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Development and Future of Insect Conservation in South Africa

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Insect Conservation: Past, Present and Prospects

Abstract

When considering the history of insect conservation activities in South Africa, it is important to consider its biodiversity value in a global context. The country has been rated as the third most biologically diverse in the world after Indonesia and Brazil. It also has within its borders three or the world’s 34 biodiversity hotspots (Mittermeier et al. 2004). In discussions of South Africa’s biodiversity, it is mostly the country’s flora that is recognized as being of enormous conservation value, followed by the variety of large mammals and rich bird fauna that form the basis of a large ecotourism industry. The contribution of the insect fauna to the country’s biodiversity, in terms of both richness and functioning, is less well known among the public, decision makers and even some conservation scientists. Insect conservation can be considered a relatively new and possibly also a neglected discipline in South Africa, but there has certainly been some progress through various activities, at both landscape and species levels. The future of insect conservation in South Africa faces both challenges and opportunities, most of which are shared with other parts of the world with high and irreplaceable biodiversity.

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References

  • Allen-Wardell G, Bernhardt P, Bitner R, Burquez A, Buchmann S et al (1998) The potential consequences of pollinator declines on the conservation of biodiversity and stability of food crop yields. Conserv Biol 12:8–17

    Article  Google Scholar 

  • Allsopp MH, De Lange WJ, Veldtman R (2008) Valuing insect pollination services with cost of replacement. PLoS One 3(9):e3128

    Article  PubMed  CAS  Google Scholar 

  • Armstrong AJ (2002) Insects and the determination of priority areas for biodiversity conservation in KwaZulu-Natal province, South Africa. Afr Entomol 10:11–27

    Google Scholar 

  • Armstrong AJ, van Hensbergen HJ (1997) Evaluation of afforestable montane grasslands for wildlife conservation in the north-eastern Cape, South Africa. Biol Conserv 81:179–190

    Article  Google Scholar 

  • Barraclough DA, McAlpine DK (2006) Natalimyzidae, a new African family of acalyptrate flies (Diptera: Schizophora: Sciomyzoidea). Afr Invertebr 47:117–134

    Google Scholar 

  • Biesmeijer JC, Roberts SPM, Reemer M, Ohlemüller R, Edwards M et al (2006) Parallel declines in pollinators and insect-pollinated plants in Britain and the Netherlands. Science 313:351–354

    Article  PubMed  CAS  Google Scholar 

  • Blaum N, Seymour C, Rossmanith E, Schwager M, Jeltsch F (2009) Changes in arthropod diversity along a land use driven gradient of shrub cover in savanna rangelands: identification of suitable indicators. Biodivers Conserv 18:1187–1199

    Article  Google Scholar 

  • Botes A, McGeoch MA, Robertson HG, van Niekerk A, Davids HP, Chown SL (2006a) Ants, altitude and change in the northern Cape Floristic Region. J Biogeogr 33:71–90

    Article  Google Scholar 

  • Botes A, McGeoch MA, van Rensburg BJ (2006b) Elephant- and human-induced changes to dung beetle (Coleoptera: Scarabaeidae) assemblages in the Maputaland Centre of Endemism. Biol Conserv 130:573–583

    Article  Google Scholar 

  • Botes A, McGeoch MA, Chown SL (2007) Ground-dwelling beetle assemblages in the northern Cape Floristic Region: patterns, correlates and implications. Austral Ecol 32:210–224

    Article  Google Scholar 

  • Botha C, Botha J (2006) Bring back butterflies to your garden. Botanical Society of South Africa, Mayville

    Google Scholar 

  • Brandon H, Bannister A (1993) A matter of taste: the mopane worm – an unlikely source of protein. Afr Environ Wildl 1:77–79

    Google Scholar 

  • Brown J, Scholtz CH, Janeau J-L, Grellier S, Podwojewski P (2010) Dung beetles (Coleoptera: Scarabaeidae) can improve soil hydrological properties. Appl Soil Ecol 46:9–16.

