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RESEARCH ARTICLE (Open Access)

‘Where is my family?’ Molecular and morphological data reveal the phylogenetic position and diversity of the enigmatic handsome fungus beetle genus Anamycetaea Strohecker, 1975 (Coleoptera, Coccinelloidea)

Wioletta Tomaszewska https://orcid.org/0000-0002-3992-8282 A * , Karol Szawaryn https://orcid.org/0000-0002-9329-4268 A and Emmanuel Arriaga-Varela https://orcid.org/0000-0001-6206-9212 A
+ Author Affiliations
- Author Affiliations

A Museum and Institute of Zoology, Polish Academy of Sciences, Wilcza 64, P-00-679 Warsaw, Poland.

* Correspondence to: wiolkat@miiz.waw.pl

Handling Editor: Bruno Medeiros

Invertebrate Systematics 37(4) 231-253 https://doi.org/10.1071/IS22053
Submitted: 22 October 2022  Accepted: 14 March 2023   Published: 3 April 2023

© 2023 The Author(s) (or their employer(s)). Published by CSIRO Publishing. This is an open access article distributed under the Creative Commons Attribution 4.0 International License (CC BY)

Abstract

The genus Anamycetaea Strohecker, 1975, established for Anamycetaea keralae, a single species from India, was originally placed in the diverse endomychid subfamily Mycetaeinae and has subsequently been considered a member of the subfamily Anamorphinae based on closed mesocoxal cavities, a postulated synapomorphy of this group. Recent molecular research resulted in raising Anamorphinae to family level and revealed this group to be distantly related to Endomychidae sensu stricto. However, Anamycetaea has been ‘neglected’ since description. Our detailed study of this genus has been possible due to new material collected from Oriental and Australian regions. Striking overall similarity to the endomychine genus Tharina and a tentorium with anterior arms fused medially (separated in almost all Anamorphidae) have raised our doubts and led to further investigation of the phylogenetic placement of this enigmatic genus within Endomychidae sensu lato (handsome fungus beetles). Phylogenetic analyses of molecular and morphological datasets were conducted under Bayesian (BI), maximum likelihood (ML) and parsimony (MP) frameworks. Our results recovered Anamycetaea as belonging to the family Endomychidae, in the subfamily Endomychinae, distant from Anamorphidae. The close affinity to Stenotarsus and allies was strongly supported in all analyses. Based on material studied, A. keralae is described in detail here and includes description of previously unknown male genitalia. Four new species are also described, extending the ragne of the genus to the Australian region: Anamycetaea borneensis sp. nov. (from Borneo), A. novoguineensis sp. nov. and A. papuensis sp. nov. (from Papua New Guinea) and A. queenslandica sp. nov. (from Australia). Illustrations of morphological details and diagnoses are provided for each species. A key to the species of the genus is also presented.

ZooBank: urn:lsid:zoobank.org:pub:90BAA954-7849-4FA9-997B-061FE7BB5702

Keywords: Anamorphidae, Australian region, Endomychidae, entomology, new species, Oriental region, phylogenetic position, taxonomy.


References

Arriaga-Varela, E, Tomaszewska, W, and Fikáček, M (2019). A new genus of Endomychinae (Coleoptera: Endomychidae) from the Neotropics with unusual mouthparts. Neotropical Entomology 48, 290–301.
A new genus of Endomychinae (Coleoptera: Endomychidae) from the Neotropics with unusual mouthparts.Crossref | GoogleScholarGoogle Scholar |

Bocak, L, Barton, C, Crampton-Platt, A, Chesters, D, Ahrens, D, and Vogler, AP (2014). Building the Coleoptera tree-of-life for >8000 species: composition of public DNA data and fit with Linnaean classification. Systematic Entomology 39, 97–110.
Building the Coleoptera tree-of-life for >8000 species: composition of public DNA data and fit with Linnaean classification.Crossref | GoogleScholarGoogle Scholar |

Crowson RA (1955) ‘The Natural Classification of the Families of Coleoptera.’ (Nathaniel Lloyd: London, UK)

Dayrat, B (2005). Towards integrative taxonomy. Biological Journal of the Linnean Society 85, 407–415.
Towards integrative taxonomy.Crossref | GoogleScholarGoogle Scholar |

Goloboff, PA, and Catalano, SA (2016). TNT version 1.5, including a full implementation of phylogenetic morphometrics. Cladistics 32, 221–238.
TNT version 1.5, including a full implementation of phylogenetic morphometrics.Crossref | GoogleScholarGoogle Scholar |

Hunt, T, Bergsten, J, Levkanicova, Z, Papadopoulou, A, John, OS, Wild, R, Hammond, PM, Ahrens, D, Balke, M, Caterino, MS, Go’mez-Zurita, J, Ribera, I, Barraclough, TG, Bocakova, M, Bocak, L, and Vogler, AP (2007). A comprehensive phylogeny of beetles reveals the evolutionary origins of a superradiation. Science 318, 1913–1916.
A comprehensive phylogeny of beetles reveals the evolutionary origins of a superradiation.Crossref | GoogleScholarGoogle Scholar |

