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Australian Journal of Botany Australian Journal of Botany Society
Southern hemisphere botanical ecosystems
RESEARCH ARTICLE

Specificity and influence of climatic factors on the pollination of south-eastern Brazilian Sinningia

E. R. Pansarin A B and L. M. Pansarin A
+ Author Affiliations
- Author Affiliations

A Departamento de Biologia, Faculdade de Filosofia, Ciências e Letras, Universidade de São Paulo, Av. Bandeirantes 3900, 14040-901, Ribeirão Preto, SP, Brazil.

B Corresponding author. Email: epansarin@ffclrp.usp.br

Australian Journal of Botany 66(7) 468-478 https://doi.org/10.1071/BT18077
Submitted: 7 April 2018  Accepted: 4 September 2018   Published: 27 September 2018

Abstract

Ornithophily is a widespread pollination syndrome that has evolved independently several times along the evolution of plants. It is reported in sixty-five plant families, including Gesneriaceae. One of the most diverse genera within gesneriads is Sinningia, which comprises species pollinated by bees, hummingbirds and bats. However, little is known about the reproduction biology of either species or on pollinator specificity in this genus. Based on investigations on flowering phenology, flower morpho-anatomy, volume and concentration of floral nectar, pollinators, and breeding system, this paper reports the reproduction and the pollinator specificity of Sinningia douglasii and Sinningia araneosa in natural areas in Brazil. Both species offer nectar as a resource and are exclusively pollinated by a single species of hermit hummingbird. Nectar is produced by glands around the ovary. Pollen is deposited between the base of the beak and the head feathers. Both species are self-compatible and pollinator-dependent. In both Sinningia species, the combination of protandry, pollinator specificity, due to long corolla tubes that exclude the visitation of short-billed hummingbirds. The presence of particular flower features influence the occurrence of pollination by specific pollen vectors, such as hermit hummingbirds, in deterrence of illegitimate visitors (i.e. territorial hummingbirds), protection against vigorous foraging, and accurate placement of pollen on legitimate pollinators. In addition, the foraging of Phaethornis on flowers of Sinningia is independent of relative humidity and air temperature, whereas the main factor influencing hummingbird visits is the luminosity.

Additional keywords: floral biology, nectar, nectary, ornithophily, pollination, reproductive biology.


References

Aona LYS, Machado M, Pansarin ER, Castro CC, Zappi DC, Amaral MCE (2006) Pollination biology of three Brazilian species of Micranthocereus Backeb. (Cereeae, Cactoideae) endemic to the campos rupestres. Bradleya 24, 39–52.
Pollination biology of three Brazilian species of Micranthocereus Backeb. (Cereeae, Cactoideae) endemic to the campos rupestres.Crossref | GoogleScholarGoogle Scholar |

Araujo AO, Chautems A (2015) Sinningia in Lista de espécies da Flora do Brasil. Jardim Botânico do Rio de Janeiro. Available at http://floradobrasil.jbrj.gov.br/jabot/floradobrasil/FB7884 [Verified 9 September 2018]

Arizmendi MC, Rodríguez-Flores CI (2012) How many plant species do hummingbirds visit? Ornitologia Neotropical 23, 71–75.

Bascompte J, Jordano P (2007) Plant-animal mutualistic networks: the architecture of biodiversity. Annual Review of Ecology Evolution and Systematics 38, 567–593.
Plant-animal mutualistic networks: the architecture of biodiversity.Crossref | GoogleScholarGoogle Scholar |

Bertin RI, Newman CM (1993) Dichogamy in angiosperms. Botanical Review 59, 112–152.
Dichogamy in angiosperms.Crossref | GoogleScholarGoogle Scholar |

Buzato S, Sazima M, Sazima I (2000) Hummingbird-pollinated floras at three Atlantic forest sites. Biotropica 32, 824–841.
Hummingbird-pollinated floras at three Atlantic forest sites.Crossref | GoogleScholarGoogle Scholar |

Camargo E, Rodrigues LC, Araujo AO (2011) Pollination biology and reproduction of Seemannia sylvatica (Kunth) Hanstein (Gesneriaceae) in the Serra da Bodoquena National Park, Mato Grosso do Sul. Biota Neotropica 11, 125–130.
Pollination biology and reproduction of Seemannia sylvatica (Kunth) Hanstein (Gesneriaceae) in the Serra da Bodoquena National Park, Mato Grosso do Sul.Crossref | GoogleScholarGoogle Scholar |

Clayberg CD (1968) Biosystematic studies in Sinningia and Rechsteineria (Gesneriaceae). American Journal of Botany 55, 829–833.
Biosystematic studies in Sinningia and Rechsteineria (Gesneriaceae).Crossref | GoogleScholarGoogle Scholar |

Cronk QCB, Ojeda I (2008) Bird-pollinated flowers in an evolutionary and molecular context. Journal of Experimental Botany 59, 715–727.
Bird-pollinated flowers in an evolutionary and molecular context.Crossref | GoogleScholarGoogle Scholar |

Dafni A (1992) ‘Pollination ecology: a practical approach.’ (Oxford University Press: Oxford, UK)

