Floristische und soziologische Untersuchungen im Naturschutzgebiet Alter Rhein bei Bienen-Praest (Altrheinschlinge im Kreis Kleve), Kernstueck des ueberregionalen Schutzgebiets Unterer Niederrhein, deuten auf dramatische, voellig unerwartete Verschiebungen im Florenbestand und im Gesellschaftsaufbau innerhalb von nur 15 Jahren hin: Zwar stieg die Artenzahl von rund 170 (1975) auf knapp 200 (1990) an, doch spiegeln sich darin vor allem negative Biotopveraenderungen wider (zB Zunahme von Trockniszeigern, Stickstoffzeigern und Salzzeigern). Auf Gesellschaftsebene ergab sich ein aehnliches Bild. Auch hier darf der zahlenmaessige Anstieg deutlich unterscheidbarer Gefaesspflanzengemeinschaften (1975: 18, 1990: 21) nicht ueber negative Entwicklungstendenzen hinwegtaeuschen (zB ernsthafte Gefaehrdung der seltenen Seekannengesellschaften und des Wasserschwadenroehrichts). Als Gruende dafuer wurden ua eine Verschlechterung der Wasser- und Bodenqualitaet durch Ueberweidung, Intensivduengung umliegender Kulturflaechen, Herbizidverschleppung, Abwassereinleitung, Salzfracht des Hauptstroms und nicht zuletzt atmosphaerischer Schadstoffeintrag festgestellt. Im Interesse grossraeumiger Planungen zur Erhaltung und Sicherung, vor allem aber auch einer naturnahen Rueckentwicklung wurden inzwischen auch andere Feuchtbiotope des genannten Schutzgebiets von internationaler Bedeutung in die Erhebungen und Untersuchungen einbezogen.
In bog ecosystems, vegetation controls key processes such as the retention of carbon, water and nutrients. In northern hemispherical bogs, a shift from Sphagnum- to vascular plant-dominated vegetation is often traced back to Climate Change and increased anthropogenic nitrogen deposition and coincides with substantially reduced capacities in carbon, water and nutrient retention. In southern Patagonia, bogs dominated by Sphagnum and vascular plants coexist since millennia under similar environmental settings. Thus, South Patagonian bogs may serve as ideal examples for the long-term effect of vascular plant invasion on carbon, water and nutrient balances of bog ecosystems. The contemporary balances of carbon and water of both a bog dominated by Sphagnum and vascular plants are determined by CO2- H2O and CH4 flux measurements and an estimation of lateral water losses as well as losses via dissolved organic and inorganic carbon compounds. The high time resolution of simultaneous eddy covariance measurements of CO2 and H2O in both bog types and the strong interaction between climatic variables and the physiology of bog plants allow for direct comparisons of carbon and water fluxes during cold, warm, dry, wet, cloudy or sunny periods. By the combination with leaf-scale measurements of gas exchange and fluorescence, plant-physiological controls of photosynthesis and transpiration can be identified. Long-term peat accumulation rates will be determined by carbon density and age-depth profiles including a characterization of peat humification characteristics. A reciprocal transplantation experiment with incorporated shading, liming and labeled N addition treatments is conducted to explore driving factors affecting competition between Sphagnum and vascular plants as well as the interactions between CO2-, CH4-, and water fluxes and decisive plant functional traits affecting key processes for carbon sequestration and nutrient cycling. Decomposition rates and driving below ground processes are analyzed with a litter bag field experiment and an incubation experiment in the laboratory.
