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88. Andrew NR, Hughes L (2005) Diversity and assemblage structure of phytophagous Hemiptera
along a latitudinal gradient: predicting the potential impacts of climate change. Glob Ecol
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89. Novotny V, Wilson MR (1997) Why are there no small species among xylem-sucking insects?
Evol Ecol 11:419–437
90. Will T, Tjallingii WF, Thönnessen A, van Bel AJ (2007) Molecular sabotage of plant defense
by aphid saliva. Proc Natl Acad Sci U S A 104:10536–10541
91. Vincent TR, Avramova M, Canham J, Higgins P, Bilkey N, Mugford ST, Pitino M, Toyota M,
Gilroy S, Miller AJ (2017) Interplay of plasma membrane and vacuolar ion channels, together
with BAK1, elicits rapid cytosolic calcium elevations in Arabidopsis during aphid feeding.
Plant Cell 29:1460–1479
92. Zvereva EL, Kozlov MV, Niemela P (1998) Effects of leaf pubescence in Salix borealis on
host-plant choice and feeding behaviour of the leaf beetle, Melasoma lapponica. Entomol Exp
Appl 89:297–303
93. Chiang HS, Norris DM (1983) Morphological and physiological parameters of soybean
resistance to agromyzid beanflies. Environ Entomol 12:260–265
94. Robinson SH, Wolfenbarger DA, Dilday RH (1980) Antixenosis of smooth leaf cotton to the
ovipositional response of tobacco budworm. Crop Sci 20:646–649
95. Salminen JP, Karonen M (2011) Chemical ecology of tannins and other phenolics: we need a
change in approach. Funct Ecol 25:325–338
96. Foley W, Iason G, McArthur C (1999) Role of plant secondary metabolites in the nutritional
ecology of mammalian herbivores: how far have we come in 25 years? In: Jung HG, Fahey GC
Jr (eds) Nutritional ecology of herbivores: proceedings of the 5th international symposium on
the nutrition of herbivores. American Society of Animal Science, Savoy, pp 130–209
97. Haslam E, Lilley TH, Warminski E, Liao H, Cai Y, Martin R, Gaffney SH, Goulding PN, Luck
G (1992) Polyphenol complexation. A study in molecular recognition. In: Ho CT, Lee CY,
Huang MT (eds) Phenolic compounds in food and their effects on health I: analysis, occurrence, and chemistry. American Chemical Society, Washington, DC, pp 8–50
98. Bailey JK, Schweitzer JA, Rehill BJ, Lindroth RL, Martinsen GD, Whitham TG (2004)
Beavers as molecular geneticists: a genetic basis to the foraging of an ecosystem engineer.
Ecology 85:603–608
99. Harrison JF (2001) Insect acid–base physiology. Annu Rev Entomol 46:221–250
100. Barbehenn R, Weir Q, Salminen JP (2008) Oxidation of ingested phenolics in the tree-feeding
caterpillar Orgyia leucostigma depends on foliar chemical composition. J Chem Ecol
34:748–756
101. Roslin T, Salminen JP (2008) Specialization pays off: contrasting effects of two types of
tannins on oak specialist and generalist moth species. Oikos 117:1560–1568
102. Kopper BJ, Jakobi VN, Osier TL, Lindroth RL (2002) Effects of paper birch condensed tannin
on whitemarked tussock moth (Lepidoptera: Lymantriidae) performance. Environ Entomol
31:10–14
103. Segar ST, Volf M, Isua B, Sisol M, Redmond CM, Rosati ME, Gewa B, Molem K, Dahl C,
Holloway JD (2017) Variably hungry caterpillars: predictive models and foliar chemistry
suggest how to eat a rainforest. Proc R Soc Lond B Biol Sci 284:20171803
104. Appel HM (1993) Phenolics in ecological interactions – the importance of oxidation. J Chem
Ecol 19:1521–1552
105. Barbehenn RV, Jaros A, Lee G, Mozola C, Weir Q, Salminen J-P (2009) Hydrolyzable tannins
as “quantitative defenses”: limited impact against Lymantria dispar caterpillars on hybrid
poplar. J Insect Physiol 55:297–304
106. Endara M-J, Coley PD, Ghabash G, Nicholls JA, Dexter KG, Donoso DA, Stone GN,
Pennington RT, Kursar TA (2017) Coevolutionary arms race versus host defense chase in a
tropical herbivore–plant system. Proc Natl Acad Sci U S A 114:E7499–E7505
98
M. Volf
of the potato aphid (Macrosiphum euphorbiae Thomas): the role of anatomy, epidermal hairs,
and foliage composition. J Am Soc Hortic Sci 102:166–171
88. Andrew NR, Hughes L (2005) Diversity and assemblage structure of phytophagous Hemiptera
along a latitudinal gradient: predicting the potential impacts of climate change. Glob Ecol
