Pilbara Slater
Buddelundiinae gen. indet.
FP-13173
Discoverer: V.W. Framenau
Fauna Portal species: 13173Diagnosis
Buddelundiinae gen. indet. FP-13173 is diagnosed by molecular methods (COI barcoding).
Status
- native
Fauna Portal Reference
Australia
- Western Australia
Fauna Portal Records
The map shows all records that have been verified as part of the Fauna Portal project and may not represent the true distribution of a species. Specifically, for described species, check the link to the Atlas of Living Australia on this page for potential wider distributions. Fauna Portal Reference specimens and Linnean types are shown in red. If you identified a specimen that exceeds the distribution of an undescribed species as illustrated here, please contact the Fauna Portal team who can assist with the lodgement of the specimen in a public institution and display on the map.
CATTGTACTTTGTGTTTGGTGCTTGAGCAGGGGCGTTAGGAACTTCTTTAAGAGTGATTATTCGTATCGAATTAGGGCAAGTTGGGAGGTTTATCGGGGATGATCAGATCTACAACGTAATCGTCACAGCGCATGCTTTTGTAATAATTTTTTTTATAGTGATACCTGTTATAATTGGTGGTTTTGGAAATTGATTGGTCCCATTGATATTAGGAGCTCCTGATATGGCTTTCCCTCGTATGAATAATATAAGGTTTTGATTACTTCCCCCTTCTTTGACTCTTTTACTGGCAAGAGGACTGATCGAAAGTGGGGTAGGAACTGGTTGAACCGTTTACCCTCCCTTAGCATCGAATATCGCTCATAGAGGGGGTTCAGTCGATCTAGGGATTTTCTCTCTGCACTTAGCTGGGGTTTCTTCTATTCTGGGGGCGGTGAACTTTATCACTACTACTATAAATATACGTTCTACTGGGATAAAGTTCGATCGTGTCCCGTTGTTTGTATGATCTGTTTTTATCACGGCAATTTTGCTGCTTTTATCTTTGCCTGTTTTAGCAGGAGCTATTACTATATTATTAACAGACCGAAATTTCAATACTTCTTTTTTTGATCCTAGCGGAGGAGGAGATCCTATTCTGTACCAACATCTCTTC
CATTGTACTTTGTGTTTGGTGCTTGAGCAGGGGCGTTAGGAACTTCTTTAAGAGTGATTATTCGTATCGAATTAGGGCAAGTTGGGAGGTTTATCGGGGATGATCAGATCTACAACGTAATCGTCACAGCGCATGCTTTTGTAATAATTTTTTTTATAGTGATACCTGTTATAATTGGTGGTTTTGGAAATTGATTGGTCCCATTGATATTAGGAGCTCCTGATATGGCTTTCCCTCGTATGAATAATATAAGGTTTTGATTACTTCCCCCTTCTTTGACTCTTTTACTGGCAAGAGGACTGATCGAAAGTGGGGTAGGAACTGGTTGAACCGTTTACCCTCCCTTAGCATCGAATATCGCTCATAGAGGGGGTTCAGTCGATCTAGGGATTTTCTCTCTGCACTTAGCTGGGGTTTCTTCTATTCTGGGGGCGGTGAACTTTATCACTACTACTATAAATATACGTTCTACTGGGATAAAGTTCGATCGTGTCCCGTTGTTTGTATGATCTGTTTTTATCACGGCAATTTTGCTGCTTTTATCTTTGCCTGTTTTAGCAGGAGCTATTACTATATTATTAACAGACCGAAATTTCAATACTTCTTTTTTTGATCCTAGCGGAGGAGGAGATCCTATTCTGTACCAACATCTCTTC
