File:43705 2023 307 fig8.jpg

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Negatively stained electron micrographs reveal myovirus morphology of Slickus and Slicko and podovirus morphology of Slicky, scale bar 100 nm

Summary

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Description
English: Negatively stained electron micrographs reveal myovirus morphology of Slickus and Slicko and podovirus morphology of Slicky, scale bar 100 nm (a). Coverage of reads based on mapping to the host MAGs Alishewanella sp. (MAG_01) and Pseudoalteromonas tunicata (MAG_66) as well as phages vB_AspM_Slickus01, vB_AspM_Slicko01, and vB_PtuP_Slicky01 (b). CRISPR spacer extracted from reads matching at 100% similarity to phage genomes from isolates and the SMS8 prophage of 50 kb. No matches from SSW spacers were detected. c Proteomic tree with placement of Slickus, Slicko, and Slicky (indicated by red stars) and closest related phages from the Refseq database (d). Based on insights from the tree, genomic alignments with related phages with indicated identity of proteins based on tBLASTX results (e). Annotations for the phage isolates are given in Table S14. SML sea-surface microlayer, SSW subsurface water.
Date
Source Ecogenomics and cultivation reveal distinctive viral-bacterial communities in the surface microlayer of a Baltic Sea slick. In. Oxford Academic: ISME Communications, Volume 3, Issue 1, 97, doi:10.1038/s43705-023-00307-8
Author Janina Rahlff, Matthias Wietz, Helge-Ansgar Giebel, Oliver Bayfield, Emelie Nilsson, Kristofer Bergström, Kristopher Kieft, Karthik Anantharaman, Mariana Ribas-Ribas, Hannah D. Schweitzer, Oliver Wurl, Matthias Hoetzinger, Alfred Antson, Karin Holmfeldt
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current13:44, 30 August 2024Thumbnail for version as of 13:44, 30 August 20241,975 × 942 (287 KB)Ernsts (talk | contribs)Uploaded a work by Janina Rahlff, Matthias Wietz, Helge-Ansgar Giebel, Oliver Bayfield, Emelie Nilsson, Kristofer Bergström, Kristopher Kieft, Karthik Anantharaman, Mariana Ribas-Ribas, Hannah D. Schweitzer, Oliver Wurl, Matthias Hoetzinger, Alfred Antson, Karin Holmfeldt from ''Ecogenomics and cultivation reveal distinctive viral-bacterial communities in the surface microlayer of a Baltic Sea slick.'' In. ''Oxfird Academic'': '' ISME Communications'', Volume 3, Issue 1, December 2023, 97, [[...

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