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Molecular convergence of the parasitic plant species Cuscuta reflexa and Phelipanche aegyptiaca

机译:寄生植物弯角Cu和埃及香eli的分子融合

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The parasitic plant species Cuscuta reflexa and Phelipanche aegyptiaca have independently developed parasitism, the former parasitizing on shoots and the latter attaching to roots. Regardless of these differences, the two species use similar organs, termed haustoria, to attach to the host plant. In this study, we show that this morphological similarity can be extended to the molecular level. An attAGP-promoter from Solanum lycopersicum, which is activated by Cuscuta infections, was also induced after infection by P. aegyptiaca. Furthermore, we show by validation of transcriptome sequencing data that the Phelipanche orthologue of a haustorium-specific Cuscuta gene, which codes for a cysteine proteinase, was activated in the early stages of Phelipanche invasion. Inhibition of the Phelipanche cysteine proteinase was achieved by 35S- or attAGP-promoter-driven expression of its intrinsic inhibitory polypeptide. A reduction in P. aegyptiaca infection rates during experiments in flower pots and in an in vitro polybag system in comparison to controls was recorded.
机译:寄生植物反射小球囊和埃及番荔枝已独立发展为寄生虫,前者寄生在芽上,而后者附着在根上。不管这些差异如何,这两个物种都使用类似的器官(称为haustoria)附着到宿主植物上。在这项研究中,我们表明这种形态相似性可以扩展到分子水平。埃及番荔枝感染后,还诱导了由茄属植物激活的番茄茄的attAGP启动子。此外,我们通过验证转录组测序数据表明,在天竺葵入侵的早期,激活了编码半胱氨酸蛋白酶的特定于吸痰的Cuscuta基因的百里香直系同源物。通过35S-或attAGP-启动子驱动的其内在抑制性多肽的表达来实现对Phelipanche半胱氨酸蛋白酶的抑制。与对照相比,记录了在花盆和体外塑料袋系统中进行实验期间埃及假单胞菌感染率的降低。

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