首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Potential gene flow of two herbicide-tolerant transgenes from oilseed rape to wild B. juncea var. gracilis
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Potential gene flow of two herbicide-tolerant transgenes from oilseed rape to wild B. juncea var. gracilis

机译:从油菜到野生B.juncea var的两个耐除草剂转基因的潜在基因流。纤毛虫

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摘要

Four successive reciprocal backcrosses between F (obtained from wild Brassica juncea as maternal plants and transgenic glyphosate- or glufosinate-tolerant oilseed rape, B. napus, as paternal plants) or subsequent herbicide-tolerant backcross progenies and wild B. juncea were achieved by hand pollination to assess potential transgene flow. The third and forth reciprocal backcrosses produced a number of seeds per silique similar to that of self-pollinated wild B. juncea, except in plants with glufosinate-tolerant backcross progeny used as maternal plants and wild B. juncea as paternal plants, which produced fewer seeds per silique than did self-pollinated wild B. juncea. Germination percentages of reciprocal backcross progenies were high and equivalent to those of wild B. juncea. The herbicide-tolerant first reciprocal backcross progenies produced fewer siliques per plant than did wild B. juncea, but the herbicide-tolerant second or third reciprocal backcross progenies did not differ from the wild B. juncea in siliques per plant. The herbicide-tolerant second and third reciprocal backcross progenies produced an amount of seeds per silique similar to that of wild B. juncea except for with the glufosinate-tolerant first and second backcross progeny used as maternal plants and wild B. juncea as paternal plants. In the presence of herbicide selection pressure, inheritance of the glyphosate-tolerant transgene was stable across the second and third backcross generation, whereas the glufosinate-tolerant transgene was maintained, despite a lack of stabilized introgression. The occurrence of fertile, transgenic weed-like plants after only three crosses (F, first backcross, second backcross) suggests a potential rapid spread of transgenes from oilseed rape into its wild relative wild B. juncea. Transgene flow from glyphosate-tolerant oilseed rape might be easier than that from glufosinate-tolerant oilseed rape to wild B. juncea. The original insertion site of the transgene could affect introgression.
机译:手工(从野生芥菜作为母本植物和耐草甘膦或草铵膦的转基因油菜,油菜作为亲本)或随后的除草剂耐受回交子代与野生芥菜之间进行了四个连续的互交授粉以评估潜在的转基因流量。第三和第四反向回交产生的每角果种子数量与自花授粉的野生芥菜相似,除了在具有草铵膦耐受性回交后代的植物中作为母本植物,而野生芥菜作为亲本植物,但产量较少。每自种果的种子比自花授粉的野生芥菜的种子多。反向回交后代的发芽率很高,与野生芥菜的发芽率相当。耐除草剂的第一倒交回交子代每株植物产生的长角果比野生芥菜少,但耐除草剂的第二或第三倒交回交子代的每株植物与野生的芥子气道没有差异。耐除草剂的第二和第三倒交回交子代的每角果产生的种子量与野生芥菜的相似,不同之处在于耐草铵膦的第一回交子代和第二回交子代用作母本植物,而野生芥菜的回交子代用作父本植物。在存在除草剂选择压力的情况下,耐草甘膦转基因的遗传在第二和第三回交世代中是稳定的,而草铵膦耐受的转基因得以维持,尽管缺乏稳定的渗入。仅经过三个杂交(F,第一次回交,第二次回交)后就出现了能育的转基因杂草样植物,这表明转基因可能从油菜油菜迅速传播到其野生相对的野生芥菜。耐草甘膦油菜的转基因流可能比耐草铵膦油菜到野生芥菜的转基因流更容易。转基因的原始插入位点可能影响渗入。

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