Effects of climate on pollination networks in the West Indies

We studied the effect of climate on the plant-pollinator communities in the West Indies. We constructed plots of 200 m × 5 m in two distinct habitats on the islands of Dominica, Grenada and Puerto Rico (total of six plots) and recorded visitors to all plant species in flower. In total we recorded 44...

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Published inJournal of tropical ecology Vol. 25; no. 5; pp. 493 - 506
Main Authors González, Ana M. Martín, Dalsgaard, Bo, Ollerton, Jeff, Timmermann, Allan, Olesen, Jens M., Andersen, Laila, Tossas, Adrianne G.
Format Journal Article
LanguageEnglish
Published Cambridge, UK Cambridge University Press 01.09.2009
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Abstract We studied the effect of climate on the plant-pollinator communities in the West Indies. We constructed plots of 200 m × 5 m in two distinct habitats on the islands of Dominica, Grenada and Puerto Rico (total of six plots) and recorded visitors to all plant species in flower. In total we recorded 447 interactions among 144 plants and 226 pollinator species. Specifically we describe how rainfall and temperature affect proportional richness and importance of the different pollinator functional groups. We used three measures of pollinator importance: number of interactions, number of plant species visited and betweenness centrality. Overall rainfall explained most of the variation in pollinator richness and relative importance. Bird pollination tended to increase with rainfall, although not significantly, whereas insects were significantly negatively affected by rainfall. However, the response among insect groups was more complex; bees were strongly negatively affected by rainfall, whereas dipterans showed similar trends to birds. Bird, bee and dipteran variation along the climate gradient can be largely explained by their physiological capabilities to respond to rainfall and temperature, but the effect of climate on other insect pollinator groups was more obscure. This study contributes to the understanding of how climate may affect neotropical plant-pollinator communities.
AbstractList We studied the effect of climate on the plant-pollinator communities in the West Indies. We constructed plots of 200 m × 5 m in two distinct habitats on the islands of Dominica, Grenada and Puerto Rico (total of six plots) and recorded visitors to all plant species in flower. In total we recorded 447 interactions among 144 plants and 226 pollinator species. Specifically we describe how rainfall and temperature affect proportional richness and importance of the different pollinator functional groups. We used three measures of pollinator importance: number of interactions, number of plant species visited and betweenness centrality. Overall rainfall explained most of the variation in pollinator richness and relative importance. Bird pollination tended to increase with rainfall, although not significantly, whereas insects were significantly negatively affected by rainfall. However, the response among insect groups was more complex; bees were strongly negatively affected by rainfall, whereas dipterans showed similar trends to birds. Bird, bee and dipteran variation along the climate gradient can be largely explained by their physiological capabilities to respond to rainfall and temperature, but the effect of climate on other insect pollinator groups was more obscure. This study contributes to the understanding of how climate may affect neotropical plant-pollinator communities.
We studied the effect of climate on the plant-pollinator communities in the West Indies. We constructed plots of 200 m x 5 m in two distinct habitats on the islands of Dominica, Grenada and Puerto Rico (total of six plots) and recorded visitors to all plant species in flower. In total we recorded 447 interactions among 144 plants and 226 pollinator species. Specifically we describe how rainfall and temperature affect proportional richness and importance of the different pollinator functional groups. We used three measures of pollinator importance: number of interactions, number of plant species visited and betweenness centrality. Overall rainfall explained most of the variation in pollinator richness and relative importance. Bird pollination tended to increase with rainfall, although not significantly, whereas insects were significantly negatively affected by rainfall. However, the response among insect groups was more complex; bees were strongly negatively affected by rainfall, whereas dipterans showed similar trends to birds. Bird, bee and dipteran variation along the climate gradient can be largely explained by their physiological capabilities to respond to rainfall and temperature, but the effect of climate on other insect pollinator groups was more obscure. This study contributes to the understanding of how climate may affect neotropical plant-pollinator communities. [PUBLICATION ABSTRACT]
We studied the effect of climate on the plant-pollinator communities in the West Indies. We constructed plots of 200 m 5 m in two distinct habitats on the islands of Dominica, Grenada and Puerto Rico (total of six plots) and recorded visitors to all plant species in flower. In total we recorded 447 interactions among 144 plants and 226 pollinator species. Specifically we describe how rainfall and temperature affect proportional richness and importance of the different pollinator functional groups. We used three measures of pollinator importance: number of interactions, number of plant species visited and betweenness centrality. Overall rainfall explained most of the variation in pollinator richness and relative importance. Bird pollination tended to increase with rainfall, although not significantly, whereas insects were significantly negatively affected by rainfall. However, the response among insect groups was more complex; bees were strongly negatively affected by rainfall, whereas dipterans showed similar trends to birds. Bird, bee and dipteran variation along the climate gradient can be largely explained by their physiological capabilities to respond to rainfall and temperature, but the effect of climate on other insect pollinator groups was more obscure. This study contributes to the understanding of how climate may affect neotropical plant-pollinator communities.
Author Ollerton, Jeff
Olesen, Jens M.
Tossas, Adrianne G.
Andersen, Laila
González, Ana M. Martín
Dalsgaard, Bo
Timmermann, Allan
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  organization: Unit of Ecology and Center for Ecological Research and Forestry Applications (CREAF), Autonomous University of Barcelona, ES 08193 Bellaterra, Barcelona, Spain
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  givenname: Allan
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  givenname: Adrianne G.
  surname: Tossas
  fullname: Tossas, Adrianne G.
  organization: §Villas del Río, 1100 Bambú, Mayagüez, Puerto Rico
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Island pollination and climate
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Issue 5
Keywords mutualisms
rainfall
temperature
functional groups
birds
insects
betweenness centrality
Diptera
plant–animal interactions
bees
Climate
Temperature
Mutualism
Pollination
plant-animal interactions
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Snippet We studied the effect of climate on the plant-pollinator communities in the West Indies. We constructed plots of 200 m × 5 m in two distinct habitats on the...
We studied the effect of climate on the plant-pollinator communities in the West Indies. We constructed plots of 200 m x 5 m in two distinct habitats on the...
We studied the effect of climate on the plant-pollinator communities in the West Indies. We constructed plots of 200 m 5 m in two distinct habitats on the...
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SubjectTerms Bees
betweenness centrality
Biological and medical sciences
Birds
Climate
Climate effects
Climate models
Diptera
functional groups
Fundamental and applied biological sciences. Psychology
Highlands
Insect pollination
Insects
Lowlands
mutualisms
Plant physiology and development
Plant reproduction
Plant species
Plants
plant–animal interactions
Pollinating insects
Pollination
Pollinators
Rain
Rainfall
Rainforests
Sexual reproduction
temperature
Terrestrial ecosystems
Vegetative and sexual reproduction, floral biology, fructification
Title Effects of climate on pollination networks in the West Indies
URI https://www.cambridge.org/core/product/identifier/S0266467409990034/type/journal_article
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https://www.jstor.org/stable/27751621
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https://www.proquest.com/docview/20776653
Volume 25
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