Department of Psychology, Michigan State University, East Lansing, MI 48824, USA.
Brain Res. 2013 Jun 23;1517:87-92. doi: 10.1016/j.brainres.2013.04.035. Epub 2013 Apr 27.
The neural song system in zebra finches is highly sexually dimorphic; only males sing and the brain regions controlling song are far larger in males than females. Estradiol (E2) administered during development can partially masculinize both structure and function. However, additional mechanisms, including those through which E2 may act, remain unclear. Male and female zebra finches were treated with E2 or control vehicle from post-hatching days 3 through 25, at which time norepinephrine (NE), dopamine (DA) and serotonin (5-HT) were measured in individual nuclei of the song system. Main effects of sex were not detected. However, E2 increased NE in the robust nucleus of the arcopallium (RA). In HVC (proper name), the hormone decreased 5-HT across the two sexes and increased DA in females only. These effects suggest that, while baseline levels of these neurotransmitters may not contribute to sexually dimorphic development of the song system, they could play specific roles in functions common to both sexes and/or in modification of the song system by exogenous E2.
在斑胸草雀中,神经歌曲系统存在高度的性别二态性;只有雄性会唱歌,并且控制歌曲的大脑区域在雄性中比在雌性中要大得多。在发育过程中给予雌二醇(E2)可以部分使结构和功能雄性化。然而,其他机制,包括 E2 可能作用的机制,仍然不清楚。雄性和雌性斑胸草雀在孵化后第 3 天至第 25 天期间接受 E2 或对照载体处理,此时在歌曲系统的各个核中测量去甲肾上腺素(NE)、多巴胺(DA)和血清素(5-HT)。没有检测到性别的主要影响。然而,E2 增加了弓状核(RA)中的去甲肾上腺素。在 HVC(正式名称)中,激素在两性中降低 5-HT,并仅在雌性中增加 DA。这些影响表明,尽管这些神经递质的基线水平可能不会导致歌曲系统的性别二态性发育,但它们可能在两性共同的功能中发挥特定作用,和/或在外源性 E2 对歌曲系统的修饰中发挥作用。