41 research outputs found
A second species of the genus Sturmius BRETFELD, 1994: Sturmius truncivivus n.sp. from Brazil (Insecta, Collembola, Symphypleona)
From Manaus, Brazil, AM, Sturmius truncivivus n.sp. is described. It is the second species of this remarkable genus, which is known from Colombia and shows an unusual combination of characteristics. This new species lives on trees, as does the type species, but has not been collected from epiphytes but by trunk traps
Biodiversity of the Collembola Fauna of Wetland Kerkini (N. Greece), with description of the sexual dimorphism of Entomobrya atrocincta Schött 1896 (Collembola: Entomobryomorpha)
A report on the results of a research into some aspects of the collembolan fauna of the
Greek Nature Reserve associated with Lake Kerkini, known as Wetland Kerkini, is presented. The
nature reserve is large and includes a wide variety of habitats, many of which were not included in
this preliminary survey. From the areas sampled we recorded 44 species, of which 39 were previously
described, two (Folsomia potapovi Jordana & Baquero n. sp., Entomobrya naziridisi Jordana & Baquero
n. sp.), are new to science, while three are identifi ed to generic level; a further 21 are new records for
Greece, and an additional 11 species are new records to the Greek Mainland. Sampling with Berlese-
Tullgren funnels and Malaise traps allowed us to capture species typical of soil and species present
over vegetation. This summary is based on the records held in the online database of the Fauna
Europaea Project
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Modeling the Joint Effects of Vegetation Characteristics and Soil Properties on Ecosystem Dynamics in a Panama Tropical Forest
In tropical forests, both vegetation characteristics and soil properties are important not only for controlling energy, water, and gas exchanges directly but also determining the competition among species, successional dynamics, forest structure and composition. However, the joint effects of the two factors have received limited attention in Earth system model development. Here we use a vegetation demographic model, the Functionally Assembled Terrestrial Ecosystem Simulator (FATES) implemented in the Energy Exascale Earth System Model (E3SM) Land Model (ELM), ELM-FATES, to explore how plant traits and soil properties affect tropical forest growth and composition concurrently. A large ensemble of simulations with perturbed vegetation and soil hydrological parameters is conducted at the Barro Colorado Island, Panama. The simulations are compared against observed carbon, energy, and water fluxes. We find that soil hydrological parameters, particularly the scaling exponent of the soil retention curve (Bsw), play crucial roles in controlling forest diversity, with higher Bsw values (>7) favoring late successional species in competition, and lower Bsw values (1 ∼ 7) promoting the coexistence of early and late successional plants. Considering the additional impact of soil properties resolves a systematic bias of FATES in simulating sensible/latent heat partitioning with repercussion on water budget and plant coexistence. A greater fraction of deeper tree roots can help maintain the dry-season soil moisture and plant gas exchange. As soil properties are as important as vegetation parameters in predicting tropical forest dynamics, more efforts are needed to improve parameterizations of soil functions and belowground processes and their interactions with aboveground vegetation dynamics