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Post-fire ecological restoration in Latin American forest ecosystems: Insights and lessons from the last two decades

Background

Forests make up a significant portion of the earth’s aboveground biodiversity. Human-caused wildfires are a main driver of forest loss across Latin America and the Caribbean. The authors review literature to understand the causes of fires and strategies of post-fire restoration. They focus their search on more recent literature within the last two decades in order to highlight the most advanced methods. The authors also search for gaps in knowledge or application of fire restoration practices that may be hindering progress.

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How are biodiversity and carbon stock recovered during tropical forest restoration? Supporting the ecological paradigms and political context involved

Background

Ecological restoration is a tool for achieving global environmental agendas and climate mitigation. There are many studies on the restoration of ecosystem biodiversity, as well as on the restoration of ecosystem functioning. The relationship between these two ecological features is not yet clearly known beyond a positive correlation between the two. The authors conduct this meta-analysis to explore the relationship between biodiversity and ecosystem functioning in the context of ecological restoration.

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A standard framework for assessing the costs and benefits of restoration: introducing The Economics of Ecosystem Restoration

Background

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Tropical forest restoration under future climate change

Background

Climate change mitigation requires a large amount of carbon sequestration from the atmosphere. One major avenue for accomplishing this is looking to tropical forests. These ecosystems are heavy carbon sinks and bring a multitude of benefits to people and the planet. However, these ecosystems are frequently degraded and forest restoration projects may be hindered in the future due to altered fire regimes, extreme heat or drought, and other characteristics of severe climate change.

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The Embedded Agroecology of Coffee Agroforestry: A Contextualized Review of Smallholder Farmers’ Adoption and Resistance

Background

Agroforestry crops are known to provide many benefits to both people and nature. Implementing agroforestry practices can be complex and requires improvement in certain regions and practices. Coffee agroforestry is not widely adopted and there is a lack of knowledge about the implementation of agroforestry techniques for coffee production.

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Shaded-Coffee: A Nature-Based Strategy for Coffee Production Under Climate Change? A Review

Background

Coffee agroforestry systems are a natural climate solution that are used to reduce the impact of coffee cultivation on ecosystem health. Coffee generates over $200 billion in income globally each year, so ensuring the efficiency and success of cultivation is crucial for human livelihood. Coffee agroforestry systems are often variable, and there lacks a compiled knowledge base about these systems and practices.

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Optimal restoration for pollination services increases forest cover while doubling agricultural profits

Background

In the midst of a global biodiversity crisis and a rapidly expanding food demand, improving agricultural techniques is a high priority. Pollinators are at the forefront of this restoration goal partially due to their rapid decline in population, and also their crucial role in food production. 75% of globally common food depends on pollinators. Though improving agriculture is important, it is also expensive and risky for land owners. A framework is needed to determine best arrangements and practices for sustainable agriculture.

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Restoration of plant-animal interactions in terrestrial ecosystems

Background

Plant-animal interactions are understudied within ecosystem restoration contexts. They are crucial to restoration success, with valuable processes like pollination, seed dispersal, and herbivory. The potential of animal reintroductions in restoration practices is understudied as well. Understanding these interactions is an important piece for future restoration efforts.

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Plant Respiration in a Warmer World

Background:

It has been estimated that, globally, plants release 60 gigatons of CO2 during the respiration process. Many studies have shown that an increase in global temperature will increase leaves respiration rates, which in turn will decrease carbon uptake and increase atmospheric CO2 concentration (contributing even more to higher global temperature).

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Mapping carbon accumulation potential from global natural forest regrowth

Background:

The authors note that previous studies have estimated the potential for carbon sequestration through afforestation and reforestation, but there has been less focus on the potential for natural forest regrowth. They also highlight the need for more accurate estimates of carbon accumulation rates in regrowing natural forests, as well as a better understanding of the factors that influence these rates.

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Forest Health and Global Change

Background:

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Primates Can Be a Rallying Symbol to Promote Tropical Forest Restoration

Background:

In the face of increasing threats such as deforestation, habitat loss, and climate change, the authors aim to provide a comprehensive overview of the potential of primates as a rallying symbol for promoting tropical forest restoration, taking into account the interactions between primates, their habitats, and human communities.

Goals:

The authors aim to:

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Global restoration opportunities in tropical rainforest landscape

Background:

The identification of restoration opportunities, focusing on areas with both high potential for socioenvironmental benefits and feasibility for restoration, emerges as a crucial tool in meeting the ambitious restoration commitments set for the near future. Recognizing these opportunities can be integrated with other decision-making factors to establish priorities for the implementation and financing of the global restoration agenda.

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Ecological filtering shapes the impacts of agricultural deforestation on biodiversity

Background:

Deforestation for agriculture poses a significant threat to biodiversity. However, the severity of these impacts varies in agricultural landscapes. This study emphasizes the need to understand the factors underlying this variation to predict future biodiversity impacts of agricultural land use. While previous studies focused on landscape features and management regimes, this article introduces the concept of filtering, suggesting that natural and anthropogenic filtering may shape biodiversity responses at large geographical scales

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Understanding the importance of primary tropical forest protection as a mitigation strategy

Background:

Primary tropical forests play a key role in the urgent task of mitigating climate change. Nevertheless, despite the recognition of forest-based mitigation strategies, the role of primary forest protection has not been explicitly considered in international policy negotiations. The authors aim to address this deficit by estimating primary tropical forest ecosystem carbon stocks and flows.

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