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RNA-seq analysis and fluorescence imaging of melon powdery mildew disease reveal an orchestrated reprogramming of host physiology

机译:甜瓜白粉病的RNA-seq分析和荧光成像揭示了宿主生理的精心编排

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摘要

The cucurbit powdery mildew elicited by Podosphaera xanthii is one of the most important limiting factors in cucurbit production. Our knowledge of the genetic and molecular bases underlying the physiological processes governing this disease is very limited. We used RNA-sequencing to identify differentially expressed genes in leaves of Cucumis melo upon inoculation with P. xanthii, using RNA samples obtained at different time points during the early stages of infection and their corresponding uninfected controls. In parallel, melon plants were phenotypically characterized using imaging techniques. We found a high number of differentially expressed genes (DEGs) in infected plants, which allowed for the identification of many plant processes that were dysregulated by the infection. Among those, genes involved in photosynthesis and related processes were found to be upregulated, whereas genes involved in secondary metabolism pathways, such as phenylpropanoid biosynthesis, were downregulated. These changes in gene expression could be functionally validated by chlorophyll fluorescence imaging and blue-green fluorescence imaging analyses, which corroborated the alterations in photosynthetic activity and the suppression of phenolic compound biosynthesis. The powdery mildew disease in melon is a consequence of a complex and multifaceted process that involves the dysregulation of many plant pathways such as primary and secondary metabolism.
机译:马铃薯(Podosphaera xanthii)引起的葫芦白粉病是葫芦生产中最重要的限制因素之一。我们对于控制这种疾病的生理过程的遗传和分子基础的知识非常有限。我们使用RNA测序技术,利用感染早期阶段在不同时间点获得的RNA样品及其相应的未感染对照,鉴定了用黄腐病菌接种后黄瓜中瓜叶中的差异表达基因。同时,使用成像技术对瓜类植物进行表型鉴定。我们在受感染的植物中发现了大量差异表达基因(DEG),这些基因可用于鉴定受感染失调的许多植物过程。其中,与光合作用及相关过程有关的基因被上调,而与次级代谢途径有关的基因(如苯丙烷类生物合成)被下调。这些基因表达的变化可以通过叶绿素荧光成像和蓝绿色荧光成像分析在功能上得到验证,这证实了光合活性的变化和酚类化合物生物合成的抑制。甜瓜中的白粉病是复杂而多方面的过程的结果,该过程涉及许多植物途径的失调,例如初级和次级代谢。

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