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61 results for “ultramafics”
Fig. 7 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
Fig. 7. Male genitalia of Viriiella touaouroua gen. et sp. nov. Abbreviations: pe = penis; pr = prostate; pv = pallial vas deferens; te = testis; vd = vas deferens; vs = vesicula seminalis.
Fig. 9 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
Fig. 9. Phylogenetic analyses. Maximum likelihood (ML) tree and section of Bayesian tree (BA). Support values are bootstrap support values/posterior probabilities; the latter are omitted for the New Caledonian taxa in the ML tree, the former in the Bayesian tree fragment. Scale bars = 0.1 substitutions/ site.
Fig. 6 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
Fig. 6. Female genitalia of Viriiella touaouroua gen. et sp. nov. A. All parts opaque. B. Oviduct transparent revealing the seminal receptacle. Abbreviations: ac = anterior capsule gland; ag = albumen gland; bc = bursa copulatrix; od = oviduct; ov = ovary; pc = posterior capsule gland; rs = receptaculum semins; vc = ventral channel.
Fig. 3 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
Fig. 3. Types of Viriiella touaouroua gen. et sp. nov. A. Holotype (MNHN-IM-2000-39460). B-D. Paratypes (MNHN-IM-2000-39461).
Fig. 1 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
Fig. 1. Map showing the type locality of Viriiella touaouroua gen. et sp. nov. A. Southwest Pacific. B. New Caledonia with areas of ultramafic base rock indicated in green. C. Type locality Touaourou (arrow and asterisk).
Fig. 5 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
Fig. 5. Radula of Viriiella touaouroua gen. et sp. nov. Abbreviations: L = lateral teeth; M1 = inner marginal teeth; M2 = outer marginal teeth; R = rhachis (central) teeth.
Table 1 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
<p><b>Table 1 (continued on next page).</b> Species used in phylogenetic analyses and their GenBank accession numbers.</p><table><tbody><tr><th>Species</th><th>COI</th><th>16S rRNA</th><th>18S rRNA</th></tr></tbody><tbody><tr><th><i>Austropyrgus niger</i> (Quoy & Gaimard, 1834)</th><td>KT313290</td><td>KT313133</td><td>KT313166</td></tr><tr><th><i>Austropyrgus turbatus</i> Ponder, Colgan, Clark & Miller, 1994</th><td>KT313291</td><td>KT313134</td><td>KT313167</td></tr><tr><th><i>Beddomeia krybetes</i> Ponder & Clark, 1993</th><td>KT313292</td><td>KT313135</td><td>KT313168</td></tr><tr><th><i>Caldicochlea globosa</i> Ponder, Colgan, Terzis, Clark & Miller, 1996</th><td>KT313293</td><td>KT313136</td><td>KT313169</td></tr><tr><th><i>Catapyrgus matapango</i> Haase, 2008</th><td>KT313294</td><td>KT313137</td><td>KT313170</td></tr><tr><th><i>Crosseana melanosoma</i> (Haase & Bouchet, 1998)</th><td>KJ490902</td><td>KJ490813</td><td>KT313206</td></tr><tr><th><i>Fluviopupa brevior</i> (Ancey, 1905)</th><td>KC875084</td><td>KC875004</td><td>KT313171</td></tr><tr><th><i>Fluviopupa bula</i> Zielske & Haase, 2014</th><td>KF939760</td><td>KF939677</td><td>KT313190</td></tr><tr><th><i>Fluviopupa dromodromo</i> Zielske & Haase, 2014</th><td>KF939781</td><td>KF939698</td><td>KT313192</td></tr><tr><th><i>Fluviopupa espiritusantoana</i> Haase, Fontaine & Gargominy, 2010</th><td>KC875095</td><td>KC875018</td><td>KT313175</td></tr><tr><th><i>Fluviopupa espiritusantoana</i> Haase, Fontaine & Gargominy, 2010</th><td>KC875091</td><td>KC875011</td><td>KT313174</td></tr><tr><th><i>Fluviopupa gracilis pupa</i> (Iredale, 