38 research outputs found

    Amphibians and plant-protection products: what research and action is needed?

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    Background: The majority of Swiss amphibians are threatened. There is a range of factors which have been discussed as possible causes for their decline, including plant protection products (PPPs). Results: The influence of PPPs on amphibian populations has not yet been studied to any great extent, neither for active ingredients nor for the wetting agents, breakdown products or tank mixtures. A further topic of discussion was how to better protect amphibians by reducing their exposure to PPPs in agricultural fields. Conclusion: Experts at a workshop concluded that further research is needed

    Impact across ecosystem boundaries-Does Bti application change quality and composition of the diet of riparian spiders?

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    Emerging aquatic insects link aquatic and adjacent terrestrial food webs by subsidizing terrestrial predators with high -quality prey. One of the main constituents of aquatic subsidy, the non-biting midges (Chironomidae), showed altered emergence dynamics in response to the mosquito control agent Bacillus thuringiensis var. israelensis (Bti). As riparian spi-ders depend on aquatic subsidy, they may be affected by such changes in prey availability. Thus, we conducted a field study in twelve floodplain pond mesocosms (FPMs), six were treated with Bti (2.88 x 109 ITU/ha, VectoBac WDG) three times, to investigate if the Bti-induced shift in chironomid emergence dynamics is reflected in their nutritional value and in the diet of riparian spiders. We measured the content of proteins, lipids, glycogen, and carbohydrates in emerged Chironomidae, and determined the stable isotope ratios of female Tetragnatha extensa, a web-building spi-der living in the riparian vegetation of the FPMs. We analysed the proportion of aquatic prey in spiders' diet, niche size, and trophic position. While the content of nutrients and thus the prey quality was not significantly altered by Bti, ef-fects on the spiders' diet were observed. The trophic position of T. extensa from Bti-treated FPMs was lower compared to the control while the aquatic proportion was only minimally reduced. We assume that spiders fed more on terrestrial prey but also on other aquatic organisms such as Baetidae, whose emergence was unaffected by Bti. In contrast to the partly predaceous Chironomidae, consumption of aquatic and terrestrial primary consumers potentially explains the observed lower trophic position of spiders from Bti-treated FPMs. As prey organisms vary in their quality the suggested dietary shift could transfer previously observed effects of Bti to riparian spiders conceivably affecting their populations. Our results further support that anthropogenic stressors in aquatic ecosystems may translate to terrestrial predators through aquatic subsidy

    Amphibian population genetics in agricultural landscapes: does viniculture drive the population structuring of the European common frog (Rana temporaria)?

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    Amphibian populations have been declining globally over the past decades. The intensification of agriculture, habitat loss, fragmentation of populations and toxic substances in the environment are considered as driving factors for this decline. Today, about 50% of the area of Germany is used for agriculture and is inhabited by a diverse variety of 20 amphibian species. Of these, 19 are exhibiting declining populations. Due to the protection status of native amphibian species, it is important to evaluate the effect of land use and associated stressors (such as road mortality and pesticide toxicity) on the genetic population structure of amphibians in agricultural landscapes. We investigated the effects of viniculture on the genetic differentiation of European common frog (Rana temporaria) populations in Southern Palatinate (Germany). We analyzed microsatellite data of ten loci from ten breeding pond populations located within viniculture landscape and in the adjacent forest block and compared these results with a previously developed landscape permeability model. We tested for significant correlation of genetic population differentiation and landscape elements, including land use as well as roads and their associated traffic intensity, to explain the genetic structure in the study area. Genetic differentiation among forest populations was significantly lower (median pairwise FST = 0.0041 at 5.39 km to 0.0159 at 9.40 km distance) than between viniculture populations (median pairwise FST = 0.0215 at 2.34 km to 0.0987 at 2.39 km distance). Our analyses rejected isolation by distance based on roads and associated traffic intensity as the sole explanation of the genetic differentiation and suggest that the viniculture landscape has to be considered as a limiting barrier for R. temporaria migration, partially confirming the isolation of breeding ponds predicted by the landscape permeability model. Therefore, arable land may act as a sink habitat, inhibiting genetic exchange and causing genetic differentiation of pond populations in agricultural areas. In viniculture, pesticides could be a driving factor for the observed genetic impoverishment, since pesticides are more frequently applied than any other management measure and can be highly toxic for terrestrial life stages of amphibians

