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Australian Journal of Botany Australian Journal of Botany Society
Southern hemisphere botanical ecosystems
RESEARCH ARTICLE

Fire exclusion and soil texture interact to influence temperate grassland flora in south-eastern Australia

Claire Moxham A D , Josh Dorrough B , Mick Bramwell C and Brad J. Farmilo A
+ Author Affiliations
- Author Affiliations

A Arthur Rylah Institute, Department of Environment, Land, Water and Planning, PO Box 137, Heidelberg, Vic. 3084, Australia.

B Natural Regeneration Australia, PO Box 9103, Wyndham, NSW 2550, Australia.

C Gippsland Region, Department of Environment, Land, Water and Planning, 574 Main Street, Bairnsdale Vic. 3875, Australia.

D Corresponding author. Email: Claire.Moxham@delwp.vic.gov.au

Australian Journal of Botany 64(5) 417-426 https://doi.org/10.1071/BT16056
Submitted: 23 March 2016  Accepted: 6 July 2016   Published: 5 August 2016

Abstract

Fire has a major influence on the structure and composition of temperate grasslands and woodlands. We investigated whether the impacts of fire exclusion on a temperate grassland plant community varied according to the scale of investigation and soil texture. Ten sites with known fire histories were selected along a soil texture gradient in south-eastern Australia. Floristics and ground layer attributes were investigated at small (0.25 m2) and large (100 m2) spatial scales in regularly burnt and unburnt grasslands. Fire exclusion over a 10 year period led to declines in native species diversity, richness and cover at both spatial scales and in most cases effects were consistent regardless of soil texture. However, the richness of native plant species at small scales and the cover of native plants at large scales were most negatively influenced by fire exclusion on fine textured soils. Conversely, at large scales, exotic plant richness and cover were only weakly increased by fire exclusion. Responses of eight common species were modelled and in seven of these, fire exclusion was a strong predictor of occurrence, although both positive and negative responses were observed. These results reiterate the importance of frequent fire as a management tool in temperate grasslands, but also shed light on how sites may require specific fire management regimes depending on the underlying soil texture.

Additional keywords: plant community composition, spatial scale, Themeda.


References

Abrams MD, Knapp AK, Hulbert LC (1986) A ten-year record of aboveground biomass in a Kansas tallgrass prairie: effects of fire and topographic position. American Journal of Botany 73, 1509–1515.
A ten-year record of aboveground biomass in a Kansas tallgrass prairie: effects of fire and topographic position.Crossref | GoogleScholarGoogle Scholar |

Adams J (1987) ‘Path among the years. History of the Shire of Bairnsdale.’ (Bairnsdale Shire Council: Bairnsdale, Vic.)

Aldrick JM, Hook RA, van de Graff RHM, Nicholson BM, O’Beirne DA, Schoknecht NR (1984) ‘A study of the land in the catchment of the Gippsland Lakes. TC-17.’ (Department of Conservation Forests and Lands: Melbourne)

Andrew MH, Lange RT (1986) Development of a new pio-sphere in arid chenopod shrubland grazed by sheep. 1. Changes to the soil surface. Australian Journal of Ecology 11, 395–409.
Development of a new pio-sphere in arid chenopod shrubland grazed by sheep. 1. Changes to the soil surface.Crossref | GoogleScholarGoogle Scholar |

Australian Bureau of Meteorology (2016) Minimum and maximum temperature and annual rainfall data. Available at www.bom.gov.au/climate/data [Verified January 2016].

Barton K (2016) ‘MuMIn: Multi-Model Inference. R package ver. 1.15.6.’ Available at http://CRAN.R-project.org/package=MuMIn [Verified 25 January 2016].

Bates D, Maechler M, Bolker B (2012) ‘lme4: Linear mixed-effects models using S4 classes. R package ver. 0.999375–42.’ Available at http://cran.R-project.org/package=lme4 [Verified 30 November 2015].

