Neat paper with an assessment of #eDNA transport in a large river. In Table 2 Jane et al. data underlie the two “Exp” rows in “Wilcox et al.” and for these three rows “Observed distance…” show Sp estimates. I.e., their FPOM model worked really well. https://t.co/yX6Jy0fCDI
Our newest paper on #eDNA capture enrichment with @katiezarn, @MaxinePiggott, and others. An alternative approach to metabarcoding for HTS-based, multi-taxa analysis https://t.co/KXQ5sgRntM
Final version release of our #eDNA signal #crayfish paper!
Harper et al. (2018) Searching for a signal: Environmental DNA (eDNA) for the detection of invasive signal crayfish, Pacifastacus leniusculus (Dana, 1852) (pp 137–148) https://t.co/hzXYOLuf6q
The Aquatic eDNAtlas project website is now live with a crowd-sourced database comprised of ~8,000 samples for ~30 species in the western U.S. New results will be posted regularly as they become available. To learn more or contribute, go here https://t.co/1EdOag7upx
Scientists reverse aging-associated skin wrinkles and hair loss in a mouse model: A gene mutation causes wrinkled skin and hair loss; turning off that mutation restores the mouse to normal appearance. #KruegerBio https://t.co/fbOB9oztx7