1. Padil Species Factsheet Scientific Name: Common Name Image Library Partners for New Zealand Biosecurity Image Library

Total Page:16

File Type:pdf, Size:1020Kb

1. Padil Species Factsheet Scientific Name: Common Name Image Library Partners for New Zealand Biosecurity Image Library 1. PaDIL Species Factsheet Scientific Name: Holconia insignis (Thorell, 1870) (Araneae: Sparassidae: Deleninae) Common Name Huntsman Spider Live link: http://www.padil.gov.au/maf-border/Pest/Main/140691 Image Library New Zealand Biosecurity Live link: http://www.padil.gov.au/maf-border/ Partners for New Zealand Biosecurity image library Landcare Research — Manaaki Whenua http://www.landcareresearch.co.nz/ MPI (Ministry for Primary Industries) http://www.biosecurity.govt.nz/ 2. Species Information 2.1. Details Specimen Contact: MAF Plant Health & Environment Laboratory - [email protected] Author: MAF Plant Health & Environment Laboratory Citation: MAF Plant Health & Environment Laboratory (2011) Huntsman Spider(Holconia insignis)Updated on 4/9/2014 Available online: PaDIL - http://www.padil.gov.au Image Use: Free for use under the Creative Commons Attribution-NonCommercial 4.0 International (CC BY- NC 4.0) 2.2. URL Live link: http://www.padil.gov.au/maf-border/Pest/Main/140691 2.3. Facets Commodity Overview: Horticulture Commodity Type: Citrus produce Groups: Spiders Status: NZ - Exotic Pest Status: 0 Unknown Distribution: 0 Unknown Host Family: 0 Unknown 2.4. Other Names Giant Crab Spider Holconia insignis Simon, 1880 Isopeda insignis Hogg 1903 Isopeda insignis Järvi, 1914 Voconia insignis Thorell, 1870 2.5. Diagnostic Notes **Adult** Carapace low, about 7-8 times longer than high. Clypeus about one third width of AME. 5 retromarginal cheliceral teeth. Abdomen lacks ventral pattern. **Male** Subembolic apophysis rounded, apex curved slightly to venter; embolus with 9\xbd to 10 coils. **Female** Epigynum broad anteriorly; lateral rims somewhat parallel or slightly diverging in anterior half, broadest posteriorly; epigynal sclerite long, usually greater than half length of fossa. Insemination ducts with about 10 coils. **References** - Hirst, D.B. (1991). Revision of Australian species of the genus _Holconia_ Thorell (Heteropodidae: Araneae). _Records of the South Australian Museum_, 24(2): 91-109. 2.6. References - Hirst, D.B. (1991). Revision of Australian species of the genus _Holconia_ Thorell (Heteropodidae: Araneae). _Records of the South Australian Museum_, 24(2): 91-109. Results Generated: Saturday, October 2, 2021 .
Recommended publications
  • Level 1 Fauna Survey of the Gruyere Gold Project Borefields (Harewood 2016)
    GOLD ROAD RESOURCES LIMITED GRUYERE PROJECT EPA REFERRAL SUPPORTING DOCUMENT APPENDIX 5: LEVEL 1 FAUNA SURVEY OF THE GRUYERE GOLD PROJECT BOREFIELDS (HAREWOOD 2016) Gruyere EPA Ref Support Doc Final Rev 1.docx Fauna Assessment (Level 1) Gruyere Borefield Project Gold Road Resources Limited January 2016 Version 3 On behalf of: Gold Road Resources Limited C/- Botanica Consulting PO Box 2027 BOULDER WA 6432 T: 08 9093 0024 F: 08 9093 1381 Prepared by: Greg Harewood Zoologist PO Box 755 BUNBURY WA 6231 M: 0402 141 197 T/F: (08) 9725 0982 E: [email protected] GRUYERE BOREFIELD PROJECT –– GOLD ROAD RESOURCES LTD – FAUNA ASSESSMENT (L1) – JAN 2016 – V3 TABLE OF CONTENTS SUMMARY 1. INTRODUCTION .....................................................................................................1 2. SCOPE OF WORKS ...............................................................................................1 3. RELEVANT LEGISTALATION ................................................................................2 4. METHODS...............................................................................................................3 4.1 POTENTIAL VETEBRATE FAUNA INVENTORY - DESKTOP SURVEY ............. 3 4.1.1 Database Searches.......................................................................................3 4.1.2 Previous Fauna Surveys in the Area ............................................................3 4.1.3 Existing Publications .....................................................................................5 4.1.4 Fauna
    [Show full text]
  • Level 2 Fauna Survey.Pdf
