Understanding the dependencies of genes on one another in pangenomes.
Understanding the dependencies of genes on one another in pangenomes.
批准号:
2595037
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2021
资助国家:
英国
项目状态:
已结题
起止时间:
2021 至 --
中文摘要
20年来,我们已经知道原核生物(和真核生物)基因组被构造成一个分布式泛基因组,由一个特定分组(种,属或更高级别的分类单元)的所有成员共同的“核心”基因组和一个在该组的一些但不是所有基因组中发现的“附属”基因组组成。人们一直在努力理解这种情况为什么会出现以及如何出现,但这是原核生物学的一个几乎普遍的规则-物种的泛基因组包含的基因比任何单个基因组中发现的基因都多。这是不寻常的情况下,有大量的数据,指出存在一个特定的进化特征,但还没有相应的综合理论,是很好的支持经验数据。该计划将产生对原核泛基因组的全面了解。具体来说,我们将把泛基因组视为生态系统,并应用生态系统理论和建模,以了解泛基因组的起源和进化。我们将收集和分析经验(基因组)数据,以估计泛基因组模型参数,并了解基因如何在泛基因组环境中相互作用。其结果将是我们如何看待泛基因组的转变,我们对它们在进化中的作用的理解,至关重要的是,我们将了解塑造泛基因组进化的复杂相互作用。
英文摘要
For 20 years, we have known that prokaryotic (and eukaryotic) genomes are structured into a distributed pangenome consisting of a 'core' genome common to all members of a particular grouping (species, genus or higher-level taxon), and an 'accessory' genome found in some, but not all genomes of that group. It has been a struggle to understand why and how this situation arises, but it is an almost universal rule of prokaryotic biology - species have pangenomes that consist of more genes than are found in any individual genome. It is unusual to be in a situation where there is an abundance of data that point to the existence of a particular evolutionary feature, but yet, there is no accompanying comprehensive theory that is well-supported by empirical data. This programme will generate a comprehensive understanding of prokaryotic pangenomes. Specifically, we will treat pangenomes as ecosystems and apply ecosystem theory and modelling in order to understand the origin and evolution of pangenomes. We will collect and analyse empirical (genomic) data in order to estimate pangenome model parameters, and to understand how genes interact with one another in a pangenome setting. The outcome will be a transformation in how we view pangenomes, what we understand about their roles in evolution and crucially, we will have an understanding of the complex set of interactions that shape the evolution of pangenomes.
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