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zenodo40/100

FIG. 2 in Natural history and conservation of the wolf spider Vesubia jugorum (Simon, 1881) (Araneae, Lycosidae), assessed as Endangered in the IUCN Red List

FIG. 2. –– Long-term monitoring programme of Vesubia jugorum (Simon, 1881): A, a typical high-altitude rocky area colonized by Vesubia jugorum; B, a female with its cocoon; C, measurement of the cocoon diameter with a digital calliper; D, removal of leg IV from a female; E, measurement of leg IV through Leica M80 stereoscopic microscope; F, a female with cocoon found in its retreat.

opencc-zeroJan 2023View details →
zenodo40/100

FIG. 4 in Natural history and conservation of the wolf spider Vesubia jugorum (Simon, 1881) (Araneae, Lycosidae), assessed as Endangered in the IUCN Red List

FIG. 4. –– Predicted relationship (blue line) and 95% confidence intervals (gray stripe) between length of femur IV and habitat suitability of each monitoring site derived from the Ecological Niche Model presented in Mammola et al. (2019) (see Material and Methods for further details).

opencc-zeroJan 2023View details →
zenodo40/100

FIG. 3 in Natural history and conservation of the wolf spider Vesubia jugorum (Simon, 1881) (Araneae, Lycosidae), assessed as Endangered in the IUCN Red List

FIG. 3. –– Life cycle of Vesubia jugorum (Simon, 1881) derived from field observations conducted across the species distribution range during the 2016-2019 sampling seasons. Daily fluctuations in temperature (red line) and humidity (blue line) derived from data-logger positioned across 2018 and 2019 at the ground level under stones, in the nearby of Rocca dell'Abisso (Valdieri, 2589 m a.s.l.). Daily fluctuations in air temperature (orange line) derived from the meteorological station of Rocca dell'Abisso (2753 m a.s.l.). Growing season is indicated by light grey (females), black (males) and dotted dark grey (juveniles) bars. Dash line refers to the overwintering. See text for further details.

opencc-zeroJan 2023View details →
zenodo36/100

APPENDIX 1 in Unraveling the monotypy of Vesubia Simon, 1909 and its relationships to Alopecosa Simon, 1885 (Araneae, Lycosidae)

