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Transcriptome reprogramming of resistant and susceptible peach genotypes during Xanthomonas arboricola pv. pruni early leaf infection

机译:在黄单胞菌黄单胞菌PV期间抗性和易感桃基因型的转录组重编程。 pruni早叶感染

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摘要

Bacterial spot caused by Xanthomonas arboricola pv. pruni (Xap) is a major threat to Prunus species worldwide. The molecular mechanisms of peach resistance to Xap during early leaf infection were investigated by RNA-Seq analysis of two Prunus persica cultivars, ‘Redkist’ (resistant), and ‘JH Hale’ (susceptible) at 30 minutes, 1 and 3 hours-post-infection (hpi). Both cultivars exhibited extensive modulation of gene expression at 30 mpi, which reduced significantly at 1 hpi, increasing again at 3 hpi. Overall, 714 differentially expressed genes (DEGs) were detected in ‘Redkist’ (12% at 30 mpi and 1 hpi and 88% at 3 hpi). In ‘JH Hale’, 821 DEGs were identified (47% at 30 mpi and 1 hpi and 53% at 3 hpi). Highly up-regulated genes (fold change > 100) at 3 hpi exhibited higher fold change values in ‘Redkist’ than in ‘JH Hale’. RNA-Seq bioinformatics analyses were validated by RT-qPCR. In both cultivars, DEGs included genes with putative roles in perception, signal transduction, secondary metabolism, and transcription regulation, and there were defense responses in both cultivars, with enrichment for the gene ontology terms, ‘immune system process’, ‘defense response’, and ‘cell death’. There were particular differences between the cultivars in the intensity and kinetics of modulation of expression of genes with putative roles in transcriptional activity, secondary metabolism, photosynthesis, and receptor and signaling processes. Analysis of differential exon usage (DEU) revealed that both cultivars initiated remodeling their transcriptomes at 30 mpi; however, ‘Redkist’ exhibited alternative exon usage for a greater number of genes at every time point compared with ‘JH Hale’. Candidate resistance genes (WRKY-like, CRK-like, Copper amine oxidase-like, and TIR-NBS-LRR-like) are of interest for further functional characterization with the aim of elucidating their role in Prunus spp. resistance to Xap.
机译:Xanthomonas arboricola pv引起的细菌斑。 pruni(Xap)是对全球李属物种的主要威胁。通过对两个李子品种“ Redkist”(抗性)和“ JH Hale”(易感)在30分钟后1、3小时的RNA-Seq分析,研究了早期叶片感染期间桃对Xap的抗性的分子机制。 -感染(hpi)。这两个品种在30 mpi时均表现出广泛的基因表达调节,在1 hpi时显着降低,在3 hpi时再次增加。总体而言,在“ Redkist”中检测到714个差异表达基因(DEG)(在30 mpi和1 hpi时为12%,在3 hpi时为88%)。在“ JH Hale”中,鉴定出821个DEG(在30 mpi和1 hpi时为47%,在3 hpi时为53%)。在3 hpi高度上调的基因(倍数变化> 100)在“ Redkist”中的折叠变化值比在“ JH Hale”中更高。 RNA-Seq生物信息学分析通过RT-qPCR验证。在两个品种中,DEGs包括在感知,信号转导,次级代谢和转录调控中具有假定作用的基因,并且在两个品种中都有防御反应,其中丰富了基因本体术语,“免疫系统过程”,“防御反应” ,以及“细胞死亡”。在转录活性,次级代谢,光合作用以及受体和信号传导过程中可能发挥作用的基因的表达调控强度和动力学方面,这些品种之间存在特殊差异。对差异外显子使用量(DEU)的分析表明,两个品种都以30 mpi的速度开始转录组的重塑。然而,与“ JH Hale”相比,“ Redkist”在每个时间点都显示了更多的基因外显子替代用法。候选抗性基因(WRKY样,CRK样,铜胺氧化酶样和TIR-NBS-LRR样)对于进一步的功能表征很感兴趣,目的是阐明它们在李属中的作用。抗Xap。

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