#noaaglerl
🌊 A new #CIGLR study led by scientist Jasmine Mancuso explores how the Detroit & Maumee rivers shape western #LakeErie #HABs & why blooms vary from year to year.

📖 CIGLR blog: ciglr.seas.umich.edu/a-tale-of-tw...

📄 Journal article: www.sciencedirect.com/science/arti...

#GreatLakes #NOAAGLERL
August 25, 2026 at 2:51 PM
🚨 #HIRING: NOAA Research Assistant @ the GVSU Annis Water Resources Institute! 🌊

This full-time, #CIGLR -funded position supports ecology-focused research & long-term monitoring on #LakeMichigan w/ #NOAAGLERL scientists.

📍 Muskegon, MI
✍️ Apply by June 2
🔗 gvsu.wd1.myworkdayjobs.com/en-US/career...
NOAA Research Assistant - AWRI (Adjunct Salaried)
Summary: The Annis Water Resources Institute and Grand Valley State University are seeking a research scientist to provide technical assistance on projects primarily focused on the ecology of Lake Mic...
gvsu.wd1.myworkdayjobs.com
May 13, 2026 at 8:32 PM
Great to see this paper from Paul Den Uyl's MS work out in
ES&T

"Genomic Identification and Characterization of Saxitoxin Producing Cyanobacteria in Western Lake Erie Harmful Algal Blooms" doi.org/10.1021/acs....
@GreatLakesGreg @pubs.acs.org #greatlakes #ciglr #noaaglerl
Genomic Identification and Characterization of Saxitoxin Producing Cyanobacteria in Western Lake Erie Harmful Algal Blooms
Saxitoxins (STXs), a group of closely related neurotoxins, are among the most potent natural toxins known. While genes encoding STX biosynthesis have been observed in Lake Erie, the organism(s) responsible for producing STXs in the Laurentian Great Lakes have not been identified. We identified a full suite of STX biosynthesis genes in a Dolichospermum metagenome-assembled genome (MAG). The content of sxt genes suggest that this organism can produce STX, decarbamoyl and deoxy-decarbamoyl saxitoxins, and other congeners. The absence of sxtX indicates this organism is unable to produce neosaxitoxin, a potent congener. However, a distinct, lower abundance sxt operon from an unidentified organism did contain sxtX, indicating neosaxitoxin biosynthesis potential. Metatranscriptomic data confirmed STX biosynthesis gene expression. We also recovered highly similar Dolichospermum MAGs lacking sxt genes, implying gene loss or horizontal gene transfer. sxtA was detected by quantitative polymerase chain reaction during 47 of 76 sampling dates between 2015 and 2019, demonstrating higher sensitivity than metagenomic approaches. sxtA gene abundance was positively correlated with temperature and particulate nitrogen:phosphorus ratio and negatively correlated with ammonium concentration. All Dolichospermum MAGs had genes required for nitrogen fixation. Collectively, this study provides a foundation for understanding potential new threats to Lake Erie water quality.
doi.org
April 11, 2025 at 2:44 PM