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14 results for “Landscape Simplification”

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dryad40/100

Agricultural landscape simplification affects wild plant fitness indirectly through herbivore-mediated changes in floral display

<p>As natural landscapes are modified and converted into simplified agricultural landscapes, the community composition and interactions of organisms persisting in these modified landscapes are altered. While many studies examine the consequences of these changing interactions for crops, few have evaluated the effects on wild plants. Here, we examine how pollinator and herbivore interactions affect fitness for wild resident and phytometer plants at sites along a landscape gradient ranging from natural to highly simplified. We tested the direct and indirect effects of landscape composition on plant traits and fitness mediated by insect interactions. For phytometer plants exposed to herbivores, we found that greater landscape complexity corresponded with elevated herbivore damage, which reduced total flower production but increased individual flower size. Though larger flowers increased pollination, the reduction in flowers ultimately reduced plant fitness. Herbivory was also higher in complex landscapes for resident plants, but overall damage was low and therefore did not have a cascading effect on floral display and fitness. This work highlights that landscape composition directly affects patterns of herbivory with cascading effects on pollination and wild plant fitness. Further, the absence of fitness consequences for resident plants suggests that they may be adapted to their local insect community. </p>

opencc-zeroJul 2024View details →
zenodo40/100

Rural Landscape Simplification and Provision of Cultural Ecosystem Services. A Case Study in the Argentine Pampas

<p>This supplementary material consists of the <strong>survey questionnaire</strong> and the <strong>data set </strong>that gave rise to the article: <em>Rural Landscape Simplification and Provision of Cultural Ecosystem Services. A Case Study in the Argentine Pampas </em>publicado en el journal&nbsp;EARN Econom&iacute;a Agraria y Recursos Naturales. Agricultural and Resource Economics&nbsp;<a href="https://economiaagroalimentaria.es/en/earn-journal/">https://economiaagroalimentaria.es/en/earn-journal/</a></p> <p><a href="https://doi.org/10.7201/earn.2023.01.01">DOI: https://doi.org/10.7201/earn.2023.01.01</a></p> <p><em>.</em></p> <p>&nbsp;</p>

opencc-by-4.0May 2023View details →
dryad40/100

Agricultural landscape simplification affects wild plant fitness indirectly through herbivore-mediated changes in floral display

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publicJul 2024View details →
dryad36/100

Landscape simplification leads to loss of plant-pollinator interaction diversity and flower visitation frequency despite buffering by abundant generalist pollinators

<p>Global change, especially landscape simplification, is a main driver of species loss that can alter ecological interaction networks, with potentially severe consequences to ecosystem functions. Therefore, understanding how landscape simplification affects the rate of loss of plant-pollinator interaction diversity (i.e., number of unique interactions) compared to species diversity alone, and the role of persisting abundant pollinators, is key to assess the consequences of landscape simplification on network stability and pollination services. We analysed 24 landscape-scale plant-pollinator networks from standardised transect walks along landscape simplification gradients in three countries. We compared the rates of species and interaction diversity loss along the landscape simplification gradient and then stepwise excluded the top 1-20% most abundant pollinators from the data set to evaluate their effect on interaction diversity, network robustness to secondary loss of species, and flower visitation frequencies in simplified landscapes. Interaction diversity was not more vulnerable than species diversity to landscape simplification, with pollinator and interaction diversity showing similar rates of erosion with landscape simplification. We found that 20% of both species and interactions are lost with an increase of arable crop cover from 30 to 80% in a landscape. The decrease in interaction diversity was partially buffered by persistent abundant generalist pollinators in simplified landscapes, which were nested subsets of pollinator communities in complex landscapes, while plants showed a high turnover in interactions across landscapes. The top 5% most abundant pollinator species also contributed to network robustness against secondary species loss, but could not prevent flowers from a loss of visits in simplified landscapes. Although persistent abundant pollinators buffered the decrease in interaction diversity in simplified landscapes and stabilised network robustness, flower visitation frequency was reduced, emphasising potentially severe consequences of further ongoing land-use change for pollination services.</p>

opencc-zeroApr 2024View details →
dryad36/100

Landscape simplification increases vineyard pest outbreaks and insecticide use

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publicApr 2021View details →
dryad36/100

Landscape simplification leads to loss of plant-pollinator interaction diversity and flower visitation frequency despite buffering by abundant generalist pollinators

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publicApr 2024View details →
dryad32/100

Data from: Landscape simplification reduces classical biological control and crop yield