CATTGTACTTTGTGTTTGGTGCTTGAGCAGGGGCGTTAGGAACTTCTTTAAGAGTGATTATTCGTATCGAATTAGGGCAAGTTGGGAGGTTTATCGGGGATGATCAGATCTACAACGTAATCGTCACAGCGCATGCTTTTGTAATAATTTTTTTTATAGTGATACCTGTTATAATTGGTGGTTTTGGAAATTGATTGGTCCCATTGATATTAGGAGCTCCTGATATGGCTTTCCCTCGTATGAATAATATAAGGTTTTGATTACTTCCCCCTTCTTTGACTCTTTTACTGGCAAGAGGACTGATCGAAAGTGGGGTAGGAACTGGTTGAACCGTTTACCCTCCCTTAGCATCGAATATCGCTCATAGAGGGGGTTCAGTCGATCTAGGGATTTTCTCTCTGCACTTAGCTGGGGTTTCTTCTATTCTGGGGGCGGTGAACTTTATCACTACTACTATAAATATACGTTCTACTGGGATAAAGTTCGATCGTGTCCCGTTGTTTGTATGATCTGTTTTTATCACGGCAATTTTGCTGCTTTTATCTTTGCCTGTTTTAGCAGGAGCTATTACTATATTATTAACAGACCGAAATTTCAATACTTCTTTTTTTGATCCTAGCGGAGGAGGAGATCCTATTCTGTACCAACATCTCTTC
CATTGTACTTTGTGTTTGGTGCTTGAGCAGGGGCGTTAGGAACTTCTTTAAGAGTGATTATTCGTATCGAATTGGGGCAAGTTGGAAGGTTTATCGGGGATGATCAGATCTATAACGTAATCGTCACGGCTCATGCTTTTGTGATAATTTTTTTTATAGTAATACCTGTTATGATTGGTGGTTTTGGGAATTGATTGGTTCCATTGATATTAGGAGCCCCCGATATAGCTTTCCCTCGTATGAATAATATAAGGTTTTGATTACTTCCCCCTTCTTTGACTCTTTTACTGGCAAGAGGATTGGTCGAAAGTGGGGTAGGGACTGGTTGAACTGTTTACCCTCCCTTAGCTTCTAATATCGCTCATAGAGGAGGTTCGGTCGATCTAGGTATTTTCTCTCTGCACTTGGCTGGGGTTTCTTCTATTTTGGGGGCGGTAAACTTTATCACTACTACTATAAACATACGTTCTACTGGGATAAAGTTCGATCGTGTTCCGTTATTTGTGTGATCTGTTTTTATTACGGCAATTTTGCTGCTTTTATCTTTGCCTGTTTTAGCAGGAGCTATTACTATATTATTAACAGACCGAAATTTCAACACTTCTTTTTTTGACCCTAGCGGAGGAGGGGACCCTATTTTGTACCAACATCTCTTT
ATTGTACTTTGTGTTTGGTGCTTGAGCAGGGGCGTTAGGAACTTCTTTAAGAGTGATTATTCGTATCGAATTGGGGCAAGTTGGAAGGTTTATCGGGGATGATCAGATCTATAACGTAATCGTCACGGCGCATGCTTTTGTGATAATTTTTTTTATAGTAATACCTGTTATGATTGGTGGTTTTGGGAATTGATTGGTCCCATTGATATTAGGAGCTCCCGATATAGCTTTCCCTCGTATGAATAATATAAGGTTTTGATTACTTCCCCCTTCTTTGACTCTTTTACTGGCAAGAGGATTGGTCGAAAGTGGGGTAGGGACTGGTTGAACTGTTTACCCTCCCTTAGCTTCTAATATCGCTCATAGAGGAGGTTCGGTCGATCTAGGTATTTTCTCTCTGCACTTGGCTGGGGTTTCTTCTATTTTGGGGGCGGTAAACTTTATCACTACTACTATAAACATACGTTCTACTGGGATAAAGTTCGATCGTGTTCCGTTATTTGTGTGATCTGTTTTTATTACGGCAATTTTGCTGCTTTTATCTTTGCCTGTTTTAGCAGGAGCTATTACTATATTATTAACAGACCGAAATTTCAACACTTCTTTTTTTGACCCTAGCGGAGGAGGGGACCCTATTTTGTACCAACATCTCTTT
ACTTTGTGTTTGGTGCTTGAGCAGGGGCGTTAGGAACTTCTTTAAGAGTGATTATTCGTATCGAATTGGGGCAAGTTGGAAGGTTTATCGGGGATGATCAGATCTATAACGTAATCGTCACGGCGCATGCTTTTGTGATAATTTTTTTTATAGTAATACCTGTTATGATTGGTGGTTTTGGGAATTGATTGGTCCCATTGATATTAGGAGCTCCCGATATAGCTTTCCCTCGTATGAATAATATAAGGTTTTGATTACTTCCCCCTTCTTTGACTCTTTTACTGGCAAGAGGATTGGTCGAAAGTGGGGTAGGGACTGGTTGAACTGTTTACCCTCCCTTAGCTTCTAATATCGCTCATAGAGGAGGTTCGGTCGATCTAGGTATTTTCTCTCTGCACTTGGCTGGGGTTTCTTCTATTTTGGGGGCGGTAAACTTTATCACTACTACTATAAACATACGTTCTACTGGGATAAAGTTCGATCGTGTTCCGTTATTTGTGTGATCTGTTTTTATTACGGCAATTTTGCTGCTTTTATCTTTGCCTGTTTTAGCAGGAGCTATTACTATATTATTAACAGACCGAAATTTCAACACTTCTTTTTTTGACCCTAGCGGAGGAGGGGACCCTATTTTGTACCAACATCTCTTT
