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Transcriptomic profiling of Melon necrotic spot virus-infected melon plants revealed virus strain and plant cultivar-specific alterations

机译:瓜坏死点病毒感染的瓜类植物的转录组谱分析揭示了病毒株和植物品种的特异性变化

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摘要

- Background: Viruses are among the most destructive and difficult to control plant pathogens. Melon (Cucumis melo L.) has become the model species for the agriculturally important Cucurbitaceae family. Approaches that take advantage of recently developed genomic tools in melon have been extremely useful for understanding viral pathogenesis and can contribute to the identification of target genes for breeding new resistant cultivars. In this work, we have used a recently described melon microarray for transcriptome profiling of two melon cultivars infected with two strains of Melon necrotic spot virus (MNSV) that only differ on their 3′-untranslated regions.- Results:Melon plant tissues from the cultivars Tendral or Planters Jumbo were locally infected with either MNSV-Mα5 or MNSV-Mα5/3’264 and analysed in a time-course experiment. Principal component and hierarchical clustering analyses identified treatment (healthy vs. infected) and sampling date (3 vs. 5 dpi) as the primary and secondary variables, respectively. Out of 7566 and 7074 genes deregulated by MNSV-Mα5 and MNSV-Mα5/3’264, 1851 and 1356, respectively, were strain-specific. Likewise, MNSV-Mα5/3’264 specifically deregulated 2925 and 1618 genes in Tendral and Planters Jumbo, respectively. The GO categories that were significantly affected were clearly different for the different virus/host combinations. Grouping genes according to their patterns of expression allowed for the identification of two groups that were specifically deregulated by MNSV-Mα5/3’264 with respect to MNSV-Mα5 in Tendral, and one group that was antagonistically regulated in Planters Jumbo vs. Tendral after MNSV-Mα5/3’264 infection. Genes in these three groups belonged to diverse functional classes, and no obvious regulatory commonalities were identified. When data on MNSV-Mα5/Tendral infections were compared to equivalent data on cucumber mosaic virus or watermelon mosaic virus infections, cytokinin-O-glucosyltransferase2 was identified as the only gene that was deregulated by all three viruses, with infection dynamics correlating with the amplitude of transcriptome remodeling. - Conclusions: Strain-specific changes, as well as cultivar-specific changes, were identified by profiling the transcriptomes of plants from two melon cultivars infected with two MNSV strains. No obvious regulatory features shared among deregulated genes have been identified, pointing toward regulation through differential functional pathways.
机译:背景:病毒是最具破坏性和最难控制的植物病原体之一。甜瓜(Cucumis melo L.)已成为农业上重要的葫芦科的典范物种。利用最近开发的甜瓜中的基因组工具的方法对于理解病毒的发病机理非常有用,并且可以有助于鉴定目标基因以育种新的抗性品种。在这项工作中,我们使用了最近描述的甜瓜微阵列对两个被两个甜瓜坏死斑病毒(MNSV)菌株感染的甜瓜品种进行转录组分析,结果表明,两个甜瓜坏死点病毒(MNSV)仅在3'非翻译区有所不同。-结果: MNSV-Mα5或MNSV-Mα5/ 3'264局部感染了Tendral或Planters Jumbo品种,并在时程实验中进行了分析。主成分和层次聚类分析将治疗(健康与感染)和采样日期(3 dpi与5 dpi)分别确定为主要变量和次要变量。在MNSV-Mα5和MNSV-Mα5/ 3’264解除调控的7566和7074基因中,分别具有1851和1356的菌株特异性。同样地,MNSV-Mα5/ 3’264分别在Tendral和Planters Jumbo中特别解除了2925和1618基因的调控。对于不同的病毒/宿主组合,受到显着影响的GO类别明显不同。根据基因的表达方式对基因进行分组,可以鉴定出由MNSV-Mα5/ 3'264对Tendral中的MNSV-Mα5特异调节的两组,以及一组在之后的Planters Jumbo与Tendral中受到拮抗调节的组。 MNSV-Mα5/ 3'264感染。这三个组中的基因属于不同的功能类别,并且未发现明显的调节共性。当将关于MNSV-Mα5/ Tendral感染的数据与关于黄瓜花叶病毒或西瓜花叶病毒感染的等效数据进行比较时,细胞分裂素-O-葡萄糖基转移酶2被确定为唯一被这三种病毒解除调节的基因,其感染动力学与幅度相关转录组重塑。 -结论:通过对两个用两个MNSV菌株感染的瓜品种的植物的转录组进行谱分析,鉴定了菌株特异性的变化以及品种特异性的变化。尚未发现在失调基因之间共有的明显调控特征,指出通过差异功能途径进行调控。

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    Gómez-Aix Cristina;

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  • 年度 2016
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  • 正文语种 eng
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