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Pacific Conservation Biology Pacific Conservation Biology Society
A journal dedicated to conservation and wildlife management in the Pacific region.
RESEARCH ARTICLE (Open Access)

Using Samoan traditional ecological knowledge to identify calls of the critically endangered endemic tooth-billed pigeon (Didunculus strigirostris)

G. Serra https://orcid.org/0000-0001-8979-7842 A D , G. R. Wood B , S. A. Faiilagi C , S. T. Foliga C , M. Uili C and F. Enoka C
+ Author Affiliations
- Author Affiliations

A Freelance conservationist and ecologist, Florence, Italy.

B Department of Statistics, University of Otago, New Zealand.

C Ministry of Natural Resources and Environment, Samoa.

D Corresponding author. Email: ibiseremita@gmail.com

Pacific Conservation Biology - https://doi.org/10.1071/PC20052
Submitted: 11 June 2020  Accepted: 23 November 2020   Published online: 16 December 2020

Abstract

The tooth-billed pigeon (Didunculus strigirostris) is an endemic and highly cryptic bird of the rainforest canopy of Samoa. According to the recently released Tooth-billed Pigeon Recovery Plan (2020–2029), one of the greatest obstacles to conservation efforts is the inability of ornithologists to reliably separate its advertising coo call from that of the common and sympatric Pacific imperial pigeon (Ducula pacifica). Because tooth-billed pigeons are very rarely seen, acoustic methods of identifying them, which have been problematic for ornithologists, would be helpful for population surveys. Our study examines the traditional ecological knowledge and skill of Samoan hunters, peer selected for knowledge and reliability from six villages located on Upolu and Savaii islands, to determine whether they can consistently identify the species based on the calls. Through use of automatic devices, we recorded pigeon coo calls at nine forest sites recommended by reliable hunters within four key biodiversity areas of the islands of Upolu and Savaii from March to June 2016. We isolated and filtered 104 clear coo call sequences from these recordings. The two top hunters separately and confidently identified which of the two pigeon species were calling for 80 of the 104 sequences. On 54 of these 80 call sequences the hunters were in agreement, both assigning a call to the one species. We measured seven sonographic variables on each of the coo calls of each of these 54 sequences in order to investigate potential differences between the calls of Didunculus and Ducula. Two clear differences emerged: a strongly statistically significant difference in the highest frequency of the coo call, and the more regular spacing of the coo calls of Didunculus than of Ducula. Only the second rhythm outcome is consistent with a recent independent analysis by other authors. This regularity of the intervals between coo calls in a sequence may be the key to separation of the two species in the field.

Keywords: call overlap, Didunculus strigirostris, Ducula pacifica, local ecological knowledge, oceanic rainforest, Pacific imperial pigeon, Polynesia, Samoa, sympatric pigeons, tooth-billed pigeon, traditional ecological knowledge.


References

Appleton, D. (1871). ‘Appletons’ journal: a magazine of general literature.’ (D. Appleton and Company: New York.) The Museum 5, 27–28.

Baumann, S., and Beichle, U. (2020). Acoustical identification of Didunculus strigirostris, critically endangered tooth‐billed pigeon of Samoa. Journal of Ornithology 161, 439–446.
Acoustical identification of Didunculus strigirostris, critically endangered tooth‐billed pigeon of Samoa.Crossref | GoogleScholarGoogle Scholar |

Beichle, U. (1982a). Untersuchungen zur Biologie und Systematik der Zahntaube, Didunculus strigirostris (Jardine, 1845). Dissertation zur Erlangung des Doktorgrades der Mathematisch-Naturwissenschaftlichen Fakultat der Christian-Albrechts Universitat zu Kiel

Beichle, U. (1982b). Zum Problem der Haltung von Zahntauben. Gefiederte Welt 106, 305–306.

Beichle, U. (1987a). Lebensraum, Bestand und Nahrungsaufnahme der Zahntaube, Didunculus strigirostris. Journal fur Ornithologie 128, 75–89.
Lebensraum, Bestand und Nahrungsaufnahme der Zahntaube, Didunculus strigirostris.Crossref | GoogleScholarGoogle Scholar |

Beichle, U. (1987b). Zur Ernahrung der Zahntaube, Didunculus strigirostris (Jardine 1845). Trochilus 8, 83–86.

