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Validation of Melampsora larici-populina reference genes for in planta RT-quantitative PCR expression profiling during time-course infection of poplar leaves

机译:杨树叶片时程感染过程中淡水melampsora larici-populina参考基因在植物RT定量PCR表达谱中的验证

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摘要

The foliar rust caused by Melampsora larici-populina (Mlp) is the main disease affecting poplar plantations in Europe. The biotrophic status of this fungus is a major limitation to address in planta transcripts profiling. Thus, identification of reference rust genes steadily expressed during plant tissue colonization is a crucial point. A quantitative PCR approach to assess fungal ITS amplification profile and Reverse Transcription quantitative-PCR was set to compare candidate reference genes amplification profiles in poplar infected tissues. We selected two M. larici-populina genes encoding an alpha-tubulin and the elongation factor-1-alpha that showed the highest expression stability across biological samples and for which transcript levels were correlated with fungal ITS amplification during time-course infection of poplar leaves. We report the use of these reference genes to assess in planta expression profiles of two genes involved in thiamine biosynthesis (THI1 and THI2) for which specific haustorium expression was previously described in the bean rust fungus Uromyces fabae. Mlp-THI1 and Mlp-THI2 showed similar expression profiles. Trancripts were barely detectable in urediniospores as well as during the early stages of infection compared to those reported in the bean rust, whereas a strong induction was observed after haustorial formation after 24 hpi. These data are in frame with the results obtained in U. fabae and consistent with a metabolic reorientation that likely occurs after the fungus derived nutrients from its host in the haustorial structure essential for fungal biotrophy
机译:Melampsora larici-populina(Mlp)引起的叶锈病是影响欧洲杨树人工林的主要病害。这种真菌的生物营养状态是解决植物转录本分析的主要限制。因此,鉴定在植物组织定殖期间稳定表达的参考锈基因是关键。设置了定量PCR方法来评估真菌ITS扩增图谱和逆转录定量PCR,以比较杨树感染组织中的候选参考基因扩增图谱。我们选择了两个编码M. larici-populina基因的编码α-微管蛋白和延伸因子-1-α,它们在生物样品中表现出最高的表达稳定性,并且其转录水平与杨树叶片随时间的感染过程中的真菌ITS扩增相关。我们报告了这些参考基因的使用,以评估参与硫胺素生物合成的两个基因(THI1和THI2)在植物中的表达谱,其先前在豆锈菌Uromyces fabae中描述了其特定的枯萎病菌表达。 Mlp-THI1和Mlp-THI2显示相似的表达谱。与在豆锈中报道的转录物相比,在乌迪内斯孢子以及感染的早期阶段几乎都未检测到转录物,而在24 hpi的抽吸形成后观察到强烈的诱导作用。这些数据与在美国Fabae中获得的结果相符,并且与真菌在真菌生物营养必不可少的化粪池结构中从其宿主体内吸收营养后发生的代谢重新定向相一致。

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