<p>APPENDIX 1. &mdash; List of terminals and GenBank accession numbers.</p><table><tbody><tr><th><b>Species</b></th><th><b>28s</b></th><th><b>12s</b></th><th><b>NADH</b></th><th><b>COI</b></th><th><b>H3</b></th></tr></tbody><tbody><tr><th><i>Agalenocosa_pirity</i></th><td>MK496221</td><td>MK524583</td><td>MK524667</td><td>SPDAR245-13</td><td>MK524668</td></tr><tr><th><i>Aglaoctenus_lagotis</i></th><td>KY190291</td><td>DQ019753</td><td>DQ019640</td><td>&ndash;</td><td>MK524669</td></tr><tr><th><i>Allocosa_funerea</i></th><td>MK524604</td><td>&ndash;</td><td>&ndash;</td><td>SPDAR1405-16</td><td>MK524671</td></tr><tr><th><i>Allocosa_paraguayensis</i></th><td>MK524605</td><td>MK524584</td><td>MK524639</td><td>SPDAR929-15</td><td>MK524672</td></tr><tr><th><i>Alopecosa_accentuata</i></th><td>MT652049</td><td>&ndash;</td><td>&ndash;</td><td>MT607656</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_aculeata</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>MH763777</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_albofasciata</i></th><td>MH758550</td><td>&ndash;</td><td>&ndash;</td><td>MH763780</td><td>MH763802</td></tr><tr><th><i>Alopecosa_albostriata</i></th><td>&ndash;</td><td>DQ019757</td><td>DQ019643</td><td>SPIRU020-10</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_cuneata</i></th><td>MH758554</td><td>&ndash;</td><td>&ndash;</td><td>MH763784</td><td>MH763806</td></tr><tr><th><i>Alopecosa_cursor</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>KM254113</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_exasperans</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>KM254140</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_fabrilis</i></th><td>MH758559</td><td>&ndash;</td><td>&ndash;</td><td>MH763790</td><td>MH763811</td></tr><tr><th><i>Alopecosa_farinosa</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>MH763776</td><td>MH763799</td></tr><tr><th><i>Alopecosa_gomerae</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>MT738761</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_hirtipes</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>KM254125</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_inquilina</i></th><td>MH758556</td><td>&ndash;</td><td>&ndash;</td><td>MH763786</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_kochi</i></th><td>&ndash;</td><td>DQ019755</td><td>DQ019645</td><td>KM225089</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_kulczynski</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>KM254105</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_mariae</i></th><td>MH758558</td><td>&ndash;</td><td>&ndash;</td><td>MH763788</td><td>MH763809</td></tr><tr><th><i>Alopecosa_mutabilis</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>KM254127</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_nigricans</i></th><td>MK524607</td><td>&ndash;</td><td>MK524640</td><td>SPDAR285-13</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_pentheri</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>KM254154</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_pictilis</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>HM384667</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_pinetorum</i></th><td>MH758551</td><td>&ndash;</td><td>&ndash;</td><td>MH763781</td><td>MH763803</td></tr><tr><th><i>Alopecosa_psammophila</i></th><td>MH758557</td><td>&ndash;</td><td>&ndash;</td><td>MH763787</td><td>MH763808</td></tr><tr><th><i>Alopecosa_pulverulenta</i></th><td>MH758553</td><td>DQ019756</td><td>DQ019648</td><td>MH763783</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_schmidti</i></th><td>MH758560</td><td>&ndash;</td><td>&ndash;</td><td>MH763789</td><td>MH763810</td></tr><tr><th><i>Alopecosa_simoni</i></th><td>MT651730</td><td>&ndash;</td><td>&ndash;</td><td>MT607660</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_solitaria</i></th><td>MH758555