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<emphasis id="B913EADDFFA3FFF6CC8B06A0FE94F97B" bold="true" box="[151,372,1756,1783]" italics="true" pageId="37" pageNumber="38">Draculoides catho</emphasis>
(
<bibRefCitation id="EFF64B3EFFA3FFF6CD9F06A0FAA4F97A" author="Framenau, V. W. &amp; Hamilton, Z. R. &amp; Finston, T. &amp; Humphreys, G. &amp; Abrams, K. M. &amp; Huey, J. A. &amp; Harvey, M. S." box="[387,1348,1756,1783]" pageId="37" pageNumber="38" pagination="507 - 537" refId="ref46490" refString="Framenau, V. W., Hamilton, Z. R., Finston, T., Humphreys, G., Abrams, K. M., Huey, J. A. &amp; Harvey, M. S. (2018) Molecular and morphological characterization of new species of hypogean Paradraculoides (Schizomida: Hubbardiidae) from the arid Pilbara bioregion of Western Australia. Journal of Arachnology, 46 (3), 507 - 537. https: // doi. org / 10.1636 / JoA-S- 17 - 101.1" type="journal article" year="2018">Framenau, Hamilton, Finston, Humphreys, Abrams, Huey and Harvey, 2018</bibRefCitation>
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(
<figureCitation id="135C2A4AFFA3FFF6CC83077DFEE9F897" box="[159,265,1793,1819]" captionStart-0="FIGURE 1" captionStart-1="FIGURE 2" captionStart-2="FIGURE 3" captionStart-3="FIGURE 4" captionStart-4="FIGURE 5" captionStart-5="FIGURE 6" captionStart-6="FIGURE 7" captionStart-7="FIGURE 8" captionStartId-0="16.[151,250,1868,1892]" captionStartId-1="17.[151,250,1910,1934]" captionStartId-2="18.[151,250,1547,1571]" captionStartId-3="19.[151,250,1882,1906]" captionStartId-4="20.[151,250,1216,1240]" captionStartId-5="21.[151,250,1709,1733]" captionStartId-6="22.[151,250,1755,1779]" captionStartId-7="23.[151,250,1919,1943]" captionTargetBox-0="[346,1243,188,1844]" captionTargetBox-1="[332,1254,181,1881]" captionTargetBox-2="[158,1420,181,1521]" captionTargetBox-3="[151,1425,182,1858]" captionTargetBox-4="[158,1424,183,1189]" captionTargetBox-5="[155,1423,181,1683]" captionTargetBox-6="[159,1425,181,1729]" captionTargetBox-7="[151,1430,181,1893]" captionTargetId-0="figure-20@16.[339,1249,181,1844]" captionTargetId-1="figure-17@17.[332,1254,181,1886]" captionTargetId-2="figure-20@18.[151,1436,181,1524]" captionTargetId-3="figure-17@19.[151,1436,181,1859]" captionTargetId-4="figure-20@20.[151,1436,181,1192]" captionTargetId-5="figure-17@21.[155,1432,181,1685]" captionTargetId-6="figure-20@22.[151,1436,181,1732]" captionTargetId-7="figure-17@23.[151,1436,181,1894]" captionTargetPageId-0="16" captionTargetPageId-1="17" captionTargetPageId-2="18" captionTargetPageId-3="19" captionTargetPageId-4="20" captionTargetPageId-5="21" captionTargetPageId-6="22" captionTargetPageId-7="23" captionText-0="FIGURE 1. Map of an area of the Pilbara described as “West Pilbara” for the purposes of this study, showing the distribution of the named Draculoides species. Inset maps show species distributions in finer detail encompassing areas A: Warramboo, Mesas A, B and C and “BudgieBore”; B: Bungaroo, Mesas G, H, J, K and L; C: Cochrane and Jewell, Kens Bore, Cane and Upper Cane River, Trinity Bore and Catho Well, Mt. Stuart Station; D: Middle Robe, Robe Valley; E: Bungaroo South, West Pit, Buckland Hills and Dragon deposit." captionText-1="FIGURE 2. Maximum Likelihood tree, based on the reduced dataset. See Methods for details. Each terminal represents a single species or OTU, with named species in bold. Clades are identified using dashed boxes and shaded boxes encompass the species discussed in this study. Nodes with bootstrap support &lt;80 are not shown, except for the common ancestor of the Draculoides radiation." captionText-2="FIGURE 3. COI mini-barcodes for all Draculoides species including the operational taxonomic units used in Abrams et al. (2019). This barcode is the maximally diagnostic 50 bp fragment of DNA. Genetic variation within species is shown using IUPAC Ambiguity Codes. See Methods for details. The position of the mini-barcode is reported relative to a specimen of Draculoides celatus (WAM T98698, GenBank number MG913085). The blue tree on the left groups minibarcodes which are most similar to each other but does not represent an accurate phylogeny. The coloured bases in the figure are those that differ from the consensus reference sequence." captionText-3="FIGURE 4. Maximum Likelihood tree based on COI mini-barcodes (Fig. 3) showing similarity of mini-barcode sequences, relative to species identity. This phylogeny does not recover an accurate tree topology, and evolutionary relationships should not be inferred from this figure." captionText-4="FIGURE 5. 