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Mutational processes in Dictyostelium discoideum: How mutations affect social behaviors and fitness.

机译:盘基网柄菌的突变过程:突变如何影响社会行为和适应度。

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Part I. Mutation is the most important biological force as it generates the variation that drives evolution and may play an important role in maintaining social structure in the social amoeba Dictyostelium discoideum. Using mutation accumulation lines of the social amoeba, I estimated the rate and degree of mutational effects on the social ability to form spores in chimeras by mixing equal proportions of cells of the ancestral clone with a mutated line and determining if the resultant spore proportion differs. Through the use of assays measuring growth, migration ability, and rates of spore germination, I assessed the fitness effects of mutation. In agreement with evidence that the majority of mutations are deleterious, I have found that the ability to get into the reproductive spores is diminished following mutation accumulation. Measuring growth rates on the selective medium revealed that approximately half of the lines showing a significant deviation from the ancestor have increased growth rates, possibly indicating the presence of beneficial mutations, while growth in a non-selective medium resulted in a loss of fitness. Additionally, spore germination decreased in lines with an abundance of mutations.;Part II. Restriction Enzyme Mediated Integration (REMI) is a method of transformation that generates tagged mutations. We employed the REMI mutants to select for cheaters by competing pools of mutants over many generations, allowing the lines to fruit each time. We plated out high densities of spores in order to facilitate the lines bypassing the vegetative cycle but still allowing the social cycle. This process was repeated 20 times. At the end of this process, the frequency of each line was assessed and each line was sequenced to identify the genes that were affected by REMI mutagenesis. Once we had obligate cheaters, we assessed fitness in a variety of ways: axenic growth and growth on bacteria, rate of spore germination, and distance traveled by migrating slugs. We then looked for a correlation between cheating and fitness. We expect to see a tradeoff between the ability to preferentially produce spores in chimeric mixtures and other aspects of fitness.
机译:第一部分,突变是最重要的生物力,因为它产生驱动进化的变异,并可能在维持变形虫盘基网柄菌的社会结构中起重要作用。通过使用社交变形虫的突变积累线,我通过将等比例的祖先克隆细胞与突变线混合并确定合成孢子比例是否不同,来估计突变对嵌合体中形成孢子的社交能力的影响程度和程度。通过使用测定生长,迁移能力和孢子萌发速率的测定法,我评估了突变的适应性影响。与大多数突变有害的证据相一致,我发现突变积累后进入生殖孢子的能力降低了。测量选择性培养基上的生长速率表明,显示出明显偏离祖先的品系中大约有一半的生长速率提高,可能表明存在有益的突变,而在非选择性培养基上的生长会导致适应性丧失。此外,孢子萌发的减少与大量突变相一致。限制酶介导的整合(REMI)是一种产生标记突变的转化方法。我们使用了REMI突变体,通过竞争了许多代的突变体池来选择作弊者,从而使该系每次都能结实。我们镀出了高密度的孢子,以促进品系绕过营养循环,但仍允许社交循环。重复该过程20次。在该过程结束时,评估每条品系的频率,并对每条品系进行测序,以鉴定受REMI诱变影响的基因。一旦有了专职的作弊者,我们就可以通过多种方式评估适应性:树突生长和细菌生长,孢子萌发率以及迁移的距离。然后,我们寻找作弊与健身之间的相关性。我们期望看到在嵌合混合物中优先产生孢子的能力与适应性的其他方面之间的权衡。

著录项

  • 作者

    Middlemist, Sara A.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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