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Leaf Colour As a Signal of Chemical Defence to Insect Herbivores in Wild Cabbage (Brassica Oleracea)

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Journal PLoS One
Date 2015 Sep 10
PMID 26353086
Citations 6
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Abstract

Leaf colour has been proposed to signal levels of host defence to insect herbivores, but we lack data on herbivory, leaf colour and levels of defence for wild host populations necessary to test this hypothesis. Such a test requires measurements of leaf spectra as they would be sensed by herbivore visual systems, as well as simultaneous measurements of chemical defences and herbivore responses to leaf colour in natural host-herbivore populations. In a large-scale field survey of wild cabbage (Brassica oleracea) populations, we show that variation in leaf colour and brightness, measured according to herbivore spectral sensitivities, predicts both levels of chemical defences (glucosinolates) and abundance of specialist lepidopteran (Pieris rapae) and hemipteran (Brevicoryne brassicae) herbivores. In subsequent experiments, P. rapae larvae achieved faster growth and greater pupal mass when feeding on plants with bluer leaves, which contained lower levels of aliphatic glucosinolates. Glucosinolate-mediated effects on larval performance may thus contribute to the association between P. rapae herbivory and leaf colour observed in the field. However, preference tests found no evidence that adult butterflies selected host plants based on leaf coloration. In the field, B. brassicae abundance varied with leaf brightness but greenhouse experiments were unable to identify any effects of brightness on aphid preference or performance. Our findings suggest that although leaf colour reflects both levels of host defences and herbivore abundance in the field, the ability of herbivores to respond to colour signals may be limited, even in species where performance is correlated with leaf colour.

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References
1.
Newton E, Bullock J, Hodgson D . Glucosinolate polymorphism in wild cabbage (Brassica oleracea) influences the structure of herbivore communities. Oecologia. 2009; 160(1):63-76. DOI: 10.1007/s00442-009-1281-5. View

2.
Poelman E, Broekgaarden C, van Loon J, Dicke M . Early season herbivore differentially affects plant defence responses to subsequently colonizing herbivores and their abundance in the field. Mol Ecol. 2008; 17(14):3352-65. DOI: 10.1111/j.1365-294X.2008.03838.x. View

3.
Santolamazza-Carbone S, Velasco P, Soengas P, Cartea M . Bottom-up and top-down herbivore regulation mediated by glucosinolates in Brassica oleracea var. acephala. Oecologia. 2013; 174(3):893-907. DOI: 10.1007/s00442-013-2817-2. View

4.
Reeves J . Vision should not be overlooked as an important sensory modality for finding host plants. Environ Entomol. 2012; 40(4):855-63. DOI: 10.1603/EN10212. View

5.
Hemm M, Ruegger M, Chapple C . The Arabidopsis ref2 mutant is defective in the gene encoding CYP83A1 and shows both phenylpropanoid and glucosinolate phenotypes. Plant Cell. 2003; 15(1):179-94. PMC: 143490. DOI: 10.1105/tpc.006544. View