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Skoupy, R.

Publications and source records attributed to Skoupy, R..

2 recordsLinked to original sources

Thickness and quality controlled fabrication of fluorescence-targeted frozen-hydrated lamellae

Cryogenic focused ion beam (FIB) milling is essential for fabricating thin lamella-shaped samples out of frozen-hydrated cells for high-resolution structure determination. Structural information can only be resolved at high resolution if the lamella thickness is between 100 and 200 nm. While the lamella fabrication workflow has undergone significant improvements since its conception, quantitative, live feedback on lamella thickness and quality is still lacking. Taking advantage of a coincident light microscopy integrated into the FIB-SEM, we present three different strategies that together allow accurate, live control during lamella fabrication. First, we combine 4D-STEM with fluorescence microscope (FM) targeting to determine the lamella thickness. Second, with reflected light microscopy (RLM) we screen target sites for ice contamination and monitor lamella thickness and integrity of the protective Pt coating during FIB milling. Third, we exploit thin-film interference to obtain fine-grained feedback on thickness uniformity below 500 nm. We finally present a full workflow for fluorescence-targeted and quality controlled fabrication of frozen-hydrated lamellae, benchmarked with excellent agreement to energy filtered transmision electron microscopy (EFTEM) measurements and reconstructed tomograms obtained with electron cryo-tomography.

biophysics↗

Massive accumulation of strontium and barium in diplonemid protists

Barium (Ba) and strontium (Sr) are often used as proxies for the reconstruction of past marine productivity and global climate. The ability to accumulate Ba2+ and Sr2+ in the form of crystals is rare among eukaryotes. Here we report that unicellular heterotrophs called diplonemids (Euglenozoa), one of the most abundant groups of marine planktonic protists, accumulate conspicuous amounts of these trace elements in the form of intracellular barite (BaSO4) and celestite (SrSO4) crystals, in concentrations greater than in other known Ba/Sr-accumulating organisms. Moreover, these flagellates can uptake Sr2+ exclusively or together with Ba2+ and form (Ba,Sr)SO4. One species, Namystinia karyoxenos, is naturally capable of intracellular accumulation of Ba2+ and Sr2+ 42,000 and 10,000 times relative to the surrounding medium. Altering the amounts of both elements in the medium resulted in corresponding changes in the quantity and composition of crystals. Planktonic copepods fed with diplonemids produce celestite-rich fecal pellets, which facilitate deposition of these minerals on the seafloor. We propose that diplonemids, which emerged during the Neoproterozoic era, qualify as impactful players of Ba2+/Sr2+ cycling in the ocean that possibly contributed to sedimentary rock formation over long geological periods.

microbiology↗