A key feature of pollination networks is their nested design. A study of 52 mutualist networks (including plant-pollinator interactions and plant-seed disperser interactions) found that most of the networks were nested. This means that the core of the network is made up of highly connected generalists (a pollinator that visits many different species of plant), while specialized species interact with a subset of the species that the generalists interact with (a pollinator that visits few species of plant, which are also visited by generalist pollinators). As the number of interactions in a network increases, the degree of nestedness increases as well. One property that results from nested structure of pollination networks is an asymmetry in specialization, where specialist species are often interacting with some of the most generalized species. This is in contrast to the idea of reciprocal specialization, where specialist pollinators interact with specialist plants. Similar to the relationship between network complexity and network nestedness, the amount of asymmetry in specialization increases as the number of interactions increases.
There is substantial interest into the robustness of pollination networks to species loss and collapse, especially due to anthropogenic factors such as habitat destruction. The structure of a network is thought to affect how long it is able to persist after species decline begins. In particular, the nested structure of networks has been shown to protect against complete destruction of the network, because the core group of generalists are the most robust to extinction by habitat loss. Models specifically focused on the effects of habitat loss have shown that specialist species tend to go extinct first, while the last species to go extinct are the most generalized of the network. Other studies focusing specifically on the removal of different types of species showed that species decline is the fastest when removing the most generalized species. However, there have been contrasting results on how rapidly decline occurs with removal of these species. One study showed that even at the fastest rate, the decline was still linear. Another study revealed that with the removal of the most common pollinator species, the network showed a drastic collapse. In addition to focusing on the removal of species themselves, other work has emphasized the importance of studying the loss of interactions, as this will often precede species loss and may well accelerate the rate at which extinction occurs.
Fonkalsrud, Sindre
Interaction Patterns and Specialization in a Local and National Norwegian Pollination Network. University of Bergen. Spring 2014 https://bora.uib.no/bitstream/handle/1956/8538/121809649.pdf?sequence=1
Newman, M. (2009). Networks: an introduction, Oxford University Press.
Olesen, Jens M.; Bascompte, Jordi; Dupont, Yoko L.; Jordano, Pedro The modularity of pollination networks. PNAS, December 11, 2007 vol. 104 n° 50 19891–19896. http://www.pnas.org/content/104/50/19891.full.pdf
Bascompte, Jordi; Jordano, Pedro; Melián, Carlos J.; Olesen, Jens M. (5 August 2003). "The nested assembly of plant–animal mutualistic networks". Proceedings of the National Academy of Sciences. 100 (16): 9383–9387. Bibcode:2003PNAS..100.9383B. doi:10.1073/pnas.1633576100. ISSN 0027-8424. PMC 170927. PMID 12881488. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC170927
Nielsen, Anders; Bascompte, Jordi (1 September 2007). "Ecological networks, nestedness and sampling effort". Journal of Ecology. 95 (5): 1134–1141. doi:10.1111/j.1365-2745.2007.01271.x. hdl:10261/40160. ISSN 1365-2745. /wiki/Doi_(identifier)
Bascompte, Jordi; Jordano, Pedro; Melián, Carlos J.; Olesen, Jens M. (5 August 2003). "The nested assembly of plant–animal mutualistic networks". Proceedings of the National Academy of Sciences. 100 (16): 9383–9387. Bibcode:2003PNAS..100.9383B. doi:10.1073/pnas.1633576100. ISSN 0027-8424. PMC 170927. PMID 12881488. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC170927
Vázquez, Diego P.; Aizen, Marcelo A. (1 May 2004). "Asymmetric Specialization: A Pervasive Feature of Plant–Pollinator Interactions". Ecology. 85 (5): 1251–1257. doi:10.1890/03-3112. ISSN 1939-9170. /wiki/Doi_(identifier)
