首页> 外文学位 >The role of the deviate gene in foraging behavior and response to environmental conditions in the eastern subterranean termite, Reticulitermes flavipes (Kollar).
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The role of the deviate gene in foraging behavior and response to environmental conditions in the eastern subterranean termite, Reticulitermes flavipes (Kollar).

机译:变异基因在东部地下白蚁Reticulitermes flavipes(Kollar)的觅食行为和对环境条件的响应中的作用。

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摘要

The Reticulitermes flavipes deviate gene was investigated to determine its role in termites' response to environmental changes, as well as its effect on important termite behaviors such as trail following and foraging.;The deviate gene was expressed in all four termite body regions that were sampled (antennae, head, thorax, and abdomen), and the gene was also present in the three phenotypes sampled (worker, solder, and nymph).;To examine the effect of photoperiod on deviate expression, termites were held in either light, dark, or light/dark cycle conditions. These differences in light conditions resulted in altered deviate expression between light and dark treatments, suggesting a possible connection between the deviate gene and termite circadian rhythm.;Temperature did not appear to alter deviate expression across the range tested (17°C--27°C), however when juvenile hormone was added to identical temperature treatments, a difference in gene expression was observed between 17°C and 22°C. This information may suggest that the deviate gene is suppressed by juvenile hormone, and that deviate may play a role in the processes associated with caste maintenance and differentiation in termites. Additionally, when RNA-interference (RNAi) was used to silence deviate gene expression, deviate silenced worker termites held in dishes containing a food source treated with juvenile hormone III did not show significant differences from controls in the number presoldiers that developed or the timing of presoldier development. These findings may further support the hypothesis that deviate expression in termites decreases as juvenile hormone increases.;Finally, RNAi gene silencing was used to examine the behavioral role of the deviate gene. First a time-course for the RNAi silencing process was developed using quantitative real-time PCR. It was determined that injections with a short-interfering RNA (siRNA) concentration of 1 ng/0.0036 mul resulted in deviate gene silencing to 53.6% of pre-injection levels 24 hours after injection. Deviate expression returned to full pre-injection levels 48 hours after injection. When termites were injected with deviate silencing siRNA and placed in an arena which required them to move 1 meter to find food, the time these termites required to locate the new food source was not significantly different from controls. However, termites showed reduced trail following accuracy 24, 48, and 72 hours after deviate silencing RNAi injections. These results suggest that while deviate expression may not alter the ability of termites to move, it plays a role in trail following accuracy and the ability to detect trails.;These studies have provided insight into the biological and behavioral role of the deviate gene in Reticulitermes flavipes , and constructed ideas for future research to further elucidate the role of this gene in termites.
机译:研究了Reticulitermes flavipes偏离基因,以确定其在白蚁对环境变化的响应中的作用,以及其对重要白蚁行为(如追踪和觅食)的影响。;在采样的所有四个白蚁体区均表达了该偏离基因(触角,头,胸和腹部),并且该基因也存在于所采样的三种表型中(工人,焊锡和若虫)。为了检查光周期对偏离表达的影响,将白蚁分别置于亮,暗中,或明/暗循环条件。这些光照条件的差异导致明暗处理之间的偏离表达发生变化,这表明偏离基因与白蚁昼夜节律之间可能存在联系;温度在整个测试温度范围内(17°C--27° C),但是当在相同的温度处理中添加少年激素时,在17°C和22°C之间观察到基因表达的差异。该信息可能表明,该偏离的基因被少年激素抑制,并且该偏离可能在与白蚁的种姓维持和分化相关的过程中起作用。此外,当使用RNA干扰(RNAi)沉默偏离基因表达的基因时,容纳在含有用少年激素III处理的食物来源的盘子中的沉默沉默的工蚁白蚁与对照组相比没有显示出显着差异。前士兵的发展。这些发现可能进一步支持以下假设:白蚁中异常表达随幼体激素的增加而减少。最后,RNAi基因沉默被用来检验异常基因的行为作用。首先,使用定量实时PCR为RNAi沉默过程开发了一个时程。已确定,以1 ng / 0.0036 mul的短干扰RNA(siRNA)浓度进行注射后,基因沉默会在注射后24小时内降低至注射前水平的53.6%。注射后48小时,偏离的表达恢复到完全注射前水平。当白蚁注射偏离沉默的siRNA并将其放置在需要它们移动1米才能找到食物的竞技场中时,这些白蚁寻找新食物来源所需的时间与对照相比没有显着差异。但是,白蚁在沉默RNAi注射后24、48和72小时显示的追踪精度降低。这些结果表明,尽管偏离的表达可能不会改变白蚁的移动能力,但它在跟踪追踪的准确性和检测线索的能力中发挥了作用。这些研究提供了洞察变异基因在网白蚁中的生物学和行为作用的见解。黄酮,并构筑了进一步研究的思路,以进一步阐明该基因在白蚁中的作用。

著录项

  • 作者

    Schwinghammer, Margaret A.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Entomology.
  • 学位 Ph.D.
  • 年度 2008
  • 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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