Minimal transcriptional regulation of horizontally transferred photosynthesis genes in phototrophic bacterium Gemmatimonas phototrophica

被引:1
作者
Kopejtka, Karel [1 ]
Tomasch, Juergen [1 ]
Shivaramu, Sahana [1 ]
Saini, Mohit Kumar [1 ]
Kaftan, David [1 ]
Koblizek, Michal [1 ]
机构
[1] Czech Acad Sci, Lab Anoxygen Phototrophs, Inst Microbiol, Trebon, Czech Republic
关键词
Gemmatimonadota; anoxygenic photosynthesis; bacteriochlorophyll; horizontal gene transfer; transcriptomics; AEROBIC ANOXYGENIC PHOTOTROPHS; BACTERIOCHLOROPHYLL; GROWTH; LIGHT; EXPRESSION; STATE;
D O I
10.1128/msystems.00706-24
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The first phototrophic member of the bacterial phylum Gemmatimonadota, Gemmatimonas phototrophica AP64(T), received all its photosynthesis genes via distant horizontal gene transfer from a purple bacterium. Here, we investigated how these acquired genes, which are tightly controlled by oxygen and light in the ancestor, are integrated into the regulatory system of its new host. G. phototrophica grew well under aerobic and semiaerobic conditions, with almost no difference in gene expression. Under aerobic conditions, the growth of G. phototrophica was optimal at 80 mu mol photon m(-2) s(-1), while higher light intensities had an inhibitory effect. The transcriptome showed only a minimal response to the dark-light shift at optimal light intensity, while the exposure to a higher light intensity (200 mu mol photon m(-2) s(-1)) induced already stronger but still transient changes in gene expression. Interestingly, a singlet oxygen defense was not activated under any conditions tested. Our results indicate that G. phototrophica possesses neither the oxygen-dependent repression of photosynthesis genes known from purple bacteria nor the light-dependent repression described in aerobic anoxygenic phototrophs. Instead, G. phototrophica has evolved as a low-light species preferring reduced oxygen concentrations. Under these conditions, the bacterium can safely employ its photoheterotrophic metabolism without the need for complex regulatory mechanisms. IMPORTANCE Horizontal gene transfer is one of the main mechanisms by which bacteria acquire new genes. However, it represents only the first step as the transferred genes have also to be functionally and regulatory integrated into the recipient's cellular machinery. Gemmatimonas phototrophica, a member of bacterial phylum Gemmatimonadota, acquired its photosynthesis genes via distant horizontal gene transfer from a purple bacterium. Thus, it represents a unique natural experiment, in which the entire package of photosynthesis genes was transplanted into a distant host. We show that G. phototrophica lacks the regulation of photosynthesis gene expressions in response to oxygen concentration and light intensity that are common in purple bacteria. This restricts its growth to low-light habitats with reduced oxygen. Understanding the regulation of horizontally transferred genes is important not only for microbial evolution but also for synthetic biology and the engineering of novel organisms, as these rely on the successful integration of foreign genes.
引用
收藏
页数:14
相关论文
共 53 条
[11]   Structural Analyses of CrtJ and Its B12-Binding Co-Regulators SAerR and LAerR from the Purple Photosynthetic Bacterium Rhodobacter capsulatus [J].
Dragnea, Vladimira ;
Gonzalez-Gutierrez, Giovanni ;
Bauer, Carl E. .
MICROORGANISMS, 2022, 10 (05)
[12]   PRODORIC: state-of-the-art database of prokaryotic gene regulation [J].
Dudek, Christian-Alexander ;
Jahn, Dieter .
NUCLEIC ACIDS RESEARCH, 2022, 50 (D1) :D295-D302
[13]   RegB/RegA, a highly conserved redox-responding global two-component regulatory system [J].
Elsen, S ;
Swem, LR ;
Swem, DL ;
Bauer, CE .
MICROBIOLOGY AND MOLECULAR BIOLOGY REVIEWS, 2004, 68 (02) :263-+
[14]   Diel changes and diversity of pufM expression in freshwater communities of anoxygenic phototrophic bacteria [J].
Fecskeova, Livia Kolesar ;
Piwosz, Kasia ;
Hanusova, Martina ;
Nedoma, Jiri ;
Znachor, Petr ;
Koblizek, Michal .
SCIENTIFIC REPORTS, 2019, 9 (1)
[15]   Exopolysaccharide-associated protein sorting in environmental organisms: the PEP-CTERM/EpsH system. Application of a novel phylogenetic profiling heuristic [J].
Haft, Daniel H. ;
Paulsen, Ian T. ;
Ward, Naomi ;
Selengut, Jeremy D. .
BMC BIOLOGY, 2006, 4 (1)
[16]   Reactive species and antioxidants. Redox biology is a fundamental theme of aerobic life [J].
Halliwell, Barry .
PLANT PHYSIOLOGY, 2006, 141 (02) :312-322
[17]   Bacillithiol, a New Player in Bacterial Redox Homeostasis [J].
Helmann, John D. .
ANTIOXIDANTS & REDOX SIGNALING, 2011, 15 (01) :123-133
[18]   Evolution of Photosynthesis [J].
Hohmann-Marriott, Martin F. ;
Blankenship, Robert E. .
ANNUAL REVIEW OF PLANT BIOLOGY, VOL 62, 2011, 62 :515-548
[19]   Novel acsF Gene Primers Revealed a Diverse Phototrophic Bacterial Population, Including Gemmatimonadetes, in Lake Taihu (China) [J].
Huang, Yili ;
Zeng, Yanhua ;
Lu, Hang ;
Feng, Hao ;
Zeng, Yonghui ;
Koblizek, Michal .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2016, 82 (18) :5587-5594
[20]   ACTION SPECTRA FOR INHIBITION BY LIGHT OF ACCUMULATION OF BACTERIOCHLOROPHYLL AND CAROTENOID DURING AEROBIC GROWTH OF PHOTOSYNTHETIC BACTERIA [J].
IBA, K ;
TAKAMIYA, K .
PLANT AND CELL PHYSIOLOGY, 1989, 30 (04) :471-477