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Nitrogen fertilisation improves growth of Chromolaena odorata (Asteraceae) and the performance of the biological control agent, Pareuchaetes insulata (Erebidae)

机译:施氮可改善香樟(Chromolaena odorata)(菊科)的生长以及生物防治剂Pareuchaetes insulata(Erebidae)的性能。

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摘要

Recent studies have demonstrated, through their contrasting results, that relationships between nitrogen levels in host plants and phytophagous insect performance are not simple. This study examined the effect of varying fertilisation regimes on the invasive alien plant, Chromolaena odorata (L.) (Asteraceae) and the response of a specialist folivore (a biological control agent), Pareuchaetes insulata (Walker) (Lepidoptera: Erebidae). C. odorata plants were treated with 3 different levels of fertilisation and plant characteristics were measured within 2-3 months of fertiliser application. Leaves from each of the three treatments were fed to newly hatched larvae until pupation in order to determine the effect of nitrogen fertilisation on herbivore performance metrics such as survival, development time, fecundity and longevity. High and medium fertilisation significantly increased foliar nitrogen concentrations, basal stem diameter, leaf length, shoot height and above-ground biomass of C. odorata plants relative to low fertilisation. When individuals of P. insulata were fed on leaves from medium-or high-fertilisation treatments, they developed faster, grew to a larger size (by 8%) and achieved higher fecundity (19-22%) than leaves from the low-fertilisation treatment. The results suggest that in mass-rearing, increased production of this biological control agent will occur in high-or medium-fertilised plants.
机译:最近的研究表明,通过对比结果,寄主植物中的氮含量与食草昆虫的行为之间的关系并不简单。这项研究检查了不同施肥方式对外来入侵植物香茅(Chromolaena odorata(L.)(Asteraceae)的影响,以及特种叶状体(Paralchaetes insulata)(Walker)(鳞翅目:Erebidae)的响应。用3种不同水平的施肥处理了香茅(C. odorata)植物,并在施肥的2-3个月内测量了植物的特性。将三种处理方法中的每种方法的叶片喂入新孵化的幼虫直至化ation,以确定氮肥对草食动物性能指标(例如生存期,发育时间,繁殖力和寿命)的影响。相对于低施肥,高中施肥显着增加了香雪草植物的叶面氮浓度,基茎直径,叶长,枝条高度和地上生物量。当用中等或高肥力处理的叶片饲喂Insulata个体时,与低肥力叶片相比,它们发育更快,长大(增长8%)并获得更高的繁殖力(19-22%)。治疗。结果表明,在大量繁殖中,这种生物防治剂的产量将在高或中肥植物中发生。

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