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1.
Environ Sci Pollut Res Int ; 25(34): 33849-33857, 2018 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-29675816

RESUMO

The Biological Resource Centre for the Environment BRC4Env is a network of Biological Resource Centres (BRCs) and collections whose leading objectives are to improve the visibility of genetic and biological resources maintained by its BRCs and collections and to facilitate their use by a large research community, from agriculture research to life sciences and environmental sciences. Its added value relies on sharing skills, harmonizing practices, triggering projects in comparative biology, and ultimately proposing a single-entry portal to facilitate access to documented samples, taking into account the partnership policies of research institutions as well as the legal frame which varies with the biological nature of resources. BRC4Env currently includes three BRCs: the Centre for Soil Genetic Resources of the platform GenoSol, in partnership with the European Conservatory of Soil Samples; the Egg Parasitoids Collection (EP-Coll); and the collection of ichthyological samples, Colisa. BRC4Env is also associated to several biological collections: microbial consortia (entomopathogenic bacteria, freshwater microalgae…), terrestrial arthropods, nematodes (plant parasitic, entomopathogenic, animal parasitic...), and small mammals. The BRCs and collections of BRC4Env are involved in partnership with academic scientists, as well as private companies, in the fields of medicinal mining, biocontrol, sustainable agriculture, and additional sectors. Moreover, the staff of the BRCs is involved in many training courses for students from French licence degree to Ph.D, engineers, as well as ongoing training.


Assuntos
Bancos de Espécimes Biológicos , Ecologia/organização & administração , Agricultura , Animais , Bactérias , Nematoides , Plantas/microbiologia , Plantas/parasitologia , Pesquisa , Solo
2.
PLoS One ; 10(6): e0130672, 2015.
Artigo em Inglês | MEDLINE | ID: mdl-26102585

RESUMO

Soil microbial communities undergo rapid shifts following modifications in environmental conditions. Although microbial diversity changes may alter soil functioning, the in situ temporal dynamics of microbial diversity is poorly documented. Here, we investigated the response of fungal and bacterial diversity to wheat straw input in a 12-months field experiment and explored whether this response depended on the soil management history (grassland vs. cropland). Seasonal climatic fluctuations had no effect on the diversity of soil communities. Contrastingly fungi and bacteria responded strongly to wheat regardless of the soil history. After straw incorporation, diversity decreased due to the temporary dominance of a subset of copiotrophic populations. While fungi responded as quickly as bacteria, the resilience of fungal diversity lasted much longer, indicating that the relative involvement of each community might change as decomposition progressed. Soil history did not affect the response patterns, but determined the identity of some of the populations stimulated. Most strikingly, the bacteria Burkholderia, Lysobacter and fungi Rhizopus, Fusarium were selectively stimulated. Given the ecological importance of these microbial groups as decomposers and/or plant pathogens, such regulation of the composition of microbial successions by soil history may have important consequences in terms of soil carbon turnover and crop health.


Assuntos
Agricultura , Bactérias/isolamento & purificação , Fungos/isolamento & purificação , Pradaria , Microbiota , Microbiologia do Solo , Triticum , Bactérias/classificação , Bactérias/crescimento & desenvolvimento , Biodiversidade , Carbono/análise , Carbono/metabolismo , Clima , Produtos Agrícolas/microbiologia , França , Fungos/classificação , Fungos/crescimento & desenvolvimento , Interações Microbianas , Nitrogênio/análise , Fósforo/análise , Caules de Planta , Poaceae/microbiologia , Ribotipagem , Estações do Ano , Solo/química , Especificidade da Espécie
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