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首页> 外文期刊>Environmental Entomology >Factors contributing to the poor performance of a soybean aphid parasitoid Binodoxys communis (Hymenoptera: Braconidae) on an herbivore resistant soybean cultivar.
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Factors contributing to the poor performance of a soybean aphid parasitoid Binodoxys communis (Hymenoptera: Braconidae) on an herbivore resistant soybean cultivar.

机译:导致大豆蚜虫对寄生食草的大豆品种表现出不利影响的因素有大豆蚜虫类寄生双歧双歧杆菌(膜翅目:Braconidae)。

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摘要

Host plant resistance and biological control are important components of integrated pest management programs. However, plants expressing resistance to herbivores may also have direct or indirect negative effects on natural enemies simultaneously providing pest suppression. Soybean aphids (Aphis glycines Matsumura) are invasive and serious pests of soybean (Glycine max L.) in the United States. Several soybean lines with aphid resistance have been identified, but the long-term impact of these resistant plants on soybean aphid biological control agents is uncertain. In a previous study, we reported that a soybean aphid parasitoid, Binodoxys communis (Gahan) had lower mummy production on resistant plants compared with a near isogenic susceptible soybean line, but the reason for this was unclear. Therefore, we examined three possible mechanisms to explain these findings: (1) resistant plants directly impact wasp emergence and longevity, (2) varying aphid density influences parasitism rates, and (3) resistant plants indirectly affect wasp development through reduced aphid longevity. We found that parasitoids in this study were not directly influenced by resistant cultivars, as there was no difference in wasp adult emergence or longevity between resistant and susceptible plants. There was also no significant effect of aphid density on mummy production over the range of aphid densities we tested. However, aphids on resistant plants had significantly shorter lifespans and were unable to survive long enough to develop into mummies compared with aphids on susceptible plants. We discuss these results and possible implications for integrating biological control and host plant resistance within soybean aphid integrated pest management programs.
机译:寄主植物的抗性和生物控制是有害生物综合治理计划的重要组成部分。但是,对草食动物具有抗性的植物也可能​​对天敌产生直接或间接的负面影响,同时抑制害虫。大豆蚜虫(Aphis glycines Matsumura)是美国的大豆侵害性严重害虫(Glycine max L.)。已经确定了几种具有蚜虫抗性的大豆品系,但是这些抗性植物对大豆蚜虫生物防治剂的长期影响尚不确定。在先前的研究中,我们报道了与近等基因的易感大豆品系相比,大豆蚜虫类寄生虫(Binodoxys communis(Gahan))在抗性植物上的木乃伊产量较低,但是原因尚不清楚。因此,我们研究了三种可能的机制来解释这些发现:(1)抗性植物直接影响黄蜂的出现和寿命,(2)蚜虫密度的变化影响寄生率,(3)抗性植物通过降低蚜虫的寿命间接影响黄蜂的发育。我们发现本研究中的寄生物不受抗性品种的直接影响,因为抗性和易感植物之间的黄蜂成虫出世或寿命没有差异。在我们测试的蚜虫密度范围内,蚜虫密度对木乃伊的生产也没有显着影响。然而,与易感植物上的蚜虫相比,抗性植物上的蚜虫的寿命明显较短,并且不能存活足够长的时间以发展成木乃伊。我们讨论了这些结果以及在大豆蚜虫害虫综合治理计划中整合生物防治和寄主植物抗性的可能含义。

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