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Antifungal genes expressed in transgenic pea (Pisum sativum L.) do not affect root colonization of arbuscular mycorrhizae fungi

机译:在转基因豌豆(Pisum sativum L)中表达的抗真菌基因不会影响丛枝菌根真菌的根殖民化

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Genetically modified crops have raised concerns about unintended consequences on non-target organisms including beneficial soil associates. Pea transformed with four antifungal genes 1-3 beta glucanase, endochitinase, polygalacturonase-inhibiting proteins, and stilbene synthase is currently under field-testing for efficacy against fungal diseases in Canada. Transgenes had lower expression in the roots than leaves in greenhouse experiment. To determine the impact of disease-tolerant pea or gene products on colonization by non-target arbuscular mycorrhizae and nodulation by rhizobium, a field trial was established. Transgene insertion, as single gene or stacked genes, did not alter root colonization by arbuscular mycorrhiza fungus (AMF) or root nodulation by rhizobium inoculation in the field. We found no effect of transgenes on the plant growth and performance although, having a dual inoculant with both AMF and rhizobium yielded higher fresh weight shoot-to-root ratio in all the lines tested. This initial risk assessment of transgenic peas expressing antifungal genes showed no deleterious effect on non-target organisms.
机译:基因改性作物对非靶伙伴有益土壤伙伴的非靶毒性生物的意外后果提出了担忧。用四种抗真菌基因1-3β葡聚糖酶,抑制酶,多肢蛋白酶抑制蛋白和芪合成酶转化的豌豆目前正在对加拿大真菌疾病的疗效进行现场测试。转基因在根部实验中的根部表达低于叶子。为了确定耐药性豌豆或基因产物对非靶丛菌菌根和根瘤菌的染色的殖民化的影响,建立了田间试验。作为单一基因或堆叠基因的转基因插入并未通过丛枝菌根真菌(AMF)或通过该领域的根序接种来改变根系殖民。我们发现转基因对植物生长和性能的影响虽然,但是在所有测试的所有线中具有含有AMF和根序的双孕酸的含有较高的鲜重枝比。表达抗真菌基因的转基因豌豆的这种初始风险评估对非靶毒性生物没有任何有害影响。

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