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Grazing and Fire Effects on Community and Ecosystem Processes in a Tall-Grass Mesic Savanna Ecosystem in Southern India

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Part of the book series: Ecological Studies ((ECOLSTUD,volume 225))

Abstract

Grazing and fire are processes that are integral to savannas and grasslands worldwide. However, very few studies have evaluated the effects of fire and grazing on community and ecosystem processes in savannas and grasslands in the Indian context. Here, I report results from an experimental study that investigated the individual and interactive effects of grazing and fire on community and ecosystem level processes in mesic tall-grass savannas of the southern Western Ghats, India. Burning had no effect on species richness or composition of herbaceous plant communities in these grasslands, and within 2 years following burning vegetative cover in burnt plots was indistinguishable from unburned plots. Grazing treatments, on the other hand, significantly reduced the relative abundance of the dominant tall-grass species Cymbopogon flexuosus in plots, resulting in a concomitant increase in herbaceous plant species richness relative to unburned plots. At the ecosystem level, grazers did not enhance soil N availability and N turnover rates in this mesic tall-grass savanna, which is most likely a consequence of the low herbivore densities in the study area. Burning, on the other hand, resulted in greater soil N availability in plots at the start of the growing season, but such effects were short-lived and did not persist. Interestingly, greater soil N availability in burnt plots appeared to be a consequence of lowered N uptake by plants, associated with lower plant biomass in burned plots, rather than an increase in N mineralization rates in soils. Results from this study suggest that tall-grass communities dominated by C. flexuosus are quite stable with respect to perturbations by fire. However, grazers, when coupled with fire, have the potential to significantly enhance species richness and induce plant compositional shifts in this mesic tall-grass savanna, particularly when grazing intensity is high.

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References

  • Allred BW, Fuhlendorf SD, Engle DM et al (2011) Ungulate preference for burned patches reveals strength of fire–grazing. Ecol Evol 1:132–144

    Article  PubMed  PubMed Central  Google Scholar 

  • Archibald S, Bond WJ (2004) Grazer movements: spatial and temporal responses to burning in a tall-grass African savanna. Int J Wildland Fire 13:377–385

    Article  Google Scholar 

  • Archibald S, Bond WJ, Stock WD et al (2005) Shaping the landscape: fire-grazer interactions in an African savanna. Ecol Appl 15:96–109

    Article  Google Scholar 

  • Augustine DJ, McNaughton SJ (1998) Ungulate effects on the functional species composition of plant communities: herbivore selectivity and plant tolerance. J Wildl Manag 62:1165–1183

    Article  Google Scholar 

  • Augustine DJ, McNaughton SJ (2004) Temporal asynchrony in soil nutrient dynamics and plant production in a semiarid ecosystem. Ecosystems 7:829–840

    Article  CAS  Google Scholar 

  • Augustine DJ, McNaughton SJ (2006) Interactive effects of ungulate herbivores, soil fertility, and variable rainfall on ecosystem processes in a semi-arid savanna. Ecosystems 9:1242–1256

    Article  CAS  Google Scholar 

  • Augustine DJ, Brewer P, Blumenthal DM et al (2014) Prescribed fire, soil inorganic nitrogen dynamics, and plant responses in a semiarid grassland. J Arid Environ 104:59–66

    Article  Google Scholar 

  • Bardgett RD, Wardle DA, Yeates GW (1998) Linking above-ground and below-ground interactions: how plant responses to foliar herbivory influence soil organisms. Soil Biol Biochem 30:1867–1878

    Article  CAS  Google Scholar 

  • Beerling DJ, Osborne CP (2006) The origin of the savanna biome. Glob Change Biol 12:2023–2031

    Article  Google Scholar 

  • Belsky AJ (1992) Effects of grazing, competition, disturbance and fire on species composition and diversity in grassland communities. J Veg Sci 3:187–200