Faegri K, van der Pijl L (1979) ‘The principles of pollination ecology.’ (3rd edn) (Pergamon Press: Oxford)

Fahn A (1979) ‘Secretory tissues in plants.’ (Academic Press: London)

Feinsinger P, Colwell RK (1978) Community organization among neotropical nectar-feeding birds. American Zoologist 18, 779–795.
Community organization among neotropical nectar-feeding birds.Crossref | GoogleScholarGoogle Scholar |

Fenster CB (1991) Selection on floral morphology by hummingbirds. Biotropica 23, 98–101.
Selection on floral morphology by hummingbirds.Crossref | GoogleScholarGoogle Scholar |

Findlay N, Mercer FV (1971) Nectar production in Abutilon I. Movement of nectar through the cuticle. Australian Journal of Biological Sciences 24, 647–656.
Nectar production in Abutilon I. Movement of nectar through the cuticle.Crossref | GoogleScholarGoogle Scholar |

Fleming TH, Kress WJ (2013) ‘The ornaments of life: coevolution and conservation in the tropics.’ (University of Chicago Press: Chicago, IL, USA)

Franco ALM, Buzato S (1992) Biologia floral de Nematanthus fritschii (Gesneriaceae). Revista Brasileira de Biologia 52, 661–666.

Gao JY, Rem PY, Yang ZH, Li QJ (2006) The pollination ecology of Paraboea rufescens (Gesneriaceae): a buzz-pollinated tropical herb with mirror-image flowers. Annals of Botany 97, 371–376.
The pollination ecology of Paraboea rufescens (Gesneriaceae): a buzz-pollinated tropical herb with mirror-image flowers.Crossref | GoogleScholarGoogle Scholar |

Garrison JSE, Gass CL (1999) Response of a traplining hummingbird to changes in nectar availability. Behavioral Ecology 10, 714–725.
Response of a traplining hummingbird to changes in nectar availability.Crossref | GoogleScholarGoogle Scholar |

Gerlach D (1969) ‘Botanische Mikrotechnik.’ (Georg Thieme Verlag: Stuttgart, Germany)

Gill FB (1988) Trapline foraging by Hermit hummingbirds: competition for and undefended, renewable resource. Ecology 69, 1933–1942.
Trapline foraging by Hermit hummingbirds: competition for and undefended, renewable resource.Crossref | GoogleScholarGoogle Scholar |

Grant V (1994) Historical development of ornithophily in the western North America flora. Proceedings of the National Academy of Sciences of the United States of America 91, 10407–10411.
Historical development of ornithophily in the western North America flora.Crossref | GoogleScholarGoogle Scholar |

Johansen DA (1940) ‘Plant microtechnique.’ (McGraw-Hill Book Co: New York)

Köppen W (1948) ‘Climatologia: com um estúdio de los climas de la tierra.’ (Fondo de Cultura Econômica: México City)

Leitão-Filho HF (1992) A flora arbórea da Serra do Japi. In ‘História natural da Serra do Japi’. (Ed. LPC Morellato) pp. 40–62. (Editora da Unicamp/Fapesp: Campinas, Brazil)

Lillie RD (1965) ‘Histopathologic technic and practical histochemistry.’ (3rd edn) (McGraw-Hill Book Co.: New York)

Linhart YB (1973) Ecological and behavioral determinants of pollen dispersal in hummingbird-pollinated Heliconia. American Naturalist 107, 511–523.
Ecological and behavioral determinants of pollen dispersal in hummingbird-pollinated Heliconia.Crossref | GoogleScholarGoogle Scholar |

Maglianesi MA, Blüthgen N, Böhning-Gaese K, Schleuning M (2014) Morphological traits determine specialization and resource use in plant–hummingbird networks in the neotropics. Ecology 95, 3325–3334.
Morphological traits determine specialization and resource use in plant–hummingbird networks in the neotropics.Crossref | GoogleScholarGoogle Scholar |

McDade LA (1986) Protandry synchronized flowering and sequential phenotypic unisexuality in Neotropical Pentagonia macrophylla (Rubiaceae). Oecologia 68, 218–223.
Protandry synchronized flowering and sequential phenotypic unisexuality in Neotropical Pentagonia macrophylla (Rubiaceae).Crossref | GoogleScholarGoogle Scholar |

Nepi M (2007) Nectary structure and ultrastructure. In ‘Nectaries and nectar’. (Eds SW Nicolson, M Nepi, E Pacini) pp. 129–166. (Springer: Dordrecht, The Netherlands)

Nunes CEP, Castro MM, Galetto L, Sazima M (2013) Anatomy of the floral nectary of ornithophilous Elleanthus brasiliensis (Orchidaceae: Sobralieae). Botanical Journal of the Linnean Society 171, 764–772.
Anatomy of the floral nectary of ornithophilous Elleanthus brasiliensis (Orchidaceae: Sobralieae).Crossref | GoogleScholarGoogle Scholar |