12S mini-barcodes for all Draculoides species including the operational taxonomic units used in Abrams et al. (2019). This barcode is the maximally diagnostic 50 bp fragment of DNA. Genetic variation within species is shown using IUPAC Ambiguity Codes. See Methods for details. The position of the mini-barcode is reported relative to a specimen of Draculoides celatus (WAM T98698, GenBank number MG913012). The blue tree on the left groups minibarcodes which are most similar to each other but does not represent an accurate phylogeny. The coloured bases in the figure are those that differ from the consensus reference sequence." captionText-5="FIGURE 6. Maximum Likelihood tree based on COI mini-barcodes (Fig. 5) showing similarity of mini-barcode sequences relative to species identity. This phylogeny does not recover an accurate tree topology, and evolutionary relationships should not be inferred from this figure." captionText-6="FIGURE 7. ITS2 mini-barcodes for all Draculoides species including the operational taxonomic units used in Abrams et al. (2019). This barcode is the maximally diagnostic 50 bp fragment of DNA. Genetic variation within species is shown using IUPAC Ambiguity Codes. See Methods for details. The position of the mini-barcode is reported relative to a specimen of Draculoides celatus (WAM T98698, GenBank number MG913105). The blue tree on the left groups minibarcodes which are most similar to each other but does not represent an accurate phylogeny. The coloured bases in the figure are those that differ from the consensus reference sequence." captionText-7="FIGURE 8. Maximum Likelihood tree based on ITS2 mini-barcodes (Fig. 7) showing similarity of mini-barcode sequences, relative to species identity. This phylogeny does not recover an accurate tree topology, and evolutionary relationships should not be inferred from this figure." figureDoi-0="http://doi.org/10.5281/zenodo.4416851" figureDoi-1="http://doi.org/10.5281/zenodo.4416855" figureDoi-2="http://doi.org/10.5281/zenodo.4416857" figureDoi-3="http://doi.org/10.5281/zenodo.4416859" figureDoi-4="http://doi.org/10.5281/zenodo.4416863" figureDoi-5="http://doi.org/10.5281/zenodo.4416865" figureDoi-6="http://doi.org/10.5281/zenodo.4416867" figureDoi-7="http://doi.org/10.5281/zenodo.4416869" httpUri-0="https://zenodo.org/record/4416851/files/figure.png" httpUri-1="https://zenodo.org/record/4416855/files/figure.png" httpUri-2="https://zenodo.org/record/4416857/files/figure.png" httpUri-3="https://zenodo.org/record/4416859/files/figure.png" httpUri-4="https://zenodo.org/record/4416863/files/figure.png" httpUri-5="https://zenodo.org/record/4416865/files/figure.png" httpUri-6="https://zenodo.org/record/4416867/files/figure.png" httpUri-7="https://zenodo.org/record/4416869/files/figure.png" pageId="37" pageNumber="38">Figs. 18</figureCitation>
)
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http://zoobank.org/NomenclaturalActs/
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<emphasis id="B913EADDFFA3FFF6CC8B0715FE60F80D" box="[151,384,1897,1921]" italics="true" pageId="37" pageNumber="38">Paradraculoides catho</emphasis>
<bibRefCitation id="EFF64B3EFFA3FFF6CD9A0716FB5DF80D" author="Framenau, V. W. &amp; Hamilton, Z. R. &amp; Finston, T. &amp; Humphreys, G. &amp; Abrams, K. M. &amp; Huey, J. A. &amp; Harvey, M. S." box="[390,1213,1897,1922]" pageId="37" pageNumber="38" pagination="507 - 537" refId="ref46490" refString="Framenau, V. W., Hamilton, Z. R., Finston, T., Humphreys, G., Abrams, K. M., Huey, J. A. &amp; Harvey, M. S. (2018) Molecular and morphological characterization of new species of hypogean Paradraculoides (Schizomida: Hubbardiidae) from the arid Pilbara bioregion of Western Australia. Journal of Arachnology, 46 (3), 507 - 537. https: // doi. org / 10.1636 / JoA-S- 17 - 101.1" type="journal article" year="2018">Framenau, Hamilton, Finston, Humphreys, Abrams, Huey and Harvey 2018: 521</bibRefCitation>
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, figs. 67.
