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Habitat-defining genes and synteny of conditionally dispensable (CD) chromosomes in the fungus Nectria haematococca.

机译:真菌Nectria haematococca中的栖息地定义基因和条件性可分配(CD)染色体的同构。

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摘要

Individual isolates of the fungus Nectria haematococca exist in a wide range of habitats and part of this diversity is attributed to the presence of conditionally dispensable (CD) chromosomes that carry habitat-defining genes. In the current study a new factor located on one of these CD chromosomes was found. This trait allows pea pathogenic isolates of N. haematococca to grow in homoserine, a compound present in large amounts on pea root exudates. The gene(s) for homoserine utilization (HUT) are located on the same CD chromosome that carries the cluster of genes for pea pathogenicity, the PEP cluster. The PDA1 gene, a member of the PEP cluster, is routinely used as a marker for the presence of this CD chromosome, therefore it has been called the PDA1-CD chromosome. For the purpose of identifying the HUT gene(s), a physical map of the PDA1-CD chromosome was constructed. This map, in combination with synteny analysis, and Southern hybridizations led to the identification of a region of 365Kb that is likely to contain the HUT gene. By searching the publicly available genome of N. haematococca several candidates for HUT were identified.; The synteny evaluation between the PDA1-CD chromosome and a different CD chromosome that carries the MAK1 gene, for chickpea pathogenicity, revealed a region (> 463Kb) of synteny, which advocates for a common ancestor for these CD chromosomes. However a large region (∼1 Mb) in each of the CD chromosomes was found to carry unique DNA, therefore we proposed that individual isolates of this fungus contain large regions of unique DNA located on the CD chromosomes. The localization of syntenic regions also suggests that breakage points previous identified in the MAK1-CD chromosome could potentially be "hot spots" for recombination between both CD chromosomes. Furthermore, the anchoring of the PDA1-CD map to the genome of N. haematococca allowed the identification of additional putative habitat colonization genes present on both CD chromosomes, and niche-defining genes on the PDA1-CD chromosome.
机译:真菌Nectria haematococca的个别分离株存在于广泛的生境中,这种多样性的一部分归因于带有条件的可分配(CD)染色体的存在,这些染色体带有能确定生境的基因。在当前的研究中,发现了位于这些CD染色体之一上的新因子。这种特性使豌豆猪链球菌的致病性分离株在高丝氨酸中生长,高丝氨酸是豌豆根分泌物中大量存在的化合物。高丝氨酸利用基因(HUT)位于同一CD染色体上,该染色体带有豌豆致病性基因簇PEP簇。作为PEP簇成员的PDA1基因通常用作该CD染色体存在的标志物,因此被称为PDA1-CD染色体。为了鉴定HUT基因,构建了PDA1-CD染色体的物理图谱。该图与同义分析和Southern杂交相结合,导致鉴定出可能包含HUT基因的365Kb区域。通过搜索可公开获得的血球链球菌基因组,鉴定了几种HUT候选物。对于鹰嘴豆的致病性,PDA1-CD染色体与携带MAK1基因的另一条CD染色体之间的同源性评估揭示了一个同源区域(> 463Kb),该区域倡导了这些CD染色体的共同祖先。但是,发现每个CD染色体中的一个大区域(约1 Mb)带有独特的DNA,因此,我们提出了这种真菌的单独分离株包含位于CD染色体上的很大的独特DNA区域。突触区域的定位还表明,先前在MAK1-CD染色体中鉴定的断裂点可能是两个CD染色体之间重组的“热点”。此外,将PDA1-CD定位图锚定到血球猪笼草的基因组上,可以鉴定出两个CD染色体上都存在的其他推定栖息地定植基因,以及PDA1-CD染色体上的生态位定义基因。

著录项

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Biology Molecular.; Biology Microbiology.; Agriculture Plant Pathology.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 148 p.
  • 总页数 148
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;微生物学;植物病理学;
  • 关键词

  • 入库时间 2022-08-17 11:39:37

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