    Article  Google Scholar 

  • Bernhard-Reversat F (1982) Biogeochemical cycle of nitrogen in a semi-arid savanna. Oikos 38:321–332

    Article  Google Scholar 

  • Blair JM (1997) Fire, N availability, and plant response in grasslands: a test of the transient maxima hypothesis. Ecology 78:2359–2368

    Article  Google Scholar 

  • Bodmer RE (1990) Ungulate frugivores and the browser-grazer continuum. Oikos 57:319–325

    Article  Google Scholar 

  • Bond WJ (2008) What limits trees in C4 grasslands and savannas? Annu Rev Ecol Evol Syst 39:641–659

    Article  Google Scholar 

  • Bond WJ, Keeley JE (2005) Fire as a global ‘herbivore’: the ecology and evolution of flammable ecosystems. Trends Ecol Evol 20:387–394

    Article  PubMed  Google Scholar 

  • Bond WJ, Parr CL (2010) Beyond the forest edge: ecology, diversity and conservation of the grassy biomes. Biol Conserv 143:2395–2404

    Article  Google Scholar 

  • Bouchenak-Khelladi Y, Verboom GA, Hodkinson TR et al (2009) The origins and diversification of C4 grasses and savanna-adapted ungulates. Glob Change Biol 15:2397–2417

    Article  Google Scholar 

  • Brooks PD, Williams MW, Schmidt SK (1998) Inorganic nitrogen and microbial biomass dynamics before and during spring snowmelt. Biogeochemistry 43:1–15

    Article  Google Scholar 

  • Collin SL, Gibson DJ (1990) Effects of fire on community structure in tallgrass and mixed-grass prairie. In: Collins SL, Wallace LL (eds) Fire in North American tallgrass prairies. University of Oklahoma Press, Norman, pp 81–98

    Google Scholar 

  • Collins SL, Glenn SM, Gibson DJ (1995) Experimental analysis of intermediate disturbance and initial floristic composition: decoupling cause and effect. Ecology 76:486–492

    Article  Google Scholar 

  • Collins SL, Knapp AK, Briggs JM et al (1998) Modulation of diversity by grazing and mowing in native tallgrass prairie. Science 280:745–747

    Article  CAS  PubMed  Google Scholar 

  • D’Antonio CM, Vitousek PM (1992) Biological invasions by exotic grasses, the grass/fire cycle, and global change. Annu Rev Ecol Syst 23:63–87

    Article  Google Scholar 

  • Dublin HT, Sinclair ARE, McGlade J (1990) Elephants and fire as causes of multiple stable states in the Serengeti-Mara woodlands. J Anim Ecol 59:1147–1164

    Article  Google Scholar 

  • Edwards EJ, Osborne CP, Strömberg CA et al (2010) The origins of C4 grasslands: integrating evolutionary and ecosystem science. Science 328:587–591

    Article  CAS  PubMed  Google Scholar 

  • Frank DA, Groffman PM (1998) Ungulate versus topographic control of soil carbon and nitrogen processes in grasslands of Yellowstone National Park. Ecology 79:2229–2241

    Article  Google Scholar 

  • Frank DA, McNaughton SJ (1993) Evidence for the promotion of aboveground grassland production by native large herbivores in Yellowstone National Park. Oecologia 96:157–161

    Article  Google Scholar 

  • Frank DA, Inouye RS, Huntly N et al (1994) The biogeochemistry of a north-temperate grassland with native ungulates: nitrogen dynamics in Yellowstone National Park. Biogeochemistry 26:163–188

    Article  Google Scholar 

  • Frank DA, Groffman PM, Evans RD et al (2000) Ungulate stimulation of nitrogen cycling and retention in Yellowstone Park grasslands. Oecologia 123:116–121

    Article  Google Scholar 

  • Ganesh T, Ganesan R, Soubadra Devy M et al (1996) Assessment of plant biodiversity at a mid-elevational evergreen forest of Kalakad-Mundanthurai Tiger Reserve, Western Ghats, India. Curr Sci 71:379–392