    Fauna Survey (Level 2) Phase 1 (September 2016) and Phase 2 (April 2017) Lake Wells Potash Project Australian Potash Ltd September 2017 Report Number: 01-000017-1/2 VERSION 4 On behalf of: Australian Potash Limited PO Box 1941 WEST PERTH, WA 6872 Prepared by: Greg Harewood Zoologist PO Box 755 BUNBURY WA 6231 M: 0402 141 197 E: [email protected] LAKE WELLS POTASH PROJECT – AUSTRALIAN POTASH LTD – L2 FAUNA SURVEY - PHASE 1 & 2 – SEPTEMBER 2017 – V4 TABLE OF CONTENTS SUMMARY .............................................................................................................. III 1. INTRODUCTION ............................................................................................... 1 1.1 BACKGROUND ................................................................................................ 1 1.2 SURVEY AREA ................................................................................................. 1 1.3 SURVEY SCOPE .............................................................................................. 1 2. METHODS ........................................................................................................ 3 2.1 FAUNA INVENTORY - LITERATURE REVIEW ............................................... 3 2.1.1 Database Searches .................................................................................................................. 3 2.1.2 Previous Fauna Surveys in the Area ........................................................................................ 3 2.2 FAUNA INVENTORY – DETAILED
    [Show full text]
  • Banded Huntsman, Holconia Immanis
    Care guide Giant Banded Huntsman, Holconia immanis Giant Banded Huntsmen are one of Australia’s largest spiders, growing up to body length of 45 mm and a leg span of 160 mm. They are found in the warmer parts of eastern Australia, and range from NSW to Queensland. They feed on a wide range of other invertebrates including moths, crickets, cockroaches and other spiders. They have also been known to feed on small vertebrates such as frogs and geckos in the wild. These spiders are extremely fast, and have the ability to run sideways and squeeze into very narrow crevices. They are covered in fine sensory hairs which are extremely sensitive to air movement. This assists them in detecting the movement of prey and the approach of predators. Like other huntsmen, this species lays its eggs encased within a flattened white silk egg sac. They usually secure this in a dark place such as under loose tree bark and stay with their eggs until after they hatch. The young emerge 30 - 60 days after being laid (they will develop faster in warmer conditions) and several hundred spiderlings may emerge from a single egg sac. The spiderlings will cluster around their mother for several weeks after they emerge and will tolerate each other during this stage. Once they disperse any chance meetings of the siblings will often result in one eating the other. These spiders grow by shedding their outer skeleton (exoskeleton). This process is called ecdysis or moulting. To moult successfully they need to hang uninterrupted beneath a leaf or branch.
    [Show full text]
  • OREGON ESTUARINE INVERTEBRATES an Illustrated Guide to the Common and Important Invertebrate Animals
    OREGON ESTUARINE INVERTEBRATES An Illustrated Guide to the Common and Important Invertebrate Animals By Paul Rudy, Jr. Lynn Hay Rudy Oregon Institute of Marine Biology University of Oregon Charleston, Oregon 97420 Contract No. 79-111 Project Officer Jay F. Watson U.S. Fish and Wildlife Service 500 N.E. Multnomah Street Portland, Oregon 97232 Performed for National Coastal Ecosystems Team Office of Biological Services Fish and Wildlife Service U.S. Department of Interior Washington, D.C. 20240 Table of Contents Introduction CNIDARIA Hydrozoa Aequorea aequorea ................................................................ 6 Obelia longissima .................................................................. 8 Polyorchis penicillatus 10 Tubularia crocea ................................................................. 12 Anthozoa Anthopleura artemisia ................................. 14 Anthopleura elegantissima .................................................. 16 Haliplanella luciae .................................................................. 18 Nematostella vectensis ......................................................... 20 Metridium senile .................................................................... 22 NEMERTEA Amphiporus imparispinosus ................................................ 24 Carinoma mutabilis ................................................................ 26 Cerebratulus californiensis .................................................. 28 Lineus ruber .........................................................................