    Pesticide use in banana plantations in Costa Rica-A review of environmental and human exposure, effects and potential risks

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    Biodiversity is declining on a global scale. Especially tropical ecosystems, containing most of the planetary biodiversity, are at risk. Agricultural monocrop systems contribute to this decline as they replace original hab-itats and depend on extensive use of synthetic pesticides that impact ecosystems. In this review we use large-scale banana production for export purposes in Costa Rica as an example for pesticide impacts, as it is in production for over a century and uses pesticides extensively for more than fifty years. We summarise the research on pesticide exposure, effects and risks for aquatic and terrestrial environment, as well as for human health. We show that exposure to pesticides is high and relatively well-studied for aquatic systems and humans, but hardly any data are available for the terrestrial compartment including adjacent non target ecosystems such as rainforest fragments. Ecological effects are demonstrated on an organismic level for various aquatic species and processes but are not available at the population and community level. For human health studies exposure evaluation is crucial and recognised effects include various types of cancer and neurobiological dysfunctions particularly in children. With the many synthetic pesticides involved in banana production, the focus on insecticides, revealing highest aquatic risks, and partly herbicides should be extended to fungicides, which are applied aerially over larger areas. The risk assessment and regulation of pesticides so far relies on temperate models and test species and is therefore likely underestimating the risk of pesticide use in tropical ecosystems, with crops such as banana. We highlight further research approaches to improve risk assessment and, in parallel, urge to follow other strategies to reduce pesticides use and especially hazardous substances

    Improving insect conservation management through insect monitoring and stakeholder involvement

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    In recent years, the decline of insect biodiversity and the imminent loss of provided ecosystem functions and services has received public attention and raised the demand for political action. The complex, multi-causal contributors to insect decline require a broad interdisciplinary and cross-sectoral approach that addresses ecological and social aspects to find sustainable solutions. The project Diversity of Insects in Nature protected Areas (DINA) assesses insect communities in 21 nature reserves in Germany, and considers interactions with plant diversity, pesticide exposure, spatial and climatic factors. The nature reserves border on agricultural land, to investigate impacts on insect diversity. Part of the project is to obtain scientific data from Malaise traps and their surroundings, while another part involves relevant stakeholders to identify opportunities and obstacles to insect diversity conservation. Our results indicate a positive association between insect richness and biomass. Insect richness was negatively related to the number of stationary pesticides (soil and vegetation), pesticides measured in ethanol, the amount of area in agricultural production, and precipitation. Our qualitative survey along with stakeholder interviews show that there is general support for insect conservation, while at the same time the stakeholders expressed the need for more information and data on insect biodiversity, as well as flexible policy options. We conclude that conservation management for insects in protected areas should consider a wider landscape. Local targets of conservation management will have to integrate different stakeholder perspectives. Scientifically informed stakeholder dialogues can mediate conflicts of interests, knowledge, and values to develop mutual conservation scenarios

    A global database of ant species abundances

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    What forces structure ecological assemblages? A key limitation to general insights about assemblage structure is the availability of data that are collected at a small spatial grain (local assemblages) and a large spatial extent (global coverage). Here, we present published and unpublished data from 51, 388 ant abundance and occurrence records of more than 2,693 species and 7,953 morphospecies from local assemblages collected at 4,212 locations around the world. Ants were selected because they are diverse and abundant globally, comprise a large fraction of animal biomass in most terrestrial communities, and are key contributors to a range of ecosystem functions. Data were collected between 1949 and 2014, and include, for each geo-referenced sampling site, both the identity of the ants collected and details of sampling design, habitat type, and degree of disturbance. The aim of compiling this data set was to provide comprehensive species abundance data in order to test relationships between assemblage structure and environmental and biogeographic factors. Data were collected using a variety of standardized methods, such as pitfall and Winkler traps, and will be valuable for studies investigating large-scale forces structuring local assemblages. Understanding such relationships is particularly critical under current rates of global change. We encourage authors holding additional data on systematically collected ant assemblages, especially those in dry and cold, and remote areas, to contact us and contribute their data to this growing data set

