Volatile emissions of scented Alstroemeria genotypes are dominated by terpenes, and a myrcene synthase gene is highly expressed in scented Alstroemeria flowers
Author:
Publisher
Oxford University Press (OUP)
Subject
Plant Science,Physiology
Link
http://academic.oup.com/jxb/article-pdf/63/7/2739/16934527/err456.pdf
Reference69 articles.
1. Within and among flower sex-phase distribution in Alstroemeria aurea (Alstromeriaceae);Aizen;Canadian Journal of Botany,1998
2. Sex differential nectar secretion in protandrous Alstroemeria aurea (Alstroemeriaceae): is production altered by pollen removal and receipt?;Aizen;American Journal of Botany,1998
3. Chemical wizardry? The generation of chemical diversity in terpenoid biosynthesis;Allemann;Pure and Applied Chemistry,2008
4. Herbivore-induced defense response in a model legume. Two-spotted spider mites induce emission of (E)-β-ocimene and transcript accumulation of (E)-β-ocimene synthase in Lotus japonicus;Arimura;Plant Physiology,2004
5. Genetic diversity of wild species and cultivated varieties of Alstroemeria estimated through morphological descriptors and RAPD markers;Aros;Scientia Horticulturae,2006
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