1944)</th><td>KT313295</td><td>KT313138</td><td>KT313176</td></tr><tr><th><i>Fluviopupa herminae</i> Zielske & Haase, 2014</th><td>KC875113</td><td>KC875042</td><td>KT313177</td></tr><tr><th><i>Fluviopupa irinimeke</i> Haase, Ponder & Bouchet, 2006</th><td>KF939798</td><td>KF939715</td><td>KT313178</td></tr><tr><th><i>Fluviopupa jeanyvesi</i> Haase, Gargominy & Fontaine, 2005</th><td>KT313296</td><td>KT313139</td><td>KT313179</td></tr><tr><th><i>Fluviopupa pascali</i> Haase, Fontaine & Gargominy, 2010</th><td>KC875097</td><td>KC875022</td><td>KT313181</td></tr><tr><th><i>Fluviopupa raivavaeensis</i> Haase, Gargominy & Fontaine, 2005</th><td>KT313297</td><td>KT313140</td><td>KT313183</td></tr><tr><th><i>Fluviopupa ramsayi royana</i> (Iredale, 1944)</th><td>KT313298</td><td>KT313141</td><td>KT313184</td></tr><tr><th><i>Fluviopupa riva</i> Zielske & Haase, 2014</th><td>KC875086</td><td>KC875006</td><td>KT313185</td></tr><tr><th><i>Fluviopupa rurutua</i> Haase, Gargominy & Fontaine, 2005</th><td>KT313300</td><td>KT313143</td><td>KT313187</td></tr><tr><th><i>Fluviopupa seasea</i> Haase, Ponder & Bouchet, 2006</th><td>KF939756</td><td>KF939673</td><td>KT313188</td></tr><tr><th><i>Fluviopupa torresiana</i> Haase, Fontaine & Gargominy, 2010</th><td>KC875101</td><td>KC875029</td><td>KT313196</td></tr><tr><th><i>Fluviopupa tubuaia</i> Haase, Gargominy & Fontaine, 2005</th><td>KT313302</td><td>KT313145</td><td>KT313198</td></tr><tr><th><i>Fluviopupa tunuloa</i> Zielske & Haase, 2014</th><td>KF939793</td><td>KF939710</td><td>KT313194</td></tr><tr><th><i>Fluviopupa uka</i> Zielske & Haase, 2014</th><td>KF939736</td><td>KF939653</td><td>KT313189</td></tr><tr><th><i>Fonscochlea accepta</i> Ponder, Hershler & Jenkins, 1989</th><td>KT313303</td><td>KT313146</td><td>KT313199</td></tr><tr><th><i>Fonscochlea zeidleri</i> Ponder, Hershler & Jenkins, 1989</th><td>AY622460</td><td>KT313148</td><td>KT313201</td></tr><tr><th><i>Halopyrgus pupoides</i> (Hutton, 1882)</th><td>JX970616</td><td>KT313149</td><td>KT313202</td></tr><tr><th><i>Hemistomia cockerelli.</i> Haase & Bouchet, 1998</th><td>KJ490853</td><td>KJ490768</td><td>KT313208</td></tr><tr><th><i>Hemistomia gemma gemma</i> Ponder, 1982</th><td>KT313305</td><td>KT313150</td><td>KT313203</td></tr><tr><th><i>Hemistomia rusticorum</i> Haase & Bouchet, 1998</th><td>KJ490836</td><td>KJ490755</td><td>KT313207</td></tr><tr><th><i>Kanakyella gentilsiana</i> (Crosse, 1874)</th><td>KJ490914</td><td>KJ490825</td><td>KT313209</td></tr><tr><th><i>Leiorhagium kavuneva</i> Haase & Bouchet, 1998</th><td>KJ490860</td><td>KJ490775</td><td>KT313211</td></tr><tr><th><i>Meridiopyrgus murihiku</i> Haase, 2008</th><td>AY631086</td><td>KT313152</td><td>KT313212</td></tr><tr><th><i>Novacaledonia numee</i> (Haase & Bouchet, 1998)</th><td>KJ490832</td><td>KJ490751</td><td>KT313210</td></tr><tr><th><i>Opacuincola delira</i> Haase, 2008</th><td>KT313306</td><td>KT313154</td><td>KT313214</td></tr><tr><th><i>Phrantela daveyensis tristis</i> Ponder & Clark, 1993</th><td>KT313307</td><td>KT313155</td><td>KT313215</td></tr><tr><th><i>Posticobia brazieri</i> (E.A. Smith, 1882)</th><td>KT313309</td><td>KT313157</td><td>KT313217</td></tr><tr><th><i>Potamopyrgus estuarinus</i> Winterbourn, 1971</th><td>AY631104</td><td>KT313158</td><td>KT313218</td></tr><tr><th><i>Rakiurapyrgus cresswelli</i> (Climo, 1974)</th><td>KT313310</td><td>KT313159</td><td>KT313219</td></tr><tr><th><i>Sororipyrgus raki</i> Haase, 2008</th><td>KT313311</td><td>KT313160</td><td>KT313221</td></tr><tr><th><i>Sulawesidrobia