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1.
Sci Rep ; 14(1): 10079, 2024 05 02.
Artigo em Inglês | MEDLINE | ID: mdl-38698037

RESUMO

Over the last quarter century, increasing honey bee colony losses motivated standardized large-scale surveys of managed honey bees (Apis mellifera), particularly in Europe and the United States. Here we present the first large-scale standardized survey of colony losses of managed honey bees and stingless bees across Latin America. Overall, 1736 beekeepers and 165 meliponiculturists participated in the 2-year survey (2016-2017 and 2017-2018). On average, 30.4% of honey bee colonies and 39.6% of stingless bee colonies were lost per year across the region. Summer losses were higher than winter losses in stingless bees (30.9% and 22.2%, respectively) but not in honey bees (18.8% and 20.6%, respectively). Colony loss increased with operation size during the summer in both honey bees and stingless bees and decreased with operation size during the winter in stingless bees. Furthermore, losses differed significantly between countries and across years for both beekeepers and meliponiculturists. Overall, winter losses of honey bee colonies in Latin America (20.6%) position this region between Europe (12.5%) and the United States (40.4%). These results highlight the magnitude of bee colony losses occurring in the region and suggest difficulties in maintaining overall colony health and economic survival for beekeepers and meliponiculturists.


Assuntos
Criação de Abelhas , Estações do Ano , Animais , Abelhas/fisiologia , América Latina
2.
Science ; 351(6271): 388-91, 2016 Jan 22.
Artigo em Inglês | MEDLINE | ID: mdl-26798016

RESUMO

Ecological intensification, or the improvement of crop yield through enhancement of biodiversity, may be a sustainable pathway toward greater food supplies. Such sustainable increases may be especially important for the 2 billion people reliant on small farms, many of which are undernourished, yet we know little about the efficacy of this approach. Using a coordinated protocol across regions and crops, we quantify to what degree enhancing pollinator density and richness can improve yields on 344 fields from 33 pollinator-dependent crop systems in small and large farms from Africa, Asia, and Latin America. For fields less than 2 hectares, we found that yield gaps could be closed by a median of 24% through higher flower-visitor density. For larger fields, such benefits only occurred at high flower-visitor richness. Worldwide, our study demonstrates that ecological intensification can create synchronous biodiversity and yield outcomes.


Assuntos
Abelhas , Biodiversidade , Produção Agrícola , Produtos Agrícolas/crescimento & desenvolvimento , Polinização , África , Animais , Ásia , Flores/crescimento & desenvolvimento
3.
Acta biol. colomb ; 18(3): 427-438, set.-dic. 2013. ilus, graf, mapas, tab
Artigo em Espanhol | LILACS | ID: lil-700439

RESUMO

El objetivo de este trabajo fue determinar marcadores palinológicos que permitieran caracterizar el origen geográfico y botánico de mieles provenientes de los departamentos de Boyacá, Cundinamarca, Santander y Magdalena. Se realizaron análisis melisopalinológicos de 184 muestras de miel procedentes de 131 apiarios. Se determinaron diferencias significativas entre tipos de mieles mediante un análisis discriminante y comparando la composición de especies entre las muestras. En total se encontraron 297 especies distribuidas en 69 familias, dentro de las cuales las más representativas fueron Mimosa sp., Cecropiasp., Eucalyptus sp., Piper sp. y Quercus humboldtii . Las familias más importantes fueron Fabaceae, Asteraceae,Myrtaceae, Rubiaceae, Fagaceae, y Melastomataceae. Se lograron determinar seis grupos de mieles diferenciadas por su origen geográfico: altiplano Cundiboyacense, Medio Chicamocha, Sumapaz, Bajo Chicamocha, Sierra Nevada de Santa Marta y provincia Comunera; también se encontraron diferencias entre las mieles de las regiones andinas y subandinas. Dentro de los tipos de mieles diferenciadas por origen botánico predominaron las mieles monoflorales de Trifolium Pratense, Coffeaarabica, Eucalyptus sp., Inga sp. y Heliocarpus americanus, mieles oligoflorales de asteráceas y mezclas de mielato de Q. humboldtii y néctar floral (Eucalyptus sp. tipo Brassicaceae, asteráceas). La información de este trabajo junto con la obtenida en análisis fisicoquímicos y sensoriales servirá de base para que los apicultores puedan solicitar la denominación de origen de estas mieles.


The aim of this work was to find palynological markers which permit differentiate honeys from the departments of Boyacá, Cundinamarca, Santander and Magdalena, by its geographical and botanical origin. Melissopalynological analyses were made of 184 honey samples obtained from 131 localities. A discriminant analysis and comparisons between the species composition of honey samples were made to find geographical and botanical origin differences. A total of 297 pollen species distributed in 69 families was found, being Mimosa sp., Cecropiasp., Eucalyptus sp., Piper sp. and Quercus humboldtii the most representatives. The major families were Fabaceae, Asteraceae, Myrtaceae, Rubiaceae, Fagaceae and Melastomataceae. Six honey groups differentiated by its geographical origin were found: Altiplano Cundiboyacense, Medio Chicamocha, Sumapaz, Bajo Chicamocha, Sierra Nevada de Santa Marta and Comunera Province. In a broader scale, honeys from the Andean and sub-Andean regions could be differentiated as well. Between the honey types differentiated by its botanical origin, the most important were monofloral honeys of Trifolium Pratense, Coffeaarabica, Eucalyptus sp., Inga sp. and Heliocarpus americanus, Asteraceae oligofloral honeys and mixtures of Q. humboldtii honeydew and floral nectar (Eucalyptus sp., Brassicaceae Type, Asteraceae). This information in addition to the obtained by physicochemical and sensorial analysis, may be the basis to acquire honeys´ origin denomination.

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