Beichle, U. (1989). Akustische Abgrenzung der Taubenarten der Samoa Inseln. Journal fur Ornithologie 130, 345–351.
Akustische Abgrenzung der Taubenarten der Samoa Inseln.Crossref | GoogleScholarGoogle Scholar |

Beichle, U. (2006). Saving Samoa’s critically endangered maomao and Didunculus: report on field surveys on Upolu and Savaii from 5.10 to 25.10.2005 and from 3.5. to 22.5.2006. Unpublished report, Apia, Samoa, Ministry of Natural Resources and Environment

Beichle, U., and Baumann, S. (2016). ‘The Birds of Samoa.’ (Ulf Beichle, self- published: Germany.)

BirdLife International (2015). Species factsheet: Didunculus strigirostris. Available at: http://www.birdlife.org [accessed 31 December 2015].

Blair, M. (2005). Editorial. Sandgrouse 27, 2.

Butler, D. (2012). Report on the birds of upland Savaii. In ‘Rapid Biodiversity Assessment of Upland Savaii, Samoa’. (Eds J. Atherton, and B. Jefferies.) pp. 85–109. (SPREP: Apia, Samoa.)

Cardoso, G. C., and Price, T. D. (2010). Community convergence in bird song. Evolutionary Ecology 24, 447–461.
Community convergence in bird song.Crossref | GoogleScholarGoogle Scholar |

Collar, N. J. (2015). Natural history and conservation biology of the tooth-billed pigeon (Didunculus strigirostris): a review. Pacific Conservation Biology 21, 186–199.
Natural history and conservation biology of the tooth-billed pigeon (Didunculus strigirostris): a review.Crossref | GoogleScholarGoogle Scholar |

Conservational International (2016). Rapid Assessment Program. Available at http://www.conservation.org/projects/pages/rapid-assessment-program.aspx [accessed 31 May 2016].

Conservation International (Pacific Islands Programme), Ministry of Natural Resources and Environment, and Secretariat of the Pacific Regional Environment Programme (2010). Priority sites for conservation in Samoa: key biodiversity areas. (Apia, Samoa). 34 pp.

Grattan, F. J. H. (1985). An introduction to Samoan custom. NZ Electronic Text Centre, Victoria University, Auckland, New Zealand. Available at http://nzetc.victoria.ac.nz/tm/scholarly/tei-GraIntr.html [accessed 9 January 2017]

Jetz, W., Thomas, G. H., Joy, J. B., Redding, D. W., Hartmann, K., and Mooers, A. O. (2014). Global distribution and conservation of evolutionary distinctness in birds. Current Biology 24, 919–930.
Global distribution and conservation of evolutionary distinctness in birds.Crossref | GoogleScholarGoogle Scholar | 24726155PubMed |

Johnson, K. P., De Kort, S., Dinwoodey, K., Mateman, A. C., Ten cate, C., and Lessells, C. M. (2001). A molecular phylogeny of the dove genera Streptopelia and Columba. Auk 118, 874–887.
A molecular phylogeny of the dove genera Streptopelia and Columba.Crossref | GoogleScholarGoogle Scholar |

MNRE (2006). Recovery plan for the manumea or tooth-billed pigeon (Didunculus strigirostris), 2006–2016. Ministry of Natural Resources & Environment, Government of Samoa, Apia, Samoa. 41 pp

MNRE and SCS (2020). Recovery plan for the manumea or tooth-billed pigeon (Didunculus strigirostris), 2020–2029. Ministry of Natural Resources & Environment, Government of Samoa, and Samoa Conservation Society. Apia, Samoa. 23 pp

Powell, A. (2008). ‘The Race to Save the World’s Rarest Bird: The Discovery and Death of the Po’ouli.’ (Stackpole Books: Mechanicsburg, PA, USA.)

