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Australian Journal of Botany Australian Journal of Botany Society
Southern hemisphere botanical ecosystems
RESEARCH ARTICLE (Open Access)

Impact of Phytophthora dieback on a key heathland species Xanthorrhoea australis (Asphodelaceae) (austral grasstree) and floristic composition in the eastern Otways, Victoria

B. A. Wilson https://orcid.org/0000-0002-1821-1274 A * , S. P. Casey A , M. J. Garkaklis B , C. Learmonth A and T. Wevill A
+ Author Affiliations
- Author Affiliations

A School of Life and Environmental Sciences, Deakin University, Geelong, 3217, Vic., Australia.

B State of the Environment Pty Ltd., Aireys Inlet, Vic., Australia.

* Correspondence to: barbara.wilson@deakin.edu.au

Handling Editor: Steve Sinclair

Australian Journal of Botany 72, BT23076 https://doi.org/10.1071/BT23076
Submitted: 13 September 2023  Accepted: 7 February 2024  Published: 26 February 2024

© 2024 The Author(s) (or their employer(s)). Published by CSIRO Publishing. This is an open access article distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (CC BY-NC-ND)

Abstract

Context

The plant pathogen Phytophthora cinnamomi causes severe declines in susceptible vegetation, including loss of plant species, vegetation structure and fauna abundance. Grasstrees (Xanthorrhoea spp.) are keystone species that provide optimal habitat for vertebrates and invertebrates and are highly susceptible to the pathogen. Although effects in the Otway Ranges have been assessed at specific sites, there is less knowledge across the landscape on the extent of loss of Xanthorrhoea australis (austral grasstree).

Aims

The aims were thus to assess impacts at three Heathy Woodland sites and to determine the magnitude of loss of X. australis and susceptible species losses.

Methods

Floristic composition, species cover or abundance, and basal area of X. australis were recorded in quadrats within treatments (uninfested, infested, post-infested vegetation). Analyses included floristics (PRIMER v7), significant effects (ANOSIM), species contribution to similarity/dissimilarity (SIMPER). Species richness and susceptible species cover were analysed using two-way crossed ANOVAs to detect the influence of site, treatment, and interactions.

Key results

Species composition of uninfested vegetation was significantly different to infested and post-infested vegetation, with susceptible species more abundant in uninfested areas. Post-infested vegetation had the lowest percentage cover of susceptible species. The mean percentage cover of X. australis in uninfested vegetation (43%) was 10-fold greater than in infested areas (4.3%) and extremely low in post-infested vegetation (0.9%).

Conclusions

Susceptible species were subject to density declines and extirpation, and the loss of X. australis resulted in major structural vegetation changes.

Implications

These results have severe implications for heathy woodland communities and reliant fauna. Limiting the spread of P. cinnamomi and protecting grasstrees is critical for their security.

Keywords: austral grasstree, dieback, disease, Great Otway National Park, heathlands, keystone species, pathogen, Phytophthora cinnamomi, vegetation floristics, Xanthorrhoea australis.

References

Aberton MJ, Wilson BA, Cahill DM (1999) The use of potassium phosphonate to control Phytophthora cinnamomi in native vegetation at Anglesea, Victoria. Australasian Plant Pathology 28, 225-234.
| Crossref | Google Scholar |

Aberton MJ, Wilson BA, Hill J, Cahill DM (2001) Development of disease caused by Phytophthora cinnamomi in mature Xanthorrhoea australis. Australian Journal of Botany 49, 209-219.
| Crossref | Google Scholar |

Annett KM (2008) Effects of Phytophthora cinnamomi on heathland fauna and ecosystem function. PhD Thesis, Deakin University, Geelong, Victoria, Australia.

Armistead R (2008) The impact of Phytophthora cinnamomi on the distribution of the yellow footed antechinus (mardo) (Antechinus flavipes leucogaster) (Marsupialia: Dasyuridae). PhD Thesis, Murdoch University, Perth, WA, Australia.

