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Biosafety of hybrids between transgenic virus-resistant sugar beet and Swiss chard

机译:转基因抗病毒甜菜和瑞士甜菜杂交种的生物安全性

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One important issue of biosafety research is whether gene flow from transgenic crops to nontransgenic relatives causes unwanted effects. We carried out field trials with hybrids between transgenic sugar beets, and a close cultivated relative, Swiss chard. This hybrid also acts as a model for "weed beet" hybrids between sugar beet and wild/weed beet (Beta vulgaris ssp. maritima). Transgenic beets with beet necrotic yellow vein virus (BNYVV) coat protein (cp), phosphinothricin-acetyl-transferase (bar), and neomycin-phospho-transferase (nptII) genes were hand-crossed to Swiss chard. The resulting Fl plants and controls were grown at two different BNYVV infestation levels and three different competitive conditions with Chenopodium album. Transgenic hybrids had consistently higher biomass than controls under high background BNYVV infestation, and consistently lower biomass than controls under low background infestation. The transgenic hybrids had a significantly lower rate of bolting than controls at all sites. Competition with Ch. album always had a strong negative influence on the performance of all genotypes. We conclude that ecological implications due to the introduction and spread of virus-resistant transgenic hybrids will be observed only in those feral Swiss chard and wild beet populations where fitness is significantly influenced by high infestations of BNYVV. [References: 33]
机译:生物安全性研究的一个重要问题是基因从转基因作物流向非转基因亲戚是否会引起不良影响。我们对转基因甜菜和近亲栽培的瑞士甜菜进行了田间试验。该杂种还充当糖用甜菜和野生/杂草甜菜(Beta vulgaris ssp。maritima)之间“杂草甜菜”杂种的模型。将甜菜坏死黄静脉病毒(BNYVV)外壳蛋白(cp),草丁膦丝氨酸乙酰转移酶(bar)和新霉素磷酸转移酶(nptII)基因的转基因甜菜与瑞士甜菜进行人工杂交。所得的F1植物和对照在两种不同的BNYVV侵染水平和三种不同的竞争条件下与白藜属植物一起生长。在高本底BNYVV感染下,转基因杂种的生物量始终高于对照,而在低本底感染下,转基因杂种的生物量始终低于对照。在所有位点,转基因杂种的抽rate率均显着低于对照。与Ch。竞争专辑始终会对所有基因型的表现产生强烈的负面影响。我们得出的结论是,仅在那些野生性甜菜和野生甜菜种群中会观察到由于抗病毒转基因杂种的引入和传播而产生的生态影响,在这些种群中,BNYVV的大量侵染会显着影响健康。 [参考:33]

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