</td><td>&ndash;</td><td>&ndash;</td><td>MH763785</td><td>MH763807</td></tr><tr><th><i>Alopecosa_solivaga</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>KM254146</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_solivaga_borea</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>KM254151</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_striatipes</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>KY270139</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_sulzeri</i></th><td>MH758548</td><td>&ndash;</td><td>&ndash;</td><td>MH763775</td><td>MH763798</td></tr><tr><th><i>Alopecosa_taeniata</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>MH763778</td><td>MH763800</td></tr><tr><th><i>Alopecosa_taeniopus</i></th><td>&ndash;</td><td>&ndash;</td><td>&ndash;</td><td>KM254137</td><td>&ndash;</td></tr><tr><th><i>Alopecosa_trabalis</i></th><td>MH758552</td><td>&ndash;</td><td>&ndash;</td><td>MH763782</td><td>MH763804</td></tr><tr><th><i>Arctosa_cinerea</i></th><td>&ndash;</td><td>DQ019763</td><td>DQ019651</td><td>GBBSP1285-15</td><td>&ndash;</td></tr><tr><th><i>Artoria_flavimana</i></th><td>DQ019712</td><td>DQ019771</td><td>DQ019657</td><td>AY059992</td><td>&ndash;</td></tr><tr><th><i>Birabenia_birabenae</i></th><td>MK524611</td><td>&ndash;</td><td>MK524647</td><td>&ndash;</td><td>MK524680</td></tr><tr><th><i>Dingosa_simsoni</i></th><td>MK524612</td><td>&ndash;</td><td>MK524648</td><td>MK524716</td><td>MK524681</td></tr><tr><th><i>Draposa_burasantiensis</i></th><td>&ndash;</td><td>&ndash;</td><td>MK524649</td><td>SPDAR1369-16</td><td>MK524682</td></tr><tr><th><i>Draposa_tenasserimensis</i></th><td>KM225054</td><td>&ndash;</td><td>&ndash;</td><td>KM225107</td><td>KM225207</td></tr><tr><th><i>Evippomma _</i> sp.</th><td>MK524613</td><td>MK524588</td><td>MK524650</td><td>SPDAR1379-16</td><td>MK524683</td></tr><tr><th><i>Geolycosa_insulata</i></th><td>MK524620</td><td>MK524592</td><td>MK524656</td><td>SPDAR251-13</td><td>MK524688</td></tr><tr><th><i>Geolycosa_missouriensis</i></th><td>DQ019727</td><td>DQ019775</td><td>&ndash;</td><td>BBUSU647-15</td><td>&ndash;</td></tr><tr><th><i>Gladicosa_pulchra</i></th><td>MK524614</td><td>MK524589</td><td>MK524651</td><td>SPDAR1397-16</td><td>&ndash;</td></tr><tr><th><i>Hippasa_holmerae</i></th><td>DQ019728</td><td>DQ019776</td><td>DQ019663</td><td>&ndash;</td><td>&ndash;</td></tr><tr><th><i>Hippasa _</i> sp.</th><td>MK524615</td><td>&ndash;</td><td>MK524652</td><td>SPDAR1378-16</td><td>MK524684</td></tr><tr><th><i>Hoggicosa_bicolor</i></th><td>DQ019713</td><td>DQ019777</td><td>DQ019668</td><td>&ndash;</td><td>&ndash;</td></tr><tr><th><i>Hogna _cf_frondicola</i></th><td>KY017166</td><td>&ndash;</td><td>&ndash;</td><td>KY017782</td><td>KY018283</td></tr><tr><th><i>Hogna_radiata</i></th><td>KC550823</td><td>KC551070</td><td>MK524654</td><td>KC550817</td><td>MK524686</td></tr><tr><th><i>Lycosa_baulnyi</i></th><td>KC550848</td><td>KC550960</td><td>&ndash;</td><td>KC550802</td><td>&ndash;</td></tr><tr><th><i>Lycosa_bedeli</i></th><td>KC550831</td><td>KC551047</td><td>&ndash;</td><td>KC550713</td><td>&ndash;</td></tr><tr><th><i>Lycosa_erythrognatha</i></th><td>DQ019729</td><td>DQ019782</td><td>DQ019670</td><td>SPDAR393-14</td><td>MK524689</td></tr><tr><th><i>Lycosa_fasciiventris</i></th><td>KC550820</td><td>KC551079</td><td>&ndash;</td><td>KC550722</td><td>&ndash;</td></tr><tr><th><i>Lycosa_hispanica</i></th><td>KC550845</td><td>KC550969</td><td>&ndash;</td><td>KC550661</td><td>&ndash;</td></tr><tr><th><i>Lycosa_munieri</i></th><td>KC550830</td><td>KC550945</td><td>&ndash;</td><td>KC550749</td><td>&ndash;</td></tr><tr><th><i>Lycosa_oculata</i></th><td>KC550829</td><td>&ndash;</td><td>&ndash;</td><td>KC550670</td><td>&ndash;</td></tr><tr><th><i>Lycosa_suboculata</i></th><td>KC550862</td><td>KC551000</td><td>&ndash;</td><td>KC550696</td><td>&ndash;</td></tr><tr><th><i>Lycosa_tarantula</i></th><td>KC550842</td><td>KC551085</td><td>DQ019666</td><td>KC550669</td><td>&ndash;</td></tr><tr><th><i>Lycosa_vachoni</i></th><td>KC550833</td><td>KC551088</td><td>&ndash;</td><td>KC550775</td><td>&ndash;</td></tr><tr><th><i>Ovia _</i> sp.