Matches in SemOpenAlex for { <https://semopenalex.org/work/W2005878462> ?p ?o ?g. }
- W2005878462 endingPage "100" @default.
- W2005878462 startingPage "89" @default.
- W2005878462 abstract "Genetic linkage maps of turbot, Scophthalmus maximus L., were constructed using a “double pseudo-testcross” strategy with 158 microsatellite markers. The parents and F1 progeny (100 individuals) were used as segregating populations. We identified 21 and 30 genetic linkage groups in the male and female maps, respectively. The male linkage map was composed of 110 loci and spanned 721.7 cM, with an average intermarker spacing of 9.9 cM, while the female map was composed of 110 loci and spanned 919.1 cM, with an average intermarker spacing of 12.9 cM. The estimated coverage of the linkage maps was 63.5% for the male and 54.2% for the female, based on two estimates of genome length. The ratio of male:female recombination rates for shared markers was 1:1.3. This study represents the second microsatellite genetic linkage map for turbot. In addition, we conducted quantitative trait loci mapping of important economical traits. One possible QTL associated with turbot body length was detected on male linkage group 7. This QTL will be validated in a successive study and is expected to be useful in molecular marker-assisted selection in turbot." @default.
- W2005878462 created "2016-06-24" @default.
- W2005878462 creator A5009811777 @default.
- W2005878462 creator A5036449475 @default.
- W2005878462 creator A5070408930 @default.
- W2005878462 creator A5077258152 @default.
- W2005878462 creator A5082306606 @default.
- W2005878462 date "2010-10-01" @default.
- W2005878462 modified "2023-09-23" @default.
- W2005878462 title "Genetic linkage mapping of turbot (Scophthalmus maximus L.) using microsatellite markers and its application in QTL analysis" @default.
- W2005878462 cites W1227521303 @default.
- W2005878462 cites W1546692678 @default.
- W2005878462 cites W1584024201 @default.
- W2005878462 cites W1838763289 @default.
- W2005878462 cites W1949383699 @default.
- W2005878462 cites W1974670959 @default.
- W2005878462 cites W1988713956 @default.
- W2005878462 cites W1990566629 @default.
- W2005878462 cites W2010794294 @default.
- W2005878462 cites W2011536338 @default.
- W2005878462 cites W2015088484 @default.
- W2005878462 cites W2026413779 @default.
- W2005878462 cites W2032490804 @default.
- W2005878462 cites W2033910655 @default.
- W2005878462 cites W2035300013 @default.
- W2005878462 cites W2035341032 @default.
- W2005878462 cites W2038574100 @default.
- W2005878462 cites W2051072682 @default.
- W2005878462 cites W2052733228 @default.
- W2005878462 cites W2053857005 @default.
- W2005878462 cites W2058052807 @default.
- W2005878462 cites W2078062797 @default.
- W2005878462 cites W2082781616 @default.
- W2005878462 cites W2087770569 @default.
- W2005878462 cites W2087970835 @default.
- W2005878462 cites W2090668070 @default.
- W2005878462 cites W2092095418 @default.
- W2005878462 cites W2095912536 @default.
- W2005878462 cites W2096368515 @default.
- W2005878462 cites W2098563624 @default.
- W2005878462 cites W2106610614 @default.
- W2005878462 cites W2109005582 @default.
- W2005878462 cites W2110930786 @default.
- W2005878462 cites W2118781770 @default.
- W2005878462 cites W2119408585 @default.
- W2005878462 cites W2120259257 @default.
- W2005878462 cites W2122098721 @default.
- W2005878462 cites W2130869979 @default.
- W2005878462 cites W2132932155 @default.
- W2005878462 cites W2136163227 @default.
- W2005878462 cites W2143385263 @default.
- W2005878462 cites W2149480779 @default.
- W2005878462 cites W2154539507 @default.
- W2005878462 cites W2164984363 @default.
- W2005878462 cites W2168558754 @default.
- W2005878462 cites W2373848386 @default.
- W2005878462 cites W4245598032 @default.
- W2005878462 doi "https://doi.org/10.1016/j.aquaculture.2010.08.010" @default.
- W2005878462 hasPublicationYear "2010" @default.
- W2005878462 type Work @default.
- W2005878462 sameAs 2005878462 @default.
- W2005878462 citedByCount "49" @default.
- W2005878462 countsByYear W20058784622012 @default.
- W2005878462 countsByYear W20058784622013 @default.
- W2005878462 countsByYear W20058784622014 @default.
- W2005878462 countsByYear W20058784622015 @default.
- W2005878462 countsByYear W20058784622016 @default.
- W2005878462 countsByYear W20058784622017 @default.
- W2005878462 countsByYear W20058784622018 @default.
- W2005878462 countsByYear W20058784622019 @default.
- W2005878462 countsByYear W20058784622020 @default.
- W2005878462 countsByYear W20058784622021 @default.
- W2005878462 countsByYear W20058784622022 @default.
- W2005878462 countsByYear W20058784622023 @default.
- W2005878462 crossrefType "journal-article" @default.
- W2005878462 hasAuthorship W2005878462A5009811777 @default.
- W2005878462 hasAuthorship W2005878462A5036449475 @default.
- W2005878462 hasAuthorship W2005878462A5070408930 @default.
- W2005878462 hasAuthorship W2005878462A5077258152 @default.
- W2005878462 hasAuthorship W2005878462A5082306606 @default.
- W2005878462 hasConcept C104317684 @default.
- W2005878462 hasConcept C121212380 @default.
- W2005878462 hasConcept C122735190 @default.
- W2005878462 hasConcept C142870003 @default.
- W2005878462 hasConcept C180754005 @default.
- W2005878462 hasConcept C190789776 @default.
- W2005878462 hasConcept C2779282177 @default.
- W2005878462 hasConcept C2779364044 @default.
- W2005878462 hasConcept C2909208804 @default.
- W2005878462 hasConcept C2910604640 @default.
- W2005878462 hasConcept C30481170 @default.
- W2005878462 hasConcept C31266012 @default.
- W2005878462 hasConcept C505870484 @default.
- W2005878462 hasConcept C54355233 @default.
- W2005878462 hasConcept C61320498 @default.
- W2005878462 hasConcept C78458016 @default.
- W2005878462 hasConcept C81941488 @default.
- W2005878462 hasConcept C86803240 @default.