Kearse, M, Moir, R, Wilson, A, Stones-Havas, S, Cheung, M, Sturrock, S, Buxton, S, Cooper, A, Markowitz, S, Duran, C, Thierer, T, Ashton, B, Meintjes, P, and Drummond, A (2012). Geneious Basic: an integrated and extendable desktop software platform for the organization and analysis of sequence data. Bioinformatics 28, 1647–1649.
Geneious Basic: an integrated and extendable desktop software platform for the organization and analysis of sequence data.Crossref | GoogleScholarGoogle Scholar |

Lawrence JF, Newton AF (1995) Families and subfamilies of Coleoptera (with selected genera, notes, references and data on family-group names). In ‘Biology, phylogeny and classification of Coleoptera. Papers celebrating the 80th Birthday of Roy A. Crowson. Vol. 2’. (Eds J Pakaluk, SA Ślipiński) pp. 779–1006. (Muzeum i Instytut Zoologii PAN: Warsaw, Poland)

Lawrence, JF, Ślipiński, A, Seago, AE, Thayer, MK, Newton, AF, and Marvaldi, AE (2011). Phylogeny of the Coleoptera based on morphological characters of adults and larvae. Annales Zoologici 61, 1–217.
Phylogeny of the Coleoptera based on morphological characters of adults and larvae.Crossref | GoogleScholarGoogle Scholar |

Miller MA, Pfeiffer W, Schwartz T (2010) Creating the CIPRES Science Gateway for inference of large phylogenetic trees. In ‘2010 Gateway Computing Environments Workshop (GCE)’, 14 November 2010, New Orleans, LA, USA. INSPEC Accession Number 11705685. (IEEE)
| Crossref |

Minh, BQ, Nguyen, MAT, and von Haeseler, A (2013). Ultrafast approximation for phylogenetic bootstrap. Molecular Biology and Evolution 30, 1188–1195.
Ultrafast approximation for phylogenetic bootstrap.Crossref | GoogleScholarGoogle Scholar |

Nguyen, LT, Schmidt, HA, Von Haeseler, A, and Minh, BQ (2015). IQ-TREE: a fast and effective stochastic algorithm for estimating maximum-likelihood phylogenies. Molecular Biology and Evolution 32, 268–274.
IQ-TREE: a fast and effective stochastic algorithm for estimating maximum-likelihood phylogenies.Crossref | GoogleScholarGoogle Scholar |

Nixon KC (2002) ‘WinClada.’ (Published by the author: Ithaca, NY, USA)

Padial, JM, Miralles, A, De la Riva, I, and Vences, M (2010). The integrative future of taxonomy. Frontiers in Zoology 7, 16.
The integrative future of taxonomy.Crossref | GoogleScholarGoogle Scholar |

Pakaluk, J, Ślipiński, SA, and Lawrence, J (1994). Current classification and family-group names in Cucujoidea (Coleoptera). Genus 5, 223–268.

Rambaut, A, Drummond, AJ, Xie, D, Baele, G, and Suchard, MA (2018). Posterior summarization in Bayesian phylogenetics using Tracer 1.7. Systematic Biology 67, 901–904.
Posterior summarization in Bayesian phylogenetics using Tracer 1.7.Crossref | GoogleScholarGoogle Scholar |

Robertson, JA, Whiting, MF, and McHugh, JV (2008). Searching for natural lineages within the Cerylonid Series (Coleoptera: Cucujoidea). Molecular Phylogenetics and Evolution 46, 193–205.
Searching for natural lineages within the Cerylonid Series (Coleoptera: Cucujoidea).Crossref | GoogleScholarGoogle Scholar |

Robertson, JA, Ślipiński, A, Hiatt, K, Miller, KB, Whiting, MF, and McHugh, JV (2013). Molecules, morphology and minute hooded beetles: a phylogenetic study with implications for the evolution and classification of Corylophidae (Coleoptera: Cucujoidea). Systematic Entomology 38, 209–232.
Molecules, morphology and minute hooded beetles: a phylogenetic study with implications for the evolution and classification of Corylophidae (Coleoptera: Cucujoidea).Crossref | GoogleScholarGoogle Scholar |

Robertson, JA, Ślipiński, A, Moulton, M, Shockley, FW, Giorgi, A, Lord, NP, McKenna, DD, Tomaszewska, W, Forrester, J, Miller, KB, Whiting, MF, and McHugh, JV (2015). Phylogeny and classification of Cucujoidea and the recognition of a new superfamily Coccinelloidea (Coleoptera: Cucujiformia). Systematic Entomology 40, 745–778.
Phylogeny and classification of Cucujoidea and the recognition of a new superfamily Coccinelloidea (Coleoptera: Cucujiformia).Crossref | GoogleScholarGoogle Scholar |