Barrett S, Rathbone D (2018) Long-term phosphite application maintains species assemblages, richness and structure of plant communities invaded by Phytophthora cinnamomi. Austral Ecology 43, 360-374.
| Crossref | Google Scholar |

Bedford DJ (1986) Xanthorrhoea. In ‘Flora of Australia’. Vol. 46. (Ed. A George) pp. 148–169. (Australian Government Publishing: Canberra, ACT)

Bluett V, Weste G, Cahill D (2003) Distribution of disease caused by Phytophthora cinnamomi in Wilsons Promontory National Park and potential for further impact. Australasian Plant Pathology 32, 479-491.
| Crossref | Google Scholar |

Borsboom AC (2005) ‘Xanthorrhoea: a review of current knowledge with a focus on X. johnsonii and X. latifolia, two Queensland protected plants-in-trade.’ pp. 1–88. (Environmental Protection Agency: Qld, Australia). doi:10.13140/RG.2.1.1598.7043

Bureau of Meteorology (2021) Climate statistics for Australian locations. Available at http://www.bom.gov.au/climate/data/?ref=ftr

Burgess TI, Scott JK, McDougall KL, Stukely MJ, Crane C, Dunstan WA, Brigg F, Andjic V, White D, Rudman T, Arentz F, Ota N, Hardy GESJ (2017) Current and projected global distribution of Phytophthora cinnamomi, one of the world’s worst plant pathogens. Global Change Biology 23, 1661-1674.
| Crossref | Google Scholar | PubMed |

Burgess TI, López-Villamor A, Paap T, Williams B, Belhaj R, Crone M, Dunstan W, Howard K, Hardy GESJ (2021) Towards a best practice methodology for the detection of Phytophthora species in soils. Plant Pathology 70(3), 604-614.
| Crossref | Google Scholar |

Cahill D, Weste G (1983) Changes in respiration of seedling roots inoculated with Phytophthora cinnamomi. Journal of Phytopathology 106, 51-62.
| Crossref | Google Scholar |

Cahill D, Weste G, Grant B (1985) Leakage from seedling roots inoculated with Phytophthora cinnamomi. Journal of Phytopathology 114, 348-364.
| Crossref | Google Scholar |

Cahill D, Legge N, Grant B, Weste G (1989) Cellular and histological changes induced by Phytophthora cinnamomi in a group of plant species ranging from fully susceptible to fully resistant. Phytopathology 79, 417-424.
| Crossref | Google Scholar |

Cahill DM, Rookes JE, Wilson BA, Gibson L, McDougall KL (2008) Phytophthora cinnamomi and Australia’s biodiversity: impacts, predictions and progress towards control. Australian Journal of Botany 56, 279-310.
| Crossref | Google Scholar |

Carr GW (2017) An inventory of the vascular flora of the Anglesea and Aireys Inlet area, extending to Torquay on Tertiary and Quaternary sediments, eastern Otway Plain Bioregion. Angair, Anglesea, Victoria, Australia.

Castello JD, Leopold DJ, Smallidge PJ (1995) Pathogens, patterns, and processes in forest ecosystems. BioScience 45, 16-24.
| Crossref | Google Scholar |

Cheal D (2010) Growth stages and tolerable fire intervals for Victoria’s native vegetation data sets. Fire and Adaptive Management Report No. 84. Department of Sustainability and Environment, East Melbourne, Victoria, Australia.

Clark KR, Gorley RN (2015) PRIMER v7: User Manual/Tutorial Plymouth Routines in Multivariate Ecological Research. Available at https://www.primer-e.com/download/

Commonwealth of Australia (2018a) Threat abatement plan for disease in natural ecosystems caused by Phytophthora cinnamomi. (Department of Agriculture, Water and the Environment) Available at http://environment.gov.au/biodiversity/threatened/publications/threat-abatement-plan-disease-natural-ecosystems-caused-phytophthora- cinnamomi-2018 [Verified 6 June 2021]

Commonwealth of Australia (2018b) Background: threat abatement plan for disease in natural ecosystems caused by Phytophthora cinnamomi. (Department of Agriculture, Water and the Environment) Available at http://environment.gov.au/biodiversity/threatened/publications/threat-abatement-plan-disease-natural-ecosystems-caused-phytophthora- cinnamomi-2018 [Verified 6 June 2021]

Crone M, McComb JA, O’Brien PA, Hardy GEST (2014) Host removal as a potential control method for Phytophthora cinnamomi on severely impacted black gravel sites in the jarrah forest. Pathology 44, 154-159.
| Crossref | Google Scholar |

Cunningham SC, Griffioen P, White M, MacNally R (2013) Mapping the Condition of River Red Gum (Eucalyptus camaldulensis) and Black Box (Eucalyptus largiflorens) Stands in the Living Murray Icon Sites. Stand Condition Report 2012. Murray–Darling Basin Authority, Canberra, ACT, Australia.

