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1.
Sci Rep ; 12(1): 14331, 2022 08 22.
Artículo en Inglés | MEDLINE | ID: mdl-35995928

RESUMEN

We use a national citizen science monitoring scheme to quantify how agricultural intensification affects honeybee diet breadth (number of plant species). To do this we used DNA metabarcoding to identify the plants present in 527 honey samples collected in 2019 across Great Britain. The species richness of forage plants was negatively correlated with arable cropping area, although this was only found early in the year when the abundance of flowering plants was more limited. Within intensively farmed areas, honeybee diets were dominated by Brassica crops (including oilseed rape). We demonstrate how the structure and complexity of honeybee foraging relationships with plants is negatively affected by the area of arable crops surrounding hives. Using information collected from the beekeepers on the incidence of an economically damaging bee disease (Deformed Wing Virus) we found that the occurrence of this disease increased where bees foraged in agricultural land where there was a high use of foliar insecticides. Understanding impacts of land use on resource availability is fundamental to assessing long-term viability of pollinator populations. These findings highlight the importance of supporting temporally timed resources as mitigation strategies to support wider pollinator population viability.


Asunto(s)
Ciencia Ciudadana , Plaguicidas , Animales , Abejas , Productos Agrícolas , Plaguicidas/toxicidad , Polinización , Virus ARN , Estaciones del Año
2.
Environ Pollut ; 255(Pt 1): 113238, 2019 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-31655460

RESUMEN

The effects of exposure to different levels of ionising radiation were assessed on the genetic, epigenetic and microbiome characteristics of the "hologenome" of earthworms collected at sites within the Chernobyl exclusion zone (CEZ). The earthworms Aporrectodea caliginosa (Savigny, 1826) and Octolasion lacteum (Örley, 1881) were the two species that were most frequently found at visited sites, however, only O. lacteum was present at sufficient number across different exposure levels to enable comparative hologenome analysis. The identification of morphotype O. lacteum as a probable single clade was established using a combination of mitochondrial (cytochrome oxidase I) and nuclear genome (Amplified Fragment Length Polymorphism (AFLP) using MspI loci). No clear site associated differences in population genetic structure was found between populations using the AFLP marker loci. Further, no relationship between ionising radiation exposure levels and the percentage of methylated loci or pattern of distribution of DNA methylation marks was found. Microbiome structure was clearly site dependent, with gut microbiome community structure and diversity being systematically associated with calculated site-specific earthworm dose rates. There was, however, also co-correlation between earthworm dose rates and other soil properties, notably soil pH; a property known to affect soil bacterial community structure. Such co-correlation means that it is not possible to attribute microbiome changes unequivocally to radionuclide exposure. A better understanding of the relationship between radionuclide exposure soil properties and their interactions on bacterial microbiome community response is, therefore, needed to establish whether these the observed microbiome changes are attributed directly to radiation exposure, other soil properties or to an interaction between multiple variables at sites within the CEZ.


Asunto(s)
Accidente Nuclear de Chernóbil , Microbiota/efectos de la radiación , Oligoquetos/fisiología , Análisis del Polimorfismo de Longitud de Fragmentos Amplificados , Animales , Bacterias/efectos de los fármacos , Epigénesis Genética , Microbioma Gastrointestinal , Oligoquetos/efectos de los fármacos , Oligoquetos/microbiología , Oligoquetos/efectos de la radiación , Exposición a la Radiación , Monitoreo de Radiación , Radioisótopos , Suelo/química
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