文献类型: 外文期刊
作者: Yang, Yizi 1 ; He, Shiying 2 ; Gu, Ning 1 ;
作者机构: 1.Nanjing Med Univ, Sch Biomed Engn & Informat, Nanjing 211166, Peoples R China
2.Jiangsu Acad Agr Sci, Inst Agr Resources & Environm, Nanjing 210014, Peoples R China
3.Southeast Univ, Sch Biol Sci & Med Engn, Jiangsu Key Lab Biomat & Devices, Nanjing 210096, Peoples R China
关键词: magnetotactic bacteria; magnetosome; operon; gene; biogenesis
期刊名称:CHINESE SCIENCE BULLETIN-CHINESE ( 影响因子:1.1; )
ISSN: 0023-074X
年卷期: 2020 年 65 卷 6 期
页码:
收录情况: SCI
摘要: Magnetosomes are natural magnetic nanoparticles with special properties that are synthesized by magnetotactic bacteria. Bacterial magnetosomes have become increasingly attractive for researchers in biology, medicine, geology and other fields of scientific researches. It is significant to explore a promising nanomaterial for multiple applications in science and industry. Magnetosomes contains magnetic particles that are enclosed by intracellular membrane. These particles can be either ferrimagnetic crystal of magnetite (Fe3O4) or the iron sulfide greigite (Fe3S4). Three crystal morphologies including roughly cuboidal, roughly rectangular, bullet-shaped have been found in magnetotactic bacteria. Magnetosomes are organized as well-ordered chains which orient magnetotactic bacteria in geomagnetic fields. The question 'what and how is genetic material responsible for magnetosome genesis and following diversity' was raised when biologists tried to understand the formation mechanism of magnetosome in the last century. Now almost two decades have passed since 2000, magnetosome biogenesis still remains one of the hotspots in scientific researches. Both bioinformatic analyses and gene deletion experiments are extensively carried out in the study of magnetosome biogenesis. Consequently, multiple operons and genes are found to be involved in the process of magnetosome formation. This article introduces important findings in the field of operons and genes as controllers of magnetosome biogenesis. The mamAB operon is found to be more critical than other operons to magnetosome biogenesis and it is necessary for rudimentary biomineralization in bacteria. Less than 10 genes within the mamAB operon are essential for the magnetosome formation. Moreover, other four small operons (mamGFDC, mamXY, mms6 and feoAB1) play non-critical roles for magnetosome biogenesis. Non-essential genes can be found in both the mamAB operon and non-critical operons. In addition, several genes and genomic regions outside of magnetosome-related operons such as the mms16 gene in Magnetospirillum magneticum AMB1 or the mad gene clusters in Deltaproteobacteria are also related to magnetosome synthesis. These discoveries provide insights into the molecular mechanisms of magnetosome biogenesis. Some researchers have separated the whole process of magnetosome formation into three or five key steps, they proposed several hypothesized mechanisms of magnetosome formation in magnetotactic bacteria by summarizing functional genes and proteins in each of key steps. The Arakaki's model in 2018 is a relatively comprehensive model of magnetosome formation and can offer detail information about molecular and cellular mechanisms. With rapid development of research on magnetotactic bacteria emerging in China in recent years, Chinese scientists have made various types of research achievements such as discoveries of novel magnetotactic bacteria, calculations of diversity of magnetotactic bacteria in specific water areas and evolutionary mechanism of microbial magnetoreception. It is expected that more valuable achievements would be obtained from bacterial research than ever before. Natural magnetic nanoparticles have potentials to bring many advancements in science and they can help overcome technical challenges in various scientific fields. To release the power within magnetosomes, biologists are required to reveal the genetic foundation of magnetosome biogenesis and help material scientists invent new technology using biological knowledge. Magnetosome researches are attracting more and more scientists from all areas of science. Interdisciplinary research has become an increasingly common method of study in magnetosome. How well the material scientists can cooperate with other scientists will be crucial for important discoveries in magnetosomes in the future.