    Google Scholar 

  • Hamilton EW, Frank DA (2001) Can plants stimulate soil microbes and their own nutrient supply? Evidence from a grazing tolerant grass. Ecology 82:2397–2402

    Article  Google Scholar 

  • Higgins SI, Bond WJ, February EC et al (2007) Effects of four decades of fire manipulation on woody vegetation structure in savanna. Ecology 88:1119–1125

    Article  PubMed  Google Scholar 

  • Hobbs NT (1996) Modification of ecosystems by ungulates. J Wildl Manag 60:695–713

    Article  Google Scholar 

  • Hobbs NT, Schimel DS (1984) Fire effects on nitrogen mineralization and fixation in mountain shrub and grassland communities. J Range Manag 37:402–405

    Article  CAS  Google Scholar 

  • Hobbs NT, Schimel DS, Owensby CE et al (1991) Fire and grazing in the tallgrass prairie: contingent effects on nitrogen budgets. Ecology 72:1374–1382

    Article  Google Scholar 

  • Holland EA, Detling JK (1990) Plant response to herbivory and below-ground nitrogen cycling. Ecology 71:1040–1049

    Article  Google Scholar 

  • Hulbert LC (1986) Fire effects on tallgrass prairie. In: Clambey GK, Pemble RH (eds) Proceedings of the Ninth North American Prairie Conference. Tri-College University Center for Environmental Studies, Fargo, North Dakota, pp 138–142

    Google Scholar 

  • Jackson L, Strauss RB, Firestone M et al (1988) Plant and soil nitrogen dynamics in California annual grassland. Plant Soil 110:9–17

    Article  Google Scholar 

  • Johnsingh AJT, Joshua J (1994) Avifauna in three vegetation types of Mundanthurai Plateau, South India. J Trop Ecol 10:323–335

    Article  Google Scholar 

  • Johnsingh AJT, Sankar K (1991) Food plants of chital, sambar and cattle on Mundanthurai Plateau, Tamil Nadu, south India. Mammalia 55:57–63

    Article  Google Scholar 

  • Joshua J, Johnsingh AJT (1987) Observations on birds on Mundanthurai Plateau, Tamil Nadu. J Bombay Nat Hist Soc 85:565–577

    Google Scholar 

  • Karki JB, Jhala YV, Khanna PP (2000) Grazing lawns in Terai Grasslands, Royal Bardia National Park, Nepal1. Biotropica 32:423–429

    Article  Google Scholar 

  • Katti M (1997) Ecology and evolution of non-breeding distributions in the old world leaf warblers. Dissertation, University of California, San Diego

    Google Scholar 

  • Kauffman JB, Cummings DL, Ward DE (1994) Relationships of fire, biomass and nutrient dynamics along a vegetation gradient in the Brazilian cerrado. J Ecol 82:519–531

    Article  Google Scholar 

  • Koerner SE, Collins SL (2014) Interactive effects of grazing, drought, and fire on grassland plant communities in North America and South Africa. Ecology 95:98–109

    Article  PubMed  Google Scholar 

  • Kothari A, Pande P, Singh S et al (1989) Management of National Parks and Sanctuaries in India: a status report. Indian Institute of Public Administration, New Delhi, India

    Google Scholar 

  • MacFadden BJ, Ceding TE (1994) Fossil horses, carbon isotopes and global change. Trends Ecol Evol 9:481–486

    Article  CAS  PubMed  Google Scholar 

  • McNaughton SJ (1983) Serengeti grassland ecology: the role of composite environmental factors and contingency in community organization. Ecol Monogr 53:291–320

    Article  Google Scholar 

  • McNaughton SJ (1985) Ecology of a grazing ecosystem: the Serengeti. Ecol Monogr 55:259–294