    Article  Google Scholar 

  • Bullock WL, Samways MJ (2005) Conservation of flower-arthropod interactions in remnant grassland linkages among pine afforestation. Biodivers Conserv 14:3093–3103

    Article  Google Scholar 

  • Carvalheiro LG, Buckley YM, Ventim R, Fowler SV, Memmott J (2008) Apparent competition can compromise the safety of highly specific biocontrol agents. Ecol Lett 11:690–700

    Article  PubMed  Google Scholar 

  • Carvalheiro LG, Seymour CL, Veldtman R, Nicolson SW (2010) Pollination services decline with distance from natural habitat even in biodiversity-rich areas. J Appl Ecol 47:810–820

    Article  Google Scholar 

  • Chambers BQ, Samways MJ (1998) Grasshopper response to a 40-year experimental burning and mowing regime, with recommendations for invertebrate conservation management. Biodivers Conserv 7:985–1012

    Article  Google Scholar 

  • Clark TE, Samways MJ (1996) Dragonflies (Odonata) as indicators of biotope quality in the Kruger National Park, South Africa. J Appl Ecol 33:1001–1012

    Article  Google Scholar 

  • Coaton WGH (ed) (1974) Status of the taxonomy of the Hexapoda of southern Africa. Republic of South Africa Department of Agricultural Technical Services. Entomol Mem 38:1–124

    Google Scholar 

  • Conference of the Parties to the Convention on Biological Diversity (2010) Draft decisions for the tenth meeting of the conference of the parties to the convention on biological diversity, pp 168–170. http://www.cbd.int/doc/?meeting=cop-10. Accessed 15 Oct 2010

  • Damgaard J, Klass K-D, Picker MD, Buder G (2008) Phylogeny of the Heelwalkers (Insecta: Mantophasmatodea) based on mtDNA sequences, with evidence for additional taxa in South Africa. Mol Phylogenet Evol 47:443–462

    Article  PubMed  CAS  Google Scholar 

  • Davis ALV (2002) Dung beetle diversity in South Africa: influential factors, conservation status, data inadequacies and survey design. Afr Entomol 10:53–65

    Google Scholar 

  • Day JA, Harrison A, De Moor IJ (2002) Guide to the freshwater invertebrates of southern Africa, vol 9, Diptera. Water Research Commission, Pretoria, South Africa

    Google Scholar 

  • De Groot RS, Wilson MA, Boumans RMJ (2002) A typology for the classification, description and valuation of ecosystem functions, goods and services. Ecol Econ 41:393–408

    Article  Google Scholar 

  • De Moor I, Day JA, De Moor FC (2003) Guide to the freshwater invertebrates of southern Africa, vols 7–8, Insecta I, II. Water Research Commission, Pretoria, South Africa

    Google Scholar 

  • Department of Environmental Affairs and Tourism (2005) South Africa’s biodiversity strategy and action plan. Republic of South Africa, Pretoria

    Google Scholar 

  • Deutschländer MS, Bredenkamp GJ (1999) Importance of vegetation analysis in the conservation management of the endangered butterfly Aloeides dentatis dentatis (Swierstra) (Lepidoptera, Lycaenidae). Koedoe 42(2):1–12

    Google Scholar 

  • Dickens CWS, Graham PM (2002) The South African Scoring System (SASS) version 5 rapid bioassessment method for rivers. Afr J Aquat Sci 27:1–10

    Article  Google Scholar 

  • Dijkstra K-DB, Samways MJ, Simaika JP (2007) Two new relict Syncordulia species found during museum and field studies of threatened dragonflies in the Cape Floristic Region (Odonata: Corduliidae). Zootaxa 1467:19–34

    Google Scholar 

  • Dijkstra K-DB, Clausnitzer V, Boudot J-P, Kipping J, Kisake JJ, Ogbogu SS, Samways MJ, Samraoui B, Simaika JP, Suhling F, Tchiboza SL (2011) Dragonflies and Damselflies of Africa (Odonata): history, diversity, distribution and conservation. IUCN, Gland/Cambridge

    Google Scholar 

  • Donaldson J, Nanni I, Zachariades C, Kemper J (2002) Effects of habitat fragmentation on pollinator diversity and plant reproductive success in Renosterveld shrublands of South Africa. Conserv Biol 16:1267–1276

    Article  Google Scholar 

  • Driver A, Maze K, Rouget M, Lombard AT, Nel J, Turpie JK, Cowling RM, Desmet P, Goodman P, Harris J, Jonas Z, Reyers B, Sink K, Strauss T (2005) National spatial biodiversity assessment 2004: priorities for biodiversity conservation in South Africa, vol 17, Strelitzia. South African National Biodiversity Institute, Pretoria

