...
首页> 外文期刊>Evolutionary biology >Changes Across Development Influence Visible and Cryptic Natural Variation of Drosophila melanogaster Olfactory Response
【24h】

Changes Across Development Influence Visible and Cryptic Natural Variation of Drosophila melanogaster Olfactory Response

机译:发育过程中的变化影响黑腹果蝇嗅觉反应的可见和隐秘的自然变异

获取原文
获取原文并翻译 | 示例

摘要

Relative to an equivalent source of variation that do not present a hidden state, cryptic genetic variation is likely to be an effective source for possible adaptations at times of atypical environmental conditions. In addition to environmental perturbations, it has also been proposed that genetic disturbances can generate release of cryptic genetic variation. The genetic basis and physiology of olfactory response in Drosophila melanogaster is being studied profusely, but almost no analysis has addressed the question if populations harbor cryptic genetic variation for this trait that only manifests when populations experiences a typical or novel conditions. We quantified olfactory responses to benzaldehyde in both larval and adult lifecycle stages among samples of chromosome two substitution lines extracted from different natural populations of Argentina and substituted into a common inbred background. We also evaluated whether an effect of genetic background change, occurred during chromosome substitution, affect larval and adult olfactory response in terms of release of cryptic genetic variation. Results indicate the presence of genetic variation among chromosome substitution lines in both lifecycle stages analyzed. The comparative analyses between chromosome 2 substitution lines and isofemale lines used to generate the chromosome 2 substitution lines shown that only adults exhibited decanalizing process for olfactory response to benzaldehyde in natural populations of D. melanogaster, i.e., release of hidden genetic variation. We propose that this release of hidden genetic variation in adult flies is a consequence of the shift in genetic background context that happens in chromosome 2 substitution lines, that implies the disruption of natural epistatic interactions and generation of novel ones. All in all, we have found that changes across D. melanogaster development influence visible and cryptic natural variation of olfactory behavior. In this sense, changes in the genetic background can affect gene-by-gene interactions (epistasis) generating different or even novel phenotypes as consequence of phenotypic outcome of cryptic genetic variation.
机译:相对于不呈现隐藏状态的等效变异源,隐秘的遗传变异可能是在非典型环境条件下可能适应的有效来源。除了环境扰动外,还有人提出遗传干扰可以产生隐秘遗传变异的释放。黑腹果蝇嗅觉反应的遗传基础和生理学正在被大量研究,但几乎没有分析解决种群是否具有这种特征的隐秘遗传变异的问题,这种特征只有在种群经历典型或新情况时才会表现出来。我们量化了从阿根廷不同自然种群中提取并替代到共同近交系背景的染色体两个替换系样本中幼虫和成虫生命周期阶段对苯甲醛的嗅觉反应。我们还评估了在染色体替换过程中发生的遗传背景变化的影响是否影响幼虫和成虫在释放隐秘遗传变异方面的嗅觉反应。结果表明,在所分析的两个生命周期阶段,染色体替换系之间存在遗传变异。2号染色体替代系与用于生成2号染色体替代系的同雌系之间的比较分析表明,在D的自然种群中,只有成虫表现出对苯甲醛的嗅觉反应的脱渠过程。黑腹果蝇,即释放隐藏的遗传变异。我们认为,成年果蝇中隐藏的遗传变异的释放是 2 号染色体替换系中发生的遗传背景背景变化的结果,这意味着自然上位相互作用的破坏和新相互作用的产生。总而言之,我们发现黑腹果蝇发育的变化会影响嗅觉行为的可见和隐秘的自然变化。从这个意义上说,遗传背景的变化可以影响基因之间的相互作用(上位),从而产生不同甚至新的表型,这是隐秘遗传变异的表型结果的结果。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号