Department of Zoology, University of Oklahoma, Norman, Oklahoma 73019-6121.
Integr Comp Biol. 2003 Nov;43(5):658-68. doi: 10.1093/icb/43.5.658.
In many species of animals, males may achieve reproductive success via one of several alternative reproductive tactics. Over the past decade or so, there has been a concerted effort to investigate endocrine mechanisms that underlie such discrete behavioral (and often morphological) variation. In vertebrates, the first generation of studies focused on potential organizational or activational effects of steroid hormones (Moore, 1991; Moore et al., 1998). Some of these studies have made it clear that, in addition to circulating hormone levels, one must also consider other aspects of the endocrine system, including hormone receptors, binding globulins and potential interactions among endocrine axes. In this paper, I review recent work on endocrine mechanisms and suggest possibilities for future investigation. I highlight how individual variation in sensitivity to environmental conditions, particularly with respect to various stressors, may account for the existence of alternative male reproductive phenotypes. Along these lines, I briefly explain the logic behind our work with male phenotypes of longear sunfish (Lepomis megalotis) that is aimed at determining the tissue-specific distribution and activity of two enzymes that are common to androgen and glucocorticoid metabolism. A major goal of our work is to examine the potential role of steroidogenic enzymes in the transduction of environmental information to influence the expression of alternative male reproductive phenotypes.
在许多动物物种中,雄性可能通过几种替代生殖策略之一来实现生殖成功。在过去的十年左右,人们一直在努力研究潜在的内分泌机制,这些机制是导致这种离散的行为(通常是形态)变化的基础。在脊椎动物中,第一代研究集中在类固醇激素的潜在组织或激活作用上(Moore,1991;Moore 等人,1998)。其中一些研究清楚地表明,除了循环激素水平外,还必须考虑内分泌系统的其他方面,包括激素受体、结合球蛋白以及内分泌轴之间的潜在相互作用。在本文中,我回顾了内分泌机制的最新研究,并提出了未来研究的可能性。我强调了个体对环境条件的敏感性的个体差异,特别是对各种应激源的敏感性,如何解释替代雄性生殖表型的存在。沿着这些思路,我简要解释了我们对长耳太阳鱼(Lepomis megalotis)雄性表型的工作背后的逻辑,该工作旨在确定两种常见于雄激素和糖皮质激素代谢的酶在组织特异性分布和活性上的差异。我们工作的一个主要目标是研究甾体生成酶在将环境信息转导为影响替代雄性生殖表型表达中的潜在作用。