111. Leavesley HB, Li L, Prabhakaran K et al (2008) Interaction of cyanide and nitric oxide with
cytochrome c oxidase: implications for acute cyanide toxicity. Toxicol Sci 101:101–111
112. Li L, Li C, Lee GI, Howe GA (2002) Distinct roles for jasmonate synthesis and action in the
systemic wound response of tomato. Proc Natl Acad Sci 99:6416–6421
113. Llorente-Bousquets J, Ocegueda S (2008) Estado del conocimiento de la biota. In: Contreras S,
Chiang F, Papavero N (eds) Capital Natural de México, vol. I: Conocimiento Actual de la
Biodiversidad. Mexico. CONABIO, México, pp 283–322
114. Louda S, Mole S (1991) Glucosinolates: chemistry and ecology. In: Rosenthal GA,
Berembaum MR (eds) Herbivores: their interactions with secondary plant metabolites. Academic, New York, pp 125–157
115. Malcolm SB (1991) Cardenolid-mediated interactions between plants and herbivores. In:
Rosenthal GA, Berembaum MR (eds) Herbivores: their interactions with secondary plant
metabolites. Academic, New York, pp 251–291
116. Matsuda K, Buckingham SD, Kleier D et al (2001) Neonicotinoids: insecticides acting on
insect nicotinic acetylcholine receptors. Trends Pharmacol Sci 22:573–580
117. Mauricio R, Rausher MD (1997) Experimental manipulation of putative selective agents
provides evidence for the role of natural enemies in the evolution of plant defense. Evolution
51:1435–1444
118. Mayer B (2014) How much nicotine kills a human? Tracing back the generally accepted lethal
dose to dubious self – experiments in the nineteenth century. Arch Toxicol 88:5–7
119. Mayhew PJ (2018) Explaining global insect species richness: lessons from a decade of
macroevolutionary entomology. Entomol Exp Appl 166:225–250
120. Mithen R, Raybould AF, Giamoustaris A (1995) Divergent selection for secondary metabolites
between wild populations of Brassica oleracea and its implication for plant-herbivore interaction. Heredity (Edinb) 75:472–484
121. Mithöfer A, Boland W (2012) Plant defense against herbivores: chemical aspects. Annu Rev
Plant Biol 63:431–450
122. Mitter C, Brooks DR (1983) Phylogenetic aspects of coevolution. In: Futuyma DJ, Slatkin M
(eds) Coevolution. Sinauer Associates, Sunderland, pp 65–98
123. Mitter C, Farrell B, Futuyma DJ (1991) Phylogenetic studies of insect-plant interactions:
insights into the genesis of diversity. Trends Ecol Evol 6:290–293
124. Mitter C, Farrell B, Wiegmann B (1988) The phylogenetic study of adaptive zones: has
phytophagy promoted insect diversification? Am Nat 132:107–128
125. Moore BD, Andrew RL, Külheim C, Foley WJ (2014) Explaining intraspecific diversity in
plant secondary metabolites in an ecological context. New Phytol 201:733–750
126. Nathanson J (1984) Caffeine and related methylxanthines: possible naturally occurring pesticides. Science (80-) 226:184–187
127. Nielsen ES, Mound LA (2000) Global diversity of insects: the problems of estimating
numbers. In: Raven PH (ed) Nature and human society: the quest for a sustainable world.
