养分依赖型/受pheromone控制的适应性进化:一个模型。

Socioaffective neuroscience & psychology Pub Date : 2013-06-14 eCollection Date: 2013-01-01 DOI:10.3402/snp.v3i0.20553
James Vaughn Kohl
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摘要

背景:促性腺激素释放激素(GnRH)神经分泌神经元的产前迁移使得营养物质和人类信息素能够改变GnRH的脉动性,从而调节神经内分泌系统、生殖系统和中枢神经系统的同步成熟,进而影响摄食行为、生殖性行为和其他行为的发展:该模型通过以下几个方面阐述了化学生态是如何驱动适应性进化的:(1)生态位构建;(2)社会位构建;(3)神经源位构建;以及(4)社会认知位构建。该模型体现了嗅觉/信息素调节的表观遗传效应,它改变了哺乳动物的遗传倾向、营养依赖、激素驱动的行为和对信息素的选择,信息素通过对黄体生成素(LH)和系统生物学的影响控制繁殖:结果:营养物质被代谢成信息素,信息素对行为的调节作用与食物气味对食物偏好相关行为的调节作用相同。嗅觉/信息素输入的表观遗传效应校准和规范了脑组织 GnRH 神经分泌神经元中由基因倾向性受体介导的细胞内信号变化和随机基因表达的分子机制。例如,葡萄糖和信息素会改变下丘脑分泌的 GnRH 和 LH。一种与酵母菌性取向相关的 GnRH 将营养获取、运动、繁殖以及从微生物到人类的物种多样化所需的反馈回路和发育过程的控制联系起来:环境驱动力从单细胞生物的营养摄取进化到昆虫的信息素控制的社会化。在哺乳动物中,食物气味和信息素会导致激素(如促肾上腺皮质激素)发生变化,从而对信息素控制的性行为产生发育影响。
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Nutrient-dependent/pheromone-controlled adaptive evolution: a model.

Background: The prenatal migration of gonadotropin-releasing hormone (GnRH) neurosecretory neurons allows nutrients and human pheromones to alter GnRH pulsatility, which modulates the concurrent maturation of the neuroendocrine, reproductive, and central nervous systems, thus influencing the development of ingestive behavior, reproductive sexual behavior, and other behaviors.

Methods: THIS MODEL DETAILS HOW CHEMICAL ECOLOGY DRIVES ADAPTIVE EVOLUTION VIA: (1) ecological niche construction, (2) social niche construction, (3) neurogenic niche construction, and (4) socio-cognitive niche construction. This model exemplifies the epigenetic effects of olfactory/pheromonal conditioning, which alters genetically predisposed, nutrient-dependent, hormone-driven mammalian behavior and choices for pheromones that control reproduction via their effects on luteinizing hormone (LH) and systems biology.

Results: Nutrients are metabolized to pheromones that condition behavior in the same way that food odors condition behavior associated with food preferences. The epigenetic effects of olfactory/pheromonal input calibrate and standardize molecular mechanisms for genetically predisposed receptor-mediated changes in intracellular signaling and stochastic gene expression in GnRH neurosecretory neurons of brain tissue. For example, glucose and pheromones alter the hypothalamic secretion of GnRH and LH. A form of GnRH associated with sexual orientation in yeasts links control of the feedback loops and developmental processes required for nutrient acquisition, movement, reproduction, and the diversification of species from microbes to man.

Conclusion: An environmental drive evolved from that of nutrient ingestion in unicellular organisms to that of pheromone-controlled socialization in insects. In mammals, food odors and pheromones cause changes in hormones such as LH, which has developmental affects on pheromone-controlled sexual behavior in nutrient-dependent reproductively fit individuals across species of vertebrates.

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