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尖孢镰刀菌番茄专化型引起的爪哇根结线虫在抗镰刀菌和感镰刀菌番茄品种中诱导形成的巨型细胞的超微结构变化

Ultrastructural Changes Caused by Fusarium oxysporum f. sp. lycopersici in Meloidogyne javanica Induced Giant Cells in Fusarium Resistant and Susceptible Tomato Cultivars.

作者信息

Fattah F, Webster J M

出版信息

J Nematol. 1983 Jan;15(1):128-35.

PMID:19295778
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2618247/
Abstract

Tomato (Lycopersicon esculentum Mill.) seedlings, susceptible (cv. Pearson A-I Improved) and resistant (cv. Pearson Improved) to race 1 Fusarium oxysporum f. sp. lycopersici (Sacc.) Snyd &Hans., were inoculated with Meloidogyne javanica (Trueb) Chitwood second-stage juveniles and 3 weeks later with race 1 F. oxysporum f. sp. lycopersici spores. One week after fungal inoculation, no fungus was visible in root tissue of the tomato cultivars and the giant cells were normal. Two weeks after fungal inoculation, abundant hyphae were visible in xylem tissues of Fusarium-susceptible but not of Fusarium-resistant plants. In susceptible plants, giant cell degeneration occurred, characterized by membrane and organelle disruption. In addition, where hyphae were in direct contact with the giant cell, dissolution of the giant cell wall occurred. Three weeks after fungal inoculation, fungal hyphae and spores were visible inside xylem tissues and giant cells in Fusarium-susceptible plants and in xylem tissue of the resistant plants. In susceptible and resistant plants, giant cell degeneration was apparent. Giant cell walls were completely broken down in Fusarium-susceptible tomato plants. In both cultivars infected by Fusarium, giant cell nuclei became spherical and dark inclusions occurred within the chromatin material which condensed adjacent to the fragmented nuclear membrane. No such ultrastructural changes were seen in the giant cells of control plants inoculated with nematode alone. Giant cell deterioration in both cultivars is probably caused by toxic fungal metabolites.

摘要

番茄(Lycopersicon esculentum Mill.)幼苗,对尖孢镰刀菌番茄专化型1号生理小种(Sacc.)Snyd & Hans.敏感(品种为Pearson A-I改良型)和抗性(品种为Pearson改良型),接种南方根结线虫爪哇根结线虫(Trueb)Chitwood的二龄幼虫,3周后接种尖孢镰刀菌番茄专化型1号生理小种的孢子。真菌接种1周后,在番茄品种的根组织中未见真菌,巨型细胞正常。真菌接种2周后,在感镰刀菌的植物木质部组织中可见大量菌丝,而抗镰刀菌的植物中则未见。在感病植物中,巨型细胞发生退化,其特征为膜和细胞器破坏。此外,在菌丝与巨型细胞直接接触的部位,巨型细胞壁发生溶解。真菌接种3周后,在感镰刀菌的植物木质部组织和巨型细胞内以及抗性植物的木质部组织中可见真菌菌丝和孢子。在感病和抗病植物中,巨型细胞退化明显。在感镰刀菌的番茄植物中,巨型细胞壁完全分解。在两个受镰刀菌感染的品种中,巨型细胞核变成球形,染色质物质内出现深色内含物,这些内含物在破碎的核膜附近浓缩。在仅接种线虫的对照植物的巨型细胞中未观察到这种超微结构变化。两个品种中的巨型细胞退化可能是由有毒的真菌代谢产物引起的。

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