    Google Scholar 

  • Edge DA, Cilliers SS, Terblanche RF (2008a) Vegetation associated with the occurrence of the Brenton blue butterfly. S Afr J Sci 104:505–510

    Article  Google Scholar 

  • Edge DA, Robertson HG, Van Hamburg H (2008b) Ant assemblages at potential breeding sites for the Brenton blue butterfly Orachrysops niobe (Trimen) (Lepidoptera: Lycaenidae). Afr Entomol 16:259–262

    Article  Google Scholar 

  • Finch JM, Samways MJ, Hill TR, Piper SE, Taylor S (2006) Application of predictive distribution modeling to invertebrates: Odonata in South Africa. Biodivers Conserv 15:4239–4251

    Article  Google Scholar 

  • Gaigher R, Samways MJ (2010) Relative benefits of organic farming for soil surface arthropods in vineyards in a biodiversity hotspot, the Cape Floristic Region. J Insect Conserv 14:595–605

    Article  Google Scholar 

  • Gebeyehu S, Samways MJ (2002) Grasshopper assemblage response to a restored national park (Mountain Zebra National Park, South Africa). Biodivers Conserv 11:283–304

    Article  Google Scholar 

  • Gebeyehu S, Samways MJ (2003) Responses of grasshopper assemblages to long-term grazing management in a semi-arid African savanna. Agric Ecosyst Environ 95:613–622

    Article  Google Scholar 

  • Gess FW, Gess SK (1993) Effects of increasing land utilization on species representation and diversity of aculeate wasps and bees in the semi-arid areas of southern Africa. In: La Salle J, Gauld ID (eds) Hymenoptera and biodiversity. CABI, Wallingford, pp 83–113

    Google Scholar 

  • Giliomee JH (2003) Insect diversity in the Cape Floristic Region. Afr J Ecol 41:237–244

    Article  Google Scholar 

  • Goldblatt P (1978) An analysis of the flora of Southern Africa: its characteristics, relationships and origins. Annu Mo Bot Gard 65:369–436

    Article  Google Scholar 

  • Grimaldi D, Engel MS (2005) Evolution of the insects. Cambridge University Press, Cambridge

    Google Scholar 

  • Hanström B, Brinck P, Rudebeck G (eds) (1955) South African animal life: results of the Lund University Expedition in 1950–1951. Almqvist & Wiksell, Stockholm

    Google Scholar 

  • Henning SF, Henning GA (1989) South African Red Data Book – butterflies. South African National Scientific Programmes Report No. 158. Foundation for Research Development, Pretoria, South Africa

    Google Scholar 

  • Henning GA, Terblanche RF, Ball JB (eds) (2009) South African Red Data Book: butterflies. South African National Biodiversity Institute, Pretoria

    Google Scholar 

  • Hoffmann JR (ed) (1991) Biological control of weeds in South Africa. Spec Issue Agric Ecosyst Environ 37(1–3):1–255

    Google Scholar 

  • Holm E (1975) Insect taxonomy in South Africa: how can we cope? Proceedings of the first congress of the Entomological Society of Southern Africa. Entomol Soc S Afr 35–40

    Google Scholar 

  • Hopkins GW, Freckleton RP (2002) Declines in the numbers of amateur and professional taxonomists: implications for conservation. Anim Conserv 5(3):246–249

    Article  Google Scholar 

  • Huntly P, van Noort S, Hamer M (2005) Giving increased value to invertebrates through ecotourism. S Afr J Wildl Res 35:53–62

    Google Scholar 

  • Ingham DS, Samways MJ (1996) Application of fragmentation and variegation models to epigaeic invertebrates in South Africa. Conserv Biol 10:1353–1358

    Article  Google Scholar 

  • Klass K-D, Zompro O, Kristensen NP (2002) Mantophasmatodea: a new insect order with extant members in the afrotropics. Science 296(5572):1456–1459

    Article  PubMed  CAS  Google Scholar 

  • Kuhlmann M (2009) Patterns of diversity, endemism and distribution of bees (Insecta: Hymenoptera: Anthophila) in southern Africa. S Afr J Bot 75:726–738

    Article  Google Scholar 

  • Lawrence JM, Samways MJ (2002) Influence of hilltop vegetation type on an African butterfly assemblage and its conservation. Biodivers Conserv 11:1163–1171