    Article  Google Scholar 

  • McNaughton SJ (1992) The propagation of disturbance in savannas through food webs. J Veg Sci 3:301–314

    Article  Google Scholar 

  • McNaughton SJ, Ruess RW, Seagle SW (1988) Large mammals and process dynamics in African ecosystems. Bioscience 38:794–800

    Article  Google Scholar 

  • McNaughton SJ, Banyikwa FF, McNaughton MM (1997) Promotion of the cycling of diet-enhancing nutrients by African grazers. Science 278:1798–1800

    Article  CAS  PubMed  Google Scholar 

  • Milchunas DG, Lauenroth WK (1993) Quantitative effects of grazing on vegetation and soils over a global range of environments. Ecol Monogr 63:327–366

    Article  Google Scholar 

  • Milchunas DG, Sala OE, Lauenroth WK (1988) A generalized model of the effects of grazing by large herbivores on grassland community structure. Am Nat 132:87–106

    Article  Google Scholar 

  • Myers N, Mittermeier RA, Mittermeier CG et al (2000) Biodiversity hotspots for conservation priorities. Nature 403:853–858

    Article  CAS  PubMed  Google Scholar 

  • Naiman RJ (1988) Animal influences on ecosystem dynamics. Bioscience 38:750–752

    Article  Google Scholar 

  • Ojima DS, Schimel DS, Parton WJ et al (1994) Long-and short-term effects of fire on nitrogen cycling in tallgrass prairie. Biogeochemistry 24:67–84

    Article  Google Scholar 

  • Olff H, Ritchie ME (1998) Effects of herbivores on grassland plant diversity. Trends Ecol Evol 13:261–265

    Article  CAS  PubMed  Google Scholar 

  • Pandey CB, Singh JS (1991) Influence of grazing and soil conditions on secondary savanna vegetation in India. J Veg Sci 2:95–102

    Article  Google Scholar 

  • Pastor J, Aber J, McClaugherty C et al (1984) Aboveground production and N and P cycling along a nitrogen mineralization gradient on Blackhawk Island, Wisconsin. Ecology 65:256–268

    Article  CAS  Google Scholar 

  • Proulx M, Mazumder A (1998) Reversal of grazing impact on plant species richness in nutrient-poor vs. nutrient-rich ecosystems. Ecology 79:2581–2592

    Article  Google Scholar 

  • Raison RJ (1979) Modification of the soil environment by vegetation fires, with particular reference to nitrogen transformations: a review. Plant Soil 51:73–108

    Article  CAS  Google Scholar 

  • Ramesh BR, Menon S, Bawa KS (1997) A vegetation based approach to biodiversity gap analysis in the Agastyamalai Region, Western Ghats, India. Ambio 26:529–536

    Google Scholar 

  • Ratnam J, Bond WJ, Fensham RJ et al (2011) When is a ‘forest’ a savanna, and why does it matter? Glob Ecol Biogeogr 20:653–660

    Article  Google Scholar 

  • Reich PB, Peterson DW, Wedin DA et al (2001) Fire and vegetation effects on productivity and nitrogen cycling across a forest-grassland continuum. Ecology 82:1703–1719

    Google Scholar 

  • Ritchie ME, Tilman D, Knops JMH (1998) Herbivore effects on plant and nitrogen dynamics in oak savanna. Ecology 79:165–177

    Article  Google Scholar 

  • Ruess RW, McNaughton SJ (1987) Grazing and the dynamics of nutrient and energy regulated microbial processes in the Serengeti grasslands. Oikos 49:101–110

    Article  Google Scholar 

  • Sankaran M (2001) Disturbance, diversity and community dynamics in a Southern Indian savanna-grassland ecosystem. Dissertation, Syracuse University

    Google Scholar 

  • Sankaran M (2005) Fire, grazing and the dynamics of tall-grass savannas in the Kalakad-Mundanthurai Tiger Reserve, South India. Conserv Soc 3:4–25

