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Expression of Rice Chitinase Gene in Genetically Engineered Tomato Confers Enhanced Resistance to Fusarium Wilt and Early Blight

机译:转基因番茄中水稻几丁质酶基因的表达增强了对枯萎病和早疫病的抗性

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摘要

This is the first study reporting the evaluation of transgenic lines of tomato harboring rice chitinase (RCG3) gene for resistance to two important fungal pathogens Fusarium oxysporum f. sp. lycopersici (Fol) causing fusarium wilt and Alternaria solani causing early blight (EB). In this study, three transgenic lines TL1, TL2 and TL3 of tomato Solanum lycopersicum Mill. cv. Riogrande genetically engineered with rice chitinase (RCG 3) gene and their R1 progeny was tested for resistance to Fol by root dip method and A. solani by detached leaf assay. All the R0 transgenic lines were highly resistant to these fungal pathogens compared to non-transgenic control plants. The pattern of segregation of three independent transformant for Fol and A. solani was also studied. Mendelian segregation was observed in transgenic lines 2 and 3 while it was not observed in transgenic line 1. It was concluded that introduction of chitinase gene in susceptible cultivar of tomato not only enhanced the resistance but was stably inherited in transgenic lines 2 and 3.
机译:这是第一项报道报道了带有水稻几丁质酶(RCG3)基因的番茄转基因品系对两种重要真菌病原菌镰刀菌(Fusarium oxysporum f)的抗性的评估。 sp。 lycopersici(Fol)引起枯萎枯萎病和solternaria solani引起早疫病(EB)。在这项研究中,番茄茄属磨粉机的三个转基因株系TL1,TL2和TL3。简历。用水稻几丁质酶(RCG 3)基因和其R1后代基因工程化的里奥格兰德通过根浸法检测了对Fol的抗性,并通过离体叶片试验检测了其对农杆菌的抗性。与非转基因对照植物相比,所有R0转基因品系均对这些真菌病原体具有高度抗性。还研究了三个独立的转化体Fol和A. solani的分离模式。在转基因品系2和3中观察到孟德尔分离,而在转基因品系1中未观察到。可以得出结论,将几丁质酶基因引入番茄易感品种中不仅增强了抗性,而且在转基因品系2和3中稳定地遗传。

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