    Article  Google Scholar 

  • Losey JE, Vaughan M (2006) The economic value of ecological services provided by insects. Bioscience 56:311–323

    Article  Google Scholar 

  • Louw S, Armstrong AJ (2010) Community involvement in the conservation of threatened endemic invertebrate species. Box 11.5. In: Samways MJ, McGeoch MA, New TR (eds) Insect conservation: a handbook of approaches and methods. Oxford University Press, Oxford, pp 368–370

    Google Scholar 

  • Lovell S, Hamer M, Slotow R, Herbert D (2007) Assessment of congruency across taxa and taxonomic levels to identify potential surrogates. Biol Conserv 139:113–125

    Article  Google Scholar 

  • Lovell S, Hamer M, Slotow R, Herbert D (2009) An assessment of the use of volunteers for terrestrial invertebrate biodiversity surveys. Biodivers Conserv 18:3295–3307

    Article  Google Scholar 

  • Lu S-S, Samways MJ (2002) Conservation management recommendations for the Karkloof blue butterfly Orachrysops ariadne (Lepidoptera: Lycaenidae). Afr Entomol 10:149–159

    Google Scholar 

  • Magagula CN, Samways MJ (2001) Maintenance of ladybeetle diversity across a heterogeneous African agricultural/savanna land mosaic. Biodivers Conserv 10:209–222

    Article  Google Scholar 

  • Magoba RNN (2010) Comparative impact of invasive alien trees and vineyards on arthropod diversity in the Cape Floristic Region, Western Cape. Unpublished PhD thesis, Stellenbosch University, South Africa

    Google Scholar 

  • Magoba RN, Samways MJ (2010) Restoration of aquatic macroinvertebrate assemblages through large-scale removal of invasive alien trees. J Insect Conserv 14:627–636

    Article  Google Scholar 

  • Mayer C, Soka G, Picker M (2006) The importance of monkey beetle (Scarabaeidae: Hopliini) pollination for Aizoaceae and Asteraceae in grazed and ungrazed areas at Paulshoek, Succulent Karoo, South Africa. J Insect Conserv 10:323–333

    Article  Google Scholar 

  • McGeoch MA (2002) Insect conservation in South Africa: an overview. Afr Entomol 10:1–10

    Google Scholar 

  • McGeoch MA, Samways MJ (eds) (2002) Arthropod diversity and conservation in southern Africa. Afr Entomol 10(1):1–159

    Google Scholar 

  • McGeoch MA, van Rensburg BJ, Botes A (2002) The verification and application of bioindicators: a case study of dung beetles in a savanna ecosystem. J Appl Ecol 39:661–672

    Article  Google Scholar 

  • Miller SE, Rogo LM (2001) Challenges and opportunities in understanding and utilisation of African insect diversity. Cimbebasia 17:197–218

    Google Scholar 

  • Mittermeier RA, Gil PR, Hoffman M, Pilgrim J, Brooks T, Mittermeier CG, Lamoreaux J, Da Fonseca GAB (2004) Hotspots revisited. Cemex, Mexico City

    Google Scholar 

  • Moran VC, Hoffmann JH (eds) (1996) Proceedings of the IX international symposium on biological control of weeds. University of Cape Town, Cape Town, South Africa

    Google Scholar 

  • Moran VC, Hoffmann JH, Zimmermann HG (2005) Biological control of invasive alien plants in South Africa: necessity, circumspection, and success. Front Ecol Environ 3:77–83

    Article  Google Scholar 

  • Mucina L, Rutherford MC (eds) (2006) The vegetation of South Africa, Lesotho and Swaziland. South African National Biodiversity Institute, Pretoria

    Google Scholar 

  • Muller C, Freitag S, Scholtz CH, Van Jaarsveld AS (1997) Termite (Isoptera) distributions, endemism, species richness and priority conservation areas: consequences for land-use planning in South Africa. Afr Entomol 5:261–271

    Google Scholar 

  • Naskrecki P, Bazelet CS (2009) A species radiation among South African flightless spring katydids (Orthoptera: Tettigoniidae: Phaneropterinae: Brinckiella Chopard). Zootaxa 2056:46–62

