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Transcriptional profiling of Medicago truncatula roots after infection with Aphanomyces euteiches (oomycota) identifies novel genes upregulated during this pathogenic interaction

机译:截短的Aphanomyces euteiches(oomycota)感染后的紫花苜蓿根的转录谱分析鉴定了在这种致病相互作用中上调的新基因

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Common root rot of pea caused by Aphanomyces euteiches has been the major yield-reducing factor for pea production during the last decades. In this study, a systematic sequencing of expressed sequence tags (ESTs) was chosen to obtain a first global picture of the assembly of genes involved in pathogenesis. For this purpose, a pathosystem between the model legume Medicago truncatula and A. euteiches was established. Typical symptoms of this disease such as root discoloration and a reduction of root mass were observed in the model legume. Significant transcriptional changes in the host plant occurred already 6 days after inoculation. To identify a large number of plant ESTs, which are induced at this time point, a cDNA-library was established by Suppression Subtractive Hybridization. Five hundred and sixty ESTs have been generated of this library. On the one hand, EST-annotations showed homologies to a number of classical pathogenesis-related (PR) and defense genes. A notable number of the ESTs, however, were derived from novel genes not matching entries of the large-scale M. truncatula sequence collection. Hybridization experiments showed that also within these new ESTs, 21% are induced after pathogen infection. Hence. the here presented transcriptomic approach demonstrates that classical pathogenesis mechanisms as well as new specific gene regulations are involved in root rot disease development caused by A. euteiches.
机译:在过去的几十年中,由Aphanomyces euteiches引起的豌豆常见根腐病一直是豌豆减产的主要因素。在这项研究中,对表达的序列标签(EST)的系统测序被选择以获得有关发病机理的基因组装的第一张全局图。为此目的,建立了在模型豆科植物紫花苜蓿和A. euteiches之间的病理系统。在模型豆科植物中观察到该病的典型症状,例如根变色和根质量减少。接种后6天,宿主植物中发生了明显的转录变化。为了鉴定在该时间点诱导的大量植物EST,通过抑制消减杂交建立了cDNA文库。该库已产生560个EST。一方面,EST注释显示出与许多经典的发病相关(PR)和防御基因的同源性。然而,大量的EST是从与大规模截短支原体序列集合的条目不匹配的新基因衍生而来的。杂交实验表明,在这些新的EST中,病原体感染后也诱导了21%。因此。此处介绍的转录组学方法证明了经典的发病机理以及新的特定基因调控都参与了由A. euteiches引起的根腐病的发展。

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