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首页> 外文期刊>Industrial Crops and Products >Arthropod communities related to different mixtures of oil (Glycine max L. Merr.) and essential oil (Artemisia annua L.) crops.
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Arthropod communities related to different mixtures of oil (Glycine max L. Merr.) and essential oil (Artemisia annua L.) crops.

机译:节肢动物群落与石油(Glycine max L. Merr。)和精油(Artemisia annua L.)作物的不同混合物有关。

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Plants can host many herbivores and their natural enemies during their growth cycles. For this reason, changes in the relative abundance of crop and weed plants in a monocropping system as well as different crop plants in an intercropping system may produce great bottom up impacts in the specific and functional structure of spontaneous communities of arthropods. The hypothesis of this study was that the combination of two contrasting species, soybean (Glycine max, Fabaceae, N2 fixing plant) and annual wormwood (Artemisia annua, Asteraceae, VOCs plant), would be related to different spontaneous communities of arthropods depending on the proportion of each species, and this would favor crop biodiversity without compromising crop production. The objectives of the study were: (a) to analyze the differences of spontaneous communities of arthropods related to different soybean (S)-annual wormwood (W) mixtures, using standard crop management for S production in Argentina, (b) to determine S and W total biomass and W essential oil content and yield and, (c) to analyze the relationship between arthropod communities and crop productivity. Factorial field experiments with 3 replications were done during 2006 and 2007. S density was kept constant (40 plants m-2) and different W densities (plants m-2) were added. Treatments were pure S, S+2W, S+4W, S+8W and pure W (8 plants m-2). Arthropods were sampled at soybean full flowering and were classified in functional groups as herbivores and non-herbivores. S and W total and relative biomass and W essential oil content and yield from leaves and inflorescences were estimated in reproductive stage. Arthropod morphospecies abundance and richness were determined for each treatment. Data were analyzed using uni (ANOVA) and multivariate (CCA) techniques. Arthropods belonging to 7 orders presented a total richness of 48 morphospecies in 2006 and 36 in 2007, while total abundance was 379 in 2006 and 318 in 2007. The proportion of non-herbivores was higher than the proportion of herbivores. Different arthropod communities were observed according to each treatment. No differences were found among treatments in S+W and S total biomass production, while W total biomass and essential oil yield were both different among treatments. Relative biomass production of S and W was the main explanatory variable related to the contrast of arthropod communities between pure annual wormwood (W) and the rest of the treatments. Annual wormwood could be used as an accompanying essential oil crop or left as a weed in the densities tested in this work, favoring biodiversity and, eventually, pest management without compromising soybean crop yield.
机译:植物在其生长周期中可以容纳许多草食动物及其天敌。因此,单作系统中农作物和杂草植物的相对丰度以及间作系统中不同农作物的变化可能会对节肢动物自发群落的特定和功能结构产生巨大的自下而上的影响。这项研究的假设是两个对立物种的组合,即大豆( Glycine max ,豆科(Fabaceae),N 2 固定植物)和一年生的艾草( Artemisia annua < / i>,菊科,VOCs植物),取决于每个物种的比例,它们与节肢动物的不同自发群落有关,这将有利于作物生物多样性而不损害作物产量。研究的目标是:(a)使用阿根廷的标准作物管理方法,分析与不同大豆(S)-一年生艾草(W)混合物相关的节肢动物自发群落的差异,(b)确定S W总生物量和W精油含量和产量,以及(c)分析节肢动物群落与作物生产力之间的关系。在2006年和2007年进行了3次重复的析因田间试验。保持S密度恒定(40株m -2 ),保持不同的W密度(m -2 株)。添加。处理方式为纯S,S + 2W,S + 4W,S + 8W和纯W(8株m -2 )。节肢动物在大豆完全开花时取样,并按功能组分类为草食动物和非食草动物。在繁殖期,估算了S和W的总和,相对生物量以及W的精油含量以及叶片和花序的产量。确定每种处理的节肢动物形态物种的丰度和丰富度。使用uni(ANOVA)和多元(CCA)技术分析数据。节肢动物属于7个目,2006年和2007年共富集了48个形态物种,而2006年和2007年的总富集量分别为379个和318个。非食草动物的比例高于草食动物的比例。根据每种处理方法观察到不同的节肢动物群落。 S + W和S总生物量生产之间没有发现差异,而W总生物量和精油产量在各处理之间均不同。 S和W的相对生物量产量是与纯一年生艾草(W)和其余处理之间节肢动物群落的对比有关的主要解释变量。一年生的艾草可以用作伴生的精油作物,也可以作为杂草留在这项工作中测试的密度中,有利于生物多样性,并最终在不损害大豆作物产量的情况下进行了害虫管理。

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