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98 results for “South Island, New Zealand”

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edi52/100

Sulfate Concentrations and Sulfur Stable Isotope Ratios in Surface Water from the Marlborough and Waipara Winegrowing Regions, South Island of New Zealand, 2023

Agricultural sulfur (S) additions are a major anthropogenic source of S to the environment, yet our understanding of the downstream transformations and potential environmental consequences of these S inputs remains incomplete. This dataset includes surface water samples from the Marlborough and Waipara winegrowing regions of the South Island of New Zealand, where frequent applications of S fungicide are widespread. Samples were analyzed for sulfate concentration and S stable isotope ratios – the combination of which forms the S “fingerprint”. We collected surface water samples during the winter of 2023 from a variety of different locations and land use types, including vineyards, forests, pastures, and urban areas. The data table includes water sample sulfate concentrations, sulfate-S stable isotope measurements, and the S stable isotope composition of commonly used S-containing fungicides and fertilizers for comparison.

openCC (other)Dec 2025View details →
zenodo44/100

Southern South Island, New Zealand, seismic observations and velocity model for Tectonics 2021TC007006

<p>This archive has data and results from the Tectonics paper, &ldquo;The influence of basement terranes on tectonic deformation: joint earthquake travel-time and ambient noise tomography of the southern South Island, New Zealand&rdquo; (Eberhart-Phillips et al., 2022; doi:10.1029/2021TC007006).&nbsp; That work incorporated earthquake observations from the 2014-2015 Otago temporary broadband network.&nbsp; Group velocity observations are in &lsquo;groupvel_obs_otaf_T5_T9.vgsw&rsquo;.&nbsp; We used earthquakes observed on the COSA temporary network.&nbsp; The Otago-COSA travel-times and hypocenters are in &lsquo;tt_archive.tar&rsquo;.&nbsp; The Otago earthquakes were evaluated within Seiscomp.&nbsp; Those observation files, which include polarity, are in &lsquo;polarity_bulletin.tar&rsquo;.&nbsp; We did not use the polarities in the Tectonics paper, but we archive them here for completeness.&nbsp; The waveform data will be available from IRIS.</p> <p>The southern South Island 3-D velocity model is provided in the table &lsquo;vlotf30xyzltlnDWSSF.mod&rsquo;, with DWS (derivative weight sum) describing the distribution of data, and SF (spread function) describing the resolution averaging. Later on, this will be merged into the New Zealand wide velocity model version 2.3, which will be placed on Zenodo.</p>

opencc-by-4.0Dec 2021View details →
zenodo40/100

Fig. 14 in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand

Fig. 14. Female genitalia of Obtusopyrgus farri sp. nov. µCT scans. Abbreviations: ag = albumen gland; bc = bursa copulatrix; cg = capsule gland; od = oviduct; ov = ovary; rs = receptaculum seminis; vc = ventral channel. Scale bar = 100 µm.

opencc-by-4.0Jan 2021View details →
zenodo40/100

Fig. 12 in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand

Fig. 12. Female genitalia of Opacuincola gretathunbergae sp. nov. µCT scans. Abbreviations: ag = albumen gland; bc = bursa copulatrix; cg = capsule gland; od = oviduct; ov = ovary; rs = receptaculum seminis; vc = ventral channel. Scale bar = 50 µm.

opencc-by-4.0Jan 2021View details →
zenodo40/100

Fig. 10 in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand

Fig. 10. Genitalia of Opacuincola lisannea sp. nov. µCT scans. A. ♀. B. ³. Abbreviations: ag = albumen gland; bc = bursa copulatrix; cg = capsule gland; od = oviduct; ov = ovary; pe = penis; pl = penial lobe; pr = prostate; pt = penial tip; pv = pallial vas deferens; rs = receptaculum seminis; vc = ventral channel; vd = vas deferens. Scale bars = 50 µm.

opencc-by-4.0Jan 2021View details →
zenodo40/100

Fig. 8. Radula. SEM photographs. A in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand

Fig. 8. Radula. SEM photographs. A. Catapyrgus jami sp. nov. B. Opacuincola lisannea sp. nov. (from type locality). C. Op. gretathunbergae sp. nov. D. Obtusopyrgus farri sp. nov.

opencc-by-4.0Jan 2021View details →
zenodo40/100

Fig. 11. Penis. SEM photographs. A in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand

Fig. 11. Penis. SEM photographs. A. Opacuincola lisannea sp. nov. (from type locality). B. Op. gretathunbergae sp. nov.C. Op. mete kahurangi subsp. nov.D. Obtusopyrgus farri sp. nov. Abbreviations: e = eye; l = penial lobe; s = snout; t = tentacle.

opencc-by-4.0Jan 2021View details →
zenodo40/100

Fig. 6 in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand

Fig. 6. Protoconch. SEM photographs of paratypes. A. Catapyrgus jami sp. nov. B–C. Opacuincola lisannea sp. nov. (B, topotype; C, northern locality). D. Op. gretathunbergae sp. nov. E. Op. mete kahurangi subsp. nov. F. Obtusopyrgus farri sp. nov.

opencc-by-4.0Jan 2021View details →
zenodo40/100

Fig. 5 in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand

Fig. 5. Shells. SEM photographs of paratypes. A. