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Lateral Gene Transfer between Bacteria and Trichoderma reesei.

机译:细菌和里氏木霉之间的横向基因转移。

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摘要

Lateral gene transfer (LGT) has played an important role in shaping the 'tree of life'. It has promoted evolution by generating gene redundancies, which allow for more freedom in terms of allowed mutations in a genome, and by introducing new metabolic abilities to organisms. An example, with practical implications, is the cellulase activity of the fungus Trichoderma reesei which degrades cellulose in biofuel production, environmental waste cleanup, and paper processing.;While partial optimization of conditions for T. reesei to express enzymes might be achieved through controlling experimental conditions, potentially the most effective approach would be to bring the power of genetic engineering to bear. If the digestive enzymes in T. reesei are the result of LGT, inserting bacterial copies of these genes or their regulators into the T. reesei genome may increase enzymatic activity. Furthermore, an appropriate examination of the entire genome for LGT could lead to insights into the evolution of T. reesei .;This study performed phylogenomic analyses to identify LGT in the genome of T. reesei, specifically those genes transferred from bacteria. Three computational programs were used to identify LGT candidates. All identified LGT candidates were subject to further rigorous phylogenetic analyses to assess their evolutionary origins.;We detected several cases of LGT between fungi and bacteria, only one of which was recently transferred to T. reesei. This leads us to conclude that LGT probably did not play a significant role in the recent evolution of T. reesei.
机译:横向基因转移(LGT)在塑造“生命之树”中发挥了重要作用。它通过产生基因冗余来促进进化,该冗余在基因组中允许的突变方面具有更大的自由度,并且通过向生物体引入新的代谢能力。一个具有实际意义的例子是里氏木霉真菌的纤维素酶活性,该酶在生物燃料生产,环境废物清理和造纸过程中会降解纤维素;虽然可以通过控制实验来部分优化里氏木霉表达酶的条件。在这种情况下,最有效的方法可能就是发挥基因工程的力量。如果里氏木霉中的消化酶是LGT的结果,则将这些基因的细菌拷贝或其调节物插入里氏木霉基因组可能会增加酶的活性。此外,对整个基因组进行LGT的适当检查可能会导致深入了解里氏木霉的进化。本研究进行了种系学分析,以鉴定里氏木霉基因组中的LGT,特别是那些从细菌转移的基因。使用三个计算程序来识别LGT候选者。所有确定的LGT候选者都经过进一步严格的系统进化分析,以评估其进化起源。我们检测到了几例在真菌和细菌之间发生LGT的病例,其中只有一例最近转移至里氏木霉。这使我们得出结论,LGT可能在里氏木霉的最近进化中没有发挥重要作用。

著录项

  • 作者

    Worley, Charles.;

  • 作者单位

    East Carolina University.;

  • 授予单位 East Carolina University.;
  • 学科 Biology Molecular.;Biology Bioinformatics.
  • 学位 M.S.
  • 年度 2012
  • 页码 64 p.
  • 总页数 64
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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