Al-Ahmad Hani, Galili Shmuel, Gressel Jonathan
Plant Sciences, Weizmann Institute of Science, Rehovot, 76100, Israel.
Planta. 2005 Oct;222(2):372-85. doi: 10.1007/s00425-005-1540-6. Epub 2005 Jun 2.
Transgenic crops can interbreed with other crop cultivars or with related weeds, increasing the potential of the hybrid progeny for competition. To prevent generating competitive hybrids, we previously tested tobacco (Nicotiana tabacum L.) as a model for validating the transgenic mitigation (TM) concept using tandem constructs where a gene of choice is linked to mitigating genes that are positive or neutral to the crop, but deleterious to a recipient under competition. Here, we examine the efficacy of the TM concept at various ratios of transgenically mitigated tobacco in competition with the wild type tobacco in an ecological replacement series. The dwarf/herbicide-resistant TM transgenic plants cultivated alone under self-competition grew well and formed many more flowers than the tall wild type, which is an indication of greater reproductivity. In contrast to the wild type, TM flowering was almost completely suppressed in mixed cultures at most TM/wild type ratios up to 75% transgenic, as the TM plants were extremely unfit to reproduce. In addition, homozygous TM progeny had an even lower competitive fitness against the wild type than hemizygous/homozygous TM segregants. Thus, the TM technology was effective in reducing the risk of transgene establishment of intraspecific transgenic hybrids at different competitive levels, at the close spacing typical of weed populations.
转基因作物可以与其他作物品种或相关杂草杂交,增加了杂交后代产生竞争的可能性。为了防止产生有竞争力的杂种,我们之前以烟草(Nicotiana tabacum L.)为模型,使用串联构建体验证转基因缓解(TM)概念,其中选择的基因与对作物呈阳性或中性但在竞争中对受体有害的缓解基因相连。在此,我们在生态替代系列中研究了转基因缓解烟草与野生型烟草竞争时,TM概念在不同比例下的效果。单独种植的矮化/抗除草剂TM转基因植物在自交竞争下生长良好,比高大的野生型形成更多的花,这表明其繁殖力更强。与野生型相比,在高达75%转基因的大多数TM/野生型比例的混合培养中,TM开花几乎完全受到抑制,因为TM植物极不适合繁殖。此外,纯合TM后代对野生型的竞争适应性比半合子/纯合TM分离株更低。因此,在杂草种群典型的紧密间距下,TM技术在不同竞争水平上有效降低了种内转基因杂种的转基因定殖风险。