Matches in SemOpenAlex for { <https://semopenalex.org/work/W2912875058> ?p ?o ?g. }
- W2912875058 endingPage "224" @default.
- W2912875058 startingPage "217" @default.
- W2912875058 abstract "We analyzed seminal plasma composition of 27 shortnose sturgeon (Acipenser brevirostrum) from both captive and wild populations. Osmolality, pH, sodium, potassium, chloride, and calcium were measured as possible predictors of spermatozoa swimming velocity and percent motility, which are proxies for sperm quality. Principal components analysis resulted in two interpretable components that explained 74% of the variation in the data. The first principal component, PC1, was positively loaded with sodium and potassium, and negatively loaded with chloride. The second principal component, PC2, was positively loaded with calcium and osmolality, and negatively loaded with pH. There were significant differences in seminal plasma composition between wild and captive sourced sperm for both main components (PC1 p-value = .00229, PC2 p-value = .00304), with captive fish having lower sodium, potassium, and osmolality, and higher chloride than wild fish. Cluster analysis of PCA data resulted in three distinct clusters that were characterized by source (p-value = .00458). All subsets regressions showed that seminal plasma sodium content was the best single predictor for swimming velocity and percent motility of both captive and wild sourced sperm. These differences in seminal plasma composition could be contributing to the observed lower quality sperm from captive individuals in this species. Information presented here provides insight on shortnose sturgeon reproduction for both conservation and aquaculture programs." @default.
- W2912875058 created "2019-02-21" @default.
- W2912875058 creator A5032398776 @default.
- W2912875058 creator A5034173610 @default.
- W2912875058 date "2019-04-01" @default.
- W2912875058 modified "2023-10-18" @default.
- W2912875058 title "Relationship between seminal plasma composition and spermatozoa swimming speed and motility in wild and captive shortnose sturgeon (Acipenser brevirostrum)" @default.
- W2912875058 cites W1733268890 @default.
- W2912875058 cites W1845935544 @default.
- W2912875058 cites W1965270335 @default.
- W2912875058 cites W1965548780 @default.
- W2912875058 cites W1966486325 @default.
- W2912875058 cites W1966796304 @default.
- W2912875058 cites W1967263105 @default.
- W2912875058 cites W1970038179 @default.
- W2912875058 cites W1971938340 @default.
- W2912875058 cites W1974319229 @default.
- W2912875058 cites W1974611580 @default.
- W2912875058 cites W1985508589 @default.
- W2912875058 cites W1986385395 @default.
- W2912875058 cites W1989211264 @default.
- W2912875058 cites W1989883734 @default.
- W2912875058 cites W1995409633 @default.
- W2912875058 cites W1995924683 @default.
- W2912875058 cites W1996392626 @default.
- W2912875058 cites W1997824865 @default.
- W2912875058 cites W1999277457 @default.
- W2912875058 cites W1999937782 @default.
- W2912875058 cites W2008767698 @default.
- W2912875058 cites W2015345529 @default.
- W2912875058 cites W2016128666 @default.
- W2912875058 cites W2019781866 @default.
- W2912875058 cites W2026522546 @default.
- W2912875058 cites W2029060487 @default.
- W2912875058 cites W2032577103 @default.
- W2912875058 cites W2038923982 @default.
- W2912875058 cites W2039492538 @default.
- W2912875058 cites W2040031667 @default.
- W2912875058 cites W2043671811 @default.
- W2912875058 cites W2045082826 @default.
- W2912875058 cites W2048558334 @default.
- W2912875058 cites W2049399727 @default.
- W2912875058 cites W2061511525 @default.
- W2912875058 cites W2061639894 @default.
- W2912875058 cites W2062231596 @default.
- W2912875058 cites W2078689202 @default.
- W2912875058 cites W2089142727 @default.
- W2912875058 cites W2091362522 @default.
- W2912875058 cites W2098833607 @default.
- W2912875058 cites W2110137481 @default.
- W2912875058 cites W2118858386 @default.
- W2912875058 cites W2130384899 @default.
- W2912875058 cites W2132317868 @default.
- W2912875058 cites W2133551626 @default.
- W2912875058 cites W2141387141 @default.
- W2912875058 cites W2146888625 @default.
- W2912875058 cites W2157885640 @default.
- W2912875058 cites W2159234490 @default.
- W2912875058 cites W2166883218 @default.
- W2912875058 cites W2170559969 @default.
- W2912875058 cites W2186622970 @default.
- W2912875058 cites W2233252043 @default.
- W2912875058 cites W2379536786 @default.
- W2912875058 cites W2401062769 @default.
- W2912875058 cites W2523315196 @default.
- W2912875058 cites W2568240712 @default.
- W2912875058 cites W259590749 @default.
- W2912875058 cites W2609004252 @default.
- W2912875058 cites W2765645659 @default.
- W2912875058 cites W286277287 @default.
- W2912875058 cites W290499887 @default.
- W2912875058 cites W2927186945 @default.
- W2912875058 cites W4236316853 @default.
- W2912875058 doi "https://doi.org/10.1016/j.aquaculture.2019.02.033" @default.
- W2912875058 hasPublicationYear "2019" @default.
- W2912875058 type Work @default.
- W2912875058 sameAs 2912875058 @default.
- W2912875058 citedByCount "4" @default.
- W2912875058 countsByYear W29128750582020 @default.
- W2912875058 countsByYear W29128750582022 @default.
- W2912875058 crossrefType "journal-article" @default.
- W2912875058 hasAuthorship W2912875058A5032398776 @default.
- W2912875058 hasAuthorship W2912875058A5034173610 @default.
- W2912875058 hasConcept C126322002 @default.
- W2912875058 hasConcept C140793950 @default.
- W2912875058 hasConcept C178790620 @default.
- W2912875058 hasConcept C185592680 @default.
- W2912875058 hasConcept C2777632594 @default.
- W2912875058 hasConcept C2777784394 @default.
- W2912875058 hasConcept C2780504183 @default.
- W2912875058 hasConcept C2781087480 @default.
- W2912875058 hasConcept C2909208804 @default.
- W2912875058 hasConcept C505870484 @default.
- W2912875058 hasConcept C517785266 @default.
- W2912875058 hasConcept C519063684 @default.
- W2912875058 hasConcept C537181965 @default.
- W2912875058 hasConcept C59822182 @default.
- W2912875058 hasConcept C71924100 @default.