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保幼激素的早期处理对黑腹果蝇成熟成虫行为具有性别二态性影响。

Early manipulation of juvenile hormone has sexually dimorphic effects on mature adult behavior in Drosophila melanogaster.

机构信息

Department of Pharmacological and Physiological Science, St. Louis University School of Medicine, 1402 South Grand Boulevard, St. Louis, MO 63104, USA.

出版信息

Horm Behav. 2013 Sep;64(4):589-97. doi: 10.1016/j.yhbeh.2013.08.018. Epub 2013 Sep 4.

Abstract

Hormones are critical for the development, maturation, and maintenance of physiological systems; therefore, understanding their involvement during maturation of the brain is important for the elucidation of mechanisms by which adults become behaviorally competent. Changes in exogenous and endogenous factors encountered during sexual maturation can have long lasting effects in mature adults. In this study, we investigated the role of the gonadotropic hormone, juvenile hormone (JH), in the modulation of adult behaviors in Drosophila. Here we utilized methoprene (a synthetic JH analog) and precocene (a JH synthesis inhibitor) to manipulate levels of JH in sexually immature male and female Drosophila with or without decreased synthesis of neuronal dopamine (DA). Locomotion and courtship behavior were assayed once the animals had grown to sexual maturity. The results demonstrate a sexually dimorphic role for JH in the modulation of these centrally controlled behaviors in mature animals that is dependent on the age of the animals assayed, and present DA as a candidate neuronal factor that differentially interacts with JH depending on the sex of the animal. The data also suggest that JH modulates these behaviors through an indirect mechanism. Since gonadotropic hormones and DA interact in mammals to affect brain development and later function, our results suggest that this mechanism for the development of adult behavioral competence may be evolutionarily conserved.

摘要

激素对于生理系统的发育、成熟和维持至关重要;因此,了解它们在大脑成熟过程中的作用对于阐明成年人具有行为能力的机制非常重要。性成熟过程中遇到的外源性和内源性因素的变化可能会对成熟的成年人产生持久的影响。在这项研究中,我们调查了促性腺激素、保幼激素(JH)在调节果蝇成年行为中的作用。在这里,我们利用灭幼脲(一种合成 JH 类似物)和早熟素(一种 JH 合成抑制剂)来操纵未成熟雄性和雌性果蝇中 JH 的水平,同时减少神经元多巴胺(DA)的合成。一旦动物发育到性成熟,就会对其进行运动和求偶行为的测定。结果表明,JH 在调节成熟动物的这些中枢控制行为方面具有性别二态性作用,这种作用依赖于被检测动物的年龄,并且表明 DA 是一种候选神经元因子,它根据动物的性别与 JH 以不同的方式相互作用。该数据还表明,JH 通过间接机制来调节这些行为。由于在哺乳动物中,促性腺激素和 DA 相互作用影响大脑发育和随后的功能,因此我们的结果表明,这种发展成年行为能力的机制可能在进化上是保守的。

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