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Transgenes for insect resistance reduce herbivory and enhance fecundity in advanced generations of crop–weed hybrids of rice

机译:昆虫抗性转基因可减少水稻作物杂草杂交后代的食草性并提高繁殖力

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摘要

Gene flow from transgenic crops allows novel traits to spread to sexually compatible weeds. Traits such as resistance to insects may enhance the fitness of weeds, but few studies have tested for these effects under natural field conditions. We created F2 and F3 crop–weed hybrid lineages of genetically engineered rice (Oryza sativa) using lines with two transgene constructs, cowpea trypsin inhibitor (CpTI) and a Bt transgene linked to CpTI (Bt/CpTI). Experiments conducted in Fuzhou, China, demonstrated that CpTI alone did not significantly affect fecundity, although it reduced herbivory. In contrast, under certain conditions, Bt/CpTI conferred up to 79% less insect damage and 47% greater fecundity relative to nontransgenic controls, and a 44% increase in fecundity relative to the weedy parent. A small fitness cost was detected in F3 progeny with Bt/CpTI when grown under low insect pressure and direct competition with transgene-negative controls. We conclude that Bt/CpTI transgenes may introgress into co-occurring weedy rice populations and contribute to greater seed production when target insects are abundant. However, the net fitness benefits that are associated with Bt/CpTI could be ephemeral if insect pressure is lacking, for example, because of widespread planting of Bt cultivars that suppress target insect populations.
机译:来自转基因作物的基因流使新的性状传播到具有性相容性的杂草上。诸如抗虫性等性状可以增强杂草的适应性,但是很少有研究在自然田间条件下对这些影响进行测试。我们使用具有两个转基因构建体,cow豆胰蛋白酶抑制剂(CpTI)和与CpTI连接的Bt转基因(Bt / CpTI)的品系,创建了转基因水稻(Oryza sativa)的F2和F3作物杂草杂交谱系。在中国福州进行的实验表明,尽管CpTI减少了草食性,但它并未显着影响繁殖力。相反,在某些条件下,相对于非转基因对照,Bt / CpTI最多可减少79%的昆虫伤害和47%的繁殖力,而相对于杂草父母,繁殖力提高44%。当在低昆虫压力下生长并与转基因阴性对照直接竞争时,使用Bt / CpTI的F3后代检测到适度的小成本。我们的结论是,当目标昆虫丰富时,Bt / CpTI转基因可能会渗入杂草水稻共生种群,并有助于更大的种子产量。但是,如果缺乏昆虫压力,与Bt / CpTI相关的净健康益处可能是短暂的,例如,由于广泛种植抑制目标昆虫种群的Bt品种。

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