Ronquist, F, Teslenko, M, Van Der Mark, P, Ayres, DL, Darling, A, Höhna, S, Larget, B, Liu, L, Suchard, MA, and Huelsenbeck, JP (2012). MrBayes 3.2: efficient Bayesian phylogenetic inference and model choice across a large model space. Systematic Biology 61, 539–542.
MrBayes 3.2: efficient Bayesian phylogenetic inference and model choice across a large model space.Crossref | GoogleScholarGoogle Scholar |

Sasaji, H (1978). Notes on the Japanese Endomychidae, with an establishment of a new subfamily (Coleoptera). The Memoirs of the Faculty of Education, Fukui University Series II (Natural Science) 28, 1–31.

Sasaji, H (1987). On the higher classification of the Endomychidae and their relative families (Coleoptera). Entomological Journal of Fukui 1, 44–51.

Sasaji, H (1990). The family Mychothenidae of Japan (Coleoptera). Esakia (Special Issue) 1, 65–75.
The family Mychothenidae of Japan (Coleoptera).Crossref | GoogleScholarGoogle Scholar |

Shockley, FW, Tomaszewska, KW, and McHugh, JV (2009). An annotated checklist of the handsome fungus beetles of the world (Coleoptera: Cucujoidea: Endomychidae). Zootaxa 1999, 1–113.
An annotated checklist of the handsome fungus beetles of the world (Coleoptera: Cucujoidea: Endomychidae).Crossref | GoogleScholarGoogle Scholar |

Strohecker HF (1953) Coleoptera Fam. Endomychidae. In ‘Genera Insectorum’. (Ed. P Wytsman) pp. 1–145. (Desmet-Verneuil: Bruxelles, Belgium)

Strohecker HF (1962) Key to the Genera of the United States (Endomychidae). In ‘The Beetles of the United States (A Manual for Identification). Part V. Suborder Polyphaga (cont.). Series Cucujiformia (cont.). Tenebrionoidea. Cucujoidea’. (Ed. RH Arnett) p. 801. (Catholic University of America Press: Washington, DC, USA)

Strohecker, HF (1975). Several new Endomychidae from India (Coleoptera). Revue Suisse de Zoologie 82, 625–628.
Several new Endomychidae from India (Coleoptera).Crossref | GoogleScholarGoogle Scholar |

Szczepański, WT, Vondráček, D, Seidel, M, Wardhaugh, C, and Fikáček, M (2018). High diversity of Cetiocyon beetles (Coleoptera: Hydrophilidae) along an elevational gradient on Mt Wilhelm, New Guinea, with new records from the Bird’s Head Peninsula. Arthropod Systematics & Phylogeny 76, 323–347.

Tarasov, SI, and Solodovnikov, AY (2011). Phylogenetic analyses reveal reliable morphological markers to classify mega-diversity in Onthophagini dung beetles (Coleoptera: Scarabaeidae: Scarabaeinae). Cladistics 27, 490–528.
Phylogenetic analyses reveal reliable morphological markers to classify mega-diversity in Onthophagini dung beetles (Coleoptera: Scarabaeidae: Scarabaeinae).Crossref | GoogleScholarGoogle Scholar |

Thompson JD, Gibson TJ, Higgins DG (2003) Multiple sequence alignment using ClustalW and ClustalX. In ‘Current protocols in Bioinformatics’. pp. 2.3.1–2.3.22. (Wiley)
| Crossref |

Tomaszewska, KW (2000). Morphology, phylogeny and classification of adult Endomychidae (Coleoptera: Cucujoidea). Annales Zoologici 50, 449–558.

Tomaszewska, W (2005). Phylogeny and generic classification of the subfamily Lycoperdininae with re-analysis of the family Endomychidae (Coleoptera: Cucujoidea). Annales Zoologici 55, 1–172.

Tomaszewska W (2010) Endomychidae Leach, 1815. In ‘Handbook of Zoology. Vol. 2, Coleoptera’. (Eds RAB Leschen, RG Beutel, JF Lawrence) pp. 442–454. (Walter de Gruyter GmbH and Co. KG)

Trifinopoulos, J, Nguyen, LT, von Haeseler, A, and Minh, BQ (2016). W-IQ-TREE: a fast online phylogenetic tool for maximum likelihood analysis. Nucleic Acids Research 44, W232–W235.
W-IQ-TREE: a fast online phylogenetic tool for maximum likelihood analysis.Crossref | GoogleScholarGoogle Scholar |

Will, KW, Mishler, BD, and Wheeler, QD (2005). The perils of DNA barcoding and the need for integrative taxonomy. Systematic Biology 54, 844–851.
The perils of DNA barcoding and the need for integrative taxonomy.Crossref | GoogleScholarGoogle Scholar |