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- W2899373487 abstract "The expression profiles of key genes associated with sex differentiation in vertebrates, namely, amh, ar, cyp19, dmrt1, erα, erβ, foxl2, sox9, star, and vtg, were analyzed in the gonads, liver, muscle, and brain of Russian sturgeon (Acipenser gueldenstaedtii). The aims of this study were to determine in which tissue the signal for sex differentiation primarily occurs, and which factors are most important for gonadal differentiation. The sturgeons included in the study (180 days post-hatching; n = 20) were at the beginning of gonadal differentiation; five females, seven males, and eight individuals with disturbed germinal tissue development were identified. All of the examined genes except for star had diverse sex-related expression profiles in the brain. By contrast, in the gonads, only foxl2 expression was sex-dependent. With the exception of star and cyp19, all of the other genes were expressed in the muscle and liver, but there were no significant differences between sexes. The expression profiles of the analyzed genes in the brain were atypical, indicating feminization. This finding was in agreement with the high occurrence of individuals sharing female and male germinal tissue characteristics. The data presented here suggest that the sturgeon brain is the primary organ that stimulates other organs and tissues to differentiate into male or female, and that dmrt1 and foxl2 play major roles in sex differentiation in this species." @default.
- W2899373487 created "2018-11-09" @default.
- W2899373487 creator A5015332113 @default.
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- W2899373487 creator A5057237929 @default.
- W2899373487 creator A5086704456 @default.
- W2899373487 date "2019-02-01" @default.
- W2899373487 modified "2023-09-26" @default.
- W2899373487 title "Sex-related gene expression profiles in various tissues of juvenile Russian sturgeon (Acipenser gueldenstaedtii)" @default.
- W2899373487 cites W1964784178 @default.
- W2899373487 cites W1966951453 @default.
- W2899373487 cites W1974121679 @default.
- W2899373487 cites W1976210947 @default.
- W2899373487 cites W1977494962 @default.
- W2899373487 cites W1977759371 @default.
- W2899373487 cites W1978798189 @default.
- W2899373487 cites W1983871586 @default.
- W2899373487 cites W1984242978 @default.
- W2899373487 cites W1986205831 @default.
- W2899373487 cites W1987830615 @default.
- W2899373487 cites W1991959445 @default.
- W2899373487 cites W1995827355 @default.
- W2899373487 cites W1996689072 @default.
- W2899373487 cites W1998320916 @default.
- W2899373487 cites W2001676460 @default.
- W2899373487 cites W2006856081 @default.
- W2899373487 cites W2007071598 @default.
- W2899373487 cites W2011925462 @default.
- W2899373487 cites W2015750766 @default.
- W2899373487 cites W2019018720 @default.
- W2899373487 cites W2021306295 @default.
- W2899373487 cites W2021864916 @default.
- W2899373487 cites W2022019906 @default.
- W2899373487 cites W2032019813 @default.
- W2899373487 cites W2033332148 @default.
- W2899373487 cites W2033837346 @default.
- W2899373487 cites W2034896330 @default.
- W2899373487 cites W2039537273 @default.
- W2899373487 cites W2042411862 @default.
- W2899373487 cites W2045565098 @default.
- W2899373487 cites W2050581082 @default.
- W2899373487 cites W2054807279 @default.
- W2899373487 cites W2055814744 @default.
- W2899373487 cites W2068217256 @default.
- W2899373487 cites W2075458954 @default.
- W2899373487 cites W2080701921 @default.
- W2899373487 cites W2080979332 @default.
- W2899373487 cites W2088377934 @default.
- W2899373487 cites W2094232995 @default.
- W2899373487 cites W2095473504 @default.
- W2899373487 cites W2097686052 @default.
- W2899373487 cites W2097890006 @default.
- W2899373487 cites W2106381149 @default.
- W2899373487 cites W2107022578 @default.
- W2899373487 cites W2108244474 @default.
- W2899373487 cites W2108336333 @default.
- W2899373487 cites W2109218990 @default.
- W2899373487 cites W2109474280 @default.
- W2899373487 cites W2111369394 @default.
- W2899373487 cites W2112444654 @default.
- W2899373487 cites W2119306878 @default.
- W2899373487 cites W2125522014 @default.
- W2899373487 cites W2125660465 @default.
- W2899373487 cites W2131111429 @default.
- W2899373487 cites W2131391777 @default.
- W2899373487 cites W2138293493 @default.
- W2899373487 cites W2139350439 @default.
- W2899373487 cites W2140061289 @default.
- W2899373487 cites W2143251305 @default.
- W2899373487 cites W2152930944 @default.
- W2899373487 cites W2153844215 @default.
- W2899373487 cites W2155834935 @default.
- W2899373487 cites W2157704923 @default.
- W2899373487 cites W2158701974 @default.
- W2899373487 cites W2161385552 @default.
- W2899373487 cites W2162947545 @default.
- W2899373487 cites W2163630709 @default.
- W2899373487 cites W2166805443 @default.
- W2899373487 cites W2175119691 @default.
- W2899373487 cites W2209451294 @default.
- W2899373487 cites W2413222884 @default.
- W2899373487 cites W2551213298 @default.
- W2899373487 cites W2588226240 @default.
- W2899373487 cites W2735189232 @default.
- W2899373487 cites W2756865170 @default.
- W2899373487 cites W2793643290 @default.
- W2899373487 cites W2797426702 @default.
- W2899373487 cites W2805011644 @default.
- W2899373487 cites W587542338 @default.
- W2899373487 doi "https://doi.org/10.1016/j.aquaculture.2018.10.066" @default.
- W2899373487 hasPublicationYear "2019" @default.
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