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Bacteriophage T4 -- Dispersal

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Paleological And Ecological Impacts Of Virus Silicification, James Robert Laidler Feb 2015

Paleological And Ecological Impacts Of Virus Silicification, James Robert Laidler

Dissertations and Theses

Silicification of organisms in silica-depositing environments can impact both their ecology and their presence in the fossil record. Although microbes have been silicified under laboratory and environmental conditions, viruses had not been, prior to this work. Bacteriophage T4 was successfully silicified under laboratory conditions that closely simulated those found in silica-depositing hot springs. Virus morphology was maintained during the short period of silicification (48 hours), and a clear elemental signature of silicon and phosphorus was detected by energy-dispersive X-ray spectrophotometry (EDX). However, the EDX signature of silicified virus was not sufficiently distinct from that of cell membrane or phosphate minerals …