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Transgenic Resistance Confers Effective Field Level Control of Bacterial Spot Disease in Tomato

机译:番茄细菌性斑点病的转基因抗性赋予有效场电平控制

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摘要

We investigated whether lines of transgenic tomato (Solanum lycopersicum) expressing the Bs2 resistance gene from pepper, a close relative of tomato, demonstrate improved resistance to bacterial spot disease caused by Xanthomonas species in replicated multi-year field trials under commercial type growing conditions. We report that the presence of the Bs2 gene in the highly susceptible VF 36 background reduced disease to extremely low levels, and VF 36-Bs2 plants displayed the lowest disease severity amongst all tomato varieties tested, including commercial and breeding lines with host resistance. Yields of marketable fruit from transgenic lines were typically 2.5 times that of the non-transformed parent line, but varied between 1.5 and 11.5 fold depending on weather conditions and disease pressure. Trials were conducted without application of any copper-based bactericides, presently in wide use despite negative impacts on the environment. This is the first demonstration of effective field resistance in a transgenic genotype based on a plant R gene and provides an opportunity for control of a devastating pathogen while eliminating ineffective copper pesticides.
机译:我们研究了在商业类型生长条件下重复多年的田间试验中,表达来自番茄的近亲辣椒的Bs2抗性基因的转基因番茄(Solanum lycopersicum)品系是否显示出对由黄单胞菌属物种引起的细菌斑病的抗药性提高。我们报告说,在高度易感的VF 36背景中Bs2基因的存在将疾病降低到极低的水平,而VF 36-Bs2植物在所有测试的番茄品种(包括具有宿主抗性的商品和育种系)中显示出最低的疾病严重度。来自转基因品系的可出售水果的产量通常是未转化亲本品系的2.5倍,但取决于天气条件和疾病压力,其产量在1.5到11.5倍之间变化。尽管没有对任何铜基杀菌剂进行试验,但尽管对环境有负面影响,但目前仍在广泛使用。这是基于植物R基因的转基因基因型中有效田间抗性的首次证明,并为控制毁灭性病原体提供了机会,同时消除了无效的铜农药。

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