Vázquez, Diego P.; Aizen, Marcelo A. (1 May 2004). "Asymmetric Specialization: A Pervasive Feature of Plant–Pollinator Interactions". Ecology. 85 (5): 1251–1257. doi:10.1890/03-3112. ISSN 1939-9170. /wiki/Doi_(identifier)
Olesen, Jens M.; Bascompte, Jordi; Dupont, Yoko L.; Jordano, Pedro (11 December 2007). "The modularity of pollination networks". Proceedings of the National Academy of Sciences. 104 (50): 19891–19896. Bibcode:2007PNAS..10419891O. doi:10.1073/pnas.0706375104. ISSN 0027-8424. PMC 2148393. PMID 18056808. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2148393
Dupont, Yoko L.; Olesen, Jens M. (1 March 2009). "Ecological modules and roles of species in heathland plant–insect flower visitor networks". Journal of Animal Ecology. 78 (2): 346–353. doi:10.1111/j.1365-2656.2008.01501.x. ISSN 1365-2656. PMID 19021779. /wiki/Doi_(identifier)
Olesen, Jens M.; Bascompte, Jordi; Dupont, Yoko L.; Jordano, Pedro (11 December 2007). "The modularity of pollination networks". Proceedings of the National Academy of Sciences. 104 (50): 19891–19896. Bibcode:2007PNAS..10419891O. doi:10.1073/pnas.0706375104. ISSN 0027-8424. PMC 2148393. PMID 18056808. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2148393
Dupont, Yoko L.; Olesen, Jens M. (1 March 2009). "Ecological modules and roles of species in heathland plant–insect flower visitor networks". Journal of Animal Ecology. 78 (2): 346–353. doi:10.1111/j.1365-2656.2008.01501.x. ISSN 1365-2656. PMID 19021779. /wiki/Doi_(identifier)
Olesen, Jens M.; Bascompte, Jordi; Dupont, Yoko L.; Jordano, Pedro (11 December 2007). "The modularity of pollination networks". Proceedings of the National Academy of Sciences. 104 (50): 19891–19896. Bibcode:2007PNAS..10419891O. doi:10.1073/pnas.0706375104. ISSN 0027-8424. PMC 2148393. PMID 18056808. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2148393
Fortuna, Miguel A.; Bascompte, Jordi (1 March 2006). "Habitat loss and the structure of plant–animal mutualistic networks". Ecology Letters. 9 (3): 281–286. doi:10.1111/j.1461-0248.2005.00868.x. hdl:10261/41674. ISSN 1461-0248. PMID 16958893. /wiki/Doi_(identifier)
Memmott, Jane; Waser, Nickolas M.; Price, Mary V. (22 December 2004). "Tolerance of pollination networks to species extinctions". Proceedings of the Royal Society of London B: Biological Sciences. 271 (1557): 2605–2611. doi:10.1098/rspb.2004.2909. ISSN 0962-8452. PMC 1691904. PMID 15615687. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1691904
Fortuna, Miguel A.; Bascompte, Jordi (1 March 2006). "Habitat loss and the structure of plant–animal mutualistic networks". Ecology Letters. 9 (3): 281–286. doi:10.1111/j.1461-0248.2005.00868.x. hdl:10261/41674. ISSN 1461-0248. PMID 16958893. /wiki/Doi_(identifier)
Memmott, Jane; Waser, Nickolas M.; Price, Mary V. (22 December 2004). "Tolerance of pollination networks to species extinctions". Proceedings of the Royal Society of London B: Biological Sciences. 271 (1557): 2605–2611. doi:10.1098/rspb.2004.2909. ISSN 0962-8452. PMC 1691904. PMID 15615687. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1691904
Kaiser-Bunbury, Christopher N.; Muff, Stefanie; Memmott, Jane; Müller, Christine B.; Caflisch, Amedeo (1 April 2010). "The robustness of pollination networks to the loss of species and interactions: a quantitative approach incorporating pollinator behaviour" (PDF). Ecology Letters. 13 (4): 442–452. doi:10.1111/j.1461-0248.2009.01437.x. ISSN 1461-0248. PMID 20100244. https://www.zora.uzh.ch/id/eprint/34152/2/Kaiser-Bunbury_etal_EL2010.pdf
Valiente-Banuet, Alfonso; Aizen, Marcelo A.; Alcántara, Julio M.; Arroyo, Juan; Cocucci, Andrea; Galetti, Mauro; García, María B.; García, Daniel; Gómez, José M.; Jordano, Pedro; Medel, Rodrigo; Navarro, Luis; Obeso, José R.; Oviedo, Ramona; Ramírez, Nelson; Rey, Pedro J.; Traveset, Anna; Verdú, Miguel; Zamora, Regino (1 March 2015). "Beyond species loss: the extinction of ecological interactions in a changing world". Functional Ecology. 29 (3): 299–307. doi:10.1111/1365-2435.12356. hdl:11336/22561. ISSN 1365-2435. https://doi.org/10.1111%2F1365-2435.12356