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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Managing the evolution of Bacillus thuringiensis resistance in natural populations of the European corn borer, Ostrinia nubilalis: host plant, host race and pherotype of adult males at aggregation sites.
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Managing the evolution of Bacillus thuringiensis resistance in natural populations of the European corn borer, Ostrinia nubilalis: host plant, host race and pherotype of adult males at aggregation sites.

机译:管理欧洲玉米bore,天然玉米Ost自然种群中苏云金芽孢杆菌抗性的进化:聚集部位的寄主植物,寄主种族和成年雄性的表型。

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摘要

The European corn borer (ECB) consists of at least two, genetically differentiated host races: one feeding on maize, the other feeding on mugwort and hop. It is unclear to what extent individuals feeding on these, or other host plants, contribute to natural ECB populations. The mechanisms underlying the genetic differentiation between both races are not well understood; they may include sexual attraction via different pheromone blends (E or Z) and differences in the location of mating sites. We caught adult males with traps baited with the E or the Z blend at hop, maize, and 'mixed' sites. We determined their probable host race by allozyme-based genetic assignment, and the photosynthetic type of their host plant by stable carbon isotope analysis. Most individuals caught in Z traps had emerged from a C(4)-type plant and belonged to the maize race, whereas most individuals caught in E traps had emerged from C(3)-type plants and were but weakly differentiated from the hop-mugwort race, suggesting a strong, though not absolute, correspondence between host plant, host race and pherotype. We also found that although spatial segregation may contribute to genetic isolation between host races, moths of both host races may be present at a given location. Regarding the management of Bacillus thuringiensis (Bt) maize, our results indicate that, at least at the present study sites, it is unlikely that any wild or cultivated C(3)-type plant species could be a source of susceptible individuals that would mate randomly with Bt-resistant Z-C(4) moths emerging from Bt-maize fields.
机译:欧洲玉米bore(ECB)至少由两个经过基因区分的寄主种族组成:一个以玉米为食,另一个以艾蒿和蛇麻草为食。目前尚不清楚以这些或其他寄主植物为食的个体对欧洲央行自然种群的贡献程度。两种种族之间的遗传分化的机制尚不清楚。它们可能包括通过不同信息素混合物(E或Z)引起的性吸引以及交配位置的差异。我们在蛇麻草,玉米和“杂种”部位用诱捕剂诱捕了成年雄性,诱捕器用E或Z掺和剂诱捕。我们通过基于同工酶的遗传分配确定了它们可能的宿主种族,并通过稳定的碳同位素分析确定了宿主植物的光合类型。捕获在Z陷阱中的大多数个体均来自C(4)型植物,属于玉米种族,而捕获在E陷阱中的大多数个体均来自C(3)型植物,但与蛇麻草的分化程度较弱。艾蒿种族,表明寄主植物,寄主种族和表型之间有很强的对应关系,尽管不是绝对的。我们还发现,尽管空间隔离可能有助于宿主种族之间的遗传隔离,但两个宿主种族的飞蛾可能存在于给定位置。关于苏云金芽胞杆菌(Bt)玉米的管理,我们的结果表明,至少在目前的研究地点,任何野生或栽培的C(3)型植物都不太可能成为易感个体的交配来源随机与Bt玉米田出现Bt抗性ZC(4)飞蛾。

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