The cell envelope structure of cable bacteria Front. Microbiol., 9 (2018), p. 3044 View in ScopusGoogle Scholar [9] R.T. Eachambadi, R. Bonne, R. Cornelissen, S. Hidalgo Martinez, J. Vangronsveld, F.J.R. Meysman
reinforced cable bacteria associated interspecific interactions with functional microorganisms such as sulfate reducers, PAHs degraders, and electroactive microbes, suggesting enhanced microbial syntrophy taking advantage of cable bacteria metabolism for the regeneration of SO42 and long-distance electron transfer...
The highest filament density (33 m cm2) was associated with a 6.3 mm wide zone depleted in both oxygen and free sulphide, and the presence of an electric field resulting from the electrogenic sulphur oxidizing metabolism of cable bacteria. However, the measured filament densities and metabolic ...
Raman microspectroscopy has recently proved to be an excellent technique in helping to clarify the conductive structure of cable bacteria [14]. Therefore, we applied it in combination with the newly designed FISH probes to confirm the chemical composition of the cable's cell envelope in the new ...
When Aap, UV pili and the archaella are deleted inS. acidocaldarius, the cells still form threads40. These are thin, 5 nm wide filaments that are highly abundant on the cell surface reaching up to several microns in length. Here, we present a 3.45 Å resolution structure of this filame...
Scientists have identified a unique form of cell messaging occurring in the human brain Science Alert - November 19, 2024 The discovery hints that our brains might be even more powerful units of computation than we realized. Brains - especially those of the human variety - are often compared ...
While volcanic outgassing contributed importantly to the creation of a volatile envelope around the Earth, a large portion of the volatiles was imported together with extraterrestrial material forming a so-called "late veneer" (Marty 2012), including a cometary component, as the analyses of the ...
FOXOs’ anti-tumour function has been related to the regulation of key genes participating in cell death and cell cycle arrest, such as p27KIP1, CDKN1A/p21, FasL, Trail and Bim [80, 84, 85]. FOXOs are also involved in other complex networks, including numerous genes regulating the ...
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Historically, bacteria were classified by their ability to retain the Gram stain1. Following the development of electron microscopy, the actual structure of the bacterial cell envelope became apparent. Gram-positive bacteria were seen to be monoderms (having a single membrane) with a relatively thick...