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An integrated evaluation of costs and benefits of corticosterone secretion through development.

机译:通过发展对皮质类固醇分泌的成本和收益进行综合评估。

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摘要

Glucocorticoids (GCs) play critical roles during development: transient increases in GCs facilitate anticipatory physiological changes and trigger ontogenetic transitions such as promoting fetal/embryonic organ maturation and initiating birth/hatching. In contrast, chronically elevated GCs can be detrimental to growth, cognition, and survival. Thus, animals going through substantial growth may have higher corticosteroid binding globulin (CBG) levels, or enhance negative feedback/tonic inhibition on the hypothalamic-pituitary-adrenal (HPA) axis to keep GCs levels low. Here I investigated these hypotheses using altricial white-crowned sparrow nestlings. I examined (1) the ontogeny of the corticosterone (CORT) response (both total and free hormone levels), (2) changes in corticosteroid receptor levels in brain with age, and (3) effects of acute and extended elevation of CORT on behavior and growth.; In response to acute stress, nestlings showed a low HPA reactivity in total CORT during the first 1/3 of the nestling period. When free CORT is considered, this hyporesponsive period was extended to 2/3 of the nestling period, suggesting CBG is one of the mechanisms to keep free CORT low. These periods coincided with rapid mass gain and acquiring thermoregulatory ability. The low reactivity was partly due to a dampened sensitivity at pituitary level or higher as all stages of nestlings responded to adrenocorticotropic hormone challenges; however it was not due to an enhanced negative feedback/tonic inhibition on hypothalamus or hippocampus. When CORT levels were artificially elevated, I only observed detrimental effects on begging behavior and growth. These series of data elucidated the ontogeny of the HPA axis in altricial nestlings regarding CORT, binding globulin, and receptor levels. In addition, I found that measured effects of exogenous CORT are primarily costly and highly age-specific.
机译:糖皮质激素(GC)在发育过程中起关键作用:GC的短暂增加促进了预期的生理变化并触发了个体发育转变,例如促进胎儿/胚胎器官成熟和开始出生/孵化。相反,长期升高的GC可能不利于生长,认知和生存。因此,经过大量生长的动物可能具有较高的皮质类固醇结合球蛋白(CBG)水平,或增强了对下丘脑-垂体-肾上腺(HPA)轴的负反馈/张力抑制,从而使GC的水平保持较低。在这里,我使用白色的白冠麻雀雏鸟研究了这些假设。我检查了(1)皮质酮(CORT)反应的个体发生率(总激素水平和游离激素水平),(2)大脑中皮质类固醇受体水平随年龄的变化,以及(3)CORT急性和长期升高对行为的影响和增长。为了应对急性压力,在刚孵出的前1/3期间,雏鸟的总CORT表现出低HPA反应性。当考虑使用免费CORT时,该反应不足的时期延长到了雏鸟时期的2/3,这表明CBG是保持免费CORT低的机制之一。这些时期与快速质量增加和获得温度调节能力相吻合。反应性低的部分原因是垂体水平或更高水平下的敏感性降低,因为所有阶段的雏鸟都对促肾上腺皮质激素的反应有反应。然而,这并不是由于对下丘脑或海马的负反馈/声压抑制作用增强所致。当人为提高CORT水平时,我仅观察到对乞讨行为和生长的有害影响。这些系列的数据阐明了在雏鸟中有关CORT,结合球蛋白和受体水平的HPA轴的存在。此外,我发现,测量外源性CORT的效果主要是成本高昂且具有特定年龄特征。

著录项

  • 作者

    Wada, Haruka.;

  • 作者单位

    The University of Texas at Austin.$bIntegrative Biology.;

  • 授予单位 The University of Texas at Austin.$bIntegrative Biology.;
  • 学科 Biology Physiology.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 124 p.
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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