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Increasing plant species richness often increases biomass production in nutrient-poor semi-natural grasslands. If such positive diversity-productivity...
Read moreEcological intensification has been proposed as a strategy to mitigate the impacts of conventional intensive land use on pollinators and insect pollin...
Read moreThis paper quantifies and assesses the past and projected future spatial and temporal water balances in the Koshi River Basin. A Soil and Water Assess...
Read moreComplementarity (CE) and selection effects (SE) have been either invoked to explain the positive diversity-productivity relationship in natural and se...
Read moreThe current study presents the farmer and community perceptions of the causes and effects of climate change, the barriers to adoption of the resilient...
Read moreTropical peat swamp forests retain large carbon stocks and support unique biodiversity, but clearance and drainage for agriculture have resulted in fi...
Read morePeriodically harvested closures are a widespread, centuries-old form of fisheries management that protects fish between pulse harvests and can generat...
Read moreAnimal pollination is important for more than 75% of agricultural crops, including coffee, whose productivity can increase with adequate pollination. ...
Read moreThe long-term sustainability of human water consumption is being challenged by climate change, population growth, socioeconomic development and intens...
Read moreenThis link goes to a English sectionptThis link goes to a English section Agricultural expansion is one of the main drivers of global pollinator loss...
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