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<emphasis id="B913EADDFFA3FFF6CC8B07F4FEB3F82C" box="[151,339,1928,1952]" italics="true" pageId="37" pageNumber="38">Draculoides catho</emphasis>
(Framenau, Hamilton, Finston, Humphreys, Abrams, Huey and Harvey)
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:
<bibRefCitation id="EFF64B3EFFA3FFF6C85807F4FAE8F82C" author="Abrams, K. M. &amp; Huey, J. A. &amp; Hillyer, M. J. &amp; Humphreys, W. F. &amp; Didham, R. K. &amp; Harvey, M. S." box="[1092,1288,1928,1952]" pageId="37" pageNumber="38" pagination="106532" refId="ref46122" refString="Abrams, K. M., Huey, J. A., Hillyer, M. J., Humphreys, W. F., Didham, R. K. &amp; Harvey, M. S. (2019) Too hot to handle: Tertiary aridification drives multiple independent incursions of Schizomida (Hubbardiidae) into hypogean environments. Molecular Phylogenetics and Evolution, 139, 106532. https: // doi. org / 10.1016 / j. ympev. 2019.106532" type="journal article" year="2019">
Abrams
<emphasis id="B913EADDFFA3FFF6C88707F5FB28F82C" box="[1179,1224,1928,1952]" italics="true" pageId="37" pageNumber="38">et al</emphasis>
. 2019
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MPE 106532:
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<paragraph id="8BD836CFFFA3FFF6CCDB07DBFEFDF833" blockId="37.[151,1437,1897,1983]" box="[199,285,1959,1983]" pageId="37" pageNumber="38">8, fig. 2.</paragraph>
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<paragraph id="8BD836CFFFA0FFF5CC8B00EAFB9EFF75" blockId="38.[151,1437,150,573]" pageId="38" pageNumber="39">
<emphasis id="B913EADDFFA0FFF5CC8B00EAFE60FF3C" bold="true" box="[151,384,150,176]" pageId="38" pageNumber="39">Material examined.</emphasis>
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female.
</emphasis>
<collectingCountry id="F370765FFFA0FFF5CE5600EBFD0DFF3D" box="[586,749,151,177]" name="Australia" pageId="38" pageNumber="39">AUSTRALIA</collectingCountry>
:
<emphasis id="B913EADDFFA0FFF5CEEB00EBFC5EFF3D" box="[759,958,151,177]" italics="true" pageId="38" pageNumber="39">
<collectingRegion id="49A3F82DFFA0FFF5CEEB00EBFC5EFF3D" box="[759,958,151,177]" country="Australia" name="Western Australia" pageId="38" pageNumber="39">Western Australia</collectingRegion>
</emphasis>
:
<collectingCounty id="62B94E43FFA0FFF5CFD000EBFB6FFF3D" box="[972,1167,151,177]" pageId="38" pageNumber="39">Mt Stuart Station</collectingCounty>
,
<collectingMunicipality id="6BBCACB5FFA0FFF5C88600EBFAF9FF3D" box="[1178,1305,151,177]" pageId="38" pageNumber="39">Catho Well</collectingMunicipality>
,
<quantity id="4C9F9B2AFFA0FFF5C93800EBFA9FFF3D" box="[1316,1407,151,177]" metricMagnitude="4" metricUnit="m" metricValue="8.26" pageId="38" pageNumber="39" unit="km" value="82.6">82.6 km</quantity>
S. of
<location id="8EB86014FFA0FFF5CCA900C7FEADFF59" LSID="urn:lsid:plazi:treatment:03CE87D9FFA3FFF5CC8B06A0FEE2FDB1:8EB86014FFA0FFF5CCA900C7FEADFF59" box="[181,333,187,213]" country="Australia" county="Mt Stuart Station" latitude="-22.388332" longLatPrecision="21" longitude="116.25305" municipality="Catho Well" name="Pannawonica" pageId="38" pageNumber="39" stateProvince="Western Australia">Pannawonica</location>
