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首页> 外文期刊>Annals of Applied Biology >Prioritising potential guilds of specialist herbivores as biological control agents for prickly acacia through simulated herbivory.
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Prioritising potential guilds of specialist herbivores as biological control agents for prickly acacia through simulated herbivory.

机译:通过模拟食草优先考虑潜在的专业食草动物协会作为刺槐相思的生物防治剂。

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Understanding plant response to herbivory facilitates the prioritisation of guilds of specialist herbivores as biological control agents based on their potential impacts. Prickly acacia (Acacia nilotica ssp. indica) is a weed of national significance in Australia and is a target for biological control. Information on the susceptibility of prickly acacia to herbivory is limited, and there is no information available on the plant organ (i.e. leaf, shoot and root in isolation or in combination) most susceptible to herbivory. We evaluated the ability of prickly acacia seedlings, to respond to different types of simulated herbivory (defoliation, shoot damage, root damage and combinations), at varying frequencies (no herbivory, single, two and three events of herbivory) to identify the type and frequency of herbivory that will be required to reduce the growth and vigour. Defoliation and shoot damage, individually, had a significant negative impact on prickly acacia seedlings. For the defoliation to be effective, more than two defoliation events were required, whereas a single bout of shoot damage was enough to cause a significant reduction in plant vigour. A combination of defoliation+shoot damage had the greatest negative impact. The study highlights the need to prioritise specialist leaf and shoot herbivores as potential biological control agents for prickly acacia.
机译:了解植物对草食动物的反应有助于根据其潜在影响将专业草食动物行会作为生物防治剂进行优先排序。刺相思树( Acacia nilotica ssp。 indica )是澳大利亚具有国家重要意义的杂草,是生物防治的目标。关于刺状刺槐对草食性的敏感性的信息是有限的,并且没有关于最易食草性的植物器官(即叶,枝和根的分离或组合)的信息。我们评估了刺相思树苗对不同类型的模拟食草植物(脱叶,枝条损伤,根部损害及其组合)的响应能力,并以不同的频率(无食草动物,单次,两次和三种食草动物)来识别其类型和能力。减少生长和活力所需的食草频率。落叶和枝条损伤分别对刺相思树苗产生了显着的负面影响。为了使脱叶有效,需要进行两次以上的脱叶事件,而单次发芽损伤足以导致植物活力显着降低。落叶+射击伤害的组合带来的负面影响最大。这项研究强调需要优先处理专业的叶片和枝条食草动物作为刺刺相思的潜在生物防治剂。

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