    Google Scholar 

  • Sankaran M, Augustine DJ (2004) Large herbivores suppress decomposer abundance in a semiarid grazing ecosystem. Ecology 85:1052–1061

    Article  Google Scholar 

  • Sankaran M, Ratnam J, Hanan NP (2004) Tree–grass coexistence in savannas revisited—insights from an examination of assumptions and mechanisms invoked in existing models. Ecol Lett 7:480–490

    Article  Google Scholar 

  • Sankaran M, Hanan NP, Scholes RJ et al (2005) Determinants of woody cover in African savannas. Nature 438:846–849

    Article  CAS  PubMed  Google Scholar 

  • Sankaran M, Ratnam J, Hanan NP (2008) Woody cover in African savannas: the role of resources, fire and herbivory. Glob Ecol Biogeogr 17:236–245

    Article  Google Scholar 

  • Sankaran M, Augustine DJ, Ratnam J (2013) Native ungulates of diverse body sizes collectively regulate long-term woody plant demography and structure of a semi-arid savanna. J Ecol 101:1389–1399

    Article  Google Scholar 

  • Seastedt TR, Ramundo RA (1990) The influence of fire on belowground processes of tallgrass prairie. In: Collins SL, Wallace LL (eds) Fire in North American tallgrass prairies. University of Oklahoma Press, Norman, pp 99–117

    Google Scholar 

  • Seastedt TR, Briggs JM, Gibson DJ (1991) Controls of nitrogen limitation in tallgrass prairie. Oecologia 87:72–79

    Article  Google Scholar 

  • Singh JS, Raghubanshi AS, Singh RS et al (1989) Microbial biomass acts as a source of plant nutrients in dry tropical forest and savanna. Nature 338:499–500

    Article  Google Scholar 

  • Singh RS, Raghubanshi AS, Singh JS (1991) Nitrogen-mineralization in dry tropical savanna: effects of burning and grazing. Soil Biol Biochem 23:269–273

    Article  CAS  Google Scholar 

  • Stock WD, Lewis OAM (1986) Soil nitrogen and the role of fire as a mineralizing agent in a South African coastal fynbos ecosystem. The Journal of Ecology 74:317–328

    Article  Google Scholar 

  • Turner CL, Blair JM, Schartz RJ et al (1997) Soil N and plant responses to fire, topography, and supplemental N in tallgrass prairie. Ecology 78:1832–1843

    Article  Google Scholar 

  • Uys RG, Bond WL, Everson TM (2004) The effect of different fire regimes on plant diversity in southern African grasslands. Biol Conserv 118:489–499

    Article  Google Scholar 

  • Vesey-Fitzgerald DR (1973) East African Grasslands. East African Publishing House, Nairobi, Kenya

    Google Scholar 

  • Vinton MA, Hartnett DC, Finck EJ et al (1993) Interactive effects of fire, Bison (Bison bison) grazing and plant community composition in tallgrass Prairie. Am Midl Nat 129:10–18

    Article  Google Scholar 

  • Viswanathan V (1996) Estimation of density of some herbivores in Mundanthurai using the line transect method. MSc Dissertation, Pondicherry University

    Google Scholar 

  • Vitousek PM, Howarth RW (1991) Nitrogen limitation on land and in the sea: how can it occur? Biogeochemistry 13:87–115

    Article  Google Scholar 

  • Wilsey B (1996) Variation in the use of green flushes following burns among African Ungulate species: the importance of body size. Afr J Ecol 34:32–38

    Article  Google Scholar 

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Sankaran, M. (2016). Grazing and Fire Effects on Community and Ecosystem Processes in a Tall-Grass Mesic Savanna Ecosystem in Southern India. In: Ahrestani, F., Sankaran, M. (eds) The Ecology of Large Herbivores in South and Southeast Asia. Ecological Studies, vol 225. Springer, Dordrecht. https://doi.org/10.1007/978-94-017-7570-0_8

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