    Google Scholar 

  • Naskrecki P, Bazelet CS, Spearman LA (2008) New species of flightless katydids from South Africa (Orthoptera: Tettigoniidae: Meconematinae). Zootaxa 1933:19–32

    Google Scholar 

  • Niba AS, Samways MJ (2006a) Development of the concept of ‘core resident species’ for quality assurance of an insect reserve. Biodivers Conserv 15:4181–4196

    Article  Google Scholar 

  • Niba AS, Samways MJ (2006b) Remarkable elevational tolerance in an African dragonfly (Odonata) larval assemblage. Odonatologica 35:265–280

    Google Scholar 

  • Nichols E, Spector S, Louzada J, Larsen T, Amezquita S, Favila ME, The Scarabaeinae ResearchNetwork (2008) Ecological functions and ecosystem services provided by Scarabaeinae dung beetles. Biol Conserv 141:1461–1474

    Article  Google Scholar 

  • Osborn R, Samways MJ (1996) Determinants of adult dragonfly assemblage patterns at new ponds in South Africa. Odonatologica 25:49–58

    Google Scholar 

  • Picker MD, Samways MJ (1996) Faunal diversity and endemicity of the Cape Peninsula – a first assessment. Biodivers Conserv 5:591–606

    Article  Google Scholar 

  • Picker MD, Colville J, Van Noort S (2002a) Mantophasmatodea now in South Africa. Science 297:1475

    Article  PubMed  CAS  Google Scholar 

  • Picker M, Griffiths C, Weaving A (2002b) Field guide to insects of South Africa. Struik, Cape Town

    Google Scholar 

  • Pinhey E (1984) A survey of the dragonflies (Odonata) of South Africa. Part 1. J Entomol Soc South Afr 47:147–188

    Google Scholar 

  • Pinhey E (1985) A survey of the dragonflies (Odonata) of South Africa. Part 2. Anisoptera. J Entomol Soc South Afr 48:1–48

    Google Scholar 

  • Prinsloo GL, Samways MJ (2001) Host specificity among introduced chalcidoid biological control agents in South Africa. In: Lockwood JA, Howarth FG, Purcell MF (eds) Balancing nature: assessing the impact of importing non-native biological agents (an international perspective). Entomological Society of America, Lanham, pp 31–40

    Google Scholar 

  • Procheş S, Cowling RM (2006) Insect diversity in Cape fynbos and neighbouring South African vegetation. Glob Ecol Biogeogr 15:445–451

    Google Scholar 

  • Procheş S, Cowling RM (2007) Do insect distributions fit our biomes? S Afr J Sci 103:258–261

    Google Scholar 

  • Procheş S, Forest F, Veldman R, Chown SL, Cowling RM, Johnson SD, Richardson DM, Savolainen V (2009) Dissecting the plant-insect diversity relationship in the Cape. Mol Phylogenet Evol 51:94–99

    Article  PubMed  Google Scholar 

  • Pryke SR, Samways MJ (2001) Width of grassland linkages for the conservation of butterflies in South African afforested areas. Biol Conserv 101:85–96

    Article  Google Scholar 

  • Pryke SR, Samways MJ (2003) Quality of remnant indigenous grassland linkages for adult butterflies (Lepidoptera) in an afforested African landscape. Biodivers Conserv 12:1985–2004

    Article  Google Scholar 

  • Pryke JS, Samways MJ (2008) Conservation of invertebrate biodiversity on a mountain in a global biodiversity hotspot, Cape Floral Region. Biodivers Conserv 17:3027–3043

    Article  Google Scholar 

  • Pryke JS, Samways MJ (2009a) Conservation of the insect assemblages of the Cape Peninsula biodiversity hotspot. J Insect Conserv 13:627–641

    Article  Google Scholar 

  • Pryke JS, Samways MJ (2009b) Recovery of invertebrate diversity in a rehabilitated city landscape mosaic in the heart of a biodiversity hotspot. Landscape Urban Plann 93:54–62

    Article  Google Scholar 

  • Pryke JS, Samways MJ (2010) Significant variables for the conservation of mountain invertebrates. J Insect Conserv 14:247–256

    Article  Google Scholar 

  • Rebe M (1999) The sustainable use of mopane worm as a harvestable protein source for human consumption: local perceptions. Master’s thesis, University of Pretoria, Pretoria