,
<geoCoordinate id="EE535008FFA0FFF5CD4400C7FE3FFF59" box="[344,479,187,213]" degrees="22" direction="south" minutes="23" orientation="latitude" pageId="38" pageNumber="39" precision="15" seconds="18" value="-22.388332">22°2318”S</geoCoordinate>
,
<geoCoordinate id="EE535008FFA0FFF5CDF600C6FD9EFF59" box="[490,638,186,213]" degrees="116" direction="east" minutes="15" orientation="longitude" pageId="38" pageNumber="39" precision="15" seconds="11" value="116.25305">116°1511”E</geoCoordinate>
,
<date id="FFD9100FFFA0FFF5CE9600C7FC92FF59" box="[650,882,187,213]" pageId="38" pageNumber="39" value="2008-10-13" valueMax="2008-10-16" valueMin="2008-10-13">
<collectingDate id="EF9DE9E7FFA0FFF5CE9600C7FC92FF59" box="[650,882,187,213]" pageId="38" pageNumber="39" value="2008-10-13" valueMax="2008-10-16" valueMin="2008-10-13">1316 October 2008</collectingDate>
</date>
,
<collectingMethod id="52264ED8FFA0FFF5CF6100C7FBD3FF59" box="[893,1075,187,213]" pageId="38" pageNumber="39">troglofauna trap</collectingMethod>
,
<quantity id="4C9F9B2AFFA0FFF5C82200C7FB98FF59" box="[1086,1144,187,213]" metricMagnitude="1" metricUnit="m" metricValue="2.0" pageId="38" pageNumber="39" unit="m" value="20.0">
<elevation id="004AD1FCFFA0FFF5C82200C7FB98FF59" box="[1086,1144,187,213]" metricMagnitude="1" metricUnit="m" metricValue="2.0" pageId="38" pageNumber="39" unit="m" value="20.0">20 m</elevation>
</quantity>
,
<collectorName id="26925319FFA0FFF5C89800C7FACCFF59" box="[1156,1324,187,213]" pageId="38" pageNumber="39">G. Humphreys</collectorName>
,
<collectorName id="26925319FFA0FFF5C92A00C7FA7DFF59" box="[1334,1437,187,213]" pageId="38" pageNumber="39">M. Menz</collectorName>
(Biota Environmental Sciences,
<specimenCode id="DBC19EB4FFA0FFF5CE1E00A3FD64FF75" box="[514,644,223,249]" collectionCode="CWRC" pageId="38" pageNumber="39">CWRC281</specimenCode>
P4
<specimenCode id="DBC19EB4FFA0FFF5CEBD00A3FD39FF75" box="[673,729,223,249]" collectionCode="T" name="Tavera, Department of Geology and Geophysics" pageId="38" pageNumber="39">T21</specimenCode>
) (
<collectionCode id="ED76AE0AFFA0FFF5CEF200A3FCD5FF75" box="[750,821,223,249]" country="Australia" httpUri="http://biocol.org/urn:lsid:biocol.org:col:34981" lsid="urn:lsid:biocol.org:col:34981" name="Western Australian Museum" pageId="38" pageNumber="39" type="Museum">WAM</collectionCode>
<collectionCode id="ED76AE0AFFA0FFF5CF2700A3FCACFF75" box="[827,844,223,249]" name="Tavera, Department of Geology and Geophysics" pageId="38" pageNumber="39">T</collectionCode>
93192) (DNA:
<collectionCode id="ED76AE0AFFA0FFF5CFEB00A3FBCAFF75" box="[1015,1066,223,249]" country="Portugal" lsid="urn:lsid:biocol.org:col:14498" name="University of Coimbra Botany Department" pageId="38" pageNumber="39" type="Herbarium">COI</collectionCode>
,
<specimenCode id="DBC19EB4FFA0FFF5C82A00A3FB92FF75" box="[1078,1138,223,249]" collectionCode="ITS" pageId="38" pageNumber="39">ITS2</specimenCode>
).
