Matches in SemOpenAlex for { <https://semopenalex.org/work/W1884353971> ?p ?o ?g. }
- W1884353971 endingPage "3875" @default.
- W1884353971 startingPage "3866" @default.
- W1884353971 abstract "Adaptation to novel environments can be based either on standing genetic variation or variation attributable to new mutations. When standing genetic variation for a functional adaptation is lacking, and variation due to new mutations is not yet available, adaptation is possible only through alternative functional solutions. Reduction in the number of bony lateral plates as an adaptation to freshwater colonization by marine threespine sticklebacks (Gasterosteus aculeatus) has occurred in numerous independent cases through allelic substitution in the ectodysplasin-a (Eda) gene. Studying the phenotypic and genetic variation in plate number and size in five marine and six freshwater threespine stickleback populations, we found that when variation in Eda was limiting (i.e., alleles associated with the low-plate morph were missing or in extremely low frequency), plate number reduction did not take place in freshwater populations, but reduced lateral plate coverage was achieved by a reduction in the size of lateral plates. Our results suggest that this phenotypically and genetically discrete small-plated threespine stickleback-which is the dominant form in three northern European freshwater populations-may be functionally equivalent to the low-plated morph and hence, serve as an example of convergent evolution toward functional similarity in the face of genetic constraints." @default.
- W1884353971 created "2016-06-24" @default.
- W1884353971 creator A5001654353 @default.
- W1884353971 creator A5014987588 @default.
- W1884353971 creator A5034602704 @default.
- W1884353971 creator A5070812183 @default.
- W1884353971 date "2012-07-15" @default.
- W1884353971 modified "2023-10-06" @default.
- W1884353971 title "MULTIPLE EVOLUTIONARY PATHWAYS TO DECREASED LATERAL PLATE COVERAGE IN FRESHWATER THREESPINE STICKLEBACKS" @default.
- W1884353971 cites W1482606546 @default.
- W1884353971 cites W1541080281 @default.
- W1884353971 cites W1604887447 @default.
- W1884353971 cites W1717591678 @default.
- W1884353971 cites W1832287255 @default.
- W1884353971 cites W1855640907 @default.
- W1884353971 cites W1855857669 @default.
- W1884353971 cites W1909945249 @default.
- W1884353971 cites W1965414540 @default.
- W1884353971 cites W1969394745 @default.
- W1884353971 cites W1980959426 @default.
- W1884353971 cites W1987250952 @default.
- W1884353971 cites W1990545199 @default.
- W1884353971 cites W1990622520 @default.
- W1884353971 cites W1991839135 @default.
- W1884353971 cites W1999860971 @default.
- W1884353971 cites W2004311967 @default.
- W1884353971 cites W2019384005 @default.
- W1884353971 cites W2031197222 @default.
- W1884353971 cites W2031911789 @default.
- W1884353971 cites W2035915518 @default.
- W1884353971 cites W2040419582 @default.
- W1884353971 cites W2041516978 @default.
- W1884353971 cites W2048619570 @default.
- W1884353971 cites W2051409611 @default.
- W1884353971 cites W2054846002 @default.
- W1884353971 cites W2059427482 @default.
- W1884353971 cites W2063811400 @default.
- W1884353971 cites W2065442628 @default.
- W1884353971 cites W2067179948 @default.
- W1884353971 cites W2068909154 @default.
- W1884353971 cites W2070963882 @default.
- W1884353971 cites W2077053002 @default.
- W1884353971 cites W2078074521 @default.
- W1884353971 cites W2080280611 @default.
- W1884353971 cites W2083176026 @default.
- W1884353971 cites W2083653513 @default.
- W1884353971 cites W2085456087 @default.
- W1884353971 cites W2093186054 @default.
- W1884353971 cites W2096819448 @default.
- W1884353971 cites W2100481775 @default.
- W1884353971 cites W2101341738 @default.
- W1884353971 cites W2106756635 @default.
- W1884353971 cites W2110770298 @default.
- W1884353971 cites W2112457283 @default.
- W1884353971 cites W2116428365 @default.
- W1884353971 cites W2130517250 @default.
- W1884353971 cites W2139002835 @default.
- W1884353971 cites W2144673831 @default.
- W1884353971 cites W2144690130 @default.
- W1884353971 cites W2144968780 @default.
- W1884353971 cites W2146290595 @default.
- W1884353971 cites W2149399985 @default.
- W1884353971 cites W2153402526 @default.
- W1884353971 cites W2155979267 @default.
- W1884353971 cites W2165725065 @default.
- W1884353971 cites W2167464793 @default.
- W1884353971 cites W2171463101 @default.
- W1884353971 cites W2171883764 @default.
- W1884353971 cites W2175330666 @default.
- W1884353971 cites W2175952296 @default.
- W1884353971 cites W2253414912 @default.
- W1884353971 cites W2329961743 @default.
- W1884353971 cites W4231331588 @default.
- W1884353971 cites W4234812966 @default.
- W1884353971 cites W4239168924 @default.
- W1884353971 cites W4239578406 @default.
- W1884353971 cites W4239664443 @default.
- W1884353971 cites W4249811289 @default.
- W1884353971 cites W4255757934 @default.
- W1884353971 cites W434562906 @default.
- W1884353971 doi "https://doi.org/10.1111/j.1558-5646.2012.01724.x" @default.
- W1884353971 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/23206143" @default.
- W1884353971 hasPublicationYear "2012" @default.
- W1884353971 type Work @default.
- W1884353971 sameAs 1884353971 @default.
- W1884353971 citedByCount "47" @default.
- W1884353971 countsByYear W18843539712013 @default.
- W1884353971 countsByYear W18843539712014 @default.
- W1884353971 countsByYear W18843539712015 @default.
- W1884353971 countsByYear W18843539712016 @default.
- W1884353971 countsByYear W18843539712017 @default.
- W1884353971 countsByYear W18843539712018 @default.
- W1884353971 countsByYear W18843539712019 @default.
- W1884353971 countsByYear W18843539712020 @default.
- W1884353971 countsByYear W18843539712021 @default.
- W1884353971 countsByYear W18843539712022 @default.
- W1884353971 countsByYear W18843539712023 @default.
- W1884353971 crossrefType "journal-article" @default.