References
- Aljbory, Z and Chen, MS (2016). Indirect plant defense against insect herbivores: a review. Insect Science, 25(1), pp. 2-23. [DOI: 10.1111/1744-7917.12436]
- Bixenmann, RJ, Coley, PD and Kursar, TA (2011). Is extrafloral nectar production induced by herbivores or ants in a tropical facultative ant-plant mutualism? Oecologia, 165(2), pp. 417-425. [DOI: 10.1007/s00442-010- 1787-x]
- Bolton, AB, Bolten, AB, Feinsinger, P, Baker, HG, Baker, I and Freisinger, P (1979). On the calculation of sugar concentration in flower nectar. Oecologia, 41(3), pp. 301-304. [DOI: 10.1007/bf00377434]
- Burquez, A and Corbet, SA (1991). Do Flowers Reabsorb Nectar? Functional Ecology, 5(3), pp. 369-379. [DOI: 10.2307/2389808]
- Carrillo, J, Wang, Y, Ding, J and Siemann, E (2012). Induction of extrafloral nectar depends on herbivore type in invasive and native Chinese tallow seedlings. Basic and Applied Ecology, 13(5), pp. 449-457. [DOI: 10.1016/j.baae.2012. 07.006]
- Choh, Y and Takabayashi, J (2006). Herbivore-induced extrafloral nectar production in Lima Bean plants enhanced by previous exposure to volatiles from infested conspecifics. J. of Chemical Ecology, 32(9), pp. 2073-2077. [DOI: 10.1007/s10886-006-9130-z]
- Cynthia, MC, Domancar, OT and Heil, M (2014). Phloem Sugar Flux and Jasmonic Acid-Responsive Cell Wall Invertase Control Extrafloral Nectar Secretion in Ricinus communis. J. of Chemical Ecology, 40(7), pp. 760-769. [DOI: 10.1007/s10886-014-0476-3]
- Escalante-Perez, M, Jaborsky, M, Lautner, S, Fromm, J, Muller, T (2012). Poplar extrafloral nectaries: two types, two strategies of indirect defenses against herbivores. Plant Physiology, 159(3), pp. 1176-1191. [DOI: 10.1104/ pp.112.196014]
- Heil, M (2001). Extrafloral nectar production of the ant-associated plant, Macaranga tanarius, is an induced, indirect, defensive response elicited by jasmonic acid. Proceedings of the National Academy of Science, 98(3), pp. 1083-1088. [DOI: 10.1073/pnas.031563398]
- Heil, M, Greiner, S, Meimberg, H, Kruger, R and Noyer, JL, Heubl, G, Linsenmair, K and Boland, W (2004). Evolutionary change from induced to constitutive expression of an indirect plant resistance. Nature, 430(6996), pp. 205-208. [DOI: 10.1038/nature02703]
- Heil, M (2015). Extrafloral Nectar at the Plant-Insect Interface: A Spotlight on Chemical Ecology, Phenotypic Plasticity, and Food Webs. Annual Review of Entomology, 60, pp. 213-32. [DOI: 10.1146/annurev-ento-010814-020753]
- Holland, JN, Chamberlain, SA and Horn, KC (2009). Optimal defence theory predicts investment in extrafloral nectar resources in an ant-plant mutualism. Journal of Ecology, 97, pp. 89-96. [DOI: 10.1111/j.1365-2745.2008.01446.x]
- Huang, W, Siemann, E, Carrillo, J and Ding, J (2015). Below-ground herbivory limits induction of extrafloral nectar by above-ground herbivores. Annals of Botany, 115(5), pp. 841-846. [DOI: 10.1093/aob/mcv011]
- Marazzi, B, Bronstein, J and Koptur, S (2013). The diversity, ecology and evolution of extrafloral nectaries: current perspective and future challenges. Annals of Botany, 11(6), pp. 1243-1250. [DOI: 10.1093/aob/mct109]
- Mondor, EB, Keiser, CN, Pendarvis, DE and Vaughn, MN (2013). Broad bean cultivars increase extrafloral nectary numbers, but not extrafloral nectar, in response to leaf damage. Open Journal of Ecology, 3(1), pp. 59-65. [DOI: 10.4236/oje.2013.31008]
- Ness, J (2003). Catalpa bignonioides alters extrafloral nectar production after herbivory and attracts ant bodyguards. Oecologia, 134(2), pp. 210-218. [DOI: 10.1007/s00442- 002-1110-6]
- Pulice, CE and Packer, AA (2008). Simulated herbivory induces extrafloral nectary production in Prunus avium. Functional Ecology, 22(5), pp. 801-807. [DOI: 10.1111/j.1365- 2435.2008.01440.x]
- Pyke, GH (1991). What does it cost a plant to produce floral nectar? Nature, 350(6313), pp. 58-59. [DOI: 10.1038/ 350058a0]
- Samocha, Y and Sternberg, M (2010). Herbivory by sucking mirid bugs can reduce nectar production in Asphodelus aestivus Brot. Arthropod-Plant Interactions, 4(3), pp. 153-158. [DOI: 10.1007/s11829-010-9091-6]
- Smith, LL, Lanza, J and Smith, GC (1991). Amino acid concentration in extrafloral nectar of Impatiens sultani increase after simulated herbivory. Ecology, 71(1), pp. 107-115. [DOI: 10.2307/1940251]
- Wacker, FL and Wunderlin, R (1999). Induction of cotton extrafloral nectar production in response to herbivory does not require a herbivore-specific elicitor. Entomologia Experimentalis et Applicata, 91, 149-154. [DOI: 10.1007/978-94-017-1890-5_18]
- Wackers, FL, Zuber, D, Wunderlin, R and Keller, F (2001). The Effect of Herbivory on Temporal and Spatial Dynamics of Foliar Nectar Production in Cotton and Castor. Annals of Botany, 87(3), pp. 365-370. [DOI: 10.1006/anbo. 2000.1342]
- War, AR, Paulraj, MG, Ahmad, T, Buhroo, AA, Hussain, B, Ignacimuthu, S and Sharma, HC (2012). Mechanisms of Plant Defense against Insect Herbivores. Plant Signaling & Behaviour, 7(10), pp. 1306-1320. [DOI: 10.4161/psb. 21663]
- Xu, FF, Chen, J and Husson, J (2014). Leaf area lost, rather than herbivory type, determines the induction of extrafloral nectar secretion in a tropical plant (Clerodendrum Pilippinum). Arthropod-Plant Interactions, 8(6), pp. 513-518. https://doi.org/10.1007/s11829-014-9331-2
- Yoshida, T, Kakuta, H and Choh, Y (2017). Pea aphids (Acyrthosiphon pisum Harris) reduce secretion of extrafloral nectar in broad bean (Vicia faba). Ecological Entomology, 43(1), pp. 134-136. [DOI: 10.1111/ een.12476]