</materialsCitation>
</paragraph>
<paragraph id="8BD836CFFFA0FFF5CCDB017FFBD6FE91" blockId="38.[151,1437,150,573]" box="[199,1078,259,285]" pageId="38" pageNumber="39">
<emphasis id="B913EADDFFA0FFF5CCDB017FFE96FE91" box="[199,374,259,285]" italics="true" pageId="38" pageNumber="39">Other material.</emphasis>
<collectingCountry id="F370765FFFA0FFF5CD67017FFDFEFE91" box="[379,542,259,285]" name="Australia" pageId="38" pageNumber="39">AUSTRALIA</collectingCountry>
:
<emphasis id="B913EADDFFA0FFF5CE34017FFD10FE91" box="[552,752,259,285]" italics="true" pageId="38" pageNumber="39">
<collectingRegion id="49A3F82DFFA0FFF5CE34017FFD10FE91" box="[552,752,259,285]" country="Australia" name="Western Australia" pageId="38" pageNumber="39">Western Australia</collectingRegion>
</emphasis>
: See
<bibRefCitation id="EFF64B3EFFA0FFF5CF32017FFBD2FE91" author="Framenau, V. W. &amp; Hamilton, Z. R. &amp; Finston, T. &amp; Humphreys, G. &amp; Abrams, K. M. &amp; Huey, J. A. &amp; Harvey, M. S." box="[814,1074,259,285]" pageId="38" pageNumber="39" pagination="507 - 537" refId="ref46490" refString="Framenau, V. W., Hamilton, Z. R., Finston, T., Humphreys, G., Abrams, K. M., Huey, J. A. &amp; Harvey, M. S. (2018) Molecular and morphological characterization of new species of hypogean Paradraculoides (Schizomida: Hubbardiidae) from the arid Pilbara bioregion of Western Australia. Journal of Arachnology, 46 (3), 507 - 537. https: // doi. org / 10.1636 / JoA-S- 17 - 101.1" type="journal article" year="2018">
Framenau
<emphasis id="B913EADDFFA0FFF5CFB9017FFC37FE91" box="[933,983,259,285]" italics="true" pageId="38" pageNumber="39">et al</emphasis>
. (2018)
</bibRefCitation>
.
</paragraph>
</subSubSection>
<subSubSection id="C37D6544FFA0FFF5CCDB015AFCADFE21" pageId="38" pageNumber="39" type="diagnosis">
<paragraph id="8BD836CFFFA0FFF5CCDB015AFCADFE21" blockId="38.[151,1437,150,573]" pageId="38" pageNumber="39">
<emphasis id="B913EADDFFA0FFF5CCDB015AFEA2FECC" bold="true" box="[199,322,294,320]" pageId="38" pageNumber="39">Diagnosis.</emphasis>
Males of
<taxonomicName id="4C674D4CFFA0FFF5CDAD015BFD61FECD" baseAuthorityName="Framenau, Hamilton, Finston, Humphreys, Abrams, Huey and Harvey" baseAuthorityYear="2018" box="[433,641,295,321]" class="Arachnida" family="Hubbardiidae" genus="Draculoides" kingdom="Animalia" order="Schizomida" pageId="38" pageNumber="39" phylum="Arthropoda" rank="species" species="catho">
<emphasis id="B913EADDFFA0FFF5CDAD015BFD61FECD" box="[433,641,295,321]" italics="true" pageId="38" pageNumber="39">Draculoides catho</emphasis>
</taxonomicName>
are unknown, and although the setal arrangement on the female flagellum places this species closest to
<taxonomicName id="4C674D4CFFA0FFF5CE1A0137FD8BFEE8" baseAuthorityName="Framenau, Hamilton, Finston, Humphreys, Abrams, Huey and Harvey" baseAuthorityYear="2018" box="[518,619,331,356]" class="Arachnida" family="Hubbardiidae" genus="Draculoides" kingdom="Animalia" order="Schizomida" pageId="38" pageNumber="39" phylum="Arthropoda" rank="species" species="trinity">
<emphasis id="B913EADDFFA0FFF5CE1A0137FD8BFEE8" box="[518,619,331,356]" italics="true" pageId="38" pageNumber="39">D. trinity</emphasis>
</taxonomicName>
, it is currently not possible to differentiate the two species on morphology alone.
