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R. J. DeVries

Publications and source records attributed to R. J. DeVries.

2 recordsLinked to original sources

Increasing capture efficiency of pallid sturgeon Scaphirhynchus albus (Forbes and Richardson, 1905) and the reliability of catch rate estimates

This study evaluated the effects of environmental parameters on the probability of capturing endangered pallid sturgeon ( Scaphirhynchus albus ) using trotlines in the lower Mississippi River. Pallid sturgeon were sampled by trotlines year round from 2008 to 2011. A logistic regression model indicated water temperature ( T ; P < 0.01) and depth ( D ; P = 0.03) had significant effects on capture probability ( Y = &minus;1.75 &minus; 0.06 T + 0.10 D ). Habitat type, surface current velocity, river stage, stage change and non-sturgeon bycatch were not significant predictors (P = 0.26&ndash;0.63). Although pallid sturgeon were caught throughout the year, the model predicted that sampling should focus on times when the water temperature is less than 12&deg;C and in deeper water to maximize capture probability; these water temperature conditions commonly occur during November to March in the lower Mississippi River. Further, the significant effect of water temperature which varies widely over time, as well as water depth indicate that any efforts to use the catch rate to infer population trends will require the consideration of temperature and depth in standardized sampling efforts or adjustment of estimates.

Mississippi

Similarities and differences in 13 C and 15 N stable isotope ratios in two non-lethal tissue types from shovelnose sturgeon Scaphirhynchus platorynchus (Rafinesque, 1820)

We tested the hypothesis that &delta; 13 C and &delta; 15 N signatures of pectoral spines would provide measures of &delta; 13 C and &delta; 15 N similar to those obtained from fin clips for adult shovelnose sturgeon Scaphirhynchus platorynchus . Thirty-two shovelnose sturgeon (fork length [FL] = 500&ndash;724 mm) were sampled from the lower Mississippi River, USA on 23 February 2013. Isotopic relationships between the two tissue types were analyzed using mixed model analysis of covariance. Tissue types differed significantly for both &delta; 13 C (P < 0.01; spine: mean = &minus;23.83, SD = 0.62; fin clip: mean = &minus;25.74, SD = 0.97) and &delta; 15 N (P = 0.01; spine: mean = 17.01, SD = 0.51; fin clip: mean = 17.19, SD = 0.62). Neither FL nor the FL &times; tissue type interaction had significant (P > 0.05) effects on &delta; 13 C. Fin clip &delta; 13 C values were highly variable and weakly correlated ( r = 0.16, P = 0.40) with those from pectoral spines. We found a significant FL-tissue type interaction for &delta; 15 N, reflecting increasing &delta; 15 N with FL for spines and decreasing &delta; 15 N with FL for fin clips. These results indicate that spines are not a substitute for fin clip tissue for measuring &delta; 13 C and &delta; 15 N for shovelnose sturgeon in the lower Mississippi River, but the two tissues have different turnover rates they may provide complementary information for assessing trophic position at different time scales.

Mississippi