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首页> 外文期刊>Oecologia >Effects of nutrient variability on the genetic-based resistance of Eucalyptus globulus to a mammalian herbivore and on plant defensive chemistry
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Effects of nutrient variability on the genetic-based resistance of Eucalyptus globulus to a mammalian herbivore and on plant defensive chemistry

机译:营养成分变异性对桉树对哺乳动物食草动物的遗传抗性及植物防御化学的影响

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Plant resistance to herbivores can be influenced not only by the independent effects of plant genotype and environmental variation, but by interactions between the two. The main aim of this study was to assess the effects of environmental variability (nutrient treatment) on the known genetic-based expression of resistance and defensive chemistry of Eucalyptus globulus to browsing by the generalist mammalian herbivore Trichosurus vulpecula. In a captive feeding trial, we measured intake of seedlings from one relatively resistant (Blue Gum Hill) and one relatively susceptible (St Helens) population of E. globulus grown under two nutrient treatments (no fertiliser, plus fertiliser). There was a significant genotypexfertiliser interaction effect on intake of E. globulus foliage by T. vulpecula, and the predicted genetic-based resistance of the two populations was expressed only for the non-fertilised treatment. Expression of resistance largely reflected the combined and inverse effects of nitrogen and condensed tannin concentrations. The expression of plant secondary metabolite concentration differed between compounds, but in all cases the effects of plant genotype and fertiliser treatment were independent. The formylated phloroglucinol compounds differed significantly between genotypes but not between fertiliser treatments. In contrast, the effect of plant genotype on the expression of condensed tannins was weak but they were significantly reduced by fertiliser. Essential oils were influenced by both plant genotype and fertiliser treatment and were significantly higher in the fertilised seedlings than in the non-fertilised seedlings. This study highlights interactive effects of plant genotype and environment in influencing the phenotypic expression of resistance in a eucalypt species to a mammalian browser. It also demonstrates that this interactive effect is the net result of independent effects of genotype and environment on plant chemistry and finally, that different groups of compounds within a plant can respond very differently to variation in environmental conditions.
机译:植物对草食动物的抗性不仅会受到植物基因型和环境变化的独立影响,而且会受到两者之间相互作用的影响。这项研究的主要目的是评估环境变异性(营养处理)对已知的基于遗传的桉树抗药性和防御性化学表达的影响,以使食草哺乳动物Trichosurus vulpecula能够浏览。在圈养饲养试验中,我们测量了在两种营养处理(不施肥,加肥)下生长的一种相对抗性(蓝牙山)和一种相对易感(圣海伦)的小球藻种群的幼苗摄入量。基因型与肥料的交互作用对T虫摄入小球藻的叶子有显着影响,并且两个种群的预测的基于遗传的抗性仅在非受精处理中表达。抗性的表达在很大程度上反映了氮和浓缩单宁浓度的组合和反作用。化合物之间植物次生代谢产物浓度的表达有所不同,但是在所有情况下,植物基因型和肥料处理的影响都是独立的。甲酰化间苯三酚化合物在基因型之间存在显着差异,但在肥料处理之间没有显着差异。相反,植物基因型对单宁浓缩表达的影响较弱,但通过肥料却明显降低。精油受植物基因型和肥料处理的影响,受精苗中的精油明显高于未受精苗。这项研究强调了植物基因型和环境在影响桉树物种对哺乳动物浏览器抗性的表型表达方面的相互作用。它还证明了这种相互作用是基因型和环境对植物化学的独立影响的最终结果,最后,植物中不同种类的化合物对环境条件的变化反应也非常不同。

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