</th><td>MK524622</td><td>&ndash;</td><td>MK524659</td><td>SPDAR1383-16</td><td>MK524694</td></tr><tr><th><i>Pardosa_alacris</i></th><td>MK524623</td><td>MK524596</td><td>&ndash;</td><td>SPDAR1298-15</td><td>MK524695</td></tr><tr><th><i>Pardosa_amentata</i></th><td>MK524624</td><td>&ndash;</td><td>&ndash;</td><td>SPDAR1281-15</td><td>MK524696</td></tr><tr><th><i>Pardosa_astrigera</i></th><td>&ndash;</td><td>DQ019792</td><td>DQ019685</td><td>&ndash;</td><td>&ndash;</td></tr><tr><th><i>Pardosa_brevivulva</i></th><td>&ndash;</td><td>DQ019793</td><td>DQ019686</td><td>&ndash;</td><td>&ndash;</td></tr><tr><th><i>Pardosa_hedini</i></th><td>&ndash;</td><td>DQ019795</td><td>DQ019690</td><td>&ndash;</td><td>&ndash;</td></tr><tr><th><i>Pardosa_isago</i></th><td>&ndash;</td><td>DQ019796</td><td>DQ019691</td><td>&ndash;</td><td>&ndash;</td></tr><tr><th><i>Pardosa_laura</i></th><td>&ndash;</td><td>DQ019797</td><td>DQ019692</td><td>KY467121</td><td>&ndash;</td></tr><tr><th><i>Pardosa_lugubris</i></th><td>MK524625</td><td>MK524598</td><td>DQ019693</td><td>SPDAR1279-15</td><td>MK524697</td></tr><tr><th><i>Pardosa_palustris</i></th><td>&ndash;</td><td>DQ019799</td><td>DQ019694</td><td>&ndash;</td><td>&ndash;</td></tr><tr><th><i>Pardosa_prativaga</i></th><td>&ndash;</td><td>KY190235</td><td>KY199549</td><td>KY190313</td><td>KY190284</td></tr><tr><th><i>Pardosa_pseudoannulata</i></th><td>MK524626</td><td>MK524599</td><td>MK524662</td><td>SPDAR1376-16|</td><td>&ndash;</td></tr><tr><th><i>Pavocosa_gallopavo</i></th><td>DQ019735</td><td>DQ019800</td><td>DQ019695</td><td>SPDAR365-14</td><td>&ndash;</td></tr><tr><th><i>Rabidosa_punctulata</i></th><td>DQ019736</td><td>DQ019806</td><td>DQ019700</td><td>&ndash;</td><td>&ndash;</td></tr><tr><th><i>Rabidosa_rabida</i></th><td>KY017171</td><td>DQ019807</td><td>DQ019701</td><td>SPDAR1404-16</td><td>MK524699</td></tr><tr><th><i>Schizocosa_malitiosa</i></th><td>&ndash;</td><td>&ndash;</td><td>KY199543</td><td>KY190307</td><td>KY190277</td></tr><tr><th><i>Schizocosa_ocreata</i></th><td>KY017172</td><td>KY015465</td><td>AF223242</td><td>KY017784</td><td>&ndash;</td></tr><tr><th><i>Tasmanicosa_godeffroyi</i></th><td>DQ019716</td><td>DQ019809</td><td>DQ019671</td><td>&ndash;</td><td>&ndash;</td></tr><tr><th><i>Tasmanicosa_leuckarti</i></th><td>DQ019717</td><td>DQ019810</td><td>DQ019672</td><td>&ndash;</td><td>MK524690</td></tr><tr><th><i>Tigrosa_georgicola</i></th><td>MK524631</td><td>MK524601</td><td>&ndash;</td><td>SPDAR1400-16</td><td>MK524703</td></tr><tr><th><i>Trochosa_ruricola</i></th><td>JN816972</td><td>DQ019814</td><td>DQ019704</td><td>GBCNC087-09</td><td>&ndash;</td></tr><tr><th><i>Trochosa_terricola</i></th><td>DQ019739</td><td>DQ019813</td><td>DQ019705</td><td>SPDAR1277-15</td><td>MK524705</td></tr><tr><th><i>Tropicosa_moesta</i></th><td>MK524608</td><td>&ndash;</td><td>MK524641</td><td>CORAR050-13</td><td>MK524674</td></tr><tr><th><i>Varacosa_avara</i></th><td>DQ019740</td><td>DQ019817</td><td>DQ019707</td><td>SPDAR1398-16</td><td>MK524706</td></tr><tr><th><i>Venatrix_konei</i></th><td>DQ019742</td><td>DQ019820</td><td>DQ019708</td><td>&ndash;</td><td>&ndash;</td></tr><tr><th><i>Venonia_micarioides</i></th><td>DQ019738</td><td>DQ019819</td><td>DQ019709</td><td>SPDAR1393-16</td><td>&ndash;</td></tr><tr><th><i>Vesubia_jugorum</i></th><td>MK524634</td><td>&ndash;</td><td>&ndash;</td><td>MK524717</td><td>MK524707</td></tr><tr><th><i>Wadicosa_fidelis</i></th><td>MK524635</td><td>KP100666</td><td>KP100666</td><td>KP100666</td><td>MK524708</td></tr><tr><th><i>Xerolycosa_nemoralis</i></th><td>MK524636</td><td>DQ019821</td><td>DQ019710</td><td>SPDAR1291-15</td><td>MK524709</td></tr></tbody></table>