Pansarin ER, Pedro SRM (2016) Reproductive biology of a hummingbird-pollinated: light influence on pollinator behaviour and specificity in a Brazilian semi-deciduous forest. Plant Biology 18, 920–927.
Reproductive biology of a hummingbird-pollinated: light influence on pollinator behaviour and specificity in a Brazilian semi-deciduous forest.Crossref | GoogleScholarGoogle Scholar |

Pansarin LM, Castro MM, Sazima M (2009) Osmophore and elaiophores of Grobya amherstiae (Catasetinae, Orchidaceae) and their relation to pollination. Botanical Journal of the Linnean Society 159, 408–415.
Osmophore and elaiophores of Grobya amherstiae (Catasetinae, Orchidaceae) and their relation to pollination.Crossref | GoogleScholarGoogle Scholar |

Perret M, Chautems A, Spichiger R, Peixoto M, Savolainen V (2001) Nectar sugar composition in relation to pollination syndrome in Sinningieae (Gesneriaceae). Annals of Botany 87, 267–273.
Nectar sugar composition in relation to pollination syndrome in Sinningieae (Gesneriaceae).Crossref | GoogleScholarGoogle Scholar |

Perret M, Chautems A, Spichiger R, Kite G, Savolainen V (2003) Systematics and evolution of tribe Sinningieae (Gesneriaceae): evidence from phylogenetic analyses of six plastid DNA regions and nuclear ncpGS. American Journal of Botany 90, 445–460.
Systematics and evolution of tribe Sinningieae (Gesneriaceae): evidence from phylogenetic analyses of six plastid DNA regions and nuclear ncpGS.Crossref | GoogleScholarGoogle Scholar |

Proctor M, Yeo P (1973) ‘The pollination of flowers.’ (Collins: London)

Proctor M, Yeo P, Lack A (1996) ‘The natural history of pollination.’ (Timber Press: Portland, OR, USA)

Purvis MJ, Collier DC, Walls D (1964) ‘Laboratory techniques in botany.’ (Butterworths: London)

Pyke GH, Waser NM (1981) The production of diluted nectar by hummingbird and honeyeater flowers. Biotropica 13, 260–270.
The production of diluted nectar by hummingbird and honeyeater flowers.Crossref | GoogleScholarGoogle Scholar |

Ruschi A (1989) ‘Aves do Brasil, Beija-flores. Vol. IV.’ (Editora Expressão e Cultura: Rio de Janeiro)

SanMartin-Gajardo I, Sazima M (2004) Non-euglossine bees also function as pollinators of Sinningia species (Gesneriaceae) in southeastern Brazil. Plant Biology 6, 506–512.
Non-euglossine bees also function as pollinators of Sinningia species (Gesneriaceae) in southeastern Brazil.Crossref | GoogleScholarGoogle Scholar |

SanMartin-Gajardo I, Sazima M (2005) Espécies de Vanhouttea Lem. e Sinningia Nees (Gesneriaceae) polinizadas por beija-flores: interações relacionadas ao hábitat da planta e ao néctar. Revista Brasileira de Botanica. Brazilian Journal of Botany 28, 441–450.
Espécies de Vanhouttea Lem. e Sinningia Nees (Gesneriaceae) polinizadas por beija-flores: interações relacionadas ao hábitat da planta e ao néctar.Crossref | GoogleScholarGoogle Scholar |

Sazima I, Buzato S, Sazima M (1996) An assemblage of hummingbird pollinated flowers in a montane forest in southeastern Brazil. Botanica Acta 109, 149–160.
An assemblage of hummingbird pollinated flowers in a montane forest in southeastern Brazil.Crossref | GoogleScholarGoogle Scholar |

Snow BK, Snow DW (1972) Feeding niches of hummingbirds in a Trinidad valley. Journal of Animal Ecology 41, 471–485.
Feeding niches of hummingbirds in a Trinidad valley.Crossref | GoogleScholarGoogle Scholar |

Stiles FG (1975) Ecology, flowering phenology, and hummingbirds pollination of some Costa Rican Heliconia species. Ecology 56, 285–301.
Ecology, flowering phenology, and hummingbirds pollination of some Costa Rican Heliconia species.Crossref | GoogleScholarGoogle Scholar |

Stiles FG, Freeman CE (1993) Patterns in floral nectar characteristics of some bird-visited plant species from Costa Rica. Biotropica 25, 191–205.
Patterns in floral nectar characteristics of some bird-visited plant species from Costa Rica.Crossref | GoogleScholarGoogle Scholar |

Vassilyev AE (2010) On the mechanisms of nectar secretion: revisited. Annals of Botany 105, 349–354.
On the mechanisms of nectar secretion: revisited.Crossref | GoogleScholarGoogle Scholar |

Wiehler H (1983) A synopsis of the Neotropical Gesneriaceae. Selbyana 6, 1–219.

Zanata TB, Dalsgaard B, Passos FC, et al (2017) Bird–flower interactions are more specialized in the New World than in the Old World. Journal of Biogeography 44, 1891–1910.
Bird–flower interactions are more specialized in the New World than in the Old World.Crossref | GoogleScholarGoogle Scholar |