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Host-induced silencing of Mi-msp-1 confers resistance to root-knot nematode Meloidogyne incognita in eggplant

机译:宿主诱导的MI-MSP-1沉默赋予茄子抗根结Nematode Meloidogyne Incognita

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摘要

RNA interference (RNAi)-based host-induced gene silencing (HIGS) is emerging as a novel, efficient and target-specific tool to combat phytone-matode infection in crop plants. Mi-msp-1, an effector gene expressed in the subventral pharyngeal gland cells of Meloidogyne incognita plays an important role in the parasitic process. Mi-msp-1 effector is conserved in few of the species of root-knot nematodes (RKNs) and does not share considerable homology with the other phytonematodes, thereby making it a suitable target for HIGS with minimal off-target effects. Six putative eggplant transformants harbouring a single copy RNAi transgene of Mi-msp-1 was generated. Stable expression of the transgene was detected in T-1, T-2 and T-3 transgenic lines for which a detrimental effect on RKN penetration, development and reproduction was documented upon challenge infection with nematode juveniles. The post-parasitic nematode stages extracted from the transgenic plants showed long-term RNAi effect in terms of targeted downregulation of Mi-msp-1. These findings suggest that HIGS of Mi-msp-1 enhances nematode resistance in eggplant and protect the plant against RKN parasitism at very early stage.
机译:基于RNA干扰(RNAi)的宿主诱导的基因沉默(HIGS)是作为一种新颖的,有效和靶向特异性的工具,用于打击作物植物中的植物滋养物感染。 MI-MSP-1,在Meloidogyne Incognita的子腔咽腺细胞中表达的效应基因在寄生过程中起重要作用。 MI-MSP-1效应器在少数根结线虫(RKN)中保存,并且不与其他植物液相同地共享相当大的同源性,从而使其成为具有最小偏离目标效果的HIG的合适靶标。产生含有单拷贝的MI-MSP-1的单拷贝RNAi转基因的六种推定的茄子转化体。在T-1,T-2和T-3转基因中检测到转基因的稳定表达,在攻击Nematode青少年攻击感染后记录了对RKN渗透,发育和繁殖的不利影响。从转基因植物中提取的寄生虫线虫阶段在MI-MSP-1的靶向下调方面显示了长期RNAI效应。这些研究结果表明,MI-MSP-1的HIGS在茄子中增强了线虫抗性,并在早期阶段保护植物免受RKN寄生疫苗。

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