Increasing population pressure is leading to unsustainable land use in North Vietnamese highlands and destruction of natural habitats. The resulting loss of biodiversity includes plant genetic resources - both wild (= non-cultivated) species and cultivated landraces - adapted to local conditions, and local knowledge concerning the plants. A particularly important group among endangered plants are the legumes (1) because Southeast Asia is a major centre of genetic diversity for this family, and (2) because the potential contribution of legumes to sustainable land use is, due to their multifunctionality (e.g., soil improvement, human and livestock nutrition), especially high. The project aims to contribute to the conservation and sustainable use of genetic resources of legumes with an integrated approach wherein a series of components are combined: (1) A participatory, indigenous knowledge survey complemented by information from the literature; (2) germplasm collection missions (for ex situ conservation) complemented by field evaluation and seed increase; (3) genetic diversity analysis of selected material by molecular markers; and (4) GIS based analysis of generated data to identify areas of particular genetic diversity as a basis for land area planning and in situ preservation recommendations. Project results are expected to be also applicable to similar highlands in Southeast Asia.
Die auf den 1. Oktober 2008 in Kraft gesetzte revidierte Freisetzungsverordnung (FrSV) weist auch dem Kanton Aargau im Bereich der gebietsfremden Organismen (Neobiota) zahlreiche neue Aufgaben zu. Wir beraten und unterstützen den Kanton dabei, ein Strategiepapier zu entwickeln, das die Leitlinien für den künftigen Umgang mit Neobiota definiert und eine zweckmäßige Organisation sowie die zugehörigen Abläufe festlegt. Ferner werden Sofortmassnahmen vorgeschlagen und die Aktivitäten der kommenden Jahre grob skizziert. Die Neobiota-Strategie des Kantons Aargau bezweckt, schädliche Auswirkungen von gebietsfremden Arten auf die Lebensqualität von Mensch und Tier, die wirtschaftlichen Aktivitäten sowie die Ökosysteme zu minimieren.
Unwetter richten in der Schweiz jährlich Schäden von rund 360 Millionen an (Mittel der Jahre 1972 bis 2007, teuerungsbereinigt). Diese Schäden werden von der WSL, im Auftrag des Bundesamtes für Umwelt BAFU, seit 1972 aufgrund von Zeitungsmeldungen systematisch erfasst und analysiert. Berücksichtigt werden Schäden durch auf natürliche Weise ausgelöste Hochwasser, Murgänge, Rutschungen und (seit 2002) Felsbewegungen. Die vorgeherrschten Witterungsbedingungen werden, wenn möglich, als Ursache ebenfalls aufgenommen. Die Datenbank wird in Bezug auf Ort, Ausmass und Ursache, aber auch im Hinblick auf die zeitliche und räumliche Verteilung der Unwetterereignisse ausgewertet und analysiert. Die Ergebnisse werden jährlich in der Zeitschrift Wasser Energie Luft publiziert. Die Schadensdaten werden öffentlichen Institutionen auf Anfrage zur Verfügung gestellt und dienen somit als breite Informationsbasis für die Gefahrenbeurteilung.
Die landesweite Waldzustandserhebung wird jährlich im bundesweiten Stichprobennetz (16x16 km) und nach einer abgestimmten Methodik durchgeführt. In Thüringen wurde das Stichprobennetz auf 4x4 km verdichtet, um flächenrepräsentative Aussagen für die Hauptbaumarten zu erhalten. Ziel der Waldzustandserhebung ist die langfristige Überwachung des Waldzustandes unter dem Einfluss abiotischer Einflüsse (z.B. Klima/Witterung, Luftschadstoffe) und biotischer Faktoren (z.B. Insektenkalamitäten). Der jährliche Waldzustandsbericht für Thüringen ist unter www.tmil.info zu finden.
In today's biodiversity crisis, there is an urgent need to monitor terrestrial and aquatic species in their natural habitats, especially those that may be endangered, invasive or elusive. Traditional species observation methods, based on acoustic or observational surveys are inefficient, costly and time consuming. On the other hand, DNA is continuously deposited in the environment from natural processes and this environmental DNA (eDNA) allows us to detect species and reconstruct their communities with a high level of sensitivity. These data can be used to obtain occurrence records and to collect more population information in field. Crucially, these data are necessary to inform management agencies about the current state of our biodiversity, and are especially urgent for species that are currently data deficient. The aims of this study are to firstly identify occurrence records from diverse sources (databases, literature) and generate a database of distributional data for species of crustacean and mollusks that are data deficient in Sweden. Secondly, we aim to detect threatened species in Swedish marine, freshwater and terrestrial habitats using novel genomic methods (DNA metabarcoding, ddPCR). Finally, based on the new data, we will run species distribution and population models, to improve information on geographic range and population status for threatened invertebrates. The results will be integrated into current monitoring programmes (e.g. red-listing) and action plans.