Daniel R, Wilson BA, Cahill DM (2005) Potassium phosphonate alters the defence response of Xanthorrhoea australis following infection by Phytophthora cinnamomi. Australasian Plant Pathology 34, 541-548.
| Crossref | Google Scholar |

Dawson P, Weste G (1984) Impact of root infection by Phytophthora cinnamomi on the water relations of two Eucalyptus species that differ in susceptibility. Phytopathology 74, 486-490.
| Crossref | Google Scholar |

Dawson P, Weste G, Ashton D (1985) Regeneration of vegetation in the Brisbane Ranges after fire and infestation by Phytophthora cinnamomi. Australian Journal of Botany 33, 15-26.
| Crossref | Google Scholar |

Dunne CP, Crane CE, Biddulph D, Lee M, Young G, Massenbauer T, Barrett S, Comer S, Freebury GJC, Utber DJ, Grant MJ, Shearer BL (2011) A review of the catchment approach techniques used to manage Phytophthora cinnamomi infestation of native plant communities of the Fitzgerald River National Park on the south coast of Western Australia. New Zealand Journal of Forestry Science 41, S121-S132.
| Google Scholar |

Dunstan WA, Rudman T, Shearer BL, Moore NA, Paap T, Calver MC, Dell B, Hardy GESJ (2010) Containment and spot eradication of a highly destructive, invasive pathogen (Phytophthora cinnamomi) in natural ecosystems. Biological Invasions 12, 913-925.
| Crossref | Google Scholar |

Dunstan WA, Howard K, Grigg A, Shaw C, Burgess TI, Hardy GESJ (2020) Towards eradication of Phytophthora cinnamomi using a fallow approach in a mediterranean climate. Forests 11, 1101.
| Crossref | Google Scholar |

Environment Australia (2001) ‘Threat Abatement Plan for Dieback caused by the root-rot fungus Phytophthora cinnamomi.’ (Environment Australia: Canberra, ACT, Australia)

Forster E, McDonald M (2009) ‘Orchids of the Anglesea District.’ 3rd edn. (Inverted Logic: Brunswick, Vic., Australia)

Frazer DS, Petit S (2007) Use of Xanthorrhoea semiplana (grass-trees) for refuge by Rattus fuscipes (southern bush rat). Wildlife Research 34, 379-386.
| Crossref | Google Scholar |

Freestone M, Wills TJ, Read J (2015) Post-fire succession during the long-term absence of fire in coastal heathland and a test of the chronosequence survey method. Australian Journal of Botany 63, 572-580.
| Crossref | Google Scholar |

Garkaklis MJ, Wilson BA (2023) Wild Otways Initiative. Aerial and On-ground Phosphite Treatment Monitoring Procedures (Pre- and post-treatment). Unpublished Report to the Corangamite Catchment Management Authority, Victoria, Australia.

Garkaklis MJ, Calver MC, Wilson BA, Hardy GESJ (2004) Habitat alteration caused by an introduced plant disease, Phytophthora cinnamomi: a potential threat to the conservation of Australian forest fauna. In ‘Conservation of Australia’s Forest Fauna’. (Ed. D Lunney) pp. 899–913. (Royal Zoological Society of New South Wales) doi:10.7882/fs.2004.899

Garkaklis MJ, Learmonth C, Wilson BA (2022) Wild Otways Initiative – Project 3: Protecting Plant and Animal biodiversity in the Otway Ranges, Bells Beach (Ironbark Basin) and Great Ocean Road hinterland from Phytophthora dieback - Trial Phosphite spray and phytotoxicity survey at Eumeralla and Peregrine Track, Eastern Otways. Unpublished Report to the Corangamite Catchment Management Authority, Victoria.