abreui</i> Zielske, Glaubrecht & Haase, 2011</th><td>HM587351</td><td>HM587394</td><td>HM587420</td></tr><tr><th><i>Sulawesidrobia anceps</i> Zielske, Glaubrecht & Haase, 2011</th><td>HM587346</td><td>HM587388</td><td>HM587417</td></tr><tr><th><i>Tatea huonensis</i> (Tenison-Woods, 1876)</th><td>KT313312</td><td>JX970550</td><td>KT313222</td></tr><tr><th><i>Trochidrobia punicea</i> Ponder, Hershler & Jenkins, 1989</th><td>KT313313</td><td>KT313161</td><td>KT313223</td></tr><tr><th><i>Victodrobia victoriensis</i> Ponder & Clark, 1993</th><td>KT313314</td><td>KT313162</td><td>KT313224</td></tr><tr><th><i>Viriiella touaouroua</i> gen. et sp. nov.</th><td>PP545377</td><td>PP545463</td><td>PP545464</td></tr></tbody></table>
Results of Rock Magnetic and Mineralogical Analyses of Ultramafic Cores from the Oman Drilling Project
<p>This dataset comprises of original rock magnetic data, microscope images, EPMA data, and EDS reports used for analysis of serpentinized ultramafic cores drilled during the Oman Drilling Project (OmanDP).</p> <p>Rock magnetic experiments have been performed onboard D/V Chikyu and in a shielded facility located at the University of Iceland. Results included in the dataset are as follows: Mass susceptibility, Natural remanence before and after alternating field (AF) and thermal demagnetization, and thermomagnetic measurements. </p> <p>Microscopic images and EDS reports are the results of backscatter electron microscopy that was held at Seoul National University with a JEOL JSM-7100F scanning electron microscope. EPMA results were produced using the JXA-8530F electron probe micro-analyzer at the National Center for Inter-University Research Facilities (NCIRF) of Seoul National University (SNU).</p> <p> </p>
Data from: Global plant ecology of tropical ultramafic ecosystems
<p>This is a compiled geospatial dataset in ESRI polygon shapefile format of ultramafic soils of the neotropics showing the location of ultramafic soils in Guatemala, Cuba, Dominican Republic, Puerto Rico, Costa Rica, Colombia, Argentina, Chile, Venezuela, Ecuador, Brazil, Suriname, French Guiana, and Bolivia. The data are derived from seven geospatial datasets. Original datasets were subset to include only ultramafic areas, datasets were assigned a common projection (WGS84), attribute tables were reconciled to a common set of fields, and the datasets were combined.</p> <p>The dataset includes three components: 1) a geospatial dataset in ESRI polygon shapefile format of ultramafic soils of the neotropics showing the location of ultramafic soils in Guatemala, Cuba, Dominican Republic, Puerto Rico, Costa Rica, Colombia, Argentina, Chile, Venezuela, Ecuador, Brazil, Suriname, French Guiana, and Bolivia. 2) A regional-specific bibliography for all tropical ultramafic regions discussed in the original manuscript (Garnica-Diaz et al. 2022), and 3) an updated list in .csv format of major ultramafic outcrops worldwide including their latitude and longitude coordinates. </p>
Figure 1. Vaccinium coarctatum M.N in VACCINIUM COARCTATUM (ERICACEAE), AN ULTRAMAFIC-OBLIGATE NEW SPECIES FROM THE DWARF FOREST OF MOUNT REDONDO, DINAGAT ISLAND, PHILIPPINES
Figure 1. Vaccinium coarctatum M.N.Tamayo & Fernando, sp. nov. A, Flowering branchlets; B, inflorescence; C, leaf (adaxial view); D, bract (abaxial view); E, bracteole (adaxial view); F, corolla lobes; G, lateral view of stamen; H, dorsal view of stamen. Drawn from the holotype, E.S. Fernando 4202, by M. N. Tamayo.
