Matches in SemOpenAlex for { <https://semopenalex.org/work/W4221058827> ?p ?o ?g. }
- W4221058827 endingPage "856" @default.
- W4221058827 startingPage "849" @default.
- W4221058827 abstract "Abstract With the increasing use of triploid fish for sport fisheries management, biologists, researchers, and managers working in field environments need practical methods to determine ploidy. Cytological methods (e.g., flow cytometry, Coulter counter) using erythrocytes are the most common for ploidy determination in fishes. However, collecting and storing erythrocytes can be logistically challenging during field work, and donor fish need to be alive or freshly killed. With rapid advances in molecular genetics, biologists, researchers, and managers may be unaware of molecular approaches for ploidy determination that could alleviate the difficulties associated with cytological methods and allow ploidy determination from archived samples (e.g., fin clips, scales, otoliths). In this study, we analyzed the agreement between molecular‐based (using fin tissue) and Coulter counter‐based (using blood) ploidy determinations for Walleyes Stizostedion vitreum —the first assessment of concordance between molecular and cytological methods for determining ploidy in the family Percidae. We found that agreement between these two methods was >98%. The high degree of agreement and greater ease of collecting and storing samples for molecular‐based approaches relative to the traditional cytological ones support the utility of molecular methods for ploidy determination." @default.
- W4221058827 created "2022-04-03" @default.
- W4221058827 creator A5021639224 @default.
- W4221058827 creator A5026417620 @default.
- W4221058827 creator A5028640608 @default.
- W4221058827 creator A5043942889 @default.
- W4221058827 creator A5047912011 @default.
- W4221058827 creator A5054081692 @default.
- W4221058827 creator A5057415914 @default.
- W4221058827 creator A5077290988 @default.
- W4221058827 date "2022-05-11" @default.
- W4221058827 modified "2023-09-26" @default.
- W4221058827 title "Cytological and Molecular Approaches for Ploidy Determination: Results from a Wild Walleye Population" @default.
- W4221058827 cites W108699356 @default.
- W4221058827 cites W1966577358 @default.
- W4221058827 cites W1971853028 @default.
- W4221058827 cites W1985463985 @default.
- W4221058827 cites W1996772855 @default.
- W4221058827 cites W2003245500 @default.
- W4221058827 cites W2012034038 @default.
- W4221058827 cites W2015114198 @default.
- W4221058827 cites W2020588449 @default.
- W4221058827 cites W2031433002 @default.
- W4221058827 cites W2042678675 @default.
- W4221058827 cites W2053154970 @default.
- W4221058827 cites W2055987794 @default.
- W4221058827 cites W2057240799 @default.
- W4221058827 cites W2058338158 @default.
- W4221058827 cites W2064123602 @default.
- W4221058827 cites W2071893072 @default.
- W4221058827 cites W2075347931 @default.
- W4221058827 cites W2081092693 @default.
- W4221058827 cites W2088238164 @default.
- W4221058827 cites W2090625641 @default.
- W4221058827 cites W2114173373 @default.
- W4221058827 cites W2123897171 @default.
- W4221058827 cites W2125738325 @default.
- W4221058827 cites W2141501957 @default.
- W4221058827 cites W2148198189 @default.
- W4221058827 cites W2152610923 @default.
- W4221058827 cites W2154131760 @default.
- W4221058827 cites W2164777277 @default.
- W4221058827 cites W2170551349 @default.
- W4221058827 cites W2396408164 @default.
- W4221058827 cites W2419324624 @default.
- W4221058827 cites W2474518231 @default.
- W4221058827 cites W2514630633 @default.
- W4221058827 cites W2584793908 @default.
- W4221058827 cites W2613409938 @default.
- W4221058827 cites W2619222605 @default.
- W4221058827 cites W2763191885 @default.
- W4221058827 cites W2801257575 @default.
- W4221058827 cites W2899492655 @default.
- W4221058827 cites W2901695804 @default.
- W4221058827 cites W2904287167 @default.
- W4221058827 cites W2921842816 @default.
- W4221058827 cites W2953390219 @default.
- W4221058827 cites W2964313588 @default.
- W4221058827 cites W2969674343 @default.
- W4221058827 cites W2995026076 @default.
- W4221058827 cites W3040082758 @default.
- W4221058827 cites W3043251446 @default.
- W4221058827 cites W3098497550 @default.
- W4221058827 cites W3105883947 @default.
- W4221058827 cites W3132787468 @default.
- W4221058827 cites W3159374765 @default.
- W4221058827 cites W3163839795 @default.
- W4221058827 cites W3176868764 @default.
- W4221058827 cites W4214760215 @default.
- W4221058827 cites W4254687493 @default.
- W4221058827 cites W4300724950 @default.
- W4221058827 doi "https://doi.org/10.1002/nafm.10771" @default.
- W4221058827 hasPublicationYear "2022" @default.
- W4221058827 type Work @default.
- W4221058827 citedByCount "0" @default.
- W4221058827 crossrefType "journal-article" @default.
- W4221058827 hasAuthorship W4221058827A5021639224 @default.
- W4221058827 hasAuthorship W4221058827A5026417620 @default.
- W4221058827 hasAuthorship W4221058827A5028640608 @default.
- W4221058827 hasAuthorship W4221058827A5043942889 @default.
- W4221058827 hasAuthorship W4221058827A5047912011 @default.
- W4221058827 hasAuthorship W4221058827A5054081692 @default.
- W4221058827 hasAuthorship W4221058827A5057415914 @default.
- W4221058827 hasAuthorship W4221058827A5077290988 @default.
- W4221058827 hasBestOaLocation W42210588271 @default.
- W4221058827 hasConcept C104317684 @default.
- W4221058827 hasConcept C143191323 @default.
- W4221058827 hasConcept C160798450 @default.
- W4221058827 hasConcept C2908647359 @default.
- W4221058827 hasConcept C2909208804 @default.
- W4221058827 hasConcept C505870484 @default.
- W4221058827 hasConcept C54355233 @default.
- W4221058827 hasConcept C71924100 @default.
- W4221058827 hasConcept C86803240 @default.
- W4221058827 hasConcept C90856448 @default.
- W4221058827 hasConcept C99454951 @default.
- W4221058827 hasConceptScore W4221058827C104317684 @default.
- W4221058827 hasConceptScore W4221058827C143191323 @default.