Haby NA, Conran JG, Carthew SM (2013) Microhabitat and vegetation structure preference: an example using southern brown bandicoots (Isoodon obesulus obesulus). Journal of Mammalogy 94, 801-812.
| Crossref | Google Scholar |

Hansen EM (2008) Alien forest pathogens: Pytophthora species are changing world forests. Boreal Environment Research 13, 33-41.
| Google Scholar |

Hardy GESJ, Barrett S, Shearer BL (2001) The future of phosphite as a fungicide to control the soilborne plant pathogen Phytophthora cinnamomi in natural ecosystems. Australasian Plant Pathology 30, 133-139.
| Crossref | Google Scholar |

Havlin JL, Schlegel AJ (2021) Review of phosphite as a plant nutrient and fungicide. Soil Systems 5, 52.
| Crossref | Google Scholar |

Laidlaw WS, Wilson BA (2003) Floristic and structural characteristics of a coastal heathland exhibiting symptoms of Phytophthora cinnamomi infestation in the eastern Otway Ranges, Victoria. Australian Journal of Botany 51, 283-293.
| Crossref | Google Scholar |

Laidlow WS, Wilson BA (1989) Distribution and habitat preferences of small mammals in the eastern section of the Angahook-Lorne State Park. Victorian Naturalist 106, 224-236.
| Google Scholar |

Laidlaw WS, Wilson BA (2006) Habitat utilisation by small mammals in a coastal heathland exhibiting symptoms of Phytophthora cinnamomi infestation. Wildlife Research 33, 639-649.
| Crossref | Google Scholar |

Laidlaw WS, Hutchings S, Newell GR (1996) Home range and movement patterns of Sminthopsis leucopus (Marsupialia: Dasyuridae) in coastal dry heathland, Anglesea, Victoria. Australian Mammalogy 19, 1-9.
| Crossref | Google Scholar |

Lamont BB, Wittkuhn R, Korczynskyj D (2004) Ecology and ecophysiology of grasstrees. Australian Journal of Botany 52(5), 561-582.
| Crossref | Google Scholar |

Land Conservation Council (1985) ‘Report on the Melbourne Area, District 1 – Review.’ (Land Conservation Council: Melbourne, Victoria, Australia)

Lazenby BT, Pye T, Richardson A, Bryant SA (2007) Towards a habitat model for the New Holland mouse Pseudomys novaehollandiae in Tasmania – population vegetation associations and an investigation into individual habitat use. Australian Mammalogy 29, 137-148.
| Crossref | Google Scholar |

Lenth RV (2022) emmeans: Estimated Marginal Means, aka Least-Squares Means. Available at https://github.com/rvlenth/emmeans

Lewis S, Colquhoun I (2000) ‘Managing Phytophthora dieback. Guidelines for Local Government.’ (The Dieback Working Group: Perth, WA, Australia).

Lowe S, Browne M, Boudjelas S, De Poorter M (2000) ‘100 of the World’s Worst Invasive Alien Species. A Selection from the Global Invasive Species Database.’ (The Invasive Species Specialist Group (ISSG))

Marks GC, Smith IW (1991) The cinnamon fungus in Victorian forests. Lands and Forests Bulletin No. 31. (Department of Conservation and Environment: Melbourne, Vic., Australia)

Marchesan D, Carthew SM (2004) Autecology of the yellow-footed antechinus (Antechinus flavipes) in a fragmented landscape in southern Australia. Wildlife Research 31, 273-282.
| Crossref | Google Scholar |

McDougall KL (2005) The responses of native Australian plant species to Phytophthora cinnamomi. Appendix 4. In ‘Management of Phytophthora cinnamomi for Biodiversity Conservation in Australia: Part 2. National Best Practice’. (Eds E O’Gara, K Howard, B Wilson, GESJ Hardy) pp. 1–52. (Department of the Environment and Heritage: Canberra, ACT, Australia)

McDougall KL, Summerell BA (2003) The impact of Phytophthora cinnamomi on the flora and vegetation of New South Wales – a re-appraisal. In ‘Phytophthora in Forests and Natural Ecosystems, 2nd International IUFRO Working Party Meeting’, October 2003, Albany, WA, Australia. (Eds JA McComb, GS Hardy, I Tommerup) pp. 49–56. (Murdoch University: Perth, WA, Australia)

O’Gara E, Howard K, Wilson B, Hardy GES (2005) ‘Management of Phytophthora cinnamomi for biodiversity conservation in Australia: Parts 1 & 2.’ (Department of Environment and Heritage: Canberra, ACT, Australia)

Paull DJ (1993) The distribution, ecology and conservation of the southern brown bandicoot (Isoodon obesulus obesulus) in South Australia. Honours Thesis, University of Adelaide, SA, Australia.

