Skip to main content

Search the SPREP Catalogue

Refine Search Results

Language

Available Online

Available Online

51 result(s) found.

Sort by

You searched for

Sustainable livelihood strategies for conservation of biodiversity in Fiji, including potential crops and value adding opportunities in three FPAM project sites - Marketing of suitable products and recommendations; across three project sites: Greater Tomaniivi Protected Areas on Viti Levu, Greater Delaikoro Protected Areas on Vanua Levu, Taveuni Forest Reserve/Ravilevu Nature Reserve on Taveuni.
Biodiversity Conservation
Available Online

Addinsall, Cherise (Dr.)

,

FAO

,

Glencross, Kevin (Dr.)

,

Hancock, Wayne (Dr.)

,

Kete, Tevita

,

Prasad, Vinesh

2017
Conservation of biodiversity, improving rural livelihoods and supporting sustainable agriculture are key issues globally, but for many Pacific Island Countries (PICs) key biodiversity reserves are under considerable pressure from clearing and degradation. Rural communities are often put in a situation where clearing of forest margins is undertaken to meet demand for arable land to produce food and generate income. Forest reserves are also degraded by logging, where timber royalties are important in the absence of other sources of income for traditional landowners and communities. Therefore, agroforestry and ecologically based agriculture systems in the forest margins can help to offset reliance on forest degradation and can enhance the buffers around key reserves. Sustainable forest management and ecotourism also need to be maximised to help meet these challenges of generating income whilst maintaining or enhancing biodiversity, conserving soil and water resources.
Mainstreaming Ecosystem Services and Biodiversity into Agricultural Production and Management in the Pacific Islands - Technical guidance document
Biodiversity Conservation
Available Online

FAO

2016
The international community is increasingly aware of the link between biodiversity and sustainable development and its direct impact on wealth, health and well-being. Biodiversity is the origin of all crops and domesticated livestock. It is also the source of vital ecosystem services and functions, including soil conservation, water cycling, pollination, pest and disease regulation, carbon sequestration and nitrogen fixation. Biodiversity and the ecosystem services it supports are thus key to nutritional diversity and to agricultural productivity and resilience. The Convention on Biological Diversity (CBD) Strategic Plan for Biodiversity 2011–2020 and its 20 Aichi Biodiversity Targets provide a framework for countries to develop national targets and policies for sustaining biodiversity for a healthy planet. To meet rising global food demands, agricultural systems need to produce greater quantities of more diverse and nutritious food in a sustainable way. This progress can and must be achieved without driving biodiversity loss. It must come through gains in the efficiency of resource use, through sustainable intensification and a landscape perspective in agricultural production. By contributing to the conservation and sustainable use of biodiversity, agriculture will be a key driver for eliminating poverty, improving human health and providing energy, food and clean water for all while maintaining natural ecosystems.
2015 Myna Survey. Report to inform the Samoan Myna Management Plan
Biodiversity Conservation, BRB
Available Online

Serra. G.

,

Young. S

2015
In May 2015, 74 line transects in three different habitat types (plantation, mixed crops, urban) were surveyed on Upolu and Savai’i islands, Samoa, with an aim of estimating the population size, density and distribution of two invasive bird species, Common Myna (Acridotheres tristis) and Jungle Myna (Acridotheres fuscus). Based on the available literature, the surveyed habitats were identified as preferred foraging habitat for the two myna species. The three habitats make up 24.9% of Samoa’s land area. Survey data were analysed using the Distance program. It was estimated that the population of myna birds occurring in the plantation, mixed crops and urban habitats of Samoa is approximately 158,995 (+- 29,588). Approximately 130,030 (+- 19,837) myna were estimated to live on Upolu and 28,968 (+- 9,751) on Savai’i, across the three habitat types. Survey results also revealed that both species show a significant preference for urban habitat. Jungle Myna were estimated to be the most numerous (population estimate: 133,925 +-24,321), occurring on both islands and in all surveyed habitat types. Jungle Myna seem to have saturated the urban habitat available in Upolu and therefore have proceeded to colonise plantations and mixed crops adjacent to urban areas. Common Myna (population estimate: 23,367 +- 7,612), having reached the shores of Samoa ca. 20 years later than Jungle Myna, show highest density in urban environments. They are concentrated in the north-west section of Upolu, with only a few individuals observed on the east coast of Savai’i.