    [Show full text]
  • Final Report Melaleuca Wetlands, Coochiemudlo Island, Fauna Survey 2016 Ronda J Green, Bsc (Hons) Phd
    Final Report Melaleuca Wetlands, Coochiemudlo Island, Fauna Survey 2016 Ronda J Green, BSc (Hons) PhD for Coochiemudlo Island Coastcare Supported by Redland City Council Acknowledgements I would like to express thanks to Redland City Council for financial and other support and to Coochiemudlo Island Coastcare for opportunity to conduct the survey, accommodation for Darren and myself, and many kinds of support throughout the process, including the sharing of photos and reports of sightings by others. Volunteers provided invaluable assistance in carrying traps and tools, setting and checking traps, digging holes for pitfall traps and setting associated drift nets, looking for animals on morning and nocturnal searches, collecting and washing traps after the surveys and assisting in other ways. Volunteers were (in alphabetical order): Elissa Brooker, Nikki Cornwall, Raymonde de Lathouder, Lindsay Duncan, Ashley Edwards, Kurt Gaskill, Diane Gilham, Deb Hancox, Margrit Lack, Chris Leonard, Susan Meek, Leigh Purdie, Natascha Quadt, Narelle Renn, Lu Richards, Graeme Roberts-Thomson, Vivienne Roberts-Thomson, Charlie Tomsin, and Bruce Wollstein Thanks also to Carolyn Brammer and Lindsay Duncan for allowing volunteers the use their cabin accommodation for at-cost rates each of the four seasons. Thanks again to Coastcare for providing a number of BBQ's, other meals, tea, coffee and muffins for ourselves and volunteers. Thanks also to Alexandra Beresford and Tim Herse for setting up additional motion-sensing camera, and to Scenic Rim Wildlife for allowing us to borrow theirs. Finally we would like to thank Steve Willson and Patrick Couper of the Queensland Museum for assistance with identification of a snake and a frog.
    [Show full text]
  • Brockman Resources Limited Rail Corridor Short Range Endemic Invertebrate Survey
    OCTOBER 2011 BROCKMAN RESOURCES LIMITED RAIL CORRIDOR SHORT RANGE ENDEMIC INVERTEBRATE SURVEY This page has been left blank intentionally BROCKMAN RESOURCES LIMITED RAIL CORRIDOR SHORT RANGE ENDEMIC INVERTEBRATE SURVEY Brockman Resources Limited Rail Corridor SRE Survey Document Status Approved for Issue Rev Author Reviewer/s Date Name Distributed To Date A N. Dight L. Roque‐Albelo 15/12/10 L.Roque‐Albelo J. Greive 1 N. Dight M. Davis 20/11/11 L. Roque‐Albelo G. Firth 21/10/11 ecologia Environment (2011). Reproduction of this report in whole or in part by electronic, mechanical or chemical means including photocopying, recording or by any information storage and retrieval system, in any language, is strictly prohibited without the express approval of Brockman Resources Limited and/or ecologia Environment. Restrictions on Use This report has been prepared specifically for Brockman Resources Limited. Neither the report nor its contents may be referred to or quoted in any statement, study, report, application, prospectus, loan, or other agreement document, without the express approval of Brockman Resources and/or ecologia Environment. ecologia Environment 1025 Wellington Street WEST PERTH WA 6005 Phone: 08 9322 1944 Fax: 08 9322 1599 Email: [email protected] October 2011 iii Brockman Resources Limited Rail Corridor SRE Survey TABLE OF CONTENTS EXECUTIVE SUMMARY..................................................................................................................VIII 1 INTRODUCTION ...............................................................................................................