Bond WJ (2008) What limits trees in C4 grasslands and savannas? Annual Review of Ecology Evolution and Systematics 39, 641–659.
What limits trees in C4 grasslands and savannas?Crossref | GoogleScholarGoogle Scholar |

Bond WJ, Keeley JE (2005) Fire as a global ‘herbivore’: the ecology and evolution of flammable ecosystems. Trends in Ecology & Evolution 20, 387–394.
Fire as a global ‘herbivore’: the ecology and evolution of flammable ecosystems.Crossref | GoogleScholarGoogle Scholar |

Briggs JM, Knapp AK (1995) Interannual variability in primary production in tallgrass prairie: climate, soil moisture, topographic position, and fire as determinants of above ground biomass. American Journal of Botany 82, 1024–1030.
Interannual variability in primary production in tallgrass prairie: climate, soil moisture, topographic position, and fire as determinants of above ground biomass.Crossref | GoogleScholarGoogle Scholar |

Brockway D, Gatewood RG, Paris RB (2002) Restoring fire as an ecological process in shortgrass prairie ecosystems: initial effects of prescribed burning during the dormant and growing seasons. Journal of Environmental Management 65, 135–152.
Restoring fire as an ecological process in shortgrass prairie ecosystems: initial effects of prescribed burning during the dormant and growing seasons.Crossref | GoogleScholarGoogle Scholar | 12197076PubMed |

Burnham KP, Anderson DR (2002) ‘Model selection and multi-model inference: a practical information-theoretic approach.’ (Springer: New York)

Collins SL, Calabrese LB (2012) Effects of fire, grazing and topographic variation on vegetation structure in tallgrass prairie. Journal of Vegetation Science 23, 563–575.
Effects of fire, grazing and topographic variation on vegetation structure in tallgrass prairie.Crossref | GoogleScholarGoogle Scholar |

Department of Environment Water, Heritage and the Arts [DEWHA] (2008) Conservation listing advice for Gippsland Red Gum (Eucalyptus tereticornis subsp. mediana) Grassy Woodland and Associated Native Grassland. (Department of Environment, Water, Heritage and the Arts: Canberra) Available at http://www.environment.gov.au/cgi-bin/sprat/public/publicshowcommunity.pl?id=73 [Verified August 2012]

EPBC Act (1999) ‘The Environment, Protection and Biodiversity Conservation Act 1999.’ (Australian Government: Canberra)

English NB, Weltzin JF, Fravolini A, Thomas L, Williams DG (2005) The influence of soil texture and vegetation on soil moisture under rainout shelters in a semi-desert grassland. Journal of Arid Environments 63, 324–343.
The influence of soil texture and vegetation on soil moisture under rainout shelters in a semi-desert grassland.Crossref | GoogleScholarGoogle Scholar |

Epstein H (2012) Ecology: soil mediation in grasslands. Nature Climate Change 2, 711–712.
Ecology: soil mediation in grasslands.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC38XhsVSmsbrE&md5=bd9ad4a92929661487e6f10d5c235c11CAS |

Fairfax R, Fensham R, Butler D, Quinn K, Sigley B, Holman J (2009) Effects of multiple fires on tree invasion in montane grasslands. Landscape Ecology 24, 1363–1373.
Effects of multiple fires on tree invasion in montane grasslands.Crossref | GoogleScholarGoogle Scholar |

FFG Act (1988) ‘The Flora and Fauna Guarantee Act 1988.’ (Government of Victoria: Melbourne)

Fitzpatrick RW, McKenzie N, Maschmedt DJ (1999) Soil morphological indicators and their importance to soil fertility. In ‘Soil analysis: an interpretation manual’. (Eds KI Peverill, LA Sparrow, DJ Reuter) pp. 58–60. (CSIRO Publishing: Melbourne)

Genstat (2003) Genstat 7th Edn. (Lawes Agricultural Trust. VSN International Limited: Oxford).

