Regeneration status of riparian tree species in two sites that differ in land-use in the Okavango Delta, Botswana

Gaolathe Tsheboeng , Mike Murray-Hudson , Keotshephile Kashe

Journal of Forestry Research ›› 2017, Vol. 28 ›› Issue (5) : 1073 -1082.

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Journal of Forestry Research ›› 2017, Vol. 28 ›› Issue (5) : 1073 -1082. DOI: 10.1007/s11676-017-0382-y
Original Paper

Regeneration status of riparian tree species in two sites that differ in land-use in the Okavango Delta, Botswana

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Abstract

Human communities from the Okavango Delta benefit from the services and goods provided by the wetland ecosystem through its riparian vegetation. These include food and timber products used for the construction of shelter and canoes. Despite the importance of riparian tree species in the Delta, their regeneration structure is currently unknown. For riparian trees to be managed sustainably, information on the current regeneration status of the trees under different land uses is needed. The Moremi game reserve (protected area) and Seronga (communal area) were selected for this study on the regeneration of riparian tree species of Croton megalobotrys Müll. Arg, Philenoptera violacea (Klotzsch) Schrire, Senegalia nigrescens (Acacia nigrescens) Oliv and Diospyros mespiliformis Hochst. ex A. Dc. The height of each individual tree was estimated in randomly selected 30 plots (15 from each site) of 20 × 50 m for assignment to five regeneration classes: 0–0.5, 0.5–1, 1–2, 2–4 and >4 m. Linear regression was used to infer regeneration status of each species. An independent-sample Student’s t test was used to determine any significance differences in seedling density/ha and sapling density/ha between different sites at p < 0.05. Diospyros mespiliformis populations had an unstable regeneration structure in both sites, while P. violacea regeneration was stable regardless of land-use type. Croton megalobotrys and S. nigrescens had an unstable regeneration pattern in Seronga, while in Moremi it was stable; thus, the regeneration structure of C. megalobotrys and S. nigrescens is affected by land-use. This result implies that intervention is needed to conserve the two species in Seronga where the current land-use appears to be incompatible with regeneration; D. mespiliformis also needs to be conserved in both Moremi and Seronga.

Keywords

Conservation / Regeneration / Riparian / Okavango and wetlands

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Gaolathe Tsheboeng, Mike Murray-Hudson, Keotshephile Kashe. Regeneration status of riparian tree species in two sites that differ in land-use in the Okavango Delta, Botswana. Journal of Forestry Research, 2017, 28(5): 1073-1082 DOI:10.1007/s11676-017-0382-y

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References

[1]

Babitseng TM, Teketay D. Impact of wine tapping on the population structure and regeneration of Hyphaene petersiana Klotzsch ex Mart in Northern Botswana. Ethno Res Appl, 2013, 11: 9-27.

[2]

Barnes ME. Seed predation, germination and seedling establishment of Acacia erioloba in Northern Botswana. J Arid Environ, 2001, 49: 541-554.

[3]

Ben-Shahar R. Woodland dynamics under the influence of elephants and fire in Northern Botswana. Vegetatio, 1996, 123: 153-163.

[4]

Brevik EC, Cerda A, Mataix-Solera J, Pereg L, Quinton JN, Six J, Van Oost K. The interdisplinary nature of soil. Soil, 2015, 1: 117-129.

[5]

Burton ML, Samuelson LJ, Pan S. Riparian woody plant diversity and forest structure along an urban-rural gradient. Urb Ecosyst, 2005, 8: 93-106.

[6]

Carter V. Wetland hydrology, water quality and associated functions, 1996, Washington: United States Geological Survey 35 48

[7]

Cronk JK, Fennessy MS. Wetland plants: biology and ecology, 2001, Florida: Lewis Publishers 1 482

[8]

Cumming DHM, Feton MB, Rautebank IL, Taylor RD, Cumming MS, Dunlop JM, Ford GS, Hovorka MD, Johnston DS, Kalcounis MC, Mahlnga Z, Portfors CV. Elephants, woodlands and biodiversity in miombo woodland in Southern Africa. South Afr J Sci, 1997, 93: 231-236.

