ABSTRACT Size fractionation, filtering water sequentially through a large (3 μm) and fine (0.2 μm) pore size filter, is a widely applied approach to target specific microbial size ranges, differentiating between particle‐associated, and free‐living microorganisms. To characterise its impact on microbial diversity and its comparability to unfractionated samples, we analysed 16 weekly ocean samples across five depths during a phytoplankton spring bloom. We used a universal marker to characterise prokaryotes, eukaryotes and chloroplasts in unfractionated (> 0.2 μm), fractionated (large > 3 μm, small 0.2–3 μm) and de‐fractionated samples, the reconstitution of the small and large fractions. The particle‐associated fraction was the most different community from all other samples, and de‐fractionating before or after sequencing results in a community that is most similar to unfractionated samples in terms of composition and richness with the exception of very rare taxa. Across all depths and weeks, 75%–97% of ASVs were shared, but some discrepancies in relative abundances were unresolved, including for some lineages of free‐living Bacteroidota. Community composition differences from size fractionation were more pronounced during the bloom period in comparison to pre‐bloom. Differential‐abundance analysis detected at most one significantly different ASV between fractionated and de‐fractionated samples, highlighting the similarity in community composition and temporal dynamics between the fractionated and de‐fractionated sets.
Haider et al. (Sun,) studied this question.