Podger FD (1968) Aetiology of jarrah dieback and disease of dry sclerophyll Eucalyptus marginata forests in Western Australia. MSc Thesis, University of Melbourne, Vic., Australia.

Podger FD, Vear KR (1998) Background to the revision of CALM Policy Statement No. 3 ‘Management of Phytophthora and disease caused by it’. In ‘Phytophthora cinnamomi and disease caused by it. Vol. 1. Management guidelines’. (Department of Conservation and Land Management: Perth, WA, Australia)

Podger FD, Doepel RF, Zentmyer GA (1965) Association of Phytophthora cinnamomi with a disease of Eucalyptus marginata forest in Western Australia. Plant Disease Reporter 49, 943-947.
| Google Scholar |

R Core Team (2021) R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. Available at http://R-project.org [Verified 22 December 2021]

Shearer BL, Dillon M (1995) Susceptibility of plant species in Eucalyptus marginata forest to infection by Phytophthora cinnamomi. Australian Journal of Botany 43, 113-134.
| Crossref | Google Scholar |

Shearer BL, Dillon M (1996) Susceptibility of plant species in Banksia woodland on the Swan Coastal Plain, Western Australia, to infection by Phytophthora cinnamomi. Australian Journal of Botany 44, 433-445.
| Google Scholar |

Shearer BL, Tippett JT (1989) ‘Jarrah Dieback: the Dynamics and Management of Phytophthora cinnamomi in the Jarrah (Eucalyptus marginata) Forest of South-Western Australia.’ (Department of Conservation and Land Management: Perth, WA, Australia)

Smith KJ, Fleming PA, Kreplins TL, Wilson BA (2018) Population monitoring and habitat utilisation of the ash-grey mouse (Pseudomys albocinereus) in Western Australia. Australian Mammalogy 41(2), 170-178.
| Crossref | Google Scholar |

Spencer R-J, Cavanough VC, Baxter GS, Kennedy MS (2005) Adult free zones in small mammal populations: response of Australian native rodents to reduced cover. Austral Ecology 30, 868-876.
| Crossref | Google Scholar |

Swinburn ML, Fleming PA, Craig MD, Grigg AH, Garkaklis MJ, Hobbs RJ, Hardy GESJ (2007) The importance of grasstrees (Xanthorrhoea preissii) as habitat for mardo (Antechinus flavipes leucogaster) during post-fire recovery. Wildlife Research 34, 640-651.
| Crossref | Google Scholar |

Vernes K, Pope LC (2001) Fecundity, pouch young survivorship and breeding season of the northern bettong (Bettongia tropica) in the wild. Australian Mammalogy 23(2), 95-100.
| Crossref | Google Scholar |

Victorian Government Department of Sustainability and Environment (2004) Otway Plain bioregion Ecological Vegetation Class bioregion benchmark. Available at https://www.environment.vic.gov.au/biodiversity/bioregions-and-evc-benchmarks

Wark MC, White MD, Robertson DJ, Marriott PF (1987) Regeneration of heath and heath woodland in the north-eastern Otway Ranges, Australia, following the wildfire of February 1983. Proceedings of the Royal Society of Victoria 99, 51-88.
| Google Scholar |

Weste G (1974) Phytophthora cinnamomi – the cause of severe disease in certain native communities in Victoria. Australian Journal of Botany 22, 1-8.
| Crossref | Google Scholar |

Weste G (2003) The dieback cycle in Victorian forests: a 30-year study of changes caused by Phytophthora cinnamomi in Victorian open forests, woodlands and heathlands. Australasian Plant Pathology 32, 247-256.
| Crossref | Google Scholar |

Weste G, Kennedy J (1997) Regeneration of susceptible native species following a decline of Phytophthora cinnamomi over a period of 20 years on defined plots in the Grampians, Western Victoria. Australian Journal of Botany 45, 167-190.
| Crossref | Google Scholar |

Weste G, Walchhuetter T, Walshe T (1999) Regeneration of Xanthorrhoea australis following epidemic disease due to Phytophthora cinnamomi in the Brisbane Ranges, Victoria. Australasian Plant Pathology 28, 162-169.
| Crossref | Google Scholar |

