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Control of Drosophila larval behavioral transitions by peripheral sensory neurons.

机译:果蝇幼虫行为过渡的控制由周围的感觉神经元。

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摘要

Rapid growth through three larval instars prior to pupariation is key to formation of appropriately sized Drosophila adults. Since adults do not grow larger, timing of the reversal in food-associated behaviors from foraging to wandering and the resulting cessation of larval feeding is critical to final size. We demonstrate that larval food exit is preceded by a period of increased larval surfacing behavior termed the Intermediate Surfacing Transition (IST) that correlates with the end of larval feeding. The IST occurred during the larval Terminal Feeding Period (TFP), a period of constant feeding and exponential growth of the animal. IST behavior was dependent upon function of a subset of peripheral sensory neurons expressing the DEG/ENaC subunit Pickpocket1 (PPK1). Neuronal inactivation or loss of PPK1 function caused an absence of IST behavior, a consequent delay in larval food exit and an increase in final adult size presumably resulting from an extended TFP. Transgenic neuronal hypersensitization caused premature IST behavior with no change in timing of larval food exit resulting in decreased final adult size. These results suggest a peripheral sensory mechanism contributing to the length of the larval terminal feeding period and determination of final adult size.
机译:在幼虫化之前,通过三个幼虫期快速生长是形成适当大小的果蝇成虫的关键。由于成年人没有长大,因此与食物相关的行为从觅食转变为游荡的时机以及最终停止幼体喂养对最终规模至关重要。我们证明,在幼虫食物退出之前,会出现一段时期的幼虫堆砌行为增加,该现象被称为与幼虫喂养结束有关的中间堆焊过渡期(IST)。 IST发生在幼虫终末摄食期(TFP),即恒定摄食和动物指数生长的时期。 IST行为取决于表达DEG / ENaC亚基Pickpocket1(PPK1)的周围感觉神经元子集的功能。神经元失活或PPK1功能丧失导致缺乏IST行为,因此延迟了幼虫食物出口,并可能是由于TFP延长导致最终成年个体增加。转基因神经元超敏反应导致过早的IST行为,而幼虫退出食物的时间没有改变,导致最终成年个体的体积减小。这些结果表明,周围的感觉机制有助于幼虫末期进食期的长度和最终成年个体大小的确定。

著录项

  • 作者

    Wegman, Lauren Jocelyn.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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