<taxonomicName id="4C674D4CFFA0FFF5CCFD0113FE50FE05" baseAuthorityName="Framenau, Hamilton, Finston, Humphreys, Abrams, Huey and Harvey" baseAuthorityYear="2018" box="[225,432,367,393]" class="Arachnida" family="Hubbardiidae" genus="Draculoides" kingdom="Animalia" order="Schizomida" pageId="38" pageNumber="39" phylum="Arthropoda" rank="species" species="catho">
<emphasis id="B913EADDFFA0FFF5CCFD0113FE50FE05" box="[225,432,367,393]" italics="true" pageId="38" pageNumber="39">Draculoides catho</emphasis>
</taxonomicName>
can be diagnosed from all other
<taxonomicName id="4C674D4CFFA0FFF5CF060113FC44FE05" box="[794,932,367,393]" class="Arachnida" family="Hubbardiidae" genus="Draculoides" kingdom="Animalia" order="Schizomida" pageId="38" pageNumber="39" phylum="Arthropoda" rank="genus">
<emphasis id="B913EADDFFA0FFF5CF060113FC44FE05" box="[794,932,367,393]" italics="true" pageId="38" pageNumber="39">Draculoides</emphasis>
</taxonomicName>
species that were sequenced at COI, 12S and ITS2 by the 50bp mini-barcodes shown in
<figureCitation id="135C2A4AFFA0FFF5CE6901EFFD3FFE21" box="[629,735,403,429]" captionStart="FIGURE 3" captionStartId="18.[151,250,1547,1571]" captionTargetBox="[158,1420,181,1521]" captionTargetId="figure-20@18.[151,1436,181,1524]" captionTargetPageId="18" captionText="FIGURE 3. COI mini-barcodes for all Draculoides species including the operational taxonomic units used in Abrams et al. (2019). This barcode is the maximally diagnostic 50 bp fragment of DNA. Genetic variation within species is shown using IUPAC Ambiguity Codes. See Methods for details. The position of the mini-barcode is reported relative to a specimen of Draculoides celatus (WAM T98698, GenBank number MG913085). The blue tree on the left groups minibarcodes which are most similar to each other but does not represent an accurate phylogeny. The coloured bases in the figure are those that differ from the consensus reference sequence." figureDoi="http://doi.org/10.5281/zenodo.4416857" httpUri="https://zenodo.org/record/4416857/files/figure.png" pageId="38" pageNumber="39">Figures 3</figureCitation>
,
<figureCitation id="135C2A4AFFA0FFF5CEF001EEFD1CFE21" box="[748,764,402,429]" captionStart="FIGURE 5" captionStartId="20.[151,250,1216,1240]" captionTargetBox="[158,1424,183,1189]" captionTargetId="figure-20@20.[151,1436,181,1192]" captionTargetPageId="20" captionText="FIGURE 5. 12S mini-barcodes for all Draculoides species including the operational taxonomic units used in Abrams et al. (2019). This barcode is the maximally diagnostic 50 bp fragment of DNA. Genetic variation within species is shown using IUPAC Ambiguity Codes. See Methods for details. The position of the mini-barcode is reported relative to a specimen of Draculoides celatus (WAM T98698, GenBank number MG913012). The blue tree on the left groups minibarcodes which are most similar to each other but does not represent an accurate phylogeny. The coloured bases in the figure are those that differ from the consensus reference sequence." figureDoi="http://doi.org/10.5281/zenodo.4416863" httpUri="https://zenodo.org/record/4416863/files/figure.png" pageId="38" pageNumber="39">5</figureCitation>
, and 7.