Weste G, Brown K, Kennedy J, Walshe T (2002) Phytophthora cinnamomi infestation – a 24-year study of vegetation change in forests and woodlands of the Grampians, Western Victoria. Australian Journal of Botany 50, 247-274.
| Crossref | Google Scholar |

Wickham H (2016) ‘ggplot2: Elegant Graphics for Data Analysis.’ (Springer-Verlag: New York, NY, USA)

Wills TJ, Read J (2002) Effects of heat and smoke on germination of soil-stored seed in south-eastern Australian sand heathland. Australian Journal of Botany 50, 197-206.
| Crossref | Google Scholar |

Wilson BA (1990) The effects of vegetation, fire and other disturbance factors on small mammal ecology and conservation. PhD Thesis, Deakin University, Geelong, Vic., Australia.

Wilson BA, Garkaklis MJ (2019a) Parks Victoria Anglesea Heath Phytophthora cinnamomi project 2018–2019 Eumeralla Block (Grass Tree Track) Assessment and Standard Operations. Unpublished Report for Parks Victoria. Barbara Wilson Pty Ltd, Aireys Inlet Victoria 3231.

Wilson BA, Garkaklis MJ (2019b) Parks Victoria Anglesea Heath Phytophthora cinnamomi project 2018–2019 - Area 9. Unpublished Report for Parks Victoria. Barbara Wilson Pty Ltd, Aireys Inlet Victoria 3231.

Wilson BA, Garkaklis MJ (2023a) Wild Otways Initiative – Project 3: Protecting Plant and Animal biodiversity in the Otway Ranges, Bells Beach (Ironbark Basin) and Great Ocean Road hinterland from Phytophthora dieback – Threat Abatement Plan (TAP) for Phytophthora dieback in the Otway Ranges, Victoria. Unpublished TAP to the Corangamite Catchment Management Authority, Victoria.

Wilson BA, Garkaklis MJ (2023b) Two-year Report – Protecting plant and animal diversity in the Otway Ranges, Bells Beach (Ironbark Basin) and Great Ocean Road hinterland from Phytophthora cinnamomi dieback; Phosphite treatment of high-risk Phytophthora infestation points. Unpublished Report to the Corangamite Catchment Management Authority, Victoria.

Wilson BA, Robertson D, Moloney DJ, Newell GR, Laidlaw WS (1990) Factors affecting small mammal distribution and abundance in the eastern Otway Ranges, Victoria. In ‘Australian ecosystems: 200 years of utilization, degradation and reconstruction. Proceedings of the Ecological Society of Australia. Vol. 16’. (Eds DA Saunders, AJM Hopkins, RA How) pp. 379–396. (Surrey Beatty: Sydney, NSW, Australia)

Wilson BA, Newell G, Laidlaw WS, Friend GR (1994) Impact of plant diseases on faunal communities. Journal of the Royal Society of Western Australia 77, 139-143.
| Google Scholar |

Wilson BA, Lewis A, Aberton J (1997) Conservation of National Estate communities threatened by cinnamon fungus at Anglesea, Victoria. National Estate Grants Program Final Report. Department of Natural Resources and Environment, Melbourne, Victoria, Australia.

Wilson BA, Aberton J, Cahill DM (2000) Relationships between site factors and distribution of Phytophthora cinnamomi in the Eastern Otway Ranges, Victoria. Australian Journal of Botany 48, 247-260.
| Crossref | Google Scholar |

Wilson BA, Lewis A, Aberton J (2003) Spatial model for predicting the presence of cinnamon fungus (Phytophthora cinnamomi) in sclerophyll vegetation communities in southeastern Australia. Austral Ecology 28, 108-115.
| Crossref | Google Scholar |

Wilson BA, Kinloch J, Sonneman T, Swinburn M (2009) Distribution and impacts of Phytophthora cinnamomi. In ‘Biodiversity Values and Threatening Processes of the Gnangara Groundwater System’. (Eds BA Wilson, LE Valentine) A report to the Gnangara Sustainability Strategy and the Department of Environment and Conservation pp. 1–56. (Department of Environment and Conservation, Perth, WA, Australia)

Wilson BA, Annett K, Laidlaw WS, Cahill DM, Garkaklis MJ, Zhuang-Griffin L (2020) Long term impacts of Phytophthora cinnamomi infestation on heathy woodland in the Great Otway National Park in south-eastern Australia. Australian Journal of Botany 68, 542-556.
| Crossref | Google Scholar |