National Academic Press, Washington, DC, pp 213–222
128. Nilsson LA, Jonsson L, Rason L, Randrianjohany E (1985) Monophily and pollination
mechanisms in Angraecum arachnites Schltr.(Orchidaceae) in a guild of long-tongued hawkmoths (Sphingidae) in Madagascar. Biol J Linn Soc 26:1–19
129. Nishida T, Takakura K, Iwao K (2015) Host specialization by reproductive interference
between closely related herbivorous insects. Popul Ecol 57:273–281
130. Nyman T (2010) To speciate, or not to speciate? Resource heterogeneity, the subjectivity of
similarity, and the macroevolutionary consequences of niche-width shifts in plant-feeding
insects. Biol Rev 85:393–411
131. Otto A, Simoneit BR (2001) Chemosystematics and diagenesis of terpenoids in fossil conifer
species and sediment from the Eocene Zeitz formation, Saxony, Germany. Geochim
Cosmochim Acta 65:3505–3527
132. Pacher L, Batkai S, Kunos G (2006) The endocannabinoid system as an emerging target of
pharmacotherapy. Pharmacol Rev 58:389–462
133. Peccoud J, Simon J-C, Von Dohlen C et al (2010) Evolutionary history of aphid-plant
associations and their role in aphid diversification. C R Biol 333:474–487
3 Coevolution: Plant-Herbivore Interactions and Secondary Metabolites of Plants
73
cytochrome c oxidase: implications for acute cyanide toxicity. Toxicol Sci 101:101–111
112. Li L, Li C, Lee GI, Howe GA (2002) Distinct roles for jasmonate synthesis and action in the
systemic wound response of tomato. Proc Natl Acad Sci 99:6416–6421
113. Llorente-Bousquets J, Ocegueda S (2008) Estado del conocimiento de la biota. In: Contreras S,
Chiang F, Papavero N (eds) Capital Natural de México, vol. I: Conocimiento Actual de la
Biodiversidad. Mexico. CONABIO, México, pp 283–322
114. Louda S, Mole S (1991) Glucosinolates: chemistry and ecology. In: Rosenthal GA,
Berembaum MR (eds) Herbivores: their interactions with secondary plant metabolites. Academic, New York, pp 125–157
115. Malcolm SB (1991) Cardenolid-mediated interactions between plants and herbivores. In:
Rosenthal GA, Berembaum MR (eds) Herbivores: their interactions with secondary plant
metabolites. Academic, New York, pp 251–291
116. Matsuda K, Buckingham SD, Kleier D et al (2001) Neonicotinoids: insecticides acting on
insect nicotinic acetylcholine receptors. Trends Pharmacol Sci 22:573–580
117. Mauricio R, Rausher MD (1997) Experimental manipulation of putative selective agents
provides evidence for the role of natural enemies in the evolution of plant defense. Evolution
51:1435–1444
118. Mayer B (2014) How much nicotine kills a human? Tracing back the generally accepted lethal
dose to dubious self – experiments in the nineteenth century. Arch Toxicol 88:5–7
119. Mayhew PJ (2018) Explaining global insect species richness: lessons from a decade of
macroevolutionary entomology. Entomol Exp Appl 166:225–250
120. Mithen R, Raybould AF, Giamoustaris A (1995) Divergent selection for secondary metabolites
between wild populations of Brassica oleracea and its implication for plant-herbivore interaction. Heredity (Edinb) 75:472–484
121. Mithöfer A, Boland W (2012) Plant defense against herbivores: chemical aspects. Annu Rev
Plant Biol 63:431–450
122. Mitter C, Brooks DR (1983) Phylogenetic aspects of coevolution. In: Futuyma DJ, Slatkin M
(eds) Coevolution. Sinauer Associates, Sunderland, pp 65–98
123. Mitter C, Farrell B, Futuyma DJ (1991) Phylogenetic studies of insect-plant interactions:
insights into the genesis of diversity. Trends Ecol Evol 6:290–293
124. Mitter C, Farrell B, Wiegmann B (1988) The phylogenetic study of adaptive zones: has
phytophagy promoted insect diversification? Am Nat 132:107–128
125. Moore BD, Andrew RL, Külheim C, Foley WJ (2014) Explaining intraspecific diversity in
plant secondary metabolites in an ecological context. New Phytol 201:733–750
126. Nathanson J (1984) Caffeine and related methylxanthines: possible naturally occurring pesticides. Science (80-) 226:184–187
127. Nielsen ES, Mound LA (2000) Global diversity of insects: the problems of estimating
numbers. In: Raven PH (ed) Nature and human society: the quest for a sustainable world.
National Academic Press, Washington, DC, pp 213–222
128. Nilsson LA, Jonsson L, Rason L, Randrianjohany E (1985) Monophily and pollination
mechanisms in Angraecum arachnites Schltr.(Orchidaceae) in a guild of long-tongued hawkmoths (Sphingidae) in Madagascar. Biol J Linn Soc 26:1–19
129. Nishida T, Takakura K, Iwao K (2015) Host specialization by reproductive interference
between closely related herbivorous insects. Popul Ecol 57:273–281
130. Nyman T (2010) To speciate, or not to speciate? Resource heterogeneity, the subjectivity of
similarity, and the macroevolutionary consequences of niche-width shifts in plant-feeding
insects. Biol Rev 85:393–411
131. Otto A, Simoneit BR (2001) Chemosystematics and diagenesis of terpenoids in fossil conifer
species and sediment from the Eocene Zeitz formation, Saxony, Germany. Geochim
Cosmochim Acta 65:3505–3527
132. Pacher L, Batkai S, Kunos G (2006) The endocannabinoid system as an emerging target of
pharmacotherapy. Pharmacol Rev 58:389–462
133. Peccoud J, Simon J-C, Von Dohlen C et al (2010) Evolutionary history of aphid-plant
associations and their role in aphid diversification. C R Biol 333:474–487
3 Coevolution: Plant-Herbivore Interactions and Secondary Metabolites of Plants
73
