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Invertebrate Systematics Invertebrate Systematics Society
Systematics, phylogeny and biogeography
PREFACE

Arachnology in space and time: novel research on arachnid systematics and biogeography

Gonzalo Giribet A and Andrew Austin A
+ Author Affiliations
- Author Affiliations

Special Issue Editor

Invertebrate Systematics 28(4) i-i https://doi.org/10.1071/ISv28n4_PR
Published: 12 September 2014


References

Castalanelli, M. A., Teale, R., Rix, M. G., Kennington, J. W., and Harvey, M. S. (2014). Barcoding of mygalomorph spiders (Araneae : Mygalomorphae) in the Pilbara bioregion of Western Australia reveals a highly diverse biota. Invertebrate Systematics 28, 375–385.
Barcoding of mygalomorph spiders (Araneae : Mygalomorphae) in the Pilbara bioregion of Western Australia reveals a highly diverse biota.Crossref | GoogleScholarGoogle Scholar |

Fernández, R., and Giribet, G. (2014). Phylogeography and species delimitation in the New Zealand endemic, genetically hypervariable harvestman species, Aoraki denticulata (Arachnida, Opiliones, Cyphophthalmi). Invertebrate Systematics 28, 401–414.
Phylogeography and species delimitation in the New Zealand endemic, genetically hypervariable harvestman species, Aoraki denticulata (Arachnida, Opiliones, Cyphophthalmi).Crossref | GoogleScholarGoogle Scholar |

Giribet, G., McIntyre, E., Christian, E., Espinasa, L., Ferreira, R. L., Francke, Ó. F., Harvey, M. S., Isaia, M., Kováč, Ĺ., McCutchen, L., Souza, M. F. V. R., and Zagmajster, M. (2014). The first phylogenetic analysis of Palpigradi (Arachnida) – the most enigmatic arthropod order. Invertebrate Systematics 28, 350–360.
The first phylogenetic analysis of Palpigradi (Arachnida) – the most enigmatic arthropod order.Crossref | GoogleScholarGoogle Scholar |

Harrison, S. E., Guzik, M. T., Harvey, M. S., and Austin, A. D. (2014). Molecular phylogenetic analysis of Western Australian troglobitic chthoniid pseudoscorpions (Pseudoscorpiones : Chthoniidae) points to multiple independent subterranean clades. Invertebrate Systematics 28, 386–400.
Molecular phylogenetic analysis of Western Australian troglobitic chthoniid pseudoscorpions (Pseudoscorpiones : Chthoniidae) points to multiple independent subterranean clades.Crossref | GoogleScholarGoogle Scholar |

Huber, B. A., Carvalho, L. S., and Benjamin, S. P. (2014). On the New World spiders previously misplaced in Leptopholcus: molecular and morphological analyses and descriptions of four new species (Araneae : Pholcidae). Invertebrate Systematics 28, 432–450.
On the New World spiders previously misplaced in Leptopholcus: molecular and morphological analyses and descriptions of four new species (Araneae : Pholcidae).Crossref | GoogleScholarGoogle Scholar |

McHugh, A., Yablonsky, C., Binford, G., and Agnarsson, I. (2014). Molecular phylogenetics of Caribbean Micrathena (Araneae : Araneidae) suggests multiple colonisation events and single island endemism. Invertebrate Systematics 28, 337–349.
Molecular phylogenetics of Caribbean Micrathena (Araneae : Araneidae) suggests multiple colonisation events and single island endemism.Crossref | GoogleScholarGoogle Scholar |

Opatova, V., and Arnedo, M. A. (2014). From Gondwana to Europe: inferring the origins of Mediterranean Macrothele spiders (Araneae : Hexathelidae) and the limits of the family Hexathelidae. Invertebrate Systematics 28, 361–374.
From Gondwana to Europe: inferring the origins of Mediterranean Macrothele spiders (Araneae : Hexathelidae) and the limits of the family Hexathelidae.Crossref | GoogleScholarGoogle Scholar |

Su, Y.-C., and Smith, D. (2014). Evolution of host use, group-living and foraging behaviours in kleptoparasitic spiders: molecular phylogeny of the Argyrodinae (Araneae : Theridiidae). Invertebrate Systematics 28, 415–431.
Evolution of host use, group-living and foraging behaviours in kleptoparasitic spiders: molecular phylogeny of the Argyrodinae (Araneae : Theridiidae).Crossref | GoogleScholarGoogle Scholar |