45. Aurores-Weber A, de Brito Sanchez MG, Giurfa M, Dyer AG (2010) Aversive reinforcement
improves visual discrimination learning in free-flying honeybees. PLoS One 5:e15370
46. Wright GA, Mustard JA, Simcock NK, Ross-Taylor AAR, McNicholas LD, Popescu A et al
(2010) Parallel reinforcement pathways for conditioned food aversions in the honeybee. Curr
Biol 20:2234–2240
47. Ayestaran A, Giurfa M, de Brito Sanchez MG (2010) Toxic but drank: gustatory aversive
compounds induce post-ingestional malaise in harnessed honeybees. PLoS One 5:e15000
48. Wright GA, Baker D, Palmer MJ, Stabler D, Mustard JD, Power E et al (2013) Caffeine in floral
nectar enhances a pollinator’s memory of reward. Science 339:1202–1204
49. Schaeffer RN, Irwin RE (2014) Yeasts in nectar enhance male fitness in a montane perennial
herb. Ecology 95:1792–1798
50. Manson J, Otterstatter M, Thomson J (2010) Consumption of a nectar alkaloid reduces
pathogen load in bumble bees. Oecologia 162:81–89. https://doi.org/10.1007/s00442-0091431-9
51. Glaum P, Kessler A (2017) Functional reduction in pollination through herbivore-induced
pollinator limitation and its potential in mutualist communities. Nat Commun 8:2031. https://
doi.org/10.1038/s41467-017-02072-4
52. Adler LS, Wink M, Distl M, Lentz AJ (2006) Leaf herbivory and nutrients increase nectar
alkaloids. Ecol Lett 9:960–967
53. Ohnmeiss TE, Baldwin IT (2000) Optimal defense theory predicts the ontogeny of an induced
nicotine defense. Ecol Soc Am 81:1765–1783
54. Campbell SA (2015) Ecological mechanisms for the co-evolution of mating systems and
defence. New Phytol 205:1047–1053
55. Bouwnester HJ, Matusova R, Zhongkui S et al (2003) Secondary metabolite signalling in
host–parasitic plant interactions. Curr Opin Plant Biol 6:358–364
56. Oracz K, Bailly C, Gniazdowska A, Come D, Corbineau F, Bogatek R (2007) Induction of
oxidative stress by sunflower phytotoxins in germinating mustard seeds. J Chem Ecol
33:251–264
57. Blum U (2011) Plant–plant allelopathic interactions. In: Blum U (ed) Plant-plant Allelopathic
interactions. Springer, Dordrecht. https://doi.org/10.1007/978-94-007-0683-5_1
58. Weir TL, Park SW, Vivanco JM (2004) Biochemical and physiological mechanisms mediated
by allelochemicals. Curr Opin Plant Biol 7:472–479
59. Bertin C, Yang XH, Weston LA (2003) The role of root exudates and allelochemicals in the
rhizosphere. Plant Soil 256:67–83
60. Chaves N, Sosa T, Valares C, Alias JC (2015) Routes of incorporation of phytotoxic compounds
of Cistus ladanifer L into soil. Allelopathy J 36:25–36
61. Raimundo JR, Frazão DF, Domingues JL (2018) Neglected Mediterranean plant species are
valuable resources: the example of Cistus ladanifer. Planta 248:1351–1364
62. Bais HP, Vepachedu R, Gilroy S, Callaway RM, Vivanco JM (2002) Allelopathy and exotic plant
invasion: from molecules and genes to species interactions. Science 301(5638):1377–1380.
