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首页> 外文期刊>Functional Plant Biology >Different arbuscular mycorrhizal fungi induce differences in cellular responses and fungal activity in a mycorrhiza-defective mutant of tomato (rmc)
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Different arbuscular mycorrhizal fungi induce differences in cellular responses and fungal activity in a mycorrhiza-defective mutant of tomato (rmc)

机译:不同的丛枝菌根真菌在番茄的菌根缺陷型突变体(rmc)中诱导细胞反应和真菌活性的差异

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The reduced mycorrhizal colonisation (rmc) mutant of tomato forms different phenotypes with different arbuscular mycorrhizal (AM) fungi. Our aim was to characterise microscopically the cellular responses in plant and fungus in order to reveal how these varied when colonisation was blocked at different stages. Synchronised colonisation coupled with vital staining, autofluorescence and laser scanning confocal microscopy (LSCM) were used to determine how long the AM fungi stay alive during the interactions with rmc, whether nuclear repositioning occurred in the same way as in wild-type interactions and whether there was evidence for deployment of defence responses. The results showed that (1) all the AM fungi tested were attracted to roots of rmc, onwhich they developed active external mycelium and appressoria, the latter sometimes in higher numbers than on the wild type; (2) plant cellular responses, such as nuclear movement, occurred only when the AM fungus was able to penetrate the epidermal cells of rmc; and (3) plant defence responses such as autofluorescence were observed only transiently and callose deposition was not involved in blocking AM fungi in rmc. The results demonstrate that multi-step AM colonisation is not only an outcome of cellular processes influenced by both plant and fungus, but is also modified by the capacity of different AM fungi to respond to the plant phenotype induced by the rmc mutation.
机译:番茄减少的菌根定殖(rmc)突变体形成具有不同丛枝菌根(AM)真菌的不同表型。我们的目标是在显微镜下表征植物和真菌中的细胞反应,以揭示在不同阶段定居时这些反应如何变化。同步定植,活体染色,自发荧光和激光扫描共聚焦显微镜(LSCM)用于确定与rmc相互作用期间AM真菌存活的时间,核重定位是否以与野生型相互作用相同的方式发生以及是否存在是部署防御反应的证据。结果表明:(1)所有测试的AM真菌都被rmc的根吸引,在它们的根部上形成活跃的外部菌丝体和附生体,后者有时的数量要比野生型高。 (2)仅当AM真菌能够穿透rmc的表皮细胞时,才会发生植物细胞的反应,例如核运动。 (3)仅短暂观察到植物防御反应(例如自发荧光),而call豆沉积不参与阻止rmc中的AM真菌。结果表明,多步AM定植不仅是受植物和真菌影响的细胞过程的结果,而且还因不同AM真菌对rmc突变诱导的植物表型的反应能力而改变。

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