68. Ye Y, Ding Y, Jiang Q, Wang F, Sun J, Zhu C (2017) The role of receptor-like protein kinases
(RLKs) in abiotic stress response in plants. Plant Cell Rep 36(2):235–242. https://doi.org/
10.1007/s00299-016-2084-x. Epub 2016 Dec 8
69. Thompson JN (2006) Mutualistic webs of species. Science 312:372–373
70. Strong DR, Lawton JH, Southwood TRE (1984) Insects on plants: community patterns and
mechanisms. Harvard University Press, Cambridge
71. Llorente-Bousquets J, Ocegueda S (2008) Estado del conocimiento de la biota. In: Contreras S,
Chiang F, Papavero N (eds) Capital Natural de México, Conocimiento Actual de la
Biodiversidad, vol I. Conabio, Mexico, pp 283–322
72. Mithoefer A, Boland W (2012) Plant defense against herbivores: chemical aspects. Ann Rev
Plant Biol 63:431–450
73. Missbach C, Dweck HKM, Vogel H et al (2014) Evolution of insect olfactory receptors. eLife 3:
e02115. https://doi.org/10.7554/eLife.02115
74. Wybouw N, Dermauw M, Tirry L et al (2014) A gene horizontally transferred from bacteria
protects arthropods from host plant cyanide poisoning. eLife 3:e02365. https://doi.org/10.7554/
eLife.02365
75. Simon JC, Elencon ED, Guy E et al (2015) Genomics of adaptation to host-plants in herbivorous insects. Brief Funct Genomics 14(6):413–423. https://doi.org/10.1093/bfgp/elv015
76. Baracchi D, Marples A, Jenkins AJ, Leitch AR, Chittka L (2017) Nicotine in floral nectar
pharmacologically influences bumblebee learning of floral features. Sci Rep 7:1951
77. Manson JS, Otterstatter MC, Thomson JD (2010) Consumption of a nectar alkaloid reduces
pathogen load in bumble bees. Oecologia 162:81–89
78. Simone-Finstrom MD, Spivak M (2012) Increased resin collection after parasite challenge:
a case of self-medication in honey bees? PLoS One 7:1–7. https://doi.org/10.1371/journal.
pone.0034601
79. Goggin FL, Lorence A, Topp CN (2015) Applying high-throughput phenotyping to plant–insect
interactions: picturing more resistant crops. Curr Opin Insect Sci 9:69–76. https://doi.org/
10.1016/j.cois.2015.03.002
80. Tamiru A, Khan ZR, Bruce TJA (2015) New directions for improving crop resistance to insects
by breeding for egg induced defence. Curr Opin Insect Sci 9:51–55. https://doi.org/10.1016/j.
cois.2015.02.011
1 Co-evolution of Secondary Metabolites During Biological Competition for. . .
17
(RLKs) in abiotic stress response in plants. Plant Cell Rep 36(2):235–242. https://doi.org/
10.1007/s00299-016-2084-x. Epub 2016 Dec 8
69. Thompson JN (2006) Mutualistic webs of species. Science 312:372–373
70. Strong DR, Lawton JH, Southwood TRE (1984) Insects on plants: community patterns and
mechanisms. Harvard University Press, Cambridge
71. Llorente-Bousquets J, Ocegueda S (2008) Estado del conocimiento de la biota. In: Contreras S,
Chiang F, Papavero N (eds) Capital Natural de México, Conocimiento Actual de la
Biodiversidad, vol I. Conabio, Mexico, pp 283–322
72. Mithoefer A, Boland W (2012) Plant defense against herbivores: chemical aspects. Ann Rev
Plant Biol 63:431–450
73. Missbach C, Dweck HKM, Vogel H et al (2014) Evolution of insect olfactory receptors. eLife 3:
e02115. https://doi.org/10.7554/eLife.02115
74. Wybouw N, Dermauw M, Tirry L et al (2014) A gene horizontally transferred from bacteria
protects arthropods from host plant cyanide poisoning. eLife 3:e02365. https://doi.org/10.7554/
eLife.02365
75. Simon JC, Elencon ED, Guy E et al (2015) Genomics of adaptation to host-plants in herbivorous insects. Brief Funct Genomics 14(6):413–423. https://doi.org/10.1093/bfgp/elv015
76. Baracchi D, Marples A, Jenkins AJ, Leitch AR, Chittka L (2017) Nicotine in floral nectar
pharmacologically influences bumblebee learning of floral features. Sci Rep 7:1951
77. Manson JS, Otterstatter MC, Thomson JD (2010) Consumption of a nectar alkaloid reduces
pathogen load in bumble bees. Oecologia 162:81–89
78. Simone-Finstrom MD, Spivak M (2012) Increased resin collection after parasite challenge:
a case of self-medication in honey bees? PLoS One 7:1–7. https://doi.org/10.1371/journal.
pone.0034601
79. Goggin FL, Lorence A, Topp CN (2015) Applying high-throughput phenotyping to plant–insect
interactions: picturing more resistant crops. Curr Opin Insect Sci 9:69–76. https://doi.org/
10.1016/j.cois.2015.03.002
80. Tamiru A, Khan ZR, Bruce TJA (2015) New directions for improving crop resistance to insects
by breeding for egg induced defence. Curr Opin Insect Sci 9:51–55. https://doi.org/10.1016/j.
cois.2015.02.011
1 Co-evolution of Secondary Metabolites During Biological Competition for. . .
17