    Priority research needs to inform amphibian conservation in the Anthropocene

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    The problem of global amphibian declines has prompted extensive research over the last three decades. Initially, the focus was on identifying and characterizing the extent of the problem, but more recently efforts have shifted to evidence‐based research designed to identify best solutions and to improve conservation outcomes. Despite extensive accumulation of knowledge on amphibian declines, there remain knowledge gaps and disconnects between science and action that hamper our ability to advance conservation efforts. Using input from participants at the ninth World Congress of Herpetology, a U.S. Geological Survey Powell Center symposium, amphibian on‐line forums for discussion, the International Union for Conservation of Nature Assisted Reproductive Technologies and Gamete Biobanking group, and respondents to a survey, we developed a list of 25 priority research questions for amphibian conservation at this stage of the Anthropocene. We identified amphibian conservation research priorities while accounting for expected tradeoffs in geographic scope, costs, and the taxonomic breadth of research needs. We aimed to solicit views from individuals rather than organizations while acknowledging inequities in participation. Emerging research priorities (i.e., those under‐represented in recently published amphibian conservation literature) were identified, and included the effects of climate change, community‐level (rather than single species‐level) drivers of declines, methodological improvements for research and monitoring, genomics, and effects of land‐use change. Improved inclusion of under‐represented members of the amphibian conservation community was also identified as a priority. These research needs represent critical knowledge gaps for amphibian conservation although filling these gaps may not be necessary for many conservation actions