[9]

Daily GC. Ecosystem services supplied by soil, 1997, Washington: Island Press 2 18

[10]

Ecosurv. Field investigation into the mokoro industry, 1988, Gaborone: Kalahari Conservation Society 1 22

[11]

Ellery WN, Ellery K, McCarthy TS. Plant distribution in Islands of the Okavango Delta, Botswana: determinants and feedback interactions. Afr J Ecol, 1993, 31: 118-134.

[12]

Ferreira LV, Stohlgren TJ. Effects of river level fluctuation on plant species richness, diversity and distribution in a floodplain forest in central Amazonia. Oecologia, 1999, 120: 582-587.

[13]

George AK, Walker KF, Lewis MM. Population status of eucalypt trees on the River Murray floodplain, South Australia. Res Appl, 2005, 21: 271-282.

[14]

Guilloy-Forget H, Muller E, Barsoum N, Hughes FMR. Dispersal, germination and survival of Populus nigra L. (Salicaceae) in changing hydrological conditions. Wetlands, 2002, 22: 478-488.

[15]

Gurmessa F, Soromessa T, Kelbessa E. Structure and regeneration status of Komto Afromontane moist forest, East Wollega Zone, West Ethiopia. J For Res, 2012, 23: 205-216.

[16]

Hamandawana H. The impacts of herbivory on vegetation in Moremi game reserve, Botswana: 1967–2001. Reg Environ Change, 2012, 12: 1-5.

[17]

Harting EK, Grozeu O, Rosenzweig C. Climate change, agriculture and wetlands in Eastern Europe: vulnerability, adaptation and policy. Clim Change, 1997, 36: 107-121.

[18]

Heath A, Heath R. Field guide to the plants of Northern Botswana including the Okavango Delta, 2009, Kew: Kew Publishing 1 593

[19]

Helm CV, Witkowski ETF. Characterising wide spatial variation in population size structure of a key stone savanna tree. For Ecol Manage, 2012, 263: 175-188.

[20]

Hermy M, Verheyen K. Legacies of the past in the present day biodiversity: a review of past land-use effects on forest plant species composition and diversity. Ecol Reserv, 2007, 22: 361-371.

[21]

Irvine JR, West NE. Riparian tree species distribution and succession along the lower Escalante River, Utah. Southwest Nat, 1979, 24: 331-346.

[22]

Jackson TP, Mosojane S, Ferreira SM, van Aarde RJ. Solutions for elephant Loxondota Africana crop raiding in Northern Botswana: moving away from symptomatic approaches. Oryx, 2008, 42: 83-91.

[23]

Jones RH, Sharitz RR, Dixon PM, Segal DS, Schneider RL. Woody plant regeneration in four floodplain forests. Ecol Monogr, 1994, 64: 345-367.

[24]

Keestra SD, Geissen V, Mosse K, Piiranen S, Scudiero E, Leistra M, va Schaik L. Soil as a filter for groundwater quality. Curr opin environ sustain, 2012, 4: 507-516.

[25]

Lubinda KA (2015) Evapotranspiration in various riparian woodland species of the Okavango Delta. MPhil Thesis. University of Botswana, Botswana

[26]

Mathooko JM, Kariuki ST. Disturbances and species distribution of the riparian vegetation of rift valley stream. Afr J Ecol, 2000, 38: 123-129.

[27]

Mazvimavi D, Wolski P. Long-term variations of annual flows of the Okavango and Zambezi Rivers. Phys Chem Earth, 2006, 31: 944-951.

[28]

Mbaiwa JE. Wildlife resource utilization at Moremi game reserve and Khwai community area in the Okavango Delta, Botswana. J Environ Manage, 2005, 77: 144-156.

