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油橄榄与内生真菌油橄榄球腔菌互作的分子分析。

Molecular analysis of the interaction between Olea europaea and the biotrophic fungus Spilocaea oleagina.

机构信息

Dpto. Bioquímica y Biología Molecular, Universidad de Córdoba, Campus Universitario de Rabanales 14071 Córdoba, Spain.

出版信息

Mol Plant Pathol. 2005 Jul 1;6(4):425-38. doi: 10.1111/j.1364-3703.2005.00290.x.

Abstract

SUMMARY The mitosporic fungus Spilocaea oleagina is an obligate biotroph of olive (Olea europaea) causing a scab disease associated with leaf fall and substantial losses in production. Using differential display we have identified 162 cDNA fragments corresponding to transcripts that show altered abundance during the defence response of a resistant olive cultivar to S. oleagina. Detailed analyses of 21 selected genes by real-time quantitative RT-PCR revealed different kinetics of induction. Genes involved in signalling, transcriptional control, oxidative stress, biotic and abiotic stress, and several genes with unknown function were found to be induced rapidly after infection. In contrast, genes involved in metabolism and cellular maintenance showed delayed induction. The induction of the selected genes in a susceptible cultivar was delayed and/or reduced during the response to S. oleagina. Interestingly, the basal expression of some genes in the uninfected resistant cultivar was higher than in the susceptible one, suggesting a constitutive activation of defence responses. Expression of these genes in response to salicylic acid, methyl jasmonate, a mixture of both, ethephon, hydrogen peroxide, menadione and wounding was also investigated. The results are discussed in relation to the molecular bases and signalling events involved in this biotrophic interaction.

摘要

摘要 油橄榄球腔菌(Spilocaea oleagina)是一种专性活体营养型菌,可引起与叶片脱落和产量大幅下降相关的油橄榄疮痂病。通过差异显示技术,我们鉴定了 162 个 cDNA 片段,这些片段对应的转录本在抗油橄榄品种对油橄榄球腔菌的防御反应中丰度发生改变。通过实时定量 RT-PCR 对 21 个选定基因的详细分析表明,诱导的动力学不同。发现参与信号转导、转录调控、氧化应激、生物和非生物胁迫以及几个具有未知功能的基因在感染后迅速诱导。相比之下,代谢和细胞维持相关的基因诱导则延迟。在对油橄榄球腔菌的反应中,感病品种中选定基因的诱导延迟和/或减少。有趣的是,未感染的抗病品种中一些基因的基础表达高于感病品种,这表明防御反应的组成性激活。还研究了这些基因对水杨酸、茉莉酸甲酯、两者混合物、乙烯利、过氧化氢、甲萘醌和创伤的反应表达。结果与该活体互作中涉及的分子基础和信号事件有关进行了讨论。

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