Biogeogr 14:249–262
89. Novotny V, Wilson MR (1997) Why are there no small species among xylem-sucking insects?
Evol Ecol 11:419–437
90. Will T, Tjallingii WF, Thönnessen A, van Bel AJ (2007) Molecular sabotage of plant defense
by aphid saliva. Proc Natl Acad Sci U S A 104:10536–10541
91. Vincent TR, Avramova M, Canham J, Higgins P, Bilkey N, Mugford ST, Pitino M, Toyota M,
Gilroy S, Miller AJ (2017) Interplay of plasma membrane and vacuolar ion channels, together
with BAK1, elicits rapid cytosolic calcium elevations in Arabidopsis during aphid feeding.
Plant Cell 29:1460–1479
92. Zvereva EL, Kozlov MV, Niemela P (1998) Effects of leaf pubescence in Salix borealis on
host-plant choice and feeding behaviour of the leaf beetle, Melasoma lapponica. Entomol Exp
Appl 89:297–303
93. Chiang HS, Norris DM (1983) Morphological and physiological parameters of soybean
resistance to agromyzid beanflies. Environ Entomol 12:260–265
94. Robinson SH, Wolfenbarger DA, Dilday RH (1980) Antixenosis of smooth leaf cotton to the
ovipositional response of tobacco budworm. Crop Sci 20:646–649
95. Salminen JP, Karonen M (2011) Chemical ecology of tannins and other phenolics: we need a
change in approach. Funct Ecol 25:325–338
96. Foley W, Iason G, McArthur C (1999) Role of plant secondary metabolites in the nutritional
ecology of mammalian herbivores: how far have we come in 25 years? In: Jung HG, Fahey GC
Jr (eds) Nutritional ecology of herbivores: proceedings of the 5th international symposium on
the nutrition of herbivores. American Society of Animal Science, Savoy, pp 130–209
97. Haslam E, Lilley TH, Warminski E, Liao H, Cai Y, Martin R, Gaffney SH, Goulding PN, Luck
G (1992) Polyphenol complexation. A study in molecular recognition. In: Ho CT, Lee CY,
Huang MT (eds) Phenolic compounds in food and their effects on health I: analysis, occurrence, and chemistry. American Chemical Society, Washington, DC, pp 8–50
98. Bailey JK, Schweitzer JA, Rehill BJ, Lindroth RL, Martinsen GD, Whitham TG (2004)
Beavers as molecular geneticists: a genetic basis to the foraging of an ecosystem engineer.
Ecology 85:603–608
99. Harrison JF (2001) Insect acid–base physiology. Annu Rev Entomol 46:221–250
100. Barbehenn R, Weir Q, Salminen JP (2008) Oxidation of ingested phenolics in the tree-feeding
caterpillar Orgyia leucostigma depends on foliar chemical composition. J Chem Ecol
34:748–756
101. Roslin T, Salminen JP (2008) Specialization pays off: contrasting effects of two types of
tannins on oak specialist and generalist moth species. Oikos 117:1560–1568
102. Kopper BJ, Jakobi VN, Osier TL, Lindroth RL (2002) Effects of paper birch condensed tannin
on whitemarked tussock moth (Lepidoptera: Lymantriidae) performance. Environ Entomol
31:10–14
103. Segar ST, Volf M, Isua B, Sisol M, Redmond CM, Rosati ME, Gewa B, Molem K, Dahl C,
Holloway JD (2017) Variably hungry caterpillars: predictive models and foliar chemistry
suggest how to eat a rainforest. Proc R Soc Lond B Biol Sci 284:20171803
104. Appel HM (1993) Phenolics in ecological interactions – the importance of oxidation. J Chem
Ecol 19:1521–1552
105. Barbehenn RV, Jaros A, Lee G, Mozola C, Weir Q, Salminen J-P (2009) Hydrolyzable tannins
as “quantitative defenses”: limited impact against Lymantria dispar caterpillars on hybrid
poplar. J Insect Physiol 55:297–304
106. Endara M-J, Coley PD, Ghabash G, Nicholls JA, Dexter KG, Donoso DA, Stone GN,
Pennington RT, Kursar TA (2017) Coevolutionary arms race versus host defense chase in a
tropical herbivore–plant system. Proc Natl Acad Sci U S A 114:E7499–E7505
98
M. Volf
