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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Current knowledge of gene flow in plants: implications for transgene flow
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Current knowledge of gene flow in plants: implications for transgene flow

机译:植物基因流的最新知识:对转基因流的影响

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Plant evolutionary biologists' view of gene flow and hybridization has undergone a revolution. Twenty-five years ago, both were considered rare and largely inconsequential. Now gene flow and hybridization are known to be idiosyncratic, varying with the specific populations involved. Gene flow typically occurs at evolutionarily significant rates and at significant distances. Spontaneous hybridization occasionally has important applied consequences, such as stimulating the evolution of more aggressive invasives and increasing the extinction risk for rare species. The same problems have occurred for spontaneous hybridization between crops and their wild relatives. These new data have implications for transgenic crops: (i) for most crops, gene flow can act to introduce engineered genes into wild populations; (ii) depending on the specific engineered gene(s) and populations involved, gene flow may have the same negative impacts as. those observed for traditionally improved crops; (iii) gene flow's idiosyncratic nature may frustrate management and monitoring attempts; and (iv) intercrop transgene flow, although rarely discussed, is equally worthy of study. [References: 81]
机译:植物进化生物学家关于基因流动和杂交的观点经历了一场革命。二十五年前,两者都被认为是稀有的,而且在很大程度上是无关紧要的。现在已知基因流和杂交是特异的,随涉及的特定种群而变化。基因流通常以进化上显着的速率和显着的距离发生。自发杂交有时会产生重要的应用后果,例如刺激更具侵略性的入侵物种的进化,并增加稀有物种的灭绝风险。作物及其野生近缘种之间的自发杂交也出现了同样的问题。这些新数据对转基因作物产生了影响:(i)对于大多数作物,基因流可以起到将工程基因导入野生种群的作用; (ii)根据特定的工程基因和所涉及的种群,基因流可能具有与之相同的负面影响。在传统改良作物上观察到的那些; (iii)基因流的特质可能会挫败管理和监测的尝试; (iv)间作转基因流,尽管很少讨论,但同样值得研究。 [参考:81]

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