首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >A cytoplasmically transmissible hypovirulence phenotype associated with mitochondrial DNA mutations in the chestnut blight fungus Cryphonectria parasitica.
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A cytoplasmically transmissible hypovirulence phenotype associated with mitochondrial DNA mutations in the chestnut blight fungus Cryphonectria parasitica.

机译:栗叶枯萎病真菌Cryphonectria parasitica中与线粒体DNA突变相关的细胞质可传播的低毒力表型。

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摘要

Mutations causing mitochondrial defects were induced in a virulent strain of the chestnut blight fungus Cryphonectria parasitica (Murr.) Barr. Virulence on apples and chestnut trees was reduced in four of six extensively characterized mutants. Relative to the virulent progenitor, the attenuated mutants had reduced growth rates, abnormal colony morphologies, and few asexual spores, and they resembled virus-infected strains. The respiratory defects and attenuated virulence phenotypes (hypovirulence) were transmitted from two mutants to a virulent strain by hyphal contact. The infectious transmission of hypovirulence occurred independently of the transfer of nuclei, did not involve a virus, and dynamically reflects fungal diseases caused by mitochondrial mutations. In these mutants, mitochondrial mutations are further implicated in generation of the attenuated state by (i) uniparental (maternal) inheritance of the trait, (ii) presence of high levels of cyanide-insensitive mitochondrial alternative oxidase activity, (iii) cytochrome deficiencies, and (iv) structural abnormalities in the mtDNA. Hence, cytoplasmically transmissible hypovirulence phenotypes found in virus-free strains of C. parasitica from recovering trees may be caused by mutant forms of mtDNA.
机译:在栗枯萎真菌Cryphonectria parasitica(Murr。)Barr的强毒株中诱导引起线粒体缺陷的突变。在六个特征广泛的突变体中的四个突变体中,苹果和栗树上的毒力降低。相对于有毒的祖细胞,减毒突变体的生长速率降低,菌落形态异常并且无性孢子很少,并且它们类似于病毒感染的菌株。呼吸道缺陷和毒力减毒表型(低毒力)通过菌丝接触从两个突变体传播至强毒株。低毒力的传染性传播独立于细胞核的转移而发生,不涉及病毒,并动态反映线粒体突变引起的真菌疾病。在这些突变体中,线粒体突变还与以下情况有关:(i)性状的单亲(母体)遗传;(ii)高水平的对氰化物不敏感的线粒体替代氧化酶活性;(iii)细胞色素缺乏症; (iv)mtDNA的结构异常。因此,在无病毒的寄生虫梭状芽孢杆菌恢复树中发现的细胞质可传播的低毒表型可能是由mtDNA的突变形式引起的。

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