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首页> 外文期刊>Applied and Environmental Microbiology >The Supernumerary Chromosome of Nectria haematococca That Carries Pea-Pathogenicity-Related Genes Also Carries a Trait for Pea Rhizosphere Competitiveness
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The Supernumerary Chromosome of Nectria haematococca That Carries Pea-Pathogenicity-Related Genes Also Carries a Trait for Pea Rhizosphere Competitiveness

机译:携带豌豆致病性相关基因的haematococca油桃的多余染色体也具有豌豆根际竞争力的特征

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Fungi are found in a wide range of environments, and the ecological and host diversity of the fungus Nectria haematococca has been shown to be due in part to unique genes on different supernumerary chromosomes. These chromosomes have been called “conditionally dispensable” (CD) since they are not needed for axenic growth but are important for expanding the host range of individual isolates. From a biological perspective, the CD chromosomes can be compared to bacterial plasmids that carry unique genes that can define the habits of these microorganisms. The current study establishes that the N. haematococca PDA1-CD chromosome, which contains the genes for pea pathogenicity (PEP cluster) on pea roots, also carries a gene(s) for the utilization of homoserine, a compound found in large amounts in pea root exudates. Competition studies demonstrate that an isolate that lacks the PEP cluster but carries a portion of the CD chromosome which includes the homoserine utilization (HUT) gene(s) is more competitive in the pea rhizosphere than an isolate without the CD chromosome.
机译:真菌存在于广泛的环境中,而真菌Nectria haematococca的生态和寄主多样性已部分归因于不同数量染色体上的独特基因。这些染色体被称为“有条件可分配”(CD),因为它们对于轴突生长不是必需的,但对于扩大单个菌株的宿主范围很重要。从生物学的角度来看,可以将CD染色体与携带独特基因的细菌质粒进行比较,这些基因可以定义这些微生物的习性。目前的研究表明,在豌豆根上含有豌豆致病性基因(PEP簇)的Haematococca PDA1-CD染色体也带有一个利用高丝氨酸的基因,高丝氨酸是豌豆中大量存在的化合物根分泌物。竞争研究表明,缺少PEP簇但携带一部分CD染色体(包括高丝氨酸利用(HUT)基因)的分离株在豌豆根际比没有CD染色体的分离株更具竞争力。

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