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1.
Insects ; 13(3)2022 Mar 10.
Artículo en Inglés | MEDLINE | ID: mdl-35323574

RESUMEN

In Austria, only fragmented information on the occurrence of alien and potentially invasive mosquito species exists. The aim of this study is a nationwide overview on the situation of those mosquitoes in Austria. Using a nationwide uniform protocol for the first time, mosquito eggs were sampled with ovitraps at 45 locations in Austria at weekly intervals from May to October 2020. The sampled eggs were counted and the species were identified by genetic analysis. The Asian tiger mosquito Aedes albopictus was found at two sites, once in Tyrol, where this species has been reported before, and for the first time in the province of Lower Austria, at a motorway rest stop. The Asian bush mosquito Aedes japonicus was widespread in Austria. It was found in all provinces and was the most abundant species in the ovitraps by far. Aedes japonicus was more abundant in the South than in the North and more eggs were found in habitats with artificial surfaces than in (semi-) natural areas. Further, the number of Ae. japonicus eggs increased with higher ambient temperature and decreased with higher wind speed. The results of this study will contribute to a better estimation of the risk of mosquito-borne disease in Austria and will be a useful baseline for a future documentation of changes in the distribution of those species.

2.
Nat Commun ; 12(1): 5308, 2021 09 06.
Artículo en Inglés | MEDLINE | ID: mdl-34489463

RESUMEN

Climate change is altering the frequency and severity of drought events. Recent evidence indicates that drought may produce legacy effects on soil microbial communities. However, it is unclear whether precedent drought events lead to ecological memory formation, i.e., the capacity of past events to influence current ecosystem response trajectories. Here, we utilize a long-term field experiment in a mountain grassland in central Austria with an experimental layout comparing 10 years of recurrent drought events to a single drought event and ambient conditions. We show that recurrent droughts increase the dissimilarity of microbial communities compared to control and single drought events, and enhance soil multifunctionality during drought (calculated via measurements of potential enzymatic activities, soil nutrients, microbial biomass stoichiometry and belowground net primary productivity). Our results indicate that soil microbial community composition changes in concert with its functioning, with consequences for soil processes. The formation of ecological memory in soil under recurrent drought may enhance the resilience of ecosystem functioning against future drought events.


Asunto(s)
Sequías/estadística & datos numéricos , Microbiota/fisiología , Microbiología del Suelo , Suelo/química , Agua/análisis , Acidobacteria/clasificación , Acidobacteria/genética , Acidobacteria/aislamiento & purificación , Actinobacteria/clasificación , Actinobacteria/genética , Actinobacteria/aislamiento & purificación , Altitud , Austria , Bacteroidetes/clasificación , Bacteroidetes/genética , Bacteroidetes/aislamiento & purificación , Biomasa , Carbono/análisis , Chloroflexi/clasificación , Chloroflexi/genética , Chloroflexi/aislamiento & purificación , Pradera , Humanos , Nitrógeno/análisis , Fósforo/análisis , Planctomycetales/clasificación , Planctomycetales/genética , Planctomycetales/aislamiento & purificación , Proteobacteria/clasificación , Proteobacteria/genética , Proteobacteria/aislamiento & purificación , Azufre/análisis , Verrucomicrobia/clasificación , Verrucomicrobia/genética , Verrucomicrobia/aislamiento & purificación
3.
Glob Chang Biol ; 26(2): 669-681, 2020 02.
Artículo en Inglés | MEDLINE | ID: mdl-31344298

RESUMEN

Species-rich plant communities have been shown to be more productive and to exhibit increased long-term soil organic carbon (SOC) storage. Soil microorganisms are central to the conversion of plant organic matter into SOC, yet the relationship between plant diversity, soil microbial growth, turnover as well as carbon use efficiency (CUE) and SOC accumulation is unknown. As heterotrophic soil microbes are primarily carbon limited, it is important to understand how they respond to increased plant-derived carbon inputs at higher plant species richness (PSR). We used the long-term grassland biodiversity experiment in Jena, Germany, to examine how microbial physiology responds to changes in plant diversity and how this affects SOC content. The Jena Experiment considers different numbers of species (1-60), functional groups (1-4) as well as functional identity (small herbs, tall herbs, grasses, and legumes). We found that PSR accelerated microbial growth and turnover and increased microbial biomass and necromass. PSR also accelerated microbial respiration, but this effect was less strong than for microbial growth. In contrast, PSR did not affect microbial CUE or biomass-specific respiration. Structural equation models revealed that PSR had direct positive effects on root biomass, and thereby on microbial growth and microbial biomass carbon. Finally, PSR increased SOC content via its positive influence on microbial biomass carbon. We suggest that PSR favors faster rates of microbial growth and turnover, likely due to greater plant productivity, resulting in higher amounts of microbial biomass and necromass that translate into the observed increase in SOC. We thus identify the microbial mechanism linking species-rich plant communities to a carbon cycle process of importance to Earth's climate system.


Asunto(s)
Carbono , Suelo , Biomasa , Alemania , Microbiología del Suelo
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