfur bacteria possessing glyoxylate pathway
    Ekaterina Petushkova
    Sergei Iuzhakov
    Anatoly Tsygankov
    Photosynthesis Research, 2019, 139 : 523 - 537
  • [2] Differences in possible TCA cycle replenishing pathways in purple non-sulfur bacteria possessing glyoxylate pathway
    Petushkova, Ekaterina
    Iuzhakov, Sergei
    Tsygankov, Anatoly
    PHOTOSYNTHESIS RESEARCH, 2019, 139 (1-3) : 523 - 537
  • [3] ACETATE METABOLISM IN PURPLE NON-SULFUR BACTERIA
    BLASCO, R
    CARDENAS, J
    CASTILLO, F
    FEMS MICROBIOLOGY LETTERS, 1989, 58 (2-3) : 129 - 132
  • [4] Biosynthesis of pinene in purple non-sulfur photosynthetic bacteria
    Wu, Xiaomin
    Ma, Guang
    Liu, Chuanyang
    Qiu, Xin-yuan
    Min, Lu
    Kuang, Jingyu
    Zhu, Lingyun
    MICROBIAL CELL FACTORIES, 2021, 20 (01)
  • [5] Biosynthesis of pinene in purple non-sulfur photosynthetic bacteria
    Xiaomin Wu
    Guang Ma
    Chuanyang Liu
    Xin-yuan Qiu
    Lu Min
    Jingyu Kuang
    Lingyun Zhu
    Microbial Cell Factories, 20
  • [6] Photosynthetic fuel cell using purple non-sulfur bacteria
    Satake, Yui
    Otani, Yukitoshi
    Maeda, Isamu
    2012 INTERNATIONAL SYMPOSIUM ON OPTOMECHATRONIC TECHNOLOGIES (ISOT), 2012,
  • [7] Purple non-sulfur photosynthetic bacteria monitor environmental stresses
    Kis, Mariann
    Sipka, Gabor
    Asztalos, Emese
    Razga, Zsolt
    Maroti, Peter
    JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY, 2015, 151 : 110 - 117
  • [8] Regulation of CO2 fixation in non-sulfur purple photosynthetic bacteria
    Romagnoli, Simona
    Tabita, F. Robert
    Plant Responses to Air Pollution and Global Change, 2005, : 165 - 169
  • [9] Purple non-sulfur bacteria for biotechnological applications
    Morrison, Hailee M.
    Bose, Arpita
    JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2025, 52
  • [10] OXIDATION OF THIOSULFATE BY PURPLE NON-SULFUR BACTERIA
    KEPPEN, OI
    PEDAN, LV
    RODOVA, NA
    MICROBIOLOGY, 1980, 49 (05) : 562 - 566