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Karwautz, C.

Publications and source records attributed to Karwautz, C..

3 recordsLinked to original sources

ClassifyITS: An R Package for assigning taxonomy to fungal ITS sequences using taxon-specific cutoff values

1. Fungi are key drivers of decomposition and nutrient cycling across the globe, yet accurate classification of environmental fungal internal transcribed spacer (ITS) sequences remains challenging. These persistent challenges reflect the variable evolutionary properties of ITS, limited representation of fungal diversity in reference databases, and the application of classifiers originally developed for more conserved prokaryotic markers. 2. Here, we present ClassifyITS, an R package that performs alignment-based taxonomic classification of full length fungal ITS sequences or individual ITS subregions (ITS1 or ITS2) using taxon-specific sequence identity thresholds. In addition to taxonomic assignments, ClassifyITS generates summary statistics and diagnostic visualizations to support interpretation and quality control. 3. Using a deep subsurface fungal ITS dataset containing many poorly characterized taxa, ClassifyITS outperformed the common classifiers SINTAX and DADA2, with higher agreement to expert curated assignments and lower rates of over classifying and under classifying sequences to taxonomic ranks. Across all classifiers and approaches, taxonomic accuracy increased strongly with sequence similarity to the reference database, emphasizing the importance of continued expansion and curation of fungal sequence databases. 4. By providing an accessible and reproducible R based workflow that improves taxonomic classification, ClassifyITS supports more accurate biodiversity monitoring and enhances downstream functional interpretation of fungal communities.

bioinformatics↗

Revised 16S rRNA V4 hypervariable region targeting primers enhance detection of Patescibacteria and other lineages across diverse environments

Primer bias in 16S rRNA gene amplicon sequencing can distort microbial diversity estimates by underrepresenting key taxa. We introduce a modified primer pair (V4-EXT) targeting the hypervariable V4 region of bacterial and archaeal 16S rRNA genes, with improved in silico taxonomic inclusivity. To benchmark performance, we analyzed 938 samples from terrestrial, aquatic, and host-associated habitats, comparing microbial community profiles derived with V4-EXT and the currently most widely used V4-targeted primers. V4-EXT substantially improved the detection of Patescibacteria and other underrepresented lineages, such as Chloroflexota and Iainarchaeota, while enhancing recovery of novel amplicon sequence variants across sample types. Overall, V4-EXT provides broader taxonomic coverage and more inclusive microbial community profiles, particularly in high-diversity ecosystems such as groundwater and soils. We propose V4-EXT as a robust successor for comprehensive microbial community analysis across diverse habitats.

microbiology↗

Dynamic changes of protist community composition along a surface water-groundwater transect in the Danube wetland Lobau, Vienna, Austria

Groundwater remains an unexplored habitat in terms of protistan diversity and community dynamics, when compared to better-studied surface aquatic environments. To address this knowledge gap, a comparison of protistan communities found at two differing sites, a wetland surface water body and the close-by shallow aquifer, aims to shed light on environmental drivers of both the total and active protist communities using molecular analyses. The two-year time series with monthly samplings provided insight into seasonal pattern, and barcoding allowed taxonomic affiliation. Our study revealed clear differences in community composition and trophic modes with the habitat type. Protistan communities in shallow groundwater exhibited pronounced seasonal dynamics somehow temporally linked to the surface water counterparts. Higher absolute water levels in the backwater compared to groundwater and the significant fraction of phototrophic protists sampled from the shallow aquifer point at groundwater recharge from surface water to strongly influence protistan community composition.

microbiology↗