[29]

Mbaiwa JE, Thakadu OT, Darkoh MBK. Indigenous knowledge and ecotourism-based livelihoods in the Okavango Delta in Botswana. Bots Notes Rec, 2008, 39: 62-74.

[30]

McCarthy TS, Ellery WN. The effect of vegetation on soil and groundwater chemistry and hydrology of islands in the seasonal swamps of the Okavango fan, Botswana. J Hydrol, 1994, 154: 169-193.

[31]

Murkin HR. Freshwater functions and values of Prairie wetlands. Great Plains Res, 1998, 8: 3-15.

[32]

Mwavu EN, Witkowski ETF. Seedling regeneration, environment and management in a semi-deciduous African tropical rain forest. J Veg Sci, 2009, 20: 791-804.

[33]

Neelo J, Teketay D, Masamba W, Kashe K. Diversity, population structure and regeneration status of woody species in dry woodlands adjacent to molapo in Northern Botswana. Open J For, 2013, 3: 138-151.

[34]

Neelo J, Kashe K, Teketay D, Masamba W. Ethnobotanical survey of woody plants in Shorobe and Xobe villages, northwest region of Botswana. Ethno Res App, 2015, 14: 367-379.

[35]

Pettit NE, Froend RH. Variability in flood disturbance and the impact on riparian tree recruitment in two contrasting river systems. Wetl Ecol Manage, 2001, 9: 13-25.

[36]

Reddy KR, Gale PM. Wetland processes and water quality: symposium overview. J Environ Qual, 1994, 23: 875-877.

[37]

Salinas MJ, Casas JJ. Riparian vegetation of two Semi-arid Mediterranean rivers. Basin-Scale responses of woody and herbaceous plants to environmental gradients. Wetlands, 2007, 27: 831-845.

[38]

Seavy NE, Gardali T, Golet GH, Griggs FT, Howell SL, Weigand JF. Why climate changes makes riparian restoration more important than ever: recommendations for practice and research. Ecol Restor, 2009, 27: 330-338.

[39]

Senbeta F, Denich M. Diversity, community types and population structure of woody plants in Kimphe in forest, a virgin nature reserve in Southern Ethiopia. Ethiop J Biol Sci, 2003, 2: 169-187.

[40]

Setshogo MP, Venter F (2003) Trees of Botswana: names and distribution. Southern African Botanical Diversity Network Report No. 18. South Africa: Southern African Botanical Diversity Network, p 1–151

[41]

Shackleton CM. Demography and dynamics of the dominant woody species in a communal and protected area of the Eastern Transvaal Lowveld. S Afr J Bot, 1993, 59: 569-574.

[42]

Sop TK, Oldeland J, Schmiedel U, Ouedraogo I, Thiombiano A. Population structure of three woody species in four ethnic domains of the sub-sahel of Burkina Faso. Land Degrad Dev, 2011, 9: 13-25.

[43]

Tlou T. History of Ngamiland: 1750–1906. The formation of an African state, 1985, Gaborone: Macmillan Publishing Company 1 174

[44]

Traoré L, Sop TK, Dayamba SD, Traoré S, Hahn K, Thiombiano A. Do protected areas really work to conserve species? A case study of three vulnerable woody species in the Sudanian zone of Burkina Faso. Environ Dev Sustain, 2013, 15: 663-686.

[45]

Tsheboeng G, Murray-Hudson M (2013) Spatial variation of population size structure of selected riparian tree species in the Okavango Delta, Botswana. In: Oldeland J, Erb C, Finckh M, Jürgens N (eds) Environmental assessments in the Okavango Region, vol 5. Biodivers Ecol, pp 341–350

[46]

Van der Valk A. The biology of freshwater wetlands, 2006, Oxford: Oxford University Press 199 397

[47]

Wolski P, Murray-Hudson M, Fernqvist P, Liden P, Huntsman-Mapila P, Ramberg L. Islands in the Okavango Delta as sinks of water borne nutrients. Bots Notes Rec, 2006, 37: 253-263.

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