Changes in plant defense chemistry (pyrrolizidine alkaloids) revealed through high-resolution spectroscopy

被引:16
作者
Carvalho, Sabrina [1 ,4 ]
Macel, Mirka [2 ]
Schlerf, Martin [3 ]
Moghaddam, Fatemeh Eghbali [4 ]
Mulder, Patrick P. J. [5 ]
Skidmore, Andrew K. [4 ]
van der Putten, Wim H. [1 ,6 ]
机构
[1] Netherlands Inst Ecol NIOO KNAW, Dept Terr Ecol, NL-6700 AB Wageningen, Netherlands
[2] Univ Tubingen, Dept Plant Ecol, Inst Evolut & Ecol, D-72076 Tubingen, Germany
[3] Publ Res Ctr Gabriel Lippmann, L-4422 Belvaux, Luxembourg
[4] Univ Twente, ITC Fac, Dept Nat Resources, NL-7500 AA Esnchede, Netherlands
[5] Inst Food Safety RIKILT, NL-6700 AE Wageningen, Netherlands
[6] Wageningen Univ, Nematol Lab, NL-6700 ES Wageningen, Netherlands
关键词
Plant defense chemistry; Pyrrolizidine alkaloids; Spectroscopy; Senecio erucifolius; Senecio inaequidens; Senecio jacobaea; SENECIO-JACOBAEA; RED EDGE; NITROGEN; LEAF; PREDICTION; REGRESSION; VEGETATION; DIFFERENTIATION; SPECTROMETRY; CHLOROPHYLL;
D O I
10.1016/j.isprsjprs.2013.03.004
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
Plant toxic biochemicals play an important role in defense against natural enemies and often are toxic to humans and livestock. Hyperspectral reflectance is an established method for primary chemical detection and could be further used to determine plant toxicity in the field. In order to make a first step for pyrrolizidine alkaloids detection (toxic defense compound against mammals and many insects) we studied how such spectral data can estimate plant defense chemistry under controlled conditions. In a greenhouse, we grew three related plant species that defend against generalist herbivores through pyrrolizidine alkaloids: Jacobaea vulgaris, Jacobaea erucifolia and Senecio inaequidens, and analyzed the relation between spectral measurements and chemical concentrations using multivariate statistics. Nutrient addition enhanced tertiary-amine pyrrolizidine alkaloids contents off. vulgaris and J. erucifolia and decreased N-oxide contents in S. inaequidens and J. vulgaris. Pyrrolizidine alkaloids could be predicted with a moderate accuracy. Pyrrolizidine alkaloid forms tertiary-amines and epoxides were predicted with 63% and 56% of the variation explained, respectively. The most relevant spectral regions selected for prediction were associated with electron transitions and C-H, O-H, and N-H bonds in the 1530 and 2100 nm regions. Given the relatively low concentration in pyrrolizidine alkaloids concentration (in the order of mg g(-1)) and resultant predictions, it is promising that pyrrolizidine alkaloids interact with incident light. Further studies should be considered to determine if such a non-destructive method may predict changes in PA concentration in relation to plant natural enemies. Spectroscopy may be used to study plant defenses in intact plant tissues, and may provide managers of toxic plants, food industry and multitrophic-interaction researchers with faster and larger monitoring possibilities. (C) 2013 International Society for Photogrammetry and Remote Sensing, Inc. (ISPRS) Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:51 / 60
页数:10
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