2. Adeboye PT, Bettiga M, Olsson L (2014) The chemical nature of phenolic compounds
determines their toxicity and induces distinct physiological responses in Saccharomyces
cerevisiae in lignocellulose hydrolysates. AMB Express 4:46
3. Agrawal AA (2005) Natural selection on common milkweed (Asclepias syriaca) by a community of specialized insect herbivores. Evol Ecol Res 7:651–667
4. Agrawal AA (2006) Macroevolution of plant defense strategies. Trends Ecol Evol 22:103–109
5. Agrawal AA, Conner JK, Johnson MT, Wallsgrove R (2002) Ecological genetics of an induced
plant defense against herbivores: additive genetic variance and costs of phenotypic plasticity.
Evolution 56:2206–2213
6. Agrawal AA, Fishbein M (2006) Plant defense syndromes. Ecology 87:132–149
7. Agrawal AA, Kurashige NS (2003) A role for isothiocyanates in plant resistance against the
specialist herbivore. J Chem Ecol 29:1403–1415
8. Agrawal AA, Lau JA, Hamba PA (2006) Community heterogeneity and the evolution of
interactions between plants and insect herbivores. Q Rev Biol 81:349–376
9. Ahuja I, Rohloff J, Bones AM (2010) Defence mechanisms of Brassicaceae: implications for
plant-insect interactions and potential for integrated pest management. A review. Agron
Sustain Dev 30:311–348
10. Ali J, Agrawal AA (2017) Trade-offs and tritrophic consequences of host shifts in specialized
root herbivores. Funct Ecol 31:153–160
11. Ali JG, Agrawal AA (2012) Specialist versus generalist insect herbivores and plant defense.
Trends Plant Sci 17:293–302
12. Badger MR, Price GD (2003) CO2 concentrating mechanisms in cyanobacteria: molecular
components, their diversity and evolution. J Exp Bot 54:609–622
13. Ballabeni P, Rahier M (2001) A quantitative genetic analysis of leaf beetle larval performance
on two natural hosts: including a mixed diet. J Evol Biol 13:98–106
14. Barbehenn RV, Constabel PC (2011) Tannins in plant-herbivore interactions. Phytochemistry
72:1551–1565
15. Basri DF, Tan LS, Shafiei Z, Zin NM (2012) In vitro antibacterial activity of galls of Quercus
infectoria Olivier against oral pathogens. Evid Based Complement Altern Med 2012:1–6
16. Becerra JX (1997) Insects on plants: chemical trends in host use. Science 276:253–256
17. Benderoth M, Textor S, Windsor AJ et al (2006) Positive selection driving diversification in
plant secondary metabolism. Proc Natl Acad Sci 103:9118–9123
18. Bennett RN, Wallsgrove RM (1994) Metabolites in plant defense mechanisms. New Phytol
127:617–633
19. Bernays EA (1998) Evolution of feeding behavior in insect herbivores. Bioscience 48:35–44
20. Bernays EA, Graham M (1988) On the evolution of host specificity in phytophagous arthropods. Ecology 69:886–892
21. Bernays EA, Minkenberg OPJM (1997) Insect herbivores: different reason for being a
generalist. Ecology 78:1157–1169
22. Blomberg SP, Garland T (2002) Tempo and mode in evolution: phylogenetic inertia, adaptation and comparative methods. J Evol Biol 15:899–910
23. Boberg E, Alexandersson R, Jonsson M et al (2014) Pollinator shifts and the evolution of spur
length in the moth-pollinated orchid Platanthera bifolia. Ann Bot 113:267–275
24. Bohm BA (1998) Introduction to flavonoids. Harwood Academic Publishers, Amsterdam
25. Bottger GT, Sheehan ET, Lukefahr MJ (1964) Relation of gossypol content of cotton plants to
insect resistance. J Econ Entomol 57:283–285
26. Bourgaud F, Gravot A, Milesi S, Gontier E (2001) Production of plant secondary metabolites:
a historical perspective. Plant Sci 161:839–851
27. Brues CT (1924) The specificity of food-plants in the evolution of phytophagous insects. Am
Nat 58:127–144
28. Brooks DR (1979) Testing the context of host-parasite coevolution. Syst Biol 28:299–307
29. Buick R (1992) The antiquity of oxygenic photosynthesis: evidence from stromatolites in
sulphate- deficient Archaean lakes. Science (80-) 255:74–77
30. Carmona D, Lajeunesse MJ, Johnson MTJ (2011) Plant traits that predict resistance to
herbivores. Funct Ecol 25:358–367
3 Coevolution: Plant-Herbivore Interactions and Secondary Metabolites of Plants
69
Précédent

- 88/969

Suivant