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Seedling Production Methods of Dipterocarps

BACKGROUND

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Experience with Planting Dipterocarps in Peninsular Malaysia

Background

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Reforestation Experiences with Dipterocarp Species on Grassland

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Performance of 45 Native Tree Species on Degraded Lands in Singapore

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This paper evaluates research on the reforestation potential of 45 native tree species in Singapore, with a specific focus on identifying species that can quickly form a closed canopy.

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Growth Increments of Indigenous Species Planted in Secondary Forest Area

Background

Appropriate species selection for reforestation of degraded lands in the tropics makes a great difference in survival rates and success in establishing secondary forest. Indigenous species used in reforestation are not always able to survive in their native landscapes based on the degree of site degradation. This paper reports on growth increments of five tree species indigenous to Malaysia five years after planting.

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Rehabilitation of Tropical Rainforests Based on Indigenous Species for Degraded Areas in Sarawak, Malaysia

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This study describes the success of native species planted in areas of abandoned shifting cultivation in Sarawak, Malaysia.

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Rehabilitation of Degraded Forest with Shorea leprosula and S. selanica Cuttings

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This article describes limits to dipterocarp-based reforestation due to irregular flowering pattern, short seed storage period, and uncertain planting techniques in Southeast Asia. In West Java, Indonesia, the authors test the effectiveness of vegetative propagation for two species of fast-growing dipterocarps: Shorea leprosula and Shorea selanica.

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The Sabah Biodiversity Experiment: A Long-Term Test of the Role of Tree Diversity in Restoring Tropical Forest Structure and Functioning

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This article details the initial stages of an experiment in Borneo which aims to study the relationship between tree diversity and lowland dipterocarp rainforest functioning during restoration after selective logging.

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Growth of dipterocarp seedlings in artificial gaps: An experiment in a logged-over rainforest in South Kalimantan, Indonesia

Background

Regeneration of dipterocarps following logging has become a crucial issue in tropical forest management. Secondary forest frequently and rapidly replaces dipterocarps in large logged-over patches. If unmanaged, these secondary forest patches are often composed of unmerchantable early-succession species. It has been hypothesized that dipterocarps grow most successfully in small gaps.

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Towards an Ecology-Based Strategy for the Reforestation of Imperata cylindrica Grasslands in East Kalimantan

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This chapter assesses an ecology-based strategy to accelerate the reforestation of grassland towards a dipterocarp-dominated plantation with natural regeneration occuring.

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