Gibson DJ, Hulbert LC (1987) Effects of fire, topography and year-to-year climatic variation on species composition in tallgrass prairie. Vegetatio 72, 175–185.
Effects of fire, topography and year-to-year climatic variation on species composition in tallgrass prairie.Crossref | GoogleScholarGoogle Scholar |

Lane DR, Coffin DP, Lauenroth WK (1998) Effects of soil texture and precipitation on aboveground net primary productivity and vegetation structure across the Central Grassland region of the United States. Journal of Vegetation Science 9, 239–250.
Effects of soil texture and precipitation on aboveground net primary productivity and vegetation structure across the Central Grassland region of the United States.Crossref | GoogleScholarGoogle Scholar |

Lewis T, Reinf M, Prendergast E, Tran C (2012) The effect of long-term repeated burning and fire exclusion on above and below ground blackbutt (Eucalyptus pilularis) forest vegetation assemblages. Austral Ecology 37, 767–778.
The effect of long-term repeated burning and fire exclusion on above and below ground blackbutt (Eucalyptus pilularis) forest vegetation assemblages.Crossref | GoogleScholarGoogle Scholar |

Lunt ID (1994) Variation in flower production of nine grassland species with time since fire, and implications for grassland management and restoration. Pacific Conservation Biology 1, 359–366.
Variation in flower production of nine grassland species with time since fire, and implications for grassland management and restoration.Crossref | GoogleScholarGoogle Scholar |

Lunt ID (1997a) Effects of long-term vegetation management on remnant grassy forests and anthropogenic native grasslands in south-eastern Australia. Biological Conservation 81, 287–297.
Effects of long-term vegetation management on remnant grassy forests and anthropogenic native grasslands in south-eastern Australia.Crossref | GoogleScholarGoogle Scholar |

Lunt ID (1997b) The distribution and environmental relationships of native grasslands on the lowland Gippsland plain, Victoria: an historical study. Australian Geographical Studies 35, 140–152.
The distribution and environmental relationships of native grasslands on the lowland Gippsland plain, Victoria: an historical study.Crossref | GoogleScholarGoogle Scholar |

Lunt ID (1997c) Tree densities last century on the lowland Gippsland Plain, Victoria. Australian Geographical Studies 35, 342–348.
Tree densities last century on the lowland Gippsland Plain, Victoria.Crossref | GoogleScholarGoogle Scholar |

Lunt ID, Morgan JW (1999) Effect of fire frequency on plant composition at the Laverton North Grassland Reserve, Victoria. Victorian Naturalist 116, 84–90.

Lunt ID, Prober SM, Morgan JW (2012) How do fire regimes affect ecosystem structure, function and diversity in grasslands and grassy woodlands of southern Australia. In ‘Flammable Australia: fire regimes, biodiversity and ecosystems in a changing world’. (Eds RA Bradstock, AM Gill, RJ Wiliams). pp. 253–270. (CSIRO Publishing: Melbourne)

McDougall K (1989) The re-establishment of Themeda triandra (kangaroo grass): implications for the restoration of grassland. Arthur Rylah Institute for Environmental Research, Technical Report Series No. 89. Department of Conservation, Forests and Land, Melbourne, Vic.

Morgan JW (1999) Defining grassland fire events and the response of perennial plants to annual fire in temperate grasslands of south-eastern Australia. Plant Ecology 144, 127–144.
Defining grassland fire events and the response of perennial plants to annual fire in temperate grasslands of south-eastern Australia.Crossref | GoogleScholarGoogle Scholar |

Morgan JW (2004) Bryophyte composition in a native grassland community subjected to different long-term fire regimes. Cunninghamia 8, 485–489.

Morgan JW (2015) Biomass management in native grasslands. In ‘Land of sweeping plains: managing and restoring the native grasslands of south-eastern Australia’. (Eds NSG Williams, A Marshall and JW Morgan) pp. 202–213 (CSIRO Publishing: Melbourne)

Morgan JW, Lunt ID (1999) Effects of time-since-fire on the tussock dynamics of a dominant grass (Themeda triandra) in a temperate Australian grassland. Biological Conservation 88, 379–386.
Effects of time-since-fire on the tussock dynamics of a dominant grass (Themeda triandra) in a temperate Australian grassland.Crossref | GoogleScholarGoogle Scholar |

Morgan, JW, Williams, NSG (2015) The ecology and dynamics of temperate native grasslands in south-eastern Australia. In ‘Land of sweeping plains: managing and restoring the native grasslands of south-eastern Australia’. (Eds NSG Williams, A Marshall, JW Morgan) pp. 61–75. (CSIRO Publishing: Melbourne)