    Die Ameisen der Laubstreu tropischer Tieflandregenwälder in Sabah, Malaysia

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    Large parts of the tropical lowland rain forests of Sabah (Malaysia) were transformed into secondary forests due to heavy logging. Additionally the remaining forest remnants are isolated from each other by large scale oil palm plantations. Biodiversity patterns and responses of the community of leaf litter ants were studied in anthropogenically disturbed habitats and primary forests of different size. In logged over forests, only 70 per cent of the species of a primary forest were present even 25 years after timber extraction. The ant communities were thinned and could be described by a lower species density producing lower species numbers and a different community composition. The similarity in species number and community composition between logged over forests of different degrees of disturbance was explained by source-sink dynamics within a heterogeneous forest matrix. Rain forest fragments displayed even higher reductions in species density, numbers and diversity due to a more pronounced thinning effect. Even forest isolates exceeding 4 000 ha in size did not support more than 50 per cent of the species of the leaf litter ant community of a contiguous primary rain forest. Additionally, an increase in tramp species was recorded with decreasing size of the forest fragments, leading to a very different community composition. Regarding the leaf litter ant community, the remaining rain forest fragments of Sabah are effectively isolated by a barrier of oil palm plantation, now stretching all over the lowlands of the east coast. Only 13 species, which belonged to the forest ant community in highly disturbed areas were collected in these plantations. Some of the 10 other species of the highly reduced ground-dwelling ant community in the plantations are known as invasive tramp species, forming large exclusive territories. Correlative evidence and a field experiment implied, that leaf litter humidity, volume and temperature affect the distribution and community composition of forest leaf litter ant species. The smaller primary forests and the most disturbed logged over forests in this study revealed higher temperatures and lower humidity levels and a reduction in leaf litter volume compared to a large primary forest or forests affected by a lower impact of timber harvesting. If the pattern for leaf litter ants is confirmed for other taxa, the implications for any efficient management design aiming to preserve the majority of the biodiversity of the country are tremendous and current concepts need rethinking.Große Teile der tropischen Tieflandregenwälder Sabahs (Malaysia) wurden infolge intensiver holzwirtschaftlicher Nutzung in sogenannte Sekundärwälder mit z. T. stark veränderter Standstruktur umgewandelt. Zudem sind durch die Umwandlung großer Flächen in Ölpalmenplantagen verbliebene Primärwaldreste isoliert. Biodiversitätsmuster und gemeinschaftsökologische Reaktionen in den anthropogen veränderten Habitaten wurden an Hand der Ameisen der Laubstreu untersucht. In holzwirtschaftlich genutzten Wäldern waren selbst 25 Jahre nach vorhergegangenem selektivem Holzeinschlag nur noch 70 Prozent der Ameisenarten der Laubstreu eines Primärwaldes vorhanden. Die Ameisengemeinschaften waren ausgedünnt und zeichneten sich durch eine niedrige Artendichte pro Fläche aus. In verschieden stark eingeschlagene Wäldern zeigten die Zönosen große Ähnlichkeiten die durch eine Source-sink-Dynamik innerhalb des heterogenen Waldbestandes erklärt werden kann. Isolierte Regenwaldfragmente zeigten eine noch stärkere Reduktion in Artendichte, -zahl und -diversität als durch Holzeinschlag hervorgerufen wurde. Auch in Wäldern, die eine Größe von 4000 ha überschritten, konnten nicht mehr als 50 Prozent der Laubstreuameisenarten eines zusammenhängenden Primärwaldes nachgewiesen werden. Zusätzlich wurde eine Zunahme von invasiven Arten mit kleiner werdender Fragmentgröße verzeichnet. Die verbleibenden Regenwaldfragmente in Sabah sind für bodenbewohnende Waldameisen durch eine Barriere von Ölpalmenplantagen, die sich über das ganze Tiefland der Ostküste hinziehen, effektiv isoliert. Nur 13 Arten, die der Ameisengemeinschaft des Waldbodens zugerechnet werden, konnten in diesen Plantagen nachgewiesen werden. Invasive Arten konnten große, exklusive Territorien etablieren. Korrelative Nachweise und ein Frailandexperiment implizierten, dass Feuchte, Volumen und Temperatur der Laubstreu die Verteilung und Gemeinschaftszusammensetzung der bodenbewohnenden Ameisen beinflussen. Die kleineren Primärwälder und die am stärksten gestörten, eingeschlagenen Wälder in dieser Untersuchung zeigten verglichen mit einem großen zusammenhängenden Primärwald oder Wäldern, die von einem weniger starken Holzeinschlag betroffen waren, höhere Temperaturen und eine Verringerung des Feuchtigkeitsniveaus und Laubstreuvolumens zusammen mit reduzierten Artenzahlen. Mit der schnell voranschreitenden und äußerst destruktiven Veränderung eines der ältesten Regenwälder der Erde und einer erkannten und eingestandenen Biodiversitätskrise sind weitere Studien in verschiedenen Tiergruppen in den verbleibenden Waldfragmenten Sabahs dringenst geboten. Falls das vorliegende Muster der Ameisen der Laubstreu auch in anderen Gruppen bestätigt wird, sind die Auswirkungen auf jedes bestehende Managementprogramm, das darauf hinarbeitet, den Großteil der Biodiversität des Landes zu erhalten, besorgniserregend und ein rasches Überdenken bisheriger Konzepte ist gefordert. Basierend auf den Ergebnissen dieser Untersuchung erscheint es für Naturschutzbemühungen vernünftig, sich auf Primärwaldfragmente in schon eingeschlagenen Wäldern zu konzentrieren und eine Verbindung von isolierten Waldinseln anzustreben. Es wäre sicher auch lohnend, die Größe eine Fragments in die Planung von Schutzmaßnahmen mit einzubeziehen, und nicht nur den strukturellen Zustand des Waldes. Die Etablierung neuer, großflächiger Ölpalmenplantagen, die einen Verlust von 95 Prozent der bodenbewohnenden Waldameisengemeinschaft zur Folge hätte, ist scharf zu überdenken, besonders aufgrund des zudem stark gefallenen Marktpreises für Palmöl. Die vorliegende und viele andere Studien zeigen, dass anthropogene Störung und Fragmentation von tropischen Wäldern einen oft hohen Verlust der Artenvielfalt nach sich ziehen. Ein anderes Ergebnis dieser Arbeit ist die Ausdünnung der Ameisengemeinschaft und eine Verringerung der Artendichte. Es schließt sich die Frage an, inwieweit dieser Artenschwund und eine geringere Dichte die Funktion der gesamten Gruppe innerhalb des Ökosystems beeinflussen und dadurch Steuerungsprozesse innerhalb des Nährstoffkreislaufs verlangsamen und wichtige Abläufe für die Erhaltung der Bodenfruchtbarkeit stören
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