conservation corridors
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Insects ◽  
2021 ◽  
Vol 12 (3) ◽  
pp. 190
Author(s):  
Charl Deacon ◽  
Michael J. Samways

Urban settlements range from small villages in rural areas to large metropoles with densely packed infrastructures. Urbanization presents many challenges to the maintenance of freshwater quality and conservation of freshwater biota, especially in Africa. There are many opportunities as well, particularly by fostering contributions from citizen scientists. We review the relationships between dragonflies and urbanization in southern Africa. Shifts in dragonfly assemblages indicate environmental change, as different species are variously sensitive to abiotic and biotic water and bank conditions. They are also conservation umbrellas for many other co-occurring species. Major threats to southern African dragonflies include increasing infrastructure densification, frequent droughts, habitat loss, pollution, and invasive alien vegetation. Mitigation measures include implementation of conservation corridors, maintenance of healthy permanent ponds, pollution reduction, and removal of invasive alien trees. Citizen science is now an important approach for supplementing and supporting professional scientific research.


2021 ◽  
Vol 254 ◽  
pp. 108965
Author(s):  
Gabriella J. Kietzka ◽  
James S. Pryke ◽  
René Gaigher ◽  
Michael J. Samways

2021 ◽  
pp. 1-19
Author(s):  
TIBERIO C. MONTERRUBIO-RICO ◽  
JUAN F. CHARRE-MEDELLÍN ◽  
YAMEL RUBIO-ROCHA ◽  
CARLOS BONILLA-RUZ ◽  
CLAUDIA CINTA-MAGALLÓN ◽  
...  

Summary The preservation of Military Macaw Ara militaris in Mexico required the implementation of a nationwide assessment evaluating its vulnerability using IUCN criteria. With the combined effort of several institutions, the abundance, location, dispersion, habitat availability, and climatic conditions of areas occupied by the species were determined. Although the species’ extent of occurrence is extensive (263,919 km2) only 29% of this constitutes area of occupancy. Published estimates indicate a series of isolated populations containing from four macaws to 215. Macaws occurred in 35 populations in four regions of 16 states containing an estimated 1,563–3,263 macaws; lower than required for long-term viability. Within regions, neighbouring populations were separated by an average of 68 km. The extent of occurrence is heterogeneous, and macaws inhabit areas that differ in elevation, precipitation, temperature, and forest cover. Higher local abundances occur in landscapes where annual precipitation is ≥1,100 mm, and primary forest availability ≥1,800 km2. Although the existence of undetected macaw groups in Mexico is possible, these are likely to contain only small numbers of individuals, as most detected areas with macaws contain less than 40 individuals, and larger concentrations are more likely to be noticed due to their conspicuous behaviour. The species is threatened primarily by its low overall abundance, fragmented distribution, and forest loss around populations with the highest abundance. With the information generated, it is possible to design and implement specific management and conservation strategies at different geographic scales for the recovery and maintenance of the species in Mexico. It is necessary to strengthen collaborative programmes among conservation organizations, government agencies, and local communities in each region of the country to organize and finance community-based actions such as monitoring, habitat restoration, protection from poaching and the creation of a network of conservation corridors and macaw reserves focused on conservation.


2020 ◽  
Vol 13 (2) ◽  
pp. 41-53
Author(s):  
Doua Sylvain Aoudou ◽  
Jean Cyrille Narke ◽  
Mbamba Jean Paul Kévin Mbamba ◽  
Tchobsala ◽  
Amadou Zoua

2020 ◽  
Vol 35 (5) ◽  
pp. 1175-1185
Author(s):  
J. van Schalkwyk ◽  
J. S. Pryke ◽  
M. J. Samways ◽  
R. Gaigher

2020 ◽  
Vol 34 (4) ◽  
pp. 943-955
Author(s):  
Amanda T. Stahl ◽  
Alexander K. Fremier ◽  
Barbara A. Cosens

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