Agricultural intensification resulting in the simplification of agricultural landscapes is known to negatively impact the delivery of key ecosystem services such as the biological control of crop pests. Both conservation and classical biological control may be influenced by the landscape context in which they are deployed; yet studies examining the role of landscape structure in the establishment and success of introduced natural enemies and their interactions with native communities are lacking. In this study, we investigated the relationship between landscape simplification, classical and conservation biological control services and importantly, the outcome of these interactions for crop yield. We showed that agricultural simplification at the landscape scale is associated with an overall reduction in parasitism rates of crop pests. Additionally, only introduced parasitoids were identified, and no native parasitoids were found in crop habitat irrespective of agricultural landscape simplification. Pest densities in the crop were lower in landscapes with greater proportions of semi natural habitats. Furthermore, farms with less semi-natural cover in the landscape and consequently, higher pest numbers, had lower yields than farms in less agriculturally dominated landscapes. Our study demonstrates the importance of landscape scale agricultural simplification in mediating the success of biological control programs and highlights the potential risks to native natural enemies in classical biological control programs against native insects. Our results represent an important contribution to an understanding of the landscape-mediated impacts on crop yield which will be essential to implementing effective policies that simultaneously conserve biodiversity and ecosystem services.

opencc-zeroDec 2016View details →
dryad32/100

Data from: Landscape simplification shapes pathogen prevalence in plant-pollinator networks

Species interaction networks, which play an important role in determining pathogen transmission and spread in ecological communities, can shift in response to agricultural landscape simplification. However, we know surprisingly little about how landscape simplification-driven changes in network structure impact epidemiological patterns. Here, we combine mathematical modeling and data from eleven bipartite plant-pollinator networks observed along a landscape simplification gradient to elucidate how changes in network structure shape disease dynamics. Our empirical data show that landscape simplification reduces pathogen prevalence in bee communities via increased diet breadth of the dominant species. Furthermore, our empirical data and theoretical model indicate that increased connectance reduces the likelihood of a disease outbreak and decreases variance in prevalence among bee species in the community, resulting in a dilution effect. Because infectious diseases are implicated in pollinator declines worldwide, a better understanding of how land use change impacts species interactions is therefore critical for conserving pollinator health.

opencc-zeroApr 2020View details →
dryad32/100

Data from: Habitat enhancements rescue bee body size from the negative effects of landscape simplification

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publicJul 2019View details →
dryad32/100

Data from: Landscape simplification shapes pathogen prevalence in plant-pollinator networks

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publicApr 2020View details →
dryad32/100

Data from: Landscape simplification reduces classical biological control and crop yield

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publicOct 2017View details →
dryad28/100

Data from: Conservation tillage mitigates the negative effect of landscape simplification on biological control

Biological pest control is a key ecosystem service, and it depends on multiple factors acting from the local to the landscape scale. However, the effects of soil management on biological control and its potential interaction with landscape are still poorly understood. In a field exclusion experiment, we explored the relative effect of tillage system (conservation vs. conventional tillage) on aphid biological control in 15 pairs of winter cereal fields (barley and wheat) selected along a gradient of landscape complexity. We sampled the abundance of the main natural enemy guilds, and we evaluated their relative contribution to aphid predation and parasitism. Conservation tillage was found to support more abundant predator communities and higher aphid predation (16% higher than in the fields managed under conventional tillage). In particular, both the abundance and the aphid predation of vegetation- and ground-dwelling arthropods were increased under conservation tillage conditions. Conservation tillage also increased the parasitism rate of aphids. A high proportion of semi-natural habitats in the landscape enhanced both aphid parasitism and predation by vegetation-dwelling organisms but only in the fields managed under conventional tillage. The better local habitat quality provided by conservation tillage may compensate for a low-quality landscape. Synthesis and applications. Our study stresses the importance of considering both soil management and landscape composition when planning strategies to maximize biological control services in agro-ecosystems, highlighting the role played by conservation tillage in supporting natural enemy communities. In simple landscapes, the adoption of conservation tillage will locally improve biological control provided by both predators and parasitoids mitigating the negative effects of landscape simplification. Moreover, considering the small scale at which both predation and parasitism responded to landscape composition, a successful strategy to improve biological control would be to establish a fine mosaic of crop and non-crop areas such as hedgerows, tree lines and small semi-natural habitat patches.

opencc-zeroDec 2014View details →
dryad28/100

Data from: Conservation tillage mitigates the negative effect of landscape simplification on biological control

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publicSep 2016View details →
dryad24/100

Data from: Resilience of ecosystem processes: a new approach shows that functional redundancy of biological control services is reduced by landscape simplification

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publicJul 2019View details →

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International Brain Laboratory public data

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Last verified 2026-04-29Open record