- 相关文献
作者其他论文 更多>>
-
Efficient magnetic capture of PE microplastic from water by PEG modified Fe3 O4 nanoparticles: Performance, kinetics, isotherms and influence factors
作者:Zhang, Yifan;Feng, Yanfang;Xue, Lihong;He, Shiying;Zhang, Yifan;Duan, Jingjing;Liu, Ruiqian;Feng, Yanfang;Xue, Lihong;Yang, Linzhang;He, Shiying;Petropoulos, Evangelos;Petropoulos, Evangelos
关键词:Microplastic removal; Adsorption; Magnetic nanoparticles; Wastewater; Surface modification
-
Heavy rainfall stimulates more N2O emissions from wheat fields during basal and overwintering fertilization phases
作者:Wang, Jing;Liu, Qiang;Liu, Qiang;Zhao, Suya;He, Shiying;Yang, Bei;Wang, Ning;Hou, Pengfu;Xue, Lihong;Yang, Linzhang;Zhao, Suya;He, Shiying;Wang, Ning;Hou, Pengfu;Xue, Lihong
关键词:Rainfall; Nitrous oxide; Nitrogen transformation; Functional microorganisms
-
Sustainable design of photo-Fenton-like oxidation process in actual livestock wastewater through the highly dispersed FeCl 3 anchoring on a g-C 3 N 4 substrate
作者:Feng, Yanfang;Liang, Yunyi;Ding, Chenman;Jin, Hongmei;He, Shiying;Xue, Lihong;Liang, Yunyi;Xia, Changlei;Jiang, Yue;Rong, Shaopeng;Wu, Jun
关键词:Photo-Fenton-Like catalysis; Actual livestock wastewater; Outdoor device; Life cycle assessment; Products toxicity
-
Manure derived hydrochar reduced phosphorus loss risk via an alteration of phosphorus fractions and diversified microbial community in rice paddy soil
作者:Ding, Shudong;Li, Jing;He, Shiying;Xie, Huifang;Fu, Haibin;Feng, Yanfang;Xue, Lihong;Wang, Yu;Xie, Huifang;Fu, Haibin;Shaheen, Sabry M.;Rinklebe, Joerg;Shaheen, Sabry M.;Shaheen, Sabry M.
关键词:Hydrothermal carbonization; P speciation in paddy soils; 31P liquid NMR; Microbial community; Network diagram analysis
-
Unravelling superior photodegradation ability and key photoactive structures of hydrochar particle to typical emerging contaminant than corresponding bulk hydrochar from food waste
作者:Guo, Wenjing;Zhang, Zhiyong;Feng, Yanfang;He, Shiying;Fang, Guodong;Rong, Shaopeng
关键词:Hydrochar; Norfloxacin; Electron-hole; Graphitic-N; Density functional theory
-
Photochemical behavior of dissolved organic matter derived from Alternanthera philoxeroides hydrochar: Insights from molecular transformation and photochemically reactive intermediates
作者:Gu, Xincai;Liu, Hong;Gu, Xincai;Chen, Bingfa;Feng, Yanfang;He, Shiying;Pan, Guojun;Han, Shiqun;Wang, Bingyu;Feng, Muhua
关键词:Hydrochar; Dissolved organic matter; Photochemical behavior; Photochemically reactive intermediates; Molecular transformation
-
Under what circumstances can chemical oxidation processes effectively degrade antibiotics resistance genes? Evidence from meta-analysis
作者:Ren, Zhuo;Ma, Xijun;Zhang, Jing;Ren, Zhuo;Yang, Bei;Hou, Pengfu;He, Shiying;Xue, Lihong;Yang, Linzhang;Petropoulos, Evangelos;Petropoulos, Evangelos;Liu, Hao
关键词:Chemical oxidation processes; Degradation; Antibiotics resistance genes; Meta -analysis



