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Anatomy and function of the African clawed frog vocal system is altered by the brominated flame retardant, PBDE-209.

机译:溴化阻燃剂PBDE-209改变了非洲爪蛙声带系统的解剖结构和功能。

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摘要

Vocal communication allows animals to express distress, territoriality, and most important, to attract mates. In the African Clawed frog, Xenopus laevis, vocal communication is unique, because not only do males advertise for mates using elaborate click vocalizations, but also females are able to advertise their reproductive readiness by eliciting a "rapping" call. Sex differences in vocal repertoire match sex differences in vocal circuitry. During development, the vocal circuitry in the male grows increasingly sensitive to circulating androgens. Androgens induce tremendous growth in the cartilage and musculature of the peripheral vocal organ, the larynx. Net addition of synapses and motor fibers soon follow providing communication from the motor nucleus in the hindbrain to the vocal organ. The laryngeal motor nucleus, n. IX-X, accumulates androgens that serve to protect n. IX-X neurons from programmed apoptosis. Females, who have low levels of circulating androgens, experience a profound net loss on n. IX-X neurons during this developmental critical period. Once the frogs reach sexual maturity males possess larger and more numerous n. IX-X neurons than females, as well as sizable sex differences in laryngeal robustness and physiology. These measurable sex differences yield vastly different vocal programs Androgens continue to maintain a critical role in governing breeding season trophic effects and mediating call production. Because male X. laevis are so susceptible to the effects of androgens, they may also be sensitive to the actions of endocrine disrupting chemical agents. The vocal system of X. laevis and its androgen sensitivity thus provide an ideal model for studying changes imposed to the anatomy and physiology of the system by the brominated flame retardant, PBDE-209, a putative anti-androgen and common pollutant. The present studies investigate how PBDE-209 affects the male vocal system when animals are exposed during the androgen-sensitive critical period of vocal system development and during adulthood when the tissues are utilizing androgens to vocalize. PBDE-209 effectively reduces male n. IX-X number and size at higher concentrations after exposure during the organizational critical period. Similar dose-dependent effects were observed in adult n. IX-X neurons. Moreover, PBDE-209 inhibited male-typical vocalization by reducing the number of calls elicited as well as the average call amplitude. These data strongly suggest that PBDE-209 has cytotoxic effects that alter n. IX-X anatomy and function, and may be mediated through pathways that include blocking the androgens necessary for proper vocal system development.
机译:声音交流可以使动物表达困扰,领地,最重要的是吸引伴侣。在非洲爪蛙(Xenopus laevis)中,声音交流是独特的,因为雄性不仅使用精心制作的点击发声为伴侣做广告,而且雌性也能够通过发出“敲打”声来宣传其生殖准备状态。人声库中的性别差异与人声回路中的性别差异匹配。在发育过程中,雄性的声带对循环的雄激素越来越敏感。雄激素诱导周围声带(喉)的软骨和肌肉组织大量生长。紧接着净增加突触和运动纤维,以提供从后脑中的运动核到声带的通讯。喉运动核,n。 IX-X会积聚保护n的雄激素。 IX-X神经元来自程序性细胞凋亡。循环雄激素水平低的雌性经历n上的巨大净损失。在这个发展关键时期的IX-X神经元。一旦青蛙达到性成熟,雄性便拥有更大和更多的n。 IX-X神经元比女性多,以及在性别和性别上差异很大,喉的健壮性和生理性也不同。这些可测量的性别差异产生了截然不同的人声程序。雄激素在控制繁殖季节的营养作用和介导产气的过程中继续发挥关键作用。由于男性X. Laevis对雄激素的作用非常敏感,因此它们也可能对破坏内分泌的化学物质的作用敏感。因此,X.laevis的人声系统及其对雄激素的敏感性为研究溴化阻燃剂PBDE-209(一种假定的抗雄激素和常见污染物)对系统的解剖学和生理变化的变化提供了理想的模型。本研究调查了当动物在对雄激素敏感的声音系统发育的关键时期以及在成年期组织利用雄激素进行发声时暴露于动物时,PBDE-209如何影响男性的声音系统。 PBDE-209有效地减少了雄性n。在组织关键时期内暴露于较高浓度下的IX-X数量和大小。在成年n中观察到类似的剂量依赖性作用。 IX-X神经元。此外,PBDE-209通过减少引起的呼叫次数以及平均呼叫幅度来抑制男性典型发声。这些数据强烈表明PBDE-209具有改变n的细胞毒性作用。 IX-X的解剖结构和功能,可能通过阻断包括适当的人声系统发育所必需的雄激素的途径介导。

著录项

  • 作者

    Ganser, Lisa Rania.;

  • 作者单位

    University of Miami.;

  • 授予单位 University of Miami.;
  • 学科 Biology Neuroscience.;Health Sciences Toxicology.;Biology Animal Physiology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经科学;生理学;毒物学(毒理学);
  • 关键词

  • 入库时间 2022-08-17 11:37:36

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