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Cyanogenic Glycosides: Synthesis, Physiology, and Phenotypic Plasticity

氰化氢 通才与专种 生物 表型可塑性 糖苷 食草动物 糖基化 生物化学 生物技术 植物 生态学 栖息地
作者
Roslyn M. Gleadow,Birger Lindberg Møller
出处
期刊:Annual Review of Plant Biology [Annual Reviews]
卷期号:65 (1): 155-185 被引量:483
标识
DOI:10.1146/annurev-arplant-050213-040027
摘要

Cyanogenic glycosides (CNglcs) are bioactive plant products derived from amino acids. Structurally, these specialized plant compounds are characterized as α-hydroxynitriles (cyanohydrins) that are stabilized by glucosylation. In recent years, improved tools within analytical chemistry have greatly increased the number of known CNglcs by enabling the discovery of less abundant CNglcs formed by additional hydroxylation, glycosylation, and acylation reactions. Cyanogenesis—the release of toxic hydrogen cyanide from endogenous CNglcs—is an effective defense against generalist herbivores but less effective against fungal pathogens. In the course of evolution, CNglcs have acquired additional roles to improve plant plasticity, i.e., establishment, robustness, and viability in response to environmental challenges. CNglc concentration is usually higher in young plants, when nitrogen is in ready supply, or when growth is constrained by nonoptimal growth conditions. Efforts are under way to engineer CNglcs into some crops as a pest control measure, whereas in other crops efforts are directed toward their removal to improve food safety. Given that many food crops are cyanogenic, it is important to understand the molecular mechanisms regulating cyanogenesis so that the impact of future environmental challenges can be anticipated.
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