首页> 外文期刊>Physiological and Molecular Plant Pathology >Symptomless infection of tomato plants by tomatinase producing Fusarium oxysporum formae speciales nonpathogenic on tomato plants.
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Symptomless infection of tomato plants by tomatinase producing Fusarium oxysporum formae speciales nonpathogenic on tomato plants.

机译:生产番茄素酶的无镰孢镰刀菌无症状感染番茄植物对番茄植物无致病性。

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Fusarium oxysporum f. sp. lycopersici produces extracellular enzymes known as tomatinase, which degrade the tomato phytoanticipin a-tomatine to less toxic metabolites. Tomatinase gene (FoToml) has been found also in certain strains of F. oxysporum belonging to formae speciales nonpathogenic on tomato plants. In the current study, four FoToml-positive strains (#2, #3, #11, and #17) of F. oxysporum belonging to formae speciales different from f. sp. lycopersici and f. sp. radicis-lycopersici were examined for their ability to infect tomato plants. All of the four strains colonized not only the roots and basal stems but also upper stems of tomato plants. One of the four strains, #3 (f. sp. batatas), was transformed with the beta -glucuronidase (GUS) reporter gene. A GUS-marked #3 (#3-GUS) colonized vascular vessels of all tomato cultivars tested differing in the extents of colonization in the stems among the cultivars. Reverse transcription-polymerase chain reaction (RT-PCR) analysis revealed that each FoToml of the four FoToml-positive strains was expressed in the roots and stems of tomato plants, suggesting that FoToml is important for the four strains to survive in tomato plants. To see systemic induction of defence genes in tomato plants inoculated with either #2, #3, #11, or #17, accumulations of transcripts of beta -1,3-glucanase and chitinase genes were analysed. Tomato plants inoculated with #2 or #3 showed enhanced expression of acidic chitinase gene (Chi3). Prior inoculation of tomato plants with either #2 or #3 suppressed the vascular wilt of tomato caused by subsequent challenge with F. oxysporum f. sp. lycopersici..
机译:尖孢镰刀菌f。 sp。 lycopersici产生称为番茄素酶的细胞外酶,该酶可将番茄植物抗肽原α-番茄碱降解为毒性较小的代谢产物。在某些对番茄植物无致病性的福美特斯菌中也发现了Tomatinase基因(FoToml)。在当前的研究中,属于形态科的尖孢镰刀菌的四个FoToml阳性菌株(#2,#3,#11和#17)与f。不同。 sp。 lycopersici和f。 sp。检查了萝卜-lycopersici感染番茄植物的能力。所有这四个菌株不仅在番茄的根和基茎上定殖,而且在番茄上茎上也定殖。用β-葡糖醛酸糖苷酶(GUS)报告基因转化4个菌株之一,即#3(batatas f。sp。batatas)。测试的所有番茄品种的GUS标记#3(#3-GUS)定植的血管在不同品种的茎中定植程度不同。逆转录-聚合酶链反应(RT-PCR)分析表明,四种FoToml阳性菌株的每个FoToml在番茄植物的根和茎中均有表达,这表明FoToml对于这四种菌株在番茄植物中的生存至关重要。为了观察在接种#2,#3,#11或#17的番茄植株中防御基因的系统诱导,分析了β-1,3-葡聚糖酶和几丁质酶基因的转录本积累。接种#2或#3的番茄植株显示出酸性几丁质酶基因(Chi3)的表达增强。预先用#2或#3接种番茄植株可抑制番茄的枯萎病,该枯萎病是随后用尖酸镰刀菌f。 sp。 lycopersici ..

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