Pratt, H. D., and Mittermeier, J. C. (2016). Notes on the natural history, taxonomy, and conservation of the endemic avifauna of the Samoan archipelago. The Wilson Journal of Ornithology 128, 217–241.
Notes on the natural history, taxonomy, and conservation of the endemic avifauna of the Samoan archipelago.Crossref | GoogleScholarGoogle Scholar |

Price, T. (2008). ‘Speciation in Birds.’ (Roberts & Company Publishers: Greenwood Village, CO.)

Serra, G. (2016). Biodiversity surveying of four KBAs in Samoa through traditional ecological knowledge: Uafato-Tiavea Coastal Forest, Apia Catchments, Central Savaii Rainforest and Falealupo Peninsula. Unpublished report, Apia, Samoa, MNRE and UNDP. 83 pp

Serra, G. (2017). Review of implementation of Manumea Recovery Plan 2006–2016. Technical report to the Ministry of Natural Resources & Environment, Department of Environment and Conservation, Apia, Samoa. 49 pp

Serra, G., Abdallah, M., Assaed, A., Abdallah, A., Al qaim, G., Fayad, T., and Williamson, D. (2004). Discovery of a relict breeding colony of northern bald ibis Geronticus eremita in Syria. Oryx 38, 1–7.
Discovery of a relict breeding colony of northern bald ibis Geronticus eremita in Syria.Crossref | GoogleScholarGoogle Scholar |

Serra, G., Sherley, G., Failagi, S. A., Foliga, S. T., Uili, M., Enoka, F., and Suaesi, T. (2018). Traditional ecological knowledge of the Critically Endangered Tooth-billed Pigeon Didunculus strigirostris, endemic to Samoa. Bird Conservation International 28, 620–642.
Traditional ecological knowledge of the Critically Endangered Tooth-billed Pigeon Didunculus strigirostris, endemic to Samoa.Crossref | GoogleScholarGoogle Scholar |

Sinclair, J. R., Tuke, L., and Opiang, M. D. (2010). What the locals know: comparing traditional and scientific knowledge of megapodes in Melanesia. In ‘Ethno-ornithology: Global Studies in Indigenous Ornithology: Culture, Society and Conservation’. (Eds S. Tidemann, A. Gosler, and R. Gosford.) pp. 115–137. (Earthscan: London, UK.)

Stattersfield, A. J., and Capper, D. R. (2000). ‘Threatened Birds of the World.’ (BirdLife International: Cambridge, UK, and Lynx Ediciones: Barcelona, Spain.)

Stirnemann, R. L., Stirnemann, I. A., Abbot, D., Biggs, D., and Heinsohn, R. (2018). Interactive impacts of by-catch take and elite consumption of illegal wildlife. Biodiversity and Conservation 27, 931–946.
Interactive impacts of by-catch take and elite consumption of illegal wildlife.Crossref | GoogleScholarGoogle Scholar |

Watling, D. (2001). ‘A Guide to Birds of Fiji & Western Polynesia.’ (Environmental Consultants: Suva, Fiji.)

White, P. C. L., Jennings, N. V., Renwick, A. R., and Barker, N. H. L. (2005). REVIEW: Questionnaires in ecology: a review of past use and recommendations for best practice: Questionnaires in ecology. Journal of Applied Ecology 42, 421–430.
REVIEW: Questionnaires in ecology: a review of past use and recommendations for best practice: Questionnaires in ecology.Crossref | GoogleScholarGoogle Scholar |

Wildlife Acoustics (2016). Bioacoustics software version 4.0 documentation. Available at https://www.wildlifeacoustics.com/images/documentation/Song-Scope-Users-Manual.pdf [accessed 10 December 2020].

Wilkins, M. R., Seddon, N., and Safran, R. J. (2013). Evolutionary divergence in acoustic signals: causes and consequences. Trends in Ecology & Evolution 28, 156–166.
Evolutionary divergence in acoustic signals: causes and consequences.Crossref | GoogleScholarGoogle Scholar |

Wolfenden, A., Jones, C. G., Tatayah, V., Züel, N., and de Kort, S. R. (2015). Endangered pink pigeons treat calls of the ubiquitous Madagascan turtle dove as conspecific. Animal Behaviour 99, 83–88.
Endangered pink pigeons treat calls of the ubiquitous Madagascan turtle dove as conspecific.Crossref | GoogleScholarGoogle Scholar |