Deviant behaviour on various levels of the food supply chain may cause food risks. It entails irregular technological procedures which cause (increased probabilities of) adverse outcomes for buyers and consumers. Besides technological hazards and hitherto unknown health threats, moral hazard and malpractice in food businesses represent an additional source of risk which can be termed 'behavioural food risk'. From a regulatory perspective, adverse outcomes associated with deviance represent negative externalities that are caused by the breaking of rules designed to prevent them. From a rational choice perspective, the probability of malpractice increases with the benefits for its authors. It decreases with the probability of detection and resulting losses. It also decreases with bonds to social norms that protect producers from yielding to economic temptations. The design of mechanisms that reduce behavioural risks and prevent malpractice requires an understanding of why food businesses obey or do not obey the rules. This project aims to contribute to a better understanding of malpractice on the restaurant/retail level through comparative case studies and statistical analyses of food inspection and survey data. Accounting for the complexity of economic behaviour, we will not only look at economic incentives but consider all relevant behavioural determinants, including social context factors.
Subproject 3 will investigate the effect of shifting from continuously flooded rice cropping to crop rotation (including non-flooded systems) and diversified crops on the soil fauna communities and associated ecosystem functions. In both flooded and non-flooded systems, functional groups with a major impact on soil functions will be identified and their response to changing management regimes as well as their re-colonization capability after crop rotation will be quantified. Soil functions corresponding to specific functional groups, i.e. biogenic structural damage of the puddle layer, water loss and nutrient leaching, will be determined by correlating soil fauna data with soil service data of SP4, SP5 and SP7 and with data collected within this subproject (SP3). In addition to the field data acquired directly at the IRRI, microcosm experiments covering the broader range of environmental conditions expected under future climate conditions will be set up to determine the compositional and functional robustness of major components of the local soil fauna. Food webs will be modeled based on the soil animal data available to gain a thorough understanding of i) the factors shaping biological communities in rice cropping systems, and ii) C- and N-flow mediated by soil communities in rice fields. Advanced statistical modeling for quantification of species - environment relationships integrating all data subsets will specify the impact of crop diversification in rice agro-ecosystems on soil biota and on the related ecosystem services.
In recent years science has taken an increased interest in mineralization processes in tropical soils in particular under minimal tillage operations. Plant litter quality and management strongly affect mineralization-nitrification processes in soil and hence the fate of nitrogen in ecosystems and the environment. Plant secondary metabolites like lignin and polyphenols are poorly degradable and interact with proteins (protein binding capacity) and hence protect them from microbial attack. Nitrification, a microbiological process, directly and indirectly influences the efficiency of recovery of N in the vegetation as well as the loss of N (through denitrification and leaching) causing environmental pollution to water bodies and contributes to global warming (e.g. the greenhouse gas N2O is emitted as a by-product of nitrification and denitrification). Nitrifiers comprise a relatively narrow species diversity (at least as known to date) and are generally thought to be sensitive to low soil pH and stress. Despite these properties nitrification occurs in acid tropical soils with high levels of aluminium and manganese. Thus the main objective of the project will be the identification of micro-organisms and mechanisms responsible for mineralization-nitrification processes in acid tropical soils and the influence of long-term litter input of different chemical qualities and minimal tillage options. The project will include the use of stable isotopes (15N, 13C), mass spectrometry, gas chromatography (CO2, N2O), biochemical methods (PLFA) and molecular biology (16s rRNA., PCR, DGGE)
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