</paragraph>
</subSubSection>
<subSubSection id="C37D6544FFA0FFF5CCDB01CAFD77FE5D" box="[199,663,438,465]" pageId="38" pageNumber="39" type="description">
<paragraph id="8BD836CFFFA0FFF5CCDB01CAFD77FE5D" blockId="38.[151,1437,150,573]" box="[199,663,438,465]" pageId="38" pageNumber="39">
<emphasis id="B913EADDFFA0FFF5CCDB01CAFEB9FE5C" bold="true" box="[199,345,438,464]" pageId="38" pageNumber="39">Description.</emphasis>
See
<bibRefCitation id="EFF64B3EFFA0FFF5CD9301CBFD73FE5D" author="Framenau, V. W. &amp; Hamilton, Z. R. &amp; Finston, T. &amp; Humphreys, G. &amp; Abrams, K. M. &amp; Huey, J. A. &amp; Harvey, M. S." box="[399,659,439,465]" pageId="38" pageNumber="39" pagination="507 - 537" refId="ref46490" refString="Framenau, V. W., Hamilton, Z. R., Finston, T., Humphreys, G., Abrams, K. M., Huey, J. A. &amp; Harvey, M. S. (2018) Molecular and morphological characterization of new species of hypogean Paradraculoides (Schizomida: Hubbardiidae) from the arid Pilbara bioregion of Western Australia. Journal of Arachnology, 46 (3), 507 - 537. https: // doi. org / 10.1636 / JoA-S- 17 - 101.1" type="journal article" year="2018">
Framenau
<emphasis id="B913EADDFFA0FFF5CE1A01CBFDD7FE5D" box="[518,567,439,465]" italics="true" pageId="38" pageNumber="39">et al</emphasis>
. (2018)
</bibRefCitation>
.
</paragraph>
</subSubSection>
<subSubSection id="C37D6544FFA0FFF5CCDB01A7FEE2FDB1" pageId="38" pageNumber="39" type="discussion">
<paragraph id="8BD836CFFFA0FFF5CCDB01A7FEE2FDB1" blockId="38.[151,1437,150,573]" pageId="38" pageNumber="39">
<emphasis id="B913EADDFFA0FFF5CCDB01A7FED4FE79" bold="true" box="[199,308,475,501]" pageId="38" pageNumber="39">Remarks</emphasis>
.
<taxonomicName id="4C674D4CFFA0FFF5CD5D01A7FDF0FE79" baseAuthorityName="Framenau, Hamilton, Finston, Humphreys, Abrams, Huey and Harvey" baseAuthorityYear="2018" box="[321,528,475,501]" class="Arachnida" family="Hubbardiidae" genus="Draculoides" kingdom="Animalia" order="Schizomida" pageId="38" pageNumber="39" phylum="Arthropoda" rank="species" species="catho">
<emphasis id="B913EADDFFA0FFF5CD5D01A7FDF0FE79" box="[321,528,475,501]" italics="true" pageId="38" pageNumber="39">Draculoides catho</emphasis>
</taxonomicName>
is known from three localities known as Catho Well,
<collectingRegion id="49A3F82DFFA0FFF5C87E01A7FAC9FE79" box="[1122,1321,475,501]" country="Australia" name="Western Australia" pageId="38" pageNumber="39">Western Australia</collectingRegion>
(
<figureCitation id="135C2A4AFFA0FFF5C92401A7FA6EFE79" box="[1336,1422,475,501]" captionStart="FIGURE 1" captionStartId="16.[151,250,1868,1892]" captionTargetBox="[346,1243,188,1844]" captionTargetId="figure-20@16.[339,1249,181,1844]" captionTargetPageId="16" captionText="FIGURE 1. Map of an area of the Pilbara described as “West Pilbara” for the purposes of this study, showing the distribution of the named Draculoides species. Inset maps show species distributions in finer detail encompassing areas A: Warramboo, Mesas A, B and C and “BudgieBore”; B: Bungaroo, Mesas G, H, J, K and L; C: Cochrane and Jewell, Kens Bore, Cane and Upper Cane River, Trinity Bore and Catho Well, Mt. Stuart Station; D: Middle Robe, Robe Valley; E: Bungaroo South, West Pit, Buckland Hills and Dragon deposit." figureDoi="http://doi.org/10.5281/zenodo.4416851" httpUri="https://zenodo.org/record/4416851/files/figure.png" pageId="38" pageNumber="39">Fig. 1C</figureCitation>
). All specimens were collected from bore holes using troglofauna traps, and were collected from sites less than
<quantity id="4C9F9B2AFFA0FFF5C9650182FF5BFDB1" metricMagnitude="3" metricUnit="m" metricValue="3.5" pageId="38" pageNumber="39" unit="km" value="3.5">3.5 km</quantity>
apart.
</paragraph>
</subSubSection>
</treatment>
</document>