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Biology subjects

Santelli, C.

Publications and source records attributed to Santelli, C..

2 recordsLinked to original sources

Aviti Sequencing and Marker Gene Data Analysis

Accurate identification of microbial species in complex populations and communities relies on the isolation of representative marker 16S, ITS, and 18S sequences through the use of DNA extraction, PCR, and sequencing. Aviti sequencing has brought an improvement in the read quality and depth of marker gene sequencing technology. Quality scores exceeding Q40 representing highly accurate sequencing allows researchers to ask more questions of their marker gene data. However, this improvement in quality and throughput also brings with it a surprising increase in diversity of amplicon sequencing variants (ASVs) making further analysis and comparisons to previous studies on Illumina platforms challenging. This increased diversity causes downstream processing issues, including an over-reporting of chimeric ASVs. Here we identify this problem and put forward straightforward solutions to retain counts and reduce technically introduced diversity, as well as tying chimeric read identification to minimum parent distance. Through the use of synthetic mock samples, we discovered that erroneous ASVs are systematically substitution errors introduced by the upstream PCR methods. This error can be reduced significantly bioinformatically through clustering of ASVs within 99% similarity. Further we highlight technically introduced variation as a result of variable region length, sample misassignment, and sample biomass. Collectively, these results improve the similarity of Aviti and Illumina datasets for better comparisons of microbial studies from different platforms.

bioinformatics↗

Predicting lead hotspots in urban stormwater ponds across the Twin Cities Metro

Stormwater ponds play an important role in urban food webs. Critically these same ponds could also serve as pollution hotspots since stormwater ponds can act as local concentrators of urban runoff. One such contaminant of concern is lead, which remains a significant issue for human and ecosystem health in the United States despite regulatory bans on its use in paint and gasoline imposed in the 1970s. Despite high levels of lead in some urban stormwater, little is known about the distribution of lead in urban aquatic ecosystems. Therefore, we characterized lead within the sediment, water column, and surrounding soil of stormwater ponds across the Minneapolis-Saint Paul Metro Area. We hypothesized that lead would be highest in ponds that receive runoff from landscapes with older construction (i.e., legacy leaded paint and gasoline), have high traffic volume (i.e., legacy leaded gasoline), and areas with low impervious surface cover (i.e., increased mobilization of contaminated soil). Moreover, we hypothesized that stormwater ponds capture lead within sediments, with more dissolved lead at the bottom of the water column, where it would interact with lead containing sediments. Across ponds, we found that age of parcel development where the pond was located was the strongest predictor of surface sediment lead content. Within pond sediments, we found that lead concentrations increased with depth below the sediment surface, which is unsurprising since depth is likely correlated with time. The strongest predictor of surface water lead concentration was the strength of pond stratification, while the strongest predictor of bottom water lead concentration was pond duckweed cover and water conductivity. Water column oxygen concentrations varied across ponds yet were not important in determining dissolved lead within the water column. Importantly, lead within pond water remained quite low despite elevated sediment lead levels. These findings confirm that stormwater ponds can act as one source of environmental lead remediation by capturing lead within sediments under a wide range of environmental conditions. Our results suggest relatively low lead release from ponds to downstream areas, indicating that ponds generally serve as sinks, not sources within the urban lead cycle.

ecology↗