scholarly journals Plant-Pollinator Networks in Savannas of Burkina Faso, West Africa

Diversity ◽  
2020 ◽  
Vol 13 (1) ◽  
pp. 1
Author(s):  
Katharina Stein ◽  
Drissa Coulibaly ◽  
Larba Hubert Balima ◽  
Dethardt Goetze ◽  
Karl Eduard Linsenmair ◽  
...  

West African savannas are severely threatened with intensified land use and increasing degradation. Bees are important for terrestrial biodiversity as they provide native plant species with pollination services. However, little information is available regarding their mutualistic interactions with woody plant species. In the first network study from sub-Saharan West Africa, we investigated the effects of land-use intensity and climatic seasonality on plant–bee communities and their interaction networks. In total, we recorded 5686 interactions between 53 flowering woody plant species and 100 bee species. Bee-species richness and the number of interactions were higher in the low compared to medium and high land-use intensity sites. Bee- and plant-species richness and the number of interactions were higher in the dry compared to the rainy season. Plant–bee visitation networks were not strongly affected by land-use intensity; however, climatic seasonality had a strong effect on network architecture. Null-model corrected connectance and nestedness were higher in the dry compared to the rainy season. In addition, network specialization and null-model corrected modularity were lower in the dry compared to the rainy season. Our results suggest that in our study region, seasonal effects on mutualistic network architecture are more pronounced compared to land-use change effects. Nonetheless, the decrease in bee-species richness and the number of plant–bee interactions with an increase in land-use intensity highlights the importance of savanna conservation for maintaining bee diversity and the concomitant provision of ecosystem services.

2020 ◽  
Vol 5 (1) ◽  
pp. 14-23 ◽  
Author(s):  
Coulibaly Drissa ◽  
Yalamoussa Tuo ◽  
Mouhamadou Koné ◽  
Larba Hubert Balima ◽  
Souleymane Konaté ◽  
...  

West African savanna ecosystems and biodiversity are severely threatened by intensified land use and increasing degradation of natural habitats. Despite the importance of bees for pollinating crops and native plant species little information is available regarding the importance of savanna woody plant species to provide bees with food resources. Flora inventories were carried out on 48 subplots laid out across three land use types. The number of bee morphospecies and their abundance as flower visitors were recorded from inflorescences of plants during the different flowering periods. Out of a total diversity of 82 woody plant species, 53 species (64.63%) from 38 genera and 21 families were melliferous. These plants were visited by bees for foraging nectar and/or pollen. Species of the Combretaceae family were the most visited by bees in terms of individuals (53.85%). Combretum glutinosum alone accounted for 36% of visits. More than half of the melliferous plants (50.94%) were visited for both nectar and pollen. About 32.08% of plants were visited for nectar only (32.08%), while 16.98% were visited for pollen only (16.98%). The majority of savanna plants are flowering in the dry season, but few flowering species can be found throughout the whole year. Savanna woody plant species constitute important food resources for bees, therefore providing a wide range of applications for the development of beekeeping activities in the Sudanian region of West Africa.


2018 ◽  
Vol 24 (7) ◽  
pp. 2828-2840 ◽  
Author(s):  
Valentin H. Klaus ◽  
Till Kleinebecker ◽  
Verena Busch ◽  
Markus Fischer ◽  
Norbert Hölzel ◽  
...  

Author(s):  
Mahanand Swapna ◽  
Tamang Deeke Doma ◽  
Sikder Arunima ◽  
Gudasalamani Ravikanth ◽  
Muneeswaran Mariappan ◽  
...  

2009 ◽  
Vol 36 (9) ◽  
pp. 1685-1697 ◽  
Author(s):  
Hong Qian ◽  
W. Daniel Kissling ◽  
Xianli Wang ◽  
Peter Andrews

2019 ◽  
Vol 9 (1) ◽  
Author(s):  
Xiaofei Liu ◽  
John Garcia-Ulloa ◽  
Tina Cornioley ◽  
Xuehua Liu ◽  
Zhiheng Wang ◽  
...  

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