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Rehabilitation of Forest-Savannas in Ghana: The Impacts of Land Use, Shade, and Invasive Species on Tree Recruitment

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This study investigates the varying potential of soil seed banks of predominant agricultural land uses for the recruitment of trees from seeds and seedlings in 3 farming communities in a forest-savanna ecological zone in Ghana.

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Understory Vegetation in Fast-Growing Tree Plantations on Savanna Soils in Congo

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The study investigates the hypothesis that tree plantations established adjacent to natural forests may catalyze the regeneration of natural forest biodiversity in the Congo.

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Exploiting the Potential of Indigenous Agroforestry Trees: Parkia biglobosa and Vitellaria paradoxa in Sub-Saharan Africa

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This article reviews the agroforestry potential of two native African savanna trees, Parkia biglobosa (locust bean) and Vitellaria paradoxa (shea).

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Differential Seedling Establishment of Woody Plants along a Tree Density Gradient in Neotropical Savannas

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Formations boisées et savanes africaines: opportunités et potentialités de la REDD+ (Wooded formations and African savannas: opportunities and potential of REDD+)

The authors provide an overview of the REDD+ program and deforestation in Africa. They addressed limitations fo REDD+ and noted that because each community is different, each project must be tailored to the individual needs of communities.

 

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Árboles para Palmira. Especies que fortalecen la Estructura Ecológica Principal (Trees for Palmira. Species that strengthen the ecological structure)

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El artículo forma parte de la investigación Fortalecimiento de la Estructura Ecológica Principal a partir de la identificación y selección de especies para la arborización urbana, que se lleva a cabo en siete ciudades colombianas.

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Árboles para Neiva. Especies que fortalecen la Estructura Ecológica Principal (Trees for Neiva. Species that strengthen the ecological structure)

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antecedentes

El artículo forma parte de la investigación Fortalecimiento de la Estructura Ecológica Principal a partir de la identificación y selección de especies para la arborización urbana, que se lleva a cabo en siete ciudades de Colombia.

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Árboles para Cúcuta. Especies que fortalecen la Estructura Ecológica Principal (Trees for Cucuta. Species that strengthen the ecological structure)

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antecedentes

El artículo forma parte de la investigación Fortalecimiento de la Estructura Ecológica Principal a partir de la identificación y selección de especies para la arborización urbana, que se lleva a cabo en siete ciudades de Colombia.

Open access copy available

Dominant species' resprout biomass dynamics after cutting in the Sudanian savanna-woodlands of West Africa: long term effects of annual early fire and grazing

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Given widespread anthropogenic disturbance and land degradation across the Sudanian savanna-woodlands of West Africa, these researchers examined the impacts of early annual fire and grazing on 6 dominant plant species in terms of: shoot mortality, height and girth. Though rather unoriginally, they hypothesized that forest biomass reconstitution is affected by disturbances such as fire and grazing. 

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The Effects of Prescribed Dry Season Burning on Woody Species Composition, Mole National Park, Ghana

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Savannas are valuable ecological communities that support many species and are known to be heavily shaped by fire disturbances. Fire is a recognized tool for controlling excess fuel and improving habitat. However, it is thought that the timing and frequency of fire prescriptions may impact characteristics of savanna growth and composition.

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Frugivory and seed dispersal in the Cerrado: Network structure and defaunation effects

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Seed dispersal is an important process for ecosystem functioning. The Brazilian Cerrado, the world’s largest and most biodiverse savanna, contains a plethora of animal dispersed plant woody plant species. The Cerrado region is understudied and identifying species roles in ecosystem networks needs to be better understood for evolutionary and conservation purposes.

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Calibrating Nepal’s scientific forest management practices in the measure of forest restoration

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Goals and Methods

 

Conclusions and Takeaways

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Tropical Rainforest Restoration Plantations Are Slow to Restore the Soil Biological and Organic Carbon Characteristics of Old Growth Rainforest

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With widespread deforestation and land conversion posing significant threats to biodiversity and carbon sequestration, there is an urgent need to comprehend the intricate relationship between land use change, soil microbial communities, and soil organic carbon dynamics in tropical rainforest ecosystems.

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The effect of ecological restoration methods on carbon stocks in the Brazilian Atlantic Forest

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There is a critical need for effective ecological restoration strategies in the Brazilian Atlantic Forest, one of the most threatened biodiversity hotspots globally, with extensive areas degraded due to human activities such as deforestation and land use change. Especifically, to understanding how different restoration methods impact carbon sequestration in this ecosystem and promote the recovery of this vital ecosystem. 

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Carbon loss and removal due to forest disturbance and regeneration in the Amazon

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Silvicultural opportunities for increasing carbon stock in restoration of Atlantic forests in Brazil

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Maximizing biodiversity conservation and carbon stocking inrestored tropical forests

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Ecological restoration plays a critical role in fragmented mega-diverse regions, particularly for endangered species with low dispersal rates. Species with impoverished populations, limited dispersal capacity, and important functionsas food resources for animals should be prioritized for active reintroduction in order to increase the conservation value ofrestored forests. However, seedlings from these species are often hard to find or too costly to include in many restoration projects.

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Large carbon sink potential of secondary forests in the Brazilian Amazon to mitigate climate change

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The carbon sink of secondary and degraded humid tropical forests

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The Forest and Land use Declaration from the 26th Climate Change Conference of the Parties underscores the crucial role of tropical moist forests  as a nature-based solution to address climate and ecological emergencies. However, the Amazon, Borneo, and Central Africa forests experience ongoing forest cover losses due to various anthropogenic drivers. This has led to a mosaic of recovering forests at different stages post-disturbance, with limited understanding of their impact on forest carbon dynamics. 

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