Noy-Meir I (1974) Desert ecosystems: higher trophic levels. Annual Review of Ecology and Systematics 5, 195–214.
Desert ecosystems: higher trophic levels.Crossref | GoogleScholarGoogle Scholar |

Prasse R, Bornkamm R (2000) Effect of microbiotic soil surface crusts on emergence of vascular plants. Plant Ecology 150, 65–75.
Effect of microbiotic soil surface crusts on emergence of vascular plants.Crossref | GoogleScholarGoogle Scholar |

Prober SM, Thiele KR, Lunt I (2007) Fire frequency regulates tussock grass composition, structure and resilience in endangered temperate woodlands. Austral Ecology 32, 808–824.
Fire frequency regulates tussock grass composition, structure and resilience in endangered temperate woodlands.Crossref | GoogleScholarGoogle Scholar |

R Core Team (2012) R: A language and environment for statistical computing. (R Foundation for Statistical Computing: Vienna)

Read CF, Duncan DH, Vesk PA, Elith J (2008) Biological soil crust distribution is related to patterns of fragmentation and landuse in a dryland agricultural landscape of southern Australia. Landscape Ecology 23, 1093–1105.
Biological soil crust distribution is related to patterns of fragmentation and landuse in a dryland agricultural landscape of southern Australia.Crossref | GoogleScholarGoogle Scholar |

Sala OE, Parton WJ, Joyce LA, Lauenroth WEK (1988) Primary production of the central grassland region of the United States. Ecology 69, 40–45.
Primary production of the central grassland region of the United States.Crossref | GoogleScholarGoogle Scholar |

Smith MS, Knapp AK (1999) Exotic plant species in a C4-dominated grasslands: invisibility, disturbance, and community structure. Oecologia 120, 605–612.
Exotic plant species in a C4-dominated grasslands: invisibility, disturbance, and community structure.Crossref | GoogleScholarGoogle Scholar |

Stuwe J, Parsons RF (1977) Themedia australis grasslands on the Basalt Plains, Victoria: floristics and management effects. Australian Journal of Ecology 2, 467–476.
Themedia australis grasslands on the Basalt Plains, Victoria: floristics and management effects.Crossref | GoogleScholarGoogle Scholar |

Su YG, Li XR, Cheng YW, Tan HJ, Jia RL (2007) Effects of biological soil crusts on emergence of desert vascular plants in north China. Plant Ecology 191, 11–19.
Effects of biological soil crusts on emergence of desert vascular plants in north China.Crossref | GoogleScholarGoogle Scholar |

Turner CL, Blair JM, Schartz RJ, Neel JC (1997) Soil N and plant responses to fire, topography, and supplemental N in tallgrass praire. Ecology 78, 1832–1843.
Soil N and plant responses to fire, topography, and supplemental N in tallgrass praire.Crossref | GoogleScholarGoogle Scholar |

Uys RG, Bond WJ, Everson TM (2004) The effect of different fire regimes on plant diversity in southern African grasslands. Biological Conservation 118, 489–499.
The effect of different fire regimes on plant diversity in southern African grasslands.Crossref | GoogleScholarGoogle Scholar |

Walsh NG, Entwisle TJ (1994) ‘Flora of Victoria. Vol. 2.’ (Inkata Press: Melbourne)

Walsh NG, Entwisle TJ (1996) ‘Flora of Victoria. Vol.3.’ (Inkata Press: Melbourne)

Walsh NG, Entwisle TJ (1999) ‘Flora of Victoria. Vol. 4.’ (Inkata Press: Melbourne)

Ward WT (1977) Geomorphology and soils of the Stratford-Bairnsdale area, East Gippsland, Victoria. Soils and Land Use Series No. 57. Division of Soils Commonwealth Scientific and Industrial Research Organisation, Australia, Melbourne, Vic.

Zuur AF, Ieno EN, Walker NJ, Saveliev AA, Smith GM (2009) ‘Mixed effects models and extensions in ecology with R.’ (Springer: New York)