https://doi.org/10.1126/science.1083245
63. Ren X, Yan Z-Q, He X-F, Li XZ, Qin B (2017) Allelopathic effect of β-cembrenediol and its
mode of action: induced oxidative stress in lettuce seedlings. Emirates J Food Agric 29:441–449
64. Yadav V, Singh NB, Singh H, Singh A, Hussain I (2016) Allelopathic invasion of alien plant
species in India and their management strategies: a review. Trop Plant Res 3(1):87–101
65. Getachew S, Demissew S, Woldemariam T (2012) Allelopathic effects of the invasive Prosopis
juliflora (Sw.) DC. On selected native plant species in middle awash, southern Afar rift of
Ethiopia. Manag Biol Invasions 3(2):105–114
66. Montesinos-Navarro A, Estrada A, Font X, Matias MG, Meireles C et al (2018) Community
structure informs species geographic distributions. PLoS One 13(7):e0200556
67. Fraire-velasquez S, Balderas-Hernandez VE (2013) Abiotic stress in plants and metabolic
responses. In: Vahdati K, Leslie C (eds) Abiotic Stress - Plant Responses and Applications in
Agriculture. https://doi.org/10.5772/54859
16
K. G. Ramawat and S. Goyal
improves visual discrimination learning in free-flying honeybees. PLoS One 5:e15370
46. Wright GA, Mustard JA, Simcock NK, Ross-Taylor AAR, McNicholas LD, Popescu A et al
(2010) Parallel reinforcement pathways for conditioned food aversions in the honeybee. Curr
Biol 20:2234–2240
47. Ayestaran A, Giurfa M, de Brito Sanchez MG (2010) Toxic but drank: gustatory aversive
compounds induce post-ingestional malaise in harnessed honeybees. PLoS One 5:e15000
48. Wright GA, Baker D, Palmer MJ, Stabler D, Mustard JD, Power E et al (2013) Caffeine in floral
nectar enhances a pollinator’s memory of reward. Science 339:1202–1204
49. Schaeffer RN, Irwin RE (2014) Yeasts in nectar enhance male fitness in a montane perennial
herb. Ecology 95:1792–1798
50. Manson J, Otterstatter M, Thomson J (2010) Consumption of a nectar alkaloid reduces
pathogen load in bumble bees. Oecologia 162:81–89. https://doi.org/10.1007/s00442-0091431-9
51. Glaum P, Kessler A (2017) Functional reduction in pollination through herbivore-induced
pollinator limitation and its potential in mutualist communities. Nat Commun 8:2031. https://
doi.org/10.1038/s41467-017-02072-4
52. Adler LS, Wink M, Distl M, Lentz AJ (2006) Leaf herbivory and nutrients increase nectar
alkaloids. Ecol Lett 9:960–967
53. Ohnmeiss TE, Baldwin IT (2000) Optimal defense theory predicts the ontogeny of an induced
nicotine defense. Ecol Soc Am 81:1765–1783
54. Campbell SA (2015) Ecological mechanisms for the co-evolution of mating systems and
defence. New Phytol 205:1047–1053
55. Bouwnester HJ, Matusova R, Zhongkui S et al (2003) Secondary metabolite signalling in
host–parasitic plant interactions. Curr Opin Plant Biol 6:358–364
56. Oracz K, Bailly C, Gniazdowska A, Come D, Corbineau F, Bogatek R (2007) Induction of
oxidative stress by sunflower phytotoxins in germinating mustard seeds. J Chem Ecol
33:251–264
57. Blum U (2011) Plant–plant allelopathic interactions. In: Blum U (ed) Plant-plant Allelopathic
interactions. Springer, Dordrecht. https://doi.org/10.1007/978-94-007-0683-5_1
58. Weir TL, Park SW, Vivanco JM (2004) Biochemical and physiological mechanisms mediated
by allelochemicals. Curr Opin Plant Biol 7:472–479
59. Bertin C, Yang XH, Weston LA (2003) The role of root exudates and allelochemicals in the
rhizosphere. Plant Soil 256:67–83
60. Chaves N, Sosa T, Valares C, Alias JC (2015) Routes of incorporation of phytotoxic compounds
of Cistus ladanifer L into soil. Allelopathy J 36:25–36
61. Raimundo JR, Frazão DF, Domingues JL (2018) Neglected Mediterranean plant species are
valuable resources: the example of Cistus ladanifer. Planta 248:1351–1364
62. Bais HP, Vepachedu R, Gilroy S, Callaway RM, Vivanco JM (2002) Allelopathy and exotic plant
invasion: from molecules and genes to species interactions. Science 301(5638):1377–1380.
https://doi.org/10.1126/science.1083245
63. Ren X, Yan Z-Q, He X-F, Li XZ, Qin B (2017) Allelopathic effect of β-cembrenediol and its
mode of action: induced oxidative stress in lettuce seedlings. Emirates J Food Agric 29:441–449
64. Yadav V, Singh NB, Singh H, Singh A, Hussain I (2016) Allelopathic invasion of alien plant
species in India and their management strategies: a review. Trop Plant Res 3(1):87–101
65. Getachew S, Demissew S, Woldemariam T (2012) Allelopathic effects of the invasive Prosopis
juliflora (Sw.) DC. On selected native plant species in middle awash, southern Afar rift of
Ethiopia. Manag Biol Invasions 3(2):105–114
66. Montesinos-Navarro A, Estrada A, Font X, Matias MG, Meireles C et al (2018) Community
structure informs species geographic distributions. PLoS One 13(7):e0200556
67. Fraire-velasquez S, Balderas-Hernandez VE (2013) Abiotic stress in plants and metabolic
responses. In: Vahdati K, Leslie C (eds) Abiotic Stress - Plant Responses and Applications in
Agriculture. https://doi.org/10.5772/54859
16
K. G. Ramawat and S. Goyal
