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A conditionally dispensable chromosome controls host-specific pathogenicity in the fungal plant pathogen Alternaria alternata.

机译:有条件分配的染色体控制真菌植物病原体链格孢(Alternaria alternata)中的宿主特异性致病性。

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摘要

The filamentous fungus Alternaria alternata contains seven pathogenic variants (pathotypes), which produce host-specific toxins and cause diseases on different plants. Previously, the gene cluster involved in host-specific AK-toxin biosynthesis of the Japanese pear pathotype was isolated, and four genes, named AKT genes, were identified. The AKT homologs were also found in the strawberry and tangerine pathotypes, which produce AF-toxin and ACT-toxin, respectively. This result is consistent with the fact that the toxins of these pathotypes share a common 9,10-epoxy-8-hydroxy-9-methyl-decatrienoic acid structural moiety. In this study, three of the AKT homologs (AFT1-1, AFTR-1, and AFT3-1) were isolated on a single cosmid clone from strain NAF8 of the strawberry pathotype. In NAF8, all of the AKT homologs were present in multiple copies on a 1.05-Mb chromosome. Transformation-mediated targeting of AFT1-1 and AFT3-1 in NAF8 produced AF-toxin-minus, nonpathogenic mutants. All of the mutants lacked the 1.05-Mb chromosome encoding the AFT genes. This chromosome was not essential for saprophytic growth of this pathogen. Thus, we propose that a conditionally dispensable chromosome controls host-specific pathogenicity of this pathogen.
机译:丝状真菌链格孢(Alternaria alternata)包含七个致病变体(致病型),它们会产生宿主特异性毒素,并在不同植物上引起疾病。以前,分离出了与日本梨致病型的宿主特异性AK毒素生物合成有关的基因簇,并鉴定了四个名为AKT基因的基因。 AKT同源物还发现在草莓和橘子病原体中,它们分别产生AF毒素和ACT毒素。该结果与这些致病型的毒素共享共同的9,10-环氧-8-羟基-9-甲基-十碳三烯酸结构部分这一事实是一致的。在这项研究中,三个AKT同源物(AFT1-1,AFTR-1和AFT3-1)是从草莓型NAF8菌株的单个粘粒克隆中分离出来的。在NAF8中,所有AKT同源物都以1.05 Mb染色体的多个副本存在。转化介导的靶向NAF8中的AFT1-1和AFT3-1产生了负性AF毒素的非致病性突变体。所有突变体都缺乏编码AFT基因的1.05-Mb染色体。该染色体对于该病原体的腐生生长不是必需的。因此,我们提出条件性可分配染色体控制该病原体的宿主特异性致病性。

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