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Ability of Nonpathogenic Fusarium oxysporum Strain Fo47 To Induce Resistance against Pythium ultimum Infection in Cucumber

机译:非致病性尖孢镰刀菌Fo47诱导对黄瓜终极腐霉感染的抗性。

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摘要

The influence exerted by nonpathogenic Fusarium oxysporum strain Fo47 in triggering cucumber protection against infection by Pythium ultimum was investigated ultrastructurally. Macroscopic and microscopic observations of the pathogen colony in dual cultures revealed that reduction of Pythium growth was associated with marked disorders, including generalized disorganization of the host cytoplasm, retraction of the plasmalemma, and complete loss of the protoplasm. Cytochemical labeling of cellulose with an exoglucanase-gold complex showed that the cellulose component of the host cell walls was structurally preserved at a time when the host cytoplasm had undergone complete disorganization. A similar antagonistic process was observed at the root cell surface. Most striking and interesting was the finding that mycoparasitism, as evidenced by the frequent occurrence of Fo47 hyphae within nearly empty cells of the pathogen, occurred not only at the root surface but also within the invaded root tissues. The specific labeling pattern obtained with the exoglucanase-gold complex confirmed that Fo47 successfully penetrated cells of the pathogen, both in the rhizosphere and inside the root tissues. Pythium cells that could evade the first defensive line in the rhizosphere could penetrate the root epidermis, but their growth was restricted to the outermost tissues. Positive correlations between Fo47 treatment and induced resistance to infection by P. ultimum in cucumber were confirmed by (i) the reduction of pathogen viability; (ii) the elaboration of newly formed barriers, a phenomenon which was not seen in Fo47-free plants, where the pathogen proliferated in all root tissues within a few days; and (iii) the occlusion of intercellular spaces with a dense material likely enriched in phenolics. Taken together, our observations provide the first convincing evidence that Fo47 exerts a direct inhibitory effect on P. ultimum through a combination of antibiosis and mycoparasitism, in addition to being a strong inducer of plant defense reactions.
机译:超微结构研究了非致病性尖孢镰刀菌Fo47触发黄瓜对终极腐霉菌感染的保护作用。在双重培养中对病原菌菌落的宏观和微观观察表明,腐霉菌生长的减少与明显的疾病有关,包括宿主细胞质的普遍紊乱,质膜的回缩和原生质的完全丧失。用外切葡聚糖酶-金复合物对纤维素进行细胞化学标记显示,在宿主细胞质完全分解后,宿主细胞壁的纤维素成分在结构上得以保留。在根细胞表面观察到类似的拮抗过程。最令人惊讶和有趣的发现是,在病原体近乎空的细胞内频繁出现Fo47菌丝,证明了真菌寄生病不仅发生在根表面,而且也发生在被侵染的根组织内。用外切葡聚糖酶-金复合物获得的特定标记模式证实,Fo47成功地穿透了病原体的细胞,无论是在根际还是在根组织内部。可以逃避根际第一防御线的腐霉菌细胞可以穿透根表皮,但其生长仅限于最外层组织。通过以下方面证实了Fo47处理与黄瓜对终极疟原虫感染的诱导抗性之间的正相关: (ii)精心设计了新形成的屏障,这种现象在无Fo47的植物中未见,在几天内病原体在所有根部组织中繁殖; (iii)用可能富含酚的致密物质封闭细胞间空间。综上所述,我们的观察结果提供了第一个令人信服的证据,表明Fo47通过抗生和支原体寄生虫的结合,对终极疟原虫具有直接的抑制作用,并且是植物防御反应的强力诱因。

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