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当作物被激活时会发生什么?模拟组成型挥发物以在农业景观中进行三营养级害虫抑制。

What happens when crops are turned on? Simulating constitutive volatiles for tritrophic pest suppression across an agricultural landscape.

作者信息

Kaplan Ian, Lewis Danny

机构信息

Department of Entomology, Purdue University, West Lafayette, Indiana, USA.

出版信息

Pest Manag Sci. 2015 Jan;71(1):139-50. doi: 10.1002/ps.3779. Epub 2014 Apr 30.

DOI:10.1002/ps.3779
PMID:24648404
Abstract

BACKGROUND

Herbivore-induced plant volatiles, or HIPVs, are increasingly considered as a biocontrol enhancement tool by constitutively emitting these carnivore-attracting chemicals from agricultural fields. While ample data substantiate the olfactory preference of predators for HIPVs in laboratory environments, little is understood about the consequences of 'turning crops on' in the field. To explore the ramifications for arthropod pest management, a spatially explicit predator-prey population model was constructed that simulated a crop field releasing signals to recruit natural enemies from the surrounding landscape.

RESULTS

Field size had an overriding influence on model outcome, both isolated as a single factor and interactively shaping responses to other parameters (e.g. habituation, foraging efficiency). Predator recruitment exponentially declined with increasing field size from nearly double the baseline density in small fields (225 individuals m(-2)) to a mere 4% increase (130 individuals m(-2)) in large fields. Correspondingly, HIPVs enhanced pest consumption in small fields (ca 50% fewer prey), while generating virtually no impact in large fields.

CONCLUSION

Collectively, the model suggests that reducing the perimeter/core area ratio will ultimately constrain the utility of predator retention as a pest control tactic in commercial-sized fields and illustrates potential consequences of the widespread commercialization of this technology in agriculture.

摘要

背景

草食动物诱导的植物挥发物(HIPVs)越来越被视为一种生物防治增强工具,通过在农田中持续释放这些吸引食肉动物的化学物质来实现。虽然有大量数据证实了捕食者在实验室环境中对HIPVs的嗅觉偏好,但对于在田间“开启作物信号”的后果却知之甚少。为了探究对节肢动物害虫管理的影响,构建了一个空间明确的捕食者 - 猎物种群模型,该模型模拟了一块向周围景观招募天敌的释放信号的农田。

结果

田间大小对模型结果具有首要影响,无论是作为单一因素单独考虑,还是与其他参数相互作用影响响应(例如习惯化、觅食效率)。随着田间大小增加,捕食者的招募呈指数下降,从小田(225 个个体/平方米)中接近基线密度的两倍降至大田(130 个个体/平方米)中仅增加 4%。相应地,HIPVs 在小田中增强了害虫的消耗(猎物减少约 50%),而在大田中几乎没有产生影响。

结论

总体而言,该模型表明,降低周长/核心面积比最终将限制在商业规模田间将捕食者保留作为害虫控制策略的效用,并说明了该技术在农业中广泛商业化的潜在后果。

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