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首页> 外文期刊>Annals of Botany >Dissimilarity of contemporary and historical gene flow in a wild carrot (Daucus carota) metapopulation under contrasting levels of human disturbance: implications for risk assessment and management of transgene introgression
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Dissimilarity of contemporary and historical gene flow in a wild carrot (Daucus carota) metapopulation under contrasting levels of human disturbance: implications for risk assessment and management of transgene introgression

机译:在不同人类干扰水平下,野生胡萝卜(胡萝卜)种群中当代和历史基因流的差异:对风险评估和转基因渗入的管理的影响

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摘要

Transgene introgression from crops into wild relatives may increase the resistance of wild plants to herbicides, insects, etc. The chance of transgene introgression depends not only on the rate of hybridization and the establishment of hybrids in local wild populations, but also on the metapopulation dynamics of the wild relative. The aim of the study was to estimate gene flow in a metapopulation for assessing and managing the risks of transgene introgression. Wild carrots (Daucus carota) were sampled from 12 patches in a metapopulation. Eleven microsatellites were used to genotype wild carrots. Genetic structure was estimated based on the F-ST statistic. Contemporary (over the last several generations) and historical (over many generations) gene flow was estimated with assignment and coalescent methods, respectively. The genetic structure in the wild carrot metapopulation was moderate (F-ST 0082) and most of the genetic variation resided within patches. A pattern of isolation by distance was detected, suggesting that most of the gene flow occurred between neighbouring patches (1km). The mean contemporary gene flow was 5 times higher than the historical estimate, and the correlation between them was very low. Moreover, the contemporary gene flow in roadsides was twice that in a nature reserve, and the correlation between contemporary and historical estimates was much higher in the nature reserve. Mowing of roadsides may contribute to the increase in contemporary gene flow. Simulations demonstrated that the higher contemporary gene flow could accelerate the process of transgene introgression in the metapopulation. Human disturbance such as mowing may alter gene flow patterns in wild populations, affecting the metapopulation dynamics of wild plants and the processes of transgene introgression in the metapopulation. The risk assessment and management of transgene introgression and the control of weeds need to take metapopulation dynamics into consideration.RI Rong, Jun/B-6037-2008OI Rong, Jun/0000-0003-1408-2898
机译:从农作物向野生近缘植物的转基因渗入可能会增加野生植物对除草剂,昆虫等的抗性。转基因渗入的机会不仅取决于杂交率和当地野生种群中杂种的建立,还取决于其种群动态野生亲戚。这项研究的目的是评估一个亚群中的基因流,以评估和管理转基因渗入的风险。从一个种群中的12个斑块中采样了野胡萝卜(Daucus carota)。使用11个微卫星对野生胡萝卜进行基因分型。遗传结构是根据F-ST统计数据估算的。当代(过去几代人)和历史(过去几代人)的基因流量分别通过赋值和合并方法进行了估计。野胡萝卜代谢种群的遗传结构中等(F-ST 0082),大多数遗传变异都位于斑块内。检测到了按距离隔离的模式,这表明大多数基因流发生在相邻补丁之间(1公里)。当代平均基因流量比历史估计值高5倍,它们之间的相关性非常低。而且,当代在路边的基因流动是自然保护区的两倍,当代和历史估计之间的相关性在自然保护区中更高。路边割草可能会促进当代基因流的增加。模拟表明,更高水平的当代基因流可以加速亚群中转基因渗入的过程。人为干扰(例如割草)可能会改变野生种群中的基因流动模式,从而影响野生植物的种群动态以及该种群中转基因渗入的过程。转基因渗入的风险评估和管理以及杂草的控制需要考虑种群动态.RI Rong,Jun / B-6037-2008OI Rong,Jun / 0000-0003-1408-2898

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