首页> 外文学位 >The effect of male-male competition and its underlying regulatory mechanisms on the electric signal of the gymnotiform fish Brachyhypopomus gauderio.
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The effect of male-male competition and its underlying regulatory mechanisms on the electric signal of the gymnotiform fish Brachyhypopomus gauderio.

机译:雄对雄竞争及其潜在调控机制对裸not形鱼类Brachyhypopomus gauderio的电信号的影响。

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摘要

Sexually-selected communication signals can be used by competing males to settle contests without incurring the costs of fighting. The ability to dynamically regulate the signal in a context-dependent manner can further minimize the costs of male aggressive interactions. Such is the case in the gymnotiform fish Brachyhypopomus gauderio, which, by coupling its electric organ discharge (EOD) waveform to endocrine systems with circadian, seasonal, and behavioral drivers, can regulate its signal to derive the greatest reproductive benefit. My dissertation research examined the functional role of the EOD plasticity observed in male B. gauderio and the physiological mechanisms that regulate the enhanced male EOD. To evaluate whether social competition drives the EOD changes observed during male-male interactions, I manipulated the number of males in breeding groups to create conditions that exemplified low and high competition and measured their EOD and steroid hormone levels. My results showed that social competition drives the enhancement of the EOD amplitude of male B. gauderio. In addition, changes in the EOD of males due to changes in their social environment were paralleled by changes in the levels of androgens and cortisol. I also examined the relationship between body size asymmetry, EOD waveform parameters, and aggressive physical behaviors during male-male interactions in B. gauderio, in order to understand more fully the role of EOD waveforms as reliable signals. While body size was the best determinant of dominance in male B. gauderio, EOD amplitude reliably predicted body condition, a composite of length and weight, for fish in good body condition. To further characterize the mechanisms underlying the relationship between male-male interactions and EOD plasticity, I identified the expression of the serotonin receptor 1A, a key player in the regulation of aggressive behavior, in the brains of B. gauderio. I also identified putative regulatory regions in this receptor in B. gauderio and other teleost fish, highlighting the presence of additional plasticity. In conclusion, male-male competition seems to be a strong selective driver in the evolution of the male EOD plasticity in B. gauderio via the regulatory control of steroid hormones and the serotonergic system.
机译:竞争中的男性可以使用按性别选择的通信信号来解决比赛,而不会产生战斗成本。以上下文相关的方式动态调节信号的能力可以进一步最小化男性积极互动的成本。裸鳍鱼类Brachyhypopomus gauderio就是这种情况,通过将其电器官放电(EOD)波形与昼夜,季节性和行为驱动因素耦合到内分泌系统,可以调节其信号以获得最大的繁殖效益。我的论文研究检查了在男性B. gauderio中观察到的EOD可塑性的功能作用,以及调节增强的男性EOD的生理机制。为了评估社交竞争是否会推动雄性-雄性互动过程中观察到的EOD变化,我操纵了育种组中的雄性数量,创造了体现低竞争和高竞争性的条件,并测量了其EOD和类固醇激素水平。我的结果表明,社会竞争推动了雄性博德特氏菌EOD幅度的提高。此外,由于男性社交环境的改变,其EOD的变化与雄激素和皮质醇水平的变化平行。为了更全面地了解EOD波形作为可靠信号的作用,我还检查了体型不对称,EOD波形参数和雄性-雄性互动过程中积极的身体行为之间的关系。体型是雄性博德布鲁氏菌中优势的最佳决定因素,而EOD振幅可靠地预测了身体状况良好的鱼类的身体状况,其长度和体重的综合。为了进一步表征雄性-雄性相互作用与EOD可塑性之间关系的潜在机制,我确定了血清B. gauderio大脑中5-羟色胺受体1A的表达,这是调节攻击行为的关键因素。我还鉴定了B. gauderio和其他硬骨鱼中该受体的推定调控区,突出了额外可塑性的存在。总之,通过类固醇激素和5-羟色胺能系统的调控,雄性-雄性竞争似乎是雄性芽孢杆菌中男性EOD可塑性演化的一个强大的选择性驱动力。

著录项

  • 作者

    Salazar, Vielka Lineth.;

  • 作者单位

    Florida International University.;

  • 授予单位 Florida International University.;
  • 学科 Biology Endocrinology.;Biology Physiology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 168 p.
  • 总页数 168
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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