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辣椒疫霉与番茄的相互作用具有与半活体营养型生活方式相关的基因表达的显著变化。

Phytophthora capsici-tomato interaction features dramatic shifts in gene expression associated with a hemi-biotrophic lifestyle.

作者信息

Jupe Julietta, Stam Remco, Howden Andrew J M, Morris Jenny A, Zhang Runxuan, Hedley Pete E, Huitema Edgar

出版信息

Genome Biol. 2013 Jun 25;14(6):R63. doi: 10.1186/gb-2013-14-6-r63.

Abstract

BACKGROUND

Plant-microbe interactions feature complex signal interplay between pathogens and their hosts. Phytophthora species comprise a destructive group of fungus-like plant pathogens, collectively affecting a wide range of plants important to agriculture and natural ecosystems. Despite the availability of genome sequences of both hosts and microbes, little is known about the signal interplay between them during infection. In particular, accurate descriptions of coordinate relationships between host and microbe transcriptional programs are lacking.

RESULTS

Here, we explore the molecular interaction between the hemi-biotrophic broad host range pathogen Phytophthora capsici and tomato. Infection assays and use of a composite microarray allowed us to unveil distinct changes in both P. capsici and tomato transcriptomes, associated with biotrophy and the subsequent switch to necrotrophy. These included two distinct transcriptional changes associated with early infection and the biotrophy to necrotrophy transition that may contribute to infection and completion of the P. capsici lifecycle

CONCLUSIONS

Our results suggest dynamic but highly regulated transcriptional programming in both host and pathogen that underpin P. capsici disease and hemi-biotrophy. Dynamic expression changes of both effector-coding genes and host factors involved in immunity, suggests modulation of host immune signaling by both host and pathogen. With new unprecedented detail on transcriptional reprogramming, we can now explore the coordinate relationships that drive host-microbe interactions and the basic processes that underpin pathogen lifestyles. Deliberate alteration of lifestyle-associated transcriptional changes may allow prevention or perhaps disruption of hemi-biotrophic disease cycles and limit damage caused by epidemics.

摘要

背景

植物与微生物的相互作用以病原体与其宿主之间复杂的信号相互作用为特征。疫霉属包含一组具有破坏性的真菌样植物病原体,共同影响对农业和自然生态系统重要的多种植物。尽管宿主和微生物的基因组序列都已可得,但对于感染期间它们之间的信号相互作用知之甚少。特别是,缺乏对宿主和微生物转录程序之间协调关系的准确描述。

结果

在这里,我们探索了半活体营养型广寄主范围病原体辣椒疫霉与番茄之间的分子相互作用。感染试验和复合微阵列的使用使我们能够揭示辣椒疫霉和番茄转录组中的不同变化,这些变化与活体营养以及随后向坏死营养的转变有关。这些包括与早期感染以及从活体营养向坏死营养转变相关的两种不同的转录变化,这可能有助于辣椒疫霉生命周期的感染和完成。

结论

我们的结果表明,宿主和病原体中存在动态但高度调控的转录程序,这些程序是辣椒疫霉病害和半活体营养的基础。效应子编码基因和参与免疫的宿主因子的动态表达变化表明,宿主和病原体都对宿主免疫信号进行了调节。有了关于转录重编程的前所未有的新细节,我们现在可以探索驱动宿主 - 微生物相互作用的协调关系以及支撑病原体生活方式的基本过程。故意改变与生活方式相关的转录变化可能允许预防或破坏半活体营养型病害循环,并限制流行病造成的损害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0705/4054836/f627456226b6/gb-2013-14-6-r63-1.jpg

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