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炭疽菌与番茄果实互作体系的转录组同步分析揭示了新的真菌致病机制和果实防御策略。

Simultaneous transcriptome analysis of Colletotrichum gloeosporioides and tomato fruit pathosystem reveals novel fungal pathogenicity and fruit defense strategies.

作者信息

Alkan Noam, Friedlander Gilgi, Ment Dana, Prusky Dov, Fluhr Robert

机构信息

Department of Plant Sciences, Weizmann Institute of Science, Rehovot, Israel; Department of Postharvest Science of Fresh Produce, Agricultural Research Organization, the Volcani Center, Bet Dagan, 50250, Israel.

出版信息

New Phytol. 2015 Jan;205(2):801-15. doi: 10.1111/nph.13087. Epub 2014 Nov 5.

Abstract

The fungus Colletotrichum gloeosporioides breaches the fruit cuticle but remains quiescent until fruit ripening signals a switch to necrotrophy, culminating in devastating anthracnose disease. There is a need to understand the distinct fungal arms strategy and the simultaneous fruit response. Transcriptome analysis of fungal-fruit interactions was carried out concurrently in the appressoria, quiescent and necrotrophic stages. Conidia germinating on unripe fruit cuticle showed stage-specific transcription that was accompanied by massive fruit defense responses. The subsequent quiescent stage showed the development of dendritic-like structures and swollen hyphae within the fruit epidermis. The quiescent fungal transcriptome was characterized by activation of chromatin remodeling genes and unsuspected environmental alkalization. Fruit response was portrayed by continued highly integrated massive up-regulation of defense genes. During cuticle infection of green or ripe fruit, fungi recapitulate the same developmental stages but with differing quiescent time spans. The necrotrophic stage showed a dramatic shift in fungal metabolism and up-regulation of pathogenicity factors. Fruit response to necrotrophy showed activation of the salicylic acid pathway, climaxing in cell death. Transcriptome analysis of C. gloeosporioides infection of fruit reveals its distinct stage-specific lifestyle and the concurrent changing fruit response, deepening our perception of the unfolding fungal-fruit arms and defenses race.

摘要

胶孢炭疽菌可突破果实角质层,但在果实成熟发出向坏死营养型转变的信号之前一直处于静止状态,最终导致毁灭性的炭疽病。有必要了解这种独特的真菌策略以及果实同时产生的反应。在附着胞、静止期和坏死营养期同时对真菌与果实的相互作用进行了转录组分析。在未成熟果实角质层上萌发的分生孢子表现出阶段特异性转录,并伴随着大量的果实防御反应。随后的静止期表现为果实表皮内树突状结构和肿胀菌丝的发育。静止期真菌转录组的特征是染色质重塑基因的激活和意外的环境碱化。果实的反应表现为防御基因持续高度整合的大量上调。在绿色或成熟果实的角质层感染过程中,真菌经历相同的发育阶段,但静止时间跨度不同。坏死营养期显示真菌代谢发生显著变化,致病因子上调。果实对坏死营养的反应表现为水杨酸途径的激活,最终导致细胞死亡。对胶孢炭疽菌感染果实的转录组分析揭示了其独特的阶段特异性生活方式以及果实同时发生的变化反应,加深了我们对正在展开的真菌与果实攻防战的理解。

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