    [Show full text]
  • Araneae, Heteropodidae)
    1993. The Journal of Arachnology 21 :153—155 NATURAL HISTORY NOTES ON THE HUNTSMAN SPIDER HOLCONIA IMMANIS (ARANEAE, HETEROPODIDAE) Our ecological knowledge of huntsman spiders next tree, food availability, and number of G. of the family Heteropodidae is very limited . Even variegata seen - see Henle [1990] for details of the taxonomy of this family has been worked out methods) was tested. None of the product-mo- poorly. The last complete revision dates back t o ment-correlations (-0.16 r <- 0.40) was sig- Hogg (1903). The recently resurrected genus Hol- nificant (all a > 0.05). However, inanother more conia ranges over most of mainland Australi a elevated study site of black box riverine wood- (Hirst 1990), and Holconia immanis (Koch) is land, Henle (1990) found a significant correlation found in eastern Australia from Queensland t o of the number of adult female spiders with tre e Victoria. H. immanis is a large spider: males diameter and a marginally significant correlatio n attain a body length of 30 mm, and females one with tree height and leaf area index . Thus, in this of 47 mm (Mascord 1970). study site, larger trees tend to harbor more spec- New observations of this species were made imens. during a population ecological study of the ar- Both species are typical sit-and-wait foragers. boreal gecko Gehyra variegata (Dumeril & Bi- Adult H. immanis seem to have 1-2 preferred bron) (Henle 1990) in Kinchega National Par k ambush sites where most individuals were ob- (32°28'S, 142°20'E), western New South Wales, served on many consecutive nights up to a period Australia, from September 1985 to May 1987 .
    [Show full text]
  • Comparing Metabolic Physiology and Growth in Social and Solitary Spiders
    Assessing the costs of group living: Comparing metabolic physiology and growth in social and solitary spiders Honors Thesis Presented to the College of Agriculture and Life Sciences, Department of Entomology of Cornell University in Partial Fulfillment of the Requirements for the Research Honors Program by Ariel Zimmerman May 2007 Dr. Linda S. Rayor 1 Abstract: Sociality in arachnids is extremely rare though well documented for the few cases that exist. However, no research to date has examined the metabolic and growth characteristics associated with social behavior. Delena cancerides is a social huntsman spider that closely overlaps in distribution with several closely related species of solitary huntsmen, providing a unique opportunity for comparison. I compared the metabolic rate of D. cancerides to other species of solitary huntsman using a closed-system respirometer. I also compared the growth, survival and molting frequency of D. cancerides spiderlings in solo and group treatments to those of solitary huntsman species. Delena cancerides had a significantly lower mass-specific metabolic rate than all other species to which it was compared. This is explained in the context of reduced food availability per individual for prolonged periods of time due to sharing. Delena cancerides spiderlings did not differ from other species when housed alone, but grew significantly more in group environments than did solitary species. Mortality was lowest for D. cancerides living in groups than for any other species living in groups. There was no difference for any species in molting patterns between solo and group treatments. D. cancerides molted consistently earlier and more often than the species to which it was compared.
    [Show full text]
  • Biodiversity Summary: Rangelands, Western Australia
    Biodiversity Summary for NRM Regions Guide to Users Background What is the summary for and where does it come from? This summary has been produced by the Department of Sustainability, Environment, Water, Population and Communities (SEWPC) for the Natural Resource Management Spatial Information System. It highlights important elements of the biodiversity of the region in two ways: • Listing species which may be significant for management because they are found only in the region, mainly in the region, or they have a conservation status such as endangered or vulnerable. • Comparing the region to other parts of Australia in terms of the composition and distribution of its species, to suggest components of its biodiversity which may be nationally significant. The summary was produced using the Australian Natural Natural Heritage Heritage Assessment Assessment Tool Tool (ANHAT), which analyses data from a range of plant and animal surveys and collections from across Australia to automatically generate a report for each NRM region. Data sources (Appendix 2) include national and state herbaria, museums, state governments, CSIRO, Birds Australia and a range of surveys conducted by or for DEWHA. Limitations • ANHAT currently contains information on the distribution of over 30,000 Australian taxa. This includes all mammals, birds, reptiles, frogs and fish, 137 families of vascular plants (over 15,000 species) and a range of invertebrate groups. The list of families covered in ANHAT is shown in Appendix 1. Groups notnot yet yet covered covered in inANHAT ANHAT are are not not included included in the in the summary. • The data used for this summary come from authoritative sources, but they are not perfect.
