Agroecology Knowledge Hub

Diversity: diversification is key to agroecological transitions to ensure food security and nutrition while conserving, protecting and enhancing natural resources

Agroecological systems are highly diverse. From a biological perspective, agroecological systems optimize the diversity of species and genetic resources in different ways. For example, agroforestry systems organize crops, shrubs, livestock and trees of different heights and shapes at different levels or strata, increasing vertical diversity. Intercropping combines complementary species to increase spatial diversity. Crop rotations, often including legumes, increase temporal diversity. Crop–livestock systems rely on the diversity of local breeds adapted to specific environments. In the aquatic world, traditional fish polyculture farming, Integrated Multi-Trophic Aquaculture (IMTA) or rotational crop-fish systems follow the same principles to maximising diversity.

Increasing biodiversity contributes to a range of production, socio-economic, nutrition and environmental benefits. By planning and managing diversity, agroecological approaches enhance the provisioning of ecosystem services, including pollination and soil health, upon which agricultural production depends. Diversification can increase productivity and resource-use efficiency by optimizing biomass and water harvesting.

Agroecological diversification also strengthens ecological and socio-economic resilience, including by creating new market opportunities. For example, crop and animal diversity reduces the risk of failure in the face of climate change. Mixed grazing by different species of ruminants reduces health risks from parasitism, while diverse local species or breeds have greater abilities to survive, produce and maintain reproduction levels in harsh environments. In turn, having a variety of income sources from differentiated and new markets, including diverse products, local food processing and agritourism, helps to stabilize household incomes.

Consuming a diverse range of cereals, pulses, fruits, vegetables and animal-source products contributes to improved nutritional outcomes. Moreover, the genetic diversity of different varieties, breeds and species is important in contributing macronutrients, micronutrients and other bioactive compounds to human diets. For example, in Micronesia, reintroducing an underutilized traditional variety of orange-fleshed banana with 50 times more beta-carotene than the widely available commercial white-fleshed banana proved instrumental in improving health and nutrition.

At the global level, three cereal crops provide close to 50 percent of all calories consumed, while the genetic diversity of crops, livestock, aquatic animals and trees continues to be rapidly lost. Agroecology can help reverse these trends by managing and conserving agro-biodiversity, and responding to the increasing demand for a diversity of products that are eco-friendly. One such example is ‘fish-friendly’ rice produced from irrigated, rainfed and deepwater rice ecosystems, which values the diversity of aquatic species and their importance for rural livelihoods.

Database

Actinomycetes were isolated from sugarcane soils by improved Gao’s No.1 synthetic medium. Physiological and biochemical characteristics, molecular identification and phylogenetic analysis were carried out on 29 isolates selected by morphology. Antimicrobial activity of the soil actinomycetes to plant pathogenic fungi was studied using the Dual-culture method. The results of identification...
China
Journal article
2016
Zero Budget Natural Farming (ZBNF) is a set of farming methods, and also a grassroots peasant movement, which has spread to various states in India. It has attained wide success in southern India, especially the southern Indian state of Karnataka where it first evolved.  The movement in Karnataka state was...
India
Case study
2016
Roland Bunch’s work with indigenous Mayan farmers in the highlands of Guatemala in the 1970s enabled the Campesino a Campesino (farmer-to-farmer) movement to sweep through Mexico, Central America and Cuba in the 1980s and 1990s. Cover crops were a central component of the movement’s success. In this personal letter, Roland...
Policy brief/paper
2016
The training courses cover the following topics: Agroecology and the planetary food, energy, economic and social crises Principles and concepts of agroecology: The scientific basis The ecological role of biodiversity in agroecosystems Biodiversity and insect pest management Soil ecology and management Ecological basis of disease and weed management Agroecological basis...
Manual
2015
To study the spatial distribution patterns and ecological niches of Nilaparvata lugens and its main predatory natural enemies, three treatments including chemical fertilization, rice-duck farming, and no chemical pesticides/fertilizer application (control) were set. Theridiidae, Clubionidae and Salticidae showed the highest niche width under chemical fertilization, rice-duck farming and control, respectively,...
China
Journal article
2011