首页> 外文期刊>Behavioural Brain Research: An International Journal >Spatial ability of XY sex-reversed female mice.
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Spatial ability of XY sex-reversed female mice.

机译:XY性别反转的雌性小鼠的空间能力。

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Perinatal gonadal hormones significantly affect subsequent sex differences in reproductive and non-reproductive behaviors in rodents. However, the influence of the sex chromosomes on these behaviors has been largely ignored. To assess the influence of the non-pseudoautosomal region of the Y chromosome, C57BL/JEi male and female mice and mice from the C57BL/6JEi-Y(POS) consomic strain were given behavioral tests known to distinguish males from females. The C57BL/6JEi-Y(POS) strain contains sex-reversed XY-females which, when compared to their XX-female siblings, allow assessment of the influence of the Y chromosome in a female phenotype. XX-females and XY-females did not differ on open-field activity, the Lashley maze, or active avoidance learning, but XY-females were significantly better than XX-females on the Morris hidden platform spatial maze. These findings suggest that males may have both a genetic and a hormonal mechanism to ensure visuospatial superiority.
机译:围产期性腺激素显着影响啮齿动物生殖和非生殖行为的性别差异。但是,性染色体对这些行为的影响已被大大忽略。为了评估Y染色体的非伪常染色体区域的影响,对C57BL / JEi雄性和雌性小鼠以及来自C57BL / 6JEi-Y(POS)纯系的小鼠进行了行为测试,以区分雄性和雌性。 C57BL / 6JEi-Y(POS)菌株含有逆性别的XY-雌性,与XX-雌性同胞相比,可以评估Y染色体对雌性表型的影响。 XX女性和XY女性在野外活动,Lashley迷宫或主动回避学习方面没有差异,但是在Morris隐藏平台空间迷宫中,XY女性明显优于XX女性。这些发现表明,男性可能具有遗传和激素机制,以确保视觉空间优势。

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