    [Show full text]
  • Araneomorph Spiders from the Southern Carnarvon Basin, Western Australia: a Consideration of Regional Biogeographic Relationships
    DOI: 10.18195/issn.0313-122x.61.2000.295-321 Records of the Western Australian Museum Supplement No. 61: 295-321 (2000). Araneomorph spiders from the southern Carnarvon Basin, Western Australia: a consideration of regional biogeographic relationships Mark S. Harveyt, Alison Sampeyl,2, Paul L.J. West1,3 and Julianne M. Waldock1 1 Department of Terrestrial Invertebrates, Western Australian Museum, Francis Street, Perth, Western Australia 6000, Australia 2Present address: Lot 1984 Weller Rd, Hovea, Western Australia 6071, Australia 3Present address: Halpern Glick & Maunsell Pty Ltd, John Tonkin Centre, 629 Newcastle St, Leederville, Western Australia 6007, Australia Abstract -A survey of the ground-dwelling araneomorph spider assemblages of the Southern Carnarvon Basin revealed a total of 33 families. Apart from the Gnaphosidae and Zodariidae which were not analysed due to time- constraints, we recognized a total of 285 species placed in 146 genera. Very few taxa could be assigned to existing genera or species, reflecting poor taxonomic knowledge of many groups of spiders. Patterns in species composition across the study area were correlated with rainfall gradients, and a discrete claypan fauna was detected. Vicariance events seem to explain part of the patterning evident. However, strongly localised patterns in species composition were also evident. INTRODUCTION Hartmeyer, 1907-1908). Modern authors had Araneomorph spiders constitute a large contributed only a further nine species (Baehr and proportion of total arachnid diversity, with 90 Baehr, 1987, 1992, 1993; Harvey, 1995; Hirst, 1991; recognized families and an estimated 35 000 Jocque and Baehr, 1992; Levi, 1983; Main, 1987; described species (Coddington and Levi, 1991; McKay, 1975, 1979), although numerous additional Platnick, 1997).
    [Show full text]
  • Biodiversity Summary: Wet Tropics, Queensland
    Biodiversity Summary for NRM Regions Species List What is the summary for and where does it come from? This list has been produced by the Department of Sustainability, Environment, Water, Population and Communities (SEWPC) for the Natural Resource Management Spatial Information System. The list was produced using the AustralianAustralian Natural Natural Heritage Heritage Assessment Assessment Tool Tool (ANHAT), which analyses data from a range of plant and animal surveys and collections from across Australia to automatically generate a report for each NRM region. Data sources (Appendix 2) include national and state herbaria, museums, state governments, CSIRO, Birds Australia and a range of surveys conducted by or for DEWHA. For each family of plant and animal covered by ANHAT (Appendix 1), this document gives the number of species in the country and how many of them are found in the region. It also identifies species listed as Vulnerable, Critically Endangered, Endangered or Conservation Dependent under the EPBC Act. A biodiversity summary for this region is also available. For more information please see: www.environment.gov.au/heritage/anhat/index.html Limitations • ANHAT currently contains information on the distribution of over 30,000 Australian taxa. This includes all mammals, birds, reptiles, frogs and fish, 137 families of vascular plants (over 15,000 species) and a range of invertebrate groups. Groups notnot yet yet covered covered in inANHAT ANHAT are notnot included included in in the the list. list. • The data used come from authoritative sources, but they are not perfect. All species names have been confirmed as valid species names, but it is not possible to confirm all species locations.
    [Show full text]
  • Northern Rivers, New South Wales
    Biodiversity Summary for NRM Regions Guide to Users Background What is the summary for and where does it come from? This summary has been produced by the Department of Sustainability, Environment, Water, Population and Communities (SEWPC) for the Natural Resource Management Spatial Information System. It highlights important elements of the biodiversity of the region in two ways: • Listing species which may be significant for management because they are found only in the region, mainly in the region, or they have a conservation status such as endangered or vulnerable. • Comparing the region to other parts of Australia in terms of the composition and distribution of its species, to suggest components of its biodiversity which may be nationally significant. The summary was produced using the Australian Natural Natural Heritage Heritage Assessment Assessment Tool Tool (ANHAT), which analyses data from a range of plant and animal surveys and collections from across Australia to automatically generate a report for each NRM region. Data sources (Appendix 2) include national and state herbaria, museums, state governments, CSIRO, Birds Australia and a range of surveys conducted by or for DEWHA. Limitations • ANHAT currently contains information on the distribution of over 30,000 Australian taxa. This includes all mammals, birds, reptiles, frogs and fish, 137 families of vascular plants (over 15,000 species) and a range of invertebrate groups. The list of families covered in ANHAT is shown in Appendix 1. Groups notnot yet yet covered covered in inANHAT ANHAT are are not not included included in the in the summary. • The data used for this summary come from authoritative sources, but they are not perfect.
    [Show full text]