Restoration and Management Strategies

Protocolo: Mantenimiento y Fertilización de Parcelas de Reforestación

Background:

Como parte del trabajo de investigación que viene desarrollando el Centro de Innovación Científica Amazónica (CINCIA), se ha realizado la instalación de parcelas experimentales de reforestación en áreas degradadas por actividad minera en Madre de Dios.

As part of the research work being carried out by the Center for Amazonian Scientific Innovation (CINCIA), experimental reforestation plots have been installed in areas degraded by mining activity in Madre de Dios.

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Higher Fire Frequency Impaired Woody Species Regeneration in a South-Eastern Amazonian Forest

Background:

The more and more common forest fires in the Amazon rainforest, caused after fire escape from pasture or deforested lands, cause unpredictable changes to the forest structure. Therefore, it is essential to assess the resilience of these ecosystems after being impacted by fire events and the likelihood of maintaining forest tree species and not being replaced by savanna species.

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Lowland Tapirs Facilitate Seed Dispersal in Degraded Amazonian Forests

Background:

During their first decades of growth, secondary tropical forests have the potential to accumulate significative more carbon than old-growth stands. Nevertheless, recovering degraded forests' habitats could be an expensive task to achieve. In this context, natural regeneration processes, such as seed dispersal by herbivorous animals, offer a cost-effective tool to recover degraded forests, although this role remains largely unexplored.

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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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Patterns and controls on island-wide aboveground biomass accumulation in second-growth forests of Puerto Rico

Background

Secondary or second-growth forests after land abandonment are a valuable contribution to global carbon sinks. Approximately 70% of the world’s tropical forests are secondary growth, so understanding the carbon sequestration rates on a large scale is important. Sequestration rates are controlled by both abiotic and biotic factors in each region.

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Aboveground carbon responses to experimental and natural hurricane impacts in a subtropical wet forest in Puerto Rico

Background

Carbon sequestration is a major climate mitigating process. Tropical forests in particular sequester high amounts of carbon, however disturbance events such as storms can alter the ability of forests to sequester more carbon. Hurricanes create forest gaps and increase ground debris which both provide resources that may promote plant recruitment and growth.

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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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Tree diversity in a tropical agricultural‑forest mosaic landscape in Honduras

Background

Tropical forests hold high biodiversity values, but are also valued for agricultural land uses. Particularly in Central America, a region with particularly high biodiversity, intensive land management practices have reduced and continue to reduce forest and species abundance. There is a push to change land use practices in order to restore and promote biodiversity, though the potential for biodiversity on agricultural landscapes is an understudied subject.

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Soil Biological Activity, Carbon and Nitrogen Dynamics in Modified Coffee Agroforestry Systems in Mexico

Background

Coffee agroforestry systems bring a plethora of economic, social, and ecological benefits. Specifically, they aid soil biological activity. In Mexico, due to cost and production challenges, coffee is being replaced by avocado plantations. The impact of coffee agroforestry systems on specific soil biological characteristics and processes is not fully understood. Nor are the impacts of avocado plantations on soil biological activity.

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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.

Open access copy available
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