CIFOR-ICRAF aborda retos y oportunidades locales y, al mismo tiempo, ofrece soluciones a los problemas globales relacionados con los bosques, los paisajes, las personas y el planeta.

Aportamos evidencia empírica y soluciones prácticas para transformar el uso de la tierra y la producción de alimentos: conservando y restaurando ecosistemas, respondiendo a las crisis globales del clima, la malnutrición, la pérdida de biodiversidad y la desertificación. En resumen, mejorando la vida de las personas.

CIFOR-ICRAF produce cada año más de 750 publicaciones sobre agroforestería, bosques y cambio climático, restauración de paisajes, derechos, políticas forestales y mucho más, y en varios idiomas. .

CIFOR-ICRAF aborda retos y oportunidades locales y, al mismo tiempo, ofrece soluciones a los problemas globales relacionados con los bosques, los paisajes, las personas y el planeta.

Aportamos evidencia empírica y soluciones prácticas para transformar el uso de la tierra y la producción de alimentos: conservando y restaurando ecosistemas, respondiendo a las crisis globales del clima, la malnutrición, la pérdida de biodiversidad y la desertificación. En resumen, mejorando la vida de las personas.

CIFOR–ICRAF publishes over 750 publications every year on agroforestry, forests and climate change, landscape restoration, rights, forest policy and much more – in multiple languages.

CIFOR–ICRAF addresses local challenges and opportunities while providing solutions to global problems for forests, landscapes, people and the planet.

We deliver actionable evidence and solutions to transform how land is used and how food is produced: conserving and restoring ecosystems, responding to the global climate, malnutrition, biodiversity and desertification crises. In short, improving people’s lives.

Restoring plant succession on degraded crusted soils in Niger: a case study using half moons, tree seedlings and grass seed

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We assessed a restoration treatment (planting tree seedlings and sowing grass seeds as nurse plants in water-harvesting half-moon pits) on degraded, compacted soils with surface crusts in Niger. Height and above-ground biomass of herbaceous plant species, tree stem circumference, and relative cover of erosive crust, gravel crust, bare ground, rock, litter, and total vascular plants were assessed at three sites with similar environmental conditions but different treatment periods (3, 5, 7 years). Species richness, evenness and Shannon-Weaver index were lowest at the 7-year site and highest at the 5-year site. Above-ground biomass of herbaceous plants and percent plant cover were lowest at the 3-year site and highest at the 7-year site. Principal components analysis revealed the change in vegetation from 3 to 7 years and spatial heterogeneity in vegetation within sites. Multi-response permutation procedures showed significant variation in species composition between the sites. Redundancy analysis showed that the temporal changes in vegetation, herbaceous plant height and litter cover were associated with a decrease in cover of erosive and gravel crusts, bare ground and rock. The 3-year and 5-year sites were dominated by annual plants, herbaceous perennials and small shrubs, while the 7-year site was dominated by annual plants and trees.

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