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首页> 外文期刊>Journal of Economic Entomology >Interactions among bt maize, entomopathogens, and rootworm species (Coleoptera: Chrysomelidae) in the field: Effects on survival, yield, and root injury
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Interactions among bt maize, entomopathogens, and rootworm species (Coleoptera: Chrysomelidae) in the field: Effects on survival, yield, and root injury

机译:野外bt玉米,昆虫病原体和根虫物种(鞘翅目:金眼科)之间的相互作用:对存活,产量和根系伤害的影响

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A 2 yr field study was conducted to determine how a blend of entomopathogens interacted with Bt maize to affect mortality of Diabrotica spp. (Coleoptera: Chrysomelidae), root injury to maize (Zea maize L.) and yield. The blend of entomopathogens included two entomopathogenic nematodes, Steinernema carpocapsae Weiser and Heterorhabditis bacteriophora Poinar, and one entomopathogenic fungus, Metarhizium brunneum (Metschnikoff) Sorokin. Bt maize (event DAS59122-7, which produces Bt toxin Cry34/35Ab1) decreased root injury and survival of western corn rootworm (Diabrotica virgifera virgifera LeConte) and northern corn rootworm (Diabrotica barberi Smith & Lawrence) but did not affect yield. During year 1 of the study, when rootworm abundance was high, entomopathogens in combination with Bt maize led to a significant reduction in root injury. In year 2 of the study, when rootworm abundance was lower, entomopathogens significantly decreased injury to non-Bt maize roots, but had no effect on Bt maize roots. Yield was significantly increased by the addition of entomopathogens to the soil. Entomopathogens did not decrease survival of corn rootworm species. The results suggest that soil-borne entomopathogens can complement Bt maize by protecting roots from feeding injury from corn rootworm when pest abundance is high, and can decrease root injury to non-Bt maize when rootworm abundance is low. In addition, this study also showed that the addition of entomopathogens to soil contributed to an overall increase in yield.
机译:进行了为期2年的田间研究,以确定昆虫病原体的混合物如何与Bt玉米相互作用以影响Diabrotica spp的死亡率。 (鞘翅目:金眼科),玉米的根部伤害(Zea maize L.)和产量。昆虫病原体的混合物包括两种昆虫病原线虫,即Steinernema carpocapsae Weiser和Heterorhabditis bacteriophora Poinar,以及一种昆虫病原真菌,Metrhizium brunneum(Metschnikoff)Sorokin。 Bt玉米(产生Bt毒素Cry34 / 35Ab1的事件DAS59122-7)减少了西部玉米根虫(Diabrotica virgifera virgifera LeConte)和北部玉米根虫(Diabrotica barberi Smith&Lawrence)的根损伤和存活率,但并未影响产量。在研究的第一年中,当根虫丰度很高时,昆虫病原体与Bt玉米联合使用可显着减少根部伤害。在研究的第2年,当根虫丰度较低时,昆虫病原体显着降低了对非Bt玉米根的伤害,但对Bt玉米根没有影响。通过向土壤中添加昆虫病原菌可以显着提高产量。昆虫病原体并未降低玉米根虫的存活率。结果表明,土壤传播的昆虫病原体可以通过在害虫丰度高时保护根免受玉米根虫的食性伤害来补充Bt玉米,而在根虫丰度低时可以减少对非Bt玉米的根伤害。此外,这项研究还表明,向土壤中添加昆虫病原菌有助于整体提高产量。

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