opencc-by-4.0Sep 2024View details →
zenodo36/100

APPENDIX 2 in Unraveling the monotypy of Vesubia Simon, 1909 and its relationships to Alopecosa Simon, 1885 (Araneae, Lycosidae)

<p>APPENDIX 2. &mdash; Best scheme founded by IQ-TREE for each partition.</p><table><tbody><tr><th><b>Partition name</b></th><th><b>model</b></th><th></th></tr></tbody><tbody><tr><th>28s</th><td>GTR+F+G4</td><td>1-520</td></tr><tr><th>12s</th><td>TIM2+F+I+G4</td><td>521-775</td></tr><tr><th>NADH_1</th><td>TIM2+F+I+G4</td><td>776-1329\3</td></tr><tr><th>NADH_2</th><td>TPM3u+F+I+G4</td><td>775-1329\3</td></tr><tr><th>NADH_3</th><td>TPM2u+F+G4</td><td>776-1329\3</td></tr><tr><th>COI_1</th><td>TPM2u+F+I+G4</td><td>1330-1983\3</td></tr><tr><th>COI_2</th><td>TIM3+F+I+G4</td><td>1331-1983\3</td></tr><tr><th>COI_3</th><td>TN+F+G4</td><td>1332-1983\3</td></tr><tr><th>H_1</th><td>TIM2e+I</td><td>1984-2285\3</td></tr><tr><th>H_2</th><td>K2P+G4</td><td>1985-2285\3</td></tr><tr><th>H_3</th><td>TIM2e+G4</td><td>1986-2285\3</td></tr></tbody></table>

opencc-by-4.0Sep 2024View details →
dryad32/100

Data from: Associations between habitat quality, body size, and reproductive fitness in the alpine endemic spider Vesubia jugorum

Aim. In theory, the highest-quality habitat across a species' range should support individuals with the highest fitness, making it possible to evaluate the outputs of species distribution models (SDM) by exploring the relation between habitat quality and functional traits related to species' fitness. However, this relation has been tested almost exclusively in plants. We investigated the degree to which morphological and reproductive traits of an alpine spider varied along a gradient of habitat quality projected via species distribution models. Location. Southwestern Alps (France and Italy) Time period. 2007–2018 Major taxa studied. Vesubia jugorum (Arachnida: Araneae: Lycosidae) Methods. We used climatic, topographical and geomorphological variables at a resolution of 250 m to model habitat quality for V. jugorum, with multiple algorithms (generalized additive models, boosted regression trees, and maximum entropy models). We collected spiders in the field and measured their body size and egg-case size (a functional trait related to reproductive success). We tested the relation between functional traits and habitat quality with linear mixed models. Results. All SDM algorithms we tested fit the data well, with similar explanatory ability. Models revealed a positive relation between the probability of presence and cumulative precipitation and percentage of rock. An additional important variable in the SDMs was duration of snow coverage, with optimal projected habitat quality between 40 and 100 days/year with snow. Modeled habitat quality was positively associated with maximum body and egg-case size. Main conclusions. Our work provides evidence of a positive association between projected habitat quality and traits of a terrestrial invertebrate. A model that fits the data well potentially can be used to predict variations in species' traits, thus offering an experimental test of SDM projections with field-collected data. We encourage SDM users to incorporate data on functional traits into their modeling fitting exercises.

opencc-zeroDec 2018View details →
dryad32/100

Data from: Associations between habitat quality, body size, and reproductive fitness in the alpine endemic spider Vesubia jugorum

Open the record for dataset details and reuse information.

publicMay 2020View details →
zenodo28/100

FIG. 1 in Natural history and conservation of the wolf spider Vesubia jugorum (Simon, 1881) (Araneae, Lycosidae), assessed as Endangered in the IUCN Red List

FIG. 1. –– The updated distribution of Vesubia jugorum (Simon, 1881). Symbols: ●, type locality; ●, literature data; ●, new records published in this work;, the 17 sites chosen for the long-term monitoring programme.

opencc-zeroJan 2023View details →

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