Figure 2. Vaccinium coarctatum M.N in VACCINIUM COARCTATUM (ERICACEAE), AN ULTRAMAFIC-OBLIGATE NEW SPECIES FROM THE DWARF FOREST OF MOUNT REDONDO, DINAGAT ISLAND, PHILIPPINES
Figure 2. Vaccinium coarctatum M.N.Tamayo & Fernando, sp. nov. A, Upper montane rain forest of Mount Redondo, Dinagat Island, showing the dwarf vegetation in the habitat of the species; B, flowering branchlets; C, leaves and inflorescence (ventral view); D, lateral view of the inflorescence, showing corolla ridges and sulci. All photographs: E. S. Fernando.
Figure 3 in VACCINIUM COARCTATUM (ERICACEAE), AN ULTRAMAFIC-OBLIGATE NEW SPECIES FROM THE DWARF FOREST OF MOUNT REDONDO, DINAGAT ISLAND, PHILIPPINES
Figure 3. Distribution of Vaccinium coarctatum (green dot) and V. hamiguitanense (orange dot). Map created with ArcGIS version 10.5.
FIGURE 2 in Massif Speciation Events in New Caledonian Lizards: Diversification in the Genus Marmorosphax (Scincidae) Tracks Isolation on the Island's Ultramafic Surfaces
FIGURE 2. Persistent high elevation cloud formation on northwest Massif Katépahié (adjacent to the Massif de Koniambo) during the dry season.
FIGURE 5 in Massif Speciation Events in New Caledonian Lizards: Diversification in the Genus Marmorosphax (Scincidae) Tracks Isolation on the Island's Ultramafic Surfaces
FIGURE 5. Phylogenetic relationships amongst the species and populations of Marmorosphax. Likelihood topology with UFboot and BPP Bayesian posterior probabilities shown respectively. UFboot equal to 100 and BPP equal to 1.0 are represented at nodes with black circles. The numbers in squares represent the four major groups of Marmorosphax and numbers present in circles represent groups for pairwise comparisons. – indicate nodes not recovered by both phylogenetic analyses.
Data from: Specific leaf area is lower on ultramafic than on neighbouring non-ultramafic soils
<p>These are datasets in csv format for ultramafic and non-ultramafic sampling sites where specific leaf area (SLA) was collected in five climatically diverse regions: Puerto Rico (tropical wet), Costa Rica (tropical dry), South Africa (subtropical), California and Lesbos (both with Mediterranean climate). The datasets include plant species level mean SLA values, regional coordinates, regional climate data, bioclimatic variables for individual sites, and a joined dataset that includes site level coordinates and climate variables. The R script to reproduce all analyses and figures is also included.</p>
Huge variation in H2 generation during seawater alteration of ultramafic rocks: Dataset
<p>Dataset associated with the <em>Geochemistry, Geophysics, Geosystems</em> paper, "Huge variation in H2 generation during seawater alteration of ultramafic rocks"</p>
Data from: Global plant ecology of tropical ultramafic ecosystems
Open the record for dataset details and reuse information.
Data from: Specific leaf area is lower on ultramafic than on neighbouring non-ultramafic soils
Open the record for dataset details and reuse information.
Fig. 2 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
Fig. 2. Philippe Bouchet collecting Viriiella touaouroua gen. et sp. nov.
Fig. 8 in A new genus and species of spring snails (Caenogastropoda, Tateidae) from the ultramafic South of New Caledonia
Fig. 8. Penes of three males of Viriiella touaouroua gen. et sp. nov.
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