首页> 外文期刊>Australian Journal of Botany >Spectrometric prediction of secondary metabolites and nitrogen in fresh Eucalyptus foliage: towards remote sensing of the nutritional quality of foliage for leaf-eating marsupials
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Spectrometric prediction of secondary metabolites and nitrogen in fresh Eucalyptus foliage: towards remote sensing of the nutritional quality of foliage for leaf-eating marsupials

机译:桉树新鲜叶片中次生代谢产物和氮的光谱预测:以食叶有袋动物的叶片营养质量为遥感

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摘要

Near-infrared reflectance spectroscopy provides an excellent means of assessing the chemical composition of Eucalyptus foliage but the standard methods of drying and grinding the samples limit the speed at which spectra can be collected and thus are unsuitable for measurements in the field. We investigated whether reliable spectra could be collected from whole fresh and dry leaves of E. melliodora and E. globulus and whether we could predict the concentration of total nitrogen, the volatile terpene, 1, 8 cineole and the phenolic antifeedant compound, sideroxylonal A, from these spectra. Water absorbance peaks did not obscure the absorption spectrum of 1, 8 cineole and so cineole concentration was readily predicted from spectra of whole, fresh E. melliodora leaves. Similarly, both total nitrogen and sideroxylonal A could be predicted from spectra of fresh leaf in E. melliodora even though water absorption obscured some spectral features. The predictions of cineole and total nitrogen concentration in E. globulus were not as good as those in E. melliodora, possibly due to interference from waxes on the leaf surface of E. globulus juvenile foliage. Overall, these results suggest that certain important ecological attributes of Eucalyptus foliage can be predicted from spectra of whole fresh leaves. Thus, it is feasible to investigate the collection of spectra by portable or airborne spectrophotometry.
机译:近红外反射光谱法提供了一种评估桉树叶化学成分的极好方法,但是干燥和研磨样品的标准方法限制了光谱的收集速度,因此不适合在现场进行测量。我们调查了是否可以从完整的新鲜和干燥的E. melliodora和E. globulus叶片中收集可靠的光谱,以及是否可以预测总氮,挥发性萜烯,1,8桉树脑和酚类反馈化合物,铁氧嘧啶A,从这些光谱。吸水率峰值不会掩盖1、8桉树脑的吸收光谱,因此可以从整个新鲜E. melliodora叶的光谱中轻松预测出桉树脑的浓度。同样,即使吸水使某些光谱特征模糊不清,总氮和铁单宁素A仍可以通过新鲜的光谱来预测。小球藻中的桉树脑和总氮浓度的预测不如球藻中的预测,可能是由于蜡对小球藻叶片表面的蜡的干扰。总体而言,这些结果表明,可以从整个新鲜叶片的光谱中预测桉树叶的某些重要生态属性。因此,通过便携式或机载分光光度法研究光谱的收集是可行的。

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