ATTGTATTTTGTGTTTGGTGCTTGGGCAGGGGCGTTAGGAACTTCTTTAAGAGTGATTATTCGTATCGAATTAGGGCAAGTTGGGAGGTTTATCGGGGATGACCAGATCTATAACGTAATCGTCACAGCGCATGCTTTTGTAATAATTTTTTTTATAGTGATACCTGTTATGATTGGTGGTTTTGGGAATTGATTGGTCCCATTGATATTAGGAGCTCCTGATATGGCTTTCCCTCGTATGAATAATATAAGGTTTTGATTACTTCCCCCTTCCTTGACTCTTTTACTGGCAAGAGGACTGATCGAAAGTGGGGTAGGAACTGGTTGAACCGTTTACCCTCCCTTAGCTTCGAATATCGCTCATAGAGGGGGTTCAGTCGATCTAGGGATTTTCTCTCTGCACTTAGCTGGGGTTTCTTCTATTTTGGGGGCGGTGAACTTTATCACTACCACTATAAATATACGTTCTACTGGGATAAAGTTCGATCGTGTCCCGTTGTTTGTATGATCTGTTTTTATTACGGCAATTTTGCTGCTTTTATCTTTGCCTGTTTTAGCAGGAGCTATTACTATATTATTAACAGACCGAAATTTCAATACTTCTTTTTTTGATCCTAGCGGAGGAGGAGATCCTATTTTATACCAACATCTCTTC
ATTGTACTTTGTGTTTGGTGCTTGAGCAGGGGCGTTAGGAACTTCTTTAAGAGTGATTATTCGTATCGAATTGGGGCAAGTTGGAAGGTTTATCGGGGATGATCAGATCTATAACGTAATCGTCACGGCGCATGCTTTTGTGATAATTTTTTTTATAGTAATACCTGTTATGATTGGTGGTTTTGGGAATTGATTGGTCCCATTGATATTAGGAGCTCCCGATATAGCTTTCCCTCGTATGAATAATATAAGGTTTTGATTACTTCCCCCTTCTTTGACTCTTTTACTGGCAAGAGGATTGGTCGAAAGTGGGGTAGGGACTGGTTGAACTGTTTACCCTCCCTTAGCTTCTAATATCGCTCATAGAGGAGGTTCGGTCGATCTAGGTATTTTCTCTCTGCACTTGGCTGGGGTTTCTTCTATTTTGGGGGCGGTAAACTTTATCACTACTACTATAAACATACGTTCTACTGGGATAAAGTTCGATCGTGTTCCGTTATTTGTGTGATCTGTTTTTATTACGGCAATTTTGCTGCTTTTATCTTTGCCTGTTTTAGCAGGAGCTATTACTATATTATTAACAGACCGAAATTTCAACACTTCTTTTTTTGACCCTAGCGGAGGAGGGGACCCTATTTTGTACCAACATCTCTTT
ATTGTACTTTGTGTTTGGTGCTTGAGCAGGGGCGTTAGGAACTTCTTTAAGAGTGATTATTCGTATCGAATTGGGGCAAGTTGGAAGGTTTATCGGGGATGATCAGATCTATAACGTAATCGTCACGGCGCATGCTTTTGTGATAATTTTTTTTATAGTAATACCTGTTATGATTGGTGGTTTTGGGAATTGATTGGTCCCATTGATATTAGGAGCTCCCGATATAGCTTTCCCTCGTATGAATAATATAAGGTTTTGATTACTTCCCCCTTCTTTGACTCTTTTACTGGCAAGAGGATTGGTCGAAAGTGGGGTAGGGACTGGTTGAACTGTTTACCCTCCCTTAGCTTCTAATATCGCTCATAGAGGAGGTTCGGTCGATCTAGGTATTTTCTCTCTGCACTTGGCTGGGGTTTCTTCTATTTTGGGGGCGGTAAACTTTATCACTACTACTATAAACATACGTTCTACTGGGATAAAGTTCGATCGTGTTCCGTTATTTGTGTGATCTGTTTTTATTACGGCAATTTTGCTGCTTTTATCTTTGCCTGTTTTAGCAGGAGCTATTACTATATTATTAACAGACCGAAATTTCAACACTTCTTTTTTTGACCCTAGCGGAGGAGGGGACCCTATTTTGTACCAACATCTCTTT
Isopoda (slaters)
All classes
- Arachnida
- Crustacea
- Entognatha
- Gastropoda
- Insecta
- Blattodea s. str. (Cockroaches)
- Coleoptera (Beetles)
- Dermaptera (earwigs)
- Diptera (flies, mosquitos)
- Entomobryomorpha (slender springtails)
- Hemiptera - Auchenorrhyncha (cicadas, planthoppers)
- Hemiptera - Heteroptera (True Bugs)
- Hemiptera - Sternorrhyncha (aphids, scales etc.)
- Hymenoptera - Formicidae (Ants)
- Hymenoptera excl. Formicidae (bees and wasps)
- Mantodea (Praying Mantises)
- Orthoptera - Caelifera (Grasshoppers)
- Trichoptera (Caddisflies)
- Zygentoma (silverfish)
- Myriapoda