    Google Scholar 

  • Reyers B, Wessels KJ, van Jaarsveld AS (2002) An assessment of biodiversity surrogacy options in the Limpopo Province of South Africa. Afr Zool 37:185–195

    Google Scholar 

  • Rivers-Moore NA, Samways MJ (1996) Game and cattle trampling, and impacts of human dwellings on arthropods at a game park boundary. Biodivers Conserv 5:1545–1556

    Article  Google Scholar 

  • Samways MJ (1988) Classical biological control and insect conservation: are they compatible? Environ Conserv 15:348–354

    Article  Google Scholar 

  • Samways MJ (1989) Farm dams as nature reserves for dragonflies (Odonata) at various altitudes in the Natal Drakensberg mountains, South Africa. Biol Conserv 48:181–187

    Article  Google Scholar 

  • Samways MJ (1990) Land forms and winter habitat refugia in the conservation of montane grasshoppers in southern Africa. Conserv Biol 4:375–382

    Article  Google Scholar 

  • Samways MJ (1994) Insect conservation biology. Chapman and Hall, London

    Google Scholar 

  • Samways MJ (1999) Diversity and conservation status of South African dragonflies (Odonata). Odonatologica 28:13–62

    Google Scholar 

  • Samways MJ (2002) A strategy for the national red-listing of invertebrates based on experiences with Odonata in South Africa. Afr Entomol 10:43–52

    Google Scholar 

  • Samways MJ (2006a) National Red List of South African dragonflies (Odonata). Odonatologica 35:341–368

    Google Scholar 

  • Samways MJ (2006b) Threat levels to odonate assemblages from invasive alien tree canopies. In: Cordero Rivera A (ed) Forests and dragonflies. Pensoft, Sofia, Bulgaria, pp 209–224

    Google Scholar 

  • Samways MJ (2007) Insect conservation: a synthetic management approach. Annu Rev Entomol 52:465–487

    Article  PubMed  CAS  Google Scholar 

  • Samways MJ (2008a) Dragonflies and Damselflies of South Africa. Pensoft, Sofia

    Google Scholar 

  • Samways MJ (2008b) Dragonflies as focal organisms in contemporary conservation biology. In: Córdoba-Aguilar A (ed) Dragonflies: model organisms for ecological and evolutionary research. Oxford University Press, Oxford, pp 97–108

    Google Scholar 

  • Samways MJ (2010) Extreme weather and climate change impacts on South African dragonflies. In: Ott J (ed) Monitoring climate change with dragonflies. Pensoft, Sofia, Bulgaria, pp 73–84

    Google Scholar 

  • Samways MJ, Grant PBC (2006a) Honing Red List assessments of lesser-known taxa in biodiversity hotspots. Biodivers Conserv 16:2575–2586

    Article  Google Scholar 

  • Samways MJ, Grant PBC (2006b) Regional response of Odonata to river systems impacted by and cleared of invasive alien trees. Odonatologica 35:297–303

    Google Scholar 

  • Samways MJ, Kreuzinger K (2001) Vegetation, ungulate and grasshopper interactions inside vs. outside an African savanna game park. Biodivers Conserv 10:1963–1981

    Article  Google Scholar 

  • Samways MJ, Lu S-S (2007) Key traits in a threatened butterfly and its common sibling: implications for conservation. Biodivers Conserv 16:4095–4107

    Article  Google Scholar 

  • Samways MJ, Moore SD (1991) Influence of exotic conifer patches on grasshopper (Orthoptera) assemblages in a grassland matrix at a recreational resort, Natal, South Africa. Biol Conserv 57:205–219

    Article  Google Scholar 

  • Samways MJ, Niba AS (2010) Wide elevational tolerance and ready colonization may be a buffer against climate change in a South African dragonfly assemblage. In: Ott J (ed) Monitoring climate change with dragonflies. Pensoft, Sofia, Bulgaria, pp 85–107

    Google Scholar 

  • Samways MJ, Sharratt NJ (2010) Recovery of endemic dragonflies after removal of invasive alien trees. Conserv Biol 24:267–277

    Article  PubMed  Google Scholar 

  • Samways MJ, Stewart DAB (1997) An aquatic ecotone and its significance in conservation. Biodivers Conserv 6:1429–1444

    Article  Google Scholar 

  • Samways MJ, Steytler NS (1996) Dragonfly (Odonata) distribution patterns in urban and forest landscapes and recommendations for riparian corridor management. Biol Conserv 78:279–288

    Article  Google Scholar 

  • Samways MJ, Taylor S (2004) Impacts of invasive alien plants on red-listed South African dragonflies (Odonata). S Afr J Sci 100:78–80

    Google Scholar 

  • Samways MJ, Caldwell PM, Osborn R (1996) Spatial patterns of dragonflies (Odonata) as indicators for design of a conservation pond. Odonatologica 25:157–166

    Google Scholar 

  • Samways MJ, Osborn R, Hastings H, Hattingh V (1999) Global climate change and accuracy of prediction of species geographical ranges: establishment success of introduced ladybirds (Coccinellidae, Chilocorus spp.) worldwide. J Biogeogr 26:795–812

    Article  Google Scholar 

  • Samways MJ, Taylor S, Tarboton W (2005) Extinction reprieve following alien removal. Conserv Biol 19:1329–1330

    Article  Google Scholar 

  • Samways MJ, Bazelet CS, Pryke JS (2010) Provision of ecosystem services by large-scale corridors and ecological networks. Biodivers Conserv 19:2949–2962

    Article  Google Scholar 

  • Samways MJ, Sharratt NJ, Simaika JP (2011) Recovery of endemic river macroinvertebrates following river bank restoration. Biol Invasions 13:1305–1324

    Article  Google Scholar 

  • Scholtz CH (1984) Useful insects. De Jager-Haum, Pretoria

    Google Scholar 

  • Scholtz CH (1999) Review of insect systematics research in South Africa. Trans R Soc S Afr 54:53–63

    Article  Google Scholar 

  • Scholtz CH, Chown SL (1993) Insect conservation and extensive agriculture: the savanna of southern Africa. In: Gaston KJ, New TR, Samways MJ (eds) Perspectives in insect conservation. Intercept, Andover, pp 75–95

    Google Scholar 

  • Scholtz CH, Chown SL (1995) Insects in southern Africa: how many species are there? S Afr J Sci 91:124–126

    Google Scholar 

  • Scholtz CH, Holm E (1985) Insects of southern Africa. Butterworths, Durban, 502pp

    Google Scholar 

  • Scholtz CH, Davis ALV, Kryger U (2009) Evolutionary biology and conservation of dung beetles. Pensoft, Sofia

    Google Scholar 

  • Seymour CL, Veldtman R (2010) Ecological role of control agent, and not just host-specificity, determine risks of biological control. Austral Ecol 35:704–711

    Article  Google Scholar 

  • Sharratt NJ, Picker MD, Samways MJ (2000) The invertebrate fauna of the sandstone caves of the Cape Peninsula (South Africa): patterns of endemism and conservation priorities. Biodivers Conserv 9:107–143

    Article  Google Scholar 

  • Shenkute AG (2009) Behaviour of honeybees (Apis mellifera scutellata Lap.) and their response to competition with wild pollinators on sunflowers (Helianthus annuus L.). Masters thesis, University of Pretoria, Pretoria

    Google Scholar 

  • Simaika JP, Samways MJ (2008) Valuing dragonflies as service providers. In: Córdoba-Aguilar A (ed) Dragonflies and damselflies: model organisms for ecological and evolutionary research. Oxford University Press, Oxford, pp 109–123

    Google Scholar 

  • Simaika JP, Samways MJ (2009a) Reserve selection using Red Listed taxa in three global biodiversity hotspots: dragonflies in South Africa. Biol Conserv 142:638–651

    Article  Google Scholar 

  • Simaika JP, Samways MJ (2009b) An easy-to-use index of ecological integrity for prioritizing freshwater sites and for assessing habitat quality. Biodivers Conserv 18:1171–1185

    Article  Google Scholar 

  • Simaika JP, Samways MJ (2010a) Large-scale estimators of threatened freshwater catchment species relative to practical conservation management. Biol Conserv 143:311–320

    Article  Google Scholar 

  • Simaika JP, Samways (2010b) Comparative assessment of indices of freshwater habitat conditions using different invertebrate taxon sets. Ecol Indic 11:370–378

    Article  CAS  Google Scholar 

  • Stahls R, DeMoor IJ (2007) Guide to the freshwater invertebrates of southern Africa, vol 10, Coleoptera. Water Research Commission, Pretoria, South Africa

    Google Scholar 

  • Stewart DAB, Samways MJ (1998) Conserving dragonfly (Odonata) assemblages relative to river dynamics in a major African savanna game reserve. Conserv Biol 12:683–692

    Article  Google Scholar 

  • Steytler NS, Samways MJ (1995) Biotope selection by adult male dragonflies (Odonata) at an artificial lake created for insect conservation in South Africa. Biol Conserv 72:381–386

    Article  Google Scholar 

  • Stuckenberg BR (1964) Remarks on regional specialisation in insect taxonomy and its bearing on entomological research in South Africa. S Afr Mus Assoc Bull 8:116–122

    Google Scholar 

  • Styles CV (1994) There’s big value in mopane worms. Farmer’s Weekly, July 22:20–22

    Google Scholar 

  • Suh A, Samways MJ (2001) Development of a dragonfly awareness trail in an African botanical garden. Biol Conserv 100:345–353

    Article  Google Scholar 

  • Suh A, Samways MJ (2005) Significance of temporal changes when designing a reservoir for conservation of dragonfly diversity. Biodivers Conserv 14:165–178

    Article  Google Scholar 

  • Suhling F, Samways MJ, Simaika JP, Kipping J (2009) The status and distribution of dragonflies (Odonata). In: Darwall W, Smith KG, Tweddle D, Skelton P (eds) The status and distribution of freshwater biodiversity in southern Africa. IUCN, Gland/Cambridge, pp 48–65

    Google Scholar 

  • Tesfay GB (2009) Contribution of managed honeybees (Apis mellifera scutellata Lap.) to sunflower (Helianthus annuus L.) seed yield and quality. Masters thesis, University of Pretoria, Pretoria

    Google Scholar 

  • Tribe GD, Richardson DM (1994) The European wasp, Vespula germanica (Fabricius) (Hymenoptera: Vespidae), in southern Africa, and its potential distribution as predicted by ecoclimatic modeling. Afr Entomol 2:1–6

    Google Scholar 

  • Uys C, Hamer M, Slotow R (2009) Turnover in flightless invertebrate species composition over different spatial scales in Afrotemperate forest in the Drakensberg, South Africa. Afr J Ecol 47:341–351

    Article  Google Scholar 

  • Veldtman R, McGeoch MA (2003) Galling-insect species richness along a non-scleromorphic vegetation gradient in South Africa: a test of the hygrothermal stress hypothesis. Austral Ecol 28:1–13

    Article  Google Scholar 

  • Veldtman R, McGeoch MA, Scholtz CH (2002) Variability in cocoon size in southern African wild silk moths: implications for sustainable harvesting. Afr Entomol 10:127–136

    Google Scholar 

  • Ware MJ, Simaika JP, Samways MJ (2009) Biogeography and divergence time estimation of the relic South African Cape dragonfly genus Syncordulia: global significance and implications for conservation. Zootaxa 2216:627–641

    Google Scholar 

  • Wilson EO (1992) The diversity of life. Norton, New York

    Google Scholar 

  • Winston JE, Metzger KL (1998) Trends in taxonomy revealed by the published literature. Bioscience 48(2):125–128

    Article  Google Scholar 

  • Wood PA, Samways MJ (1991) Landscape element pattern and continuity of butterfly flight paths in an ecologically landscaped botanic garden, Natal, South Africa. Biol Conserv 58:149–166

    Article  Google Scholar 

  • Wright MG, Samways MJ (1998) Insect species richness tracking plant species richness in a diverse flora: gall-insects in the Cape Floristic Region, South Africa. Oecologia 115:427–433

    Article  Google Scholar 

  • Wright MG, Samways MJ (2000) Biogeography and species richness of endophagous insects associated with Proteaceae in South Africa. Afr J Ecol 38:16–22

    Article  Google Scholar 

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Acknowledgements

We thank Melodie McGeoch for valuable comments on the manuscript.

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Correspondence to Michael J. Samways .

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© 2012 Springer Science+Business Media Dordrecht

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Samways, M.J., Hamer, M., Veldtman, R. (2012). Development and Future of Insect Conservation in South Africa. In: New, T. (eds) Insect Conservation: Past, Present and Prospects. Springer, Dordrecht. https://doi.org/10.1007/978-94-007-2963-6_11

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