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The genetic basis of evolved differences in gene expression in Fundulus heteroclitus.

机译:灰Fund异基因表达差异进化的遗传基础。

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摘要

This dissertation explores the genetic basis of gene expression in Fundulus heteroclitus by focusing on the role of the environment and its effects on gene expression and by making direct estimates of heritability using cDNA microarrays. The second chapter describes the utility of F. heteroclitus cDNA microarrays for studies of F. heteroclitus which seek to understand the genetic variation in gene expression. Measurements of mRNA fluorescence and concentration as well as differences in sample preparation and sampling of blood from a single individual over time demonstrate that F. heteroclitus cDNA microarrays are quantitative, reproducible and consistent. The third chapter examines the effect of the environment and genetic factors on the variation of gene expression. F. heteroclitus cDNA microarrays are used to determine whether a genetic component of gene expression can describe the variation in gene expression between inbred and outbred individuals from the same population.;The results show that variation in mRNA expression is related to the genetic variation among individuals within a group. While chapter three reveals that there is a genetic component of variation in gene expression, the percentage of genes that are significantly heritable was not known. In the fourth chapter, the heritability of the variation in gene expression is estimated to determine the genetic basis of gene expression in F1 individuals from natural, outbred populations of F. heteroclitus. The data presented in chapter 4 are the first to formally estimate the genetic component of gene expression in F. heteroclitus. The estimates of heritability range from 0.25 to 0.86 depending on the estimation method with approximately 6.5% of genes having significant heritability. The results presented in this dissertation support the concept that genetic variation affects variation in mRNA expression among natural populations of F. heteroclitus. Natural, heritable variation in gene expression is important for understanding evolutionary adaptation and the role of natural selection in evolutionary processes.
机译:本文通过关注环境的作用及其对基因表达的影响,并利用cDNA微阵列对遗传力进行直接估计,探索了异脚底基因表达的遗传基础。第二章介绍了杂种镰刀菌cDNA微阵列在研究杂种镰刀菌中的用途,该研究旨在了解基因表达的遗传变异。测量mRNA荧光和浓度,以及随着时间的推移从单个个体中采集样品和采集血液的差异,证明异双歧杆菌cDNA微阵列是定量的,可重复的和一致的。第三章探讨了环境和遗传因素对基因表达变化的影响。 F.heterclitus cDNA微阵列用于确定基因表达的遗传成分是否可以描述同一群体的近交和近交个体之间基因表达的变异;结果表明,mRNA表达的变异与个体之间的遗传变异有关组内。尽管第三章揭示了基因表达变异的遗传成分,但尚不清楚可遗传基因的百分比。在第四章中,估计了基因表达变异的遗传力,以确定来自异果野生亲缘自然种群的F1个体中基因表达的遗传基础。第4章中提供的数据是第一个正式估计杂种镰刀菌基因表达的遗传成分的数据。遗传力的估计范围在0.25到0.86之间,具体取决于估计方法,大约有6.5%的基因具有明显的遗传力。本文提出的结果支持了遗传变异影响杂种天然种群天然mRNA表达变异的概念。基因表达的自然可遗传变异对于理解进化适应和自然选择在进化过程中的作用非常重要。

著录项

  • 作者

    Scott, Cinda Pitts.;

  • 作者单位

    University of Miami.;

  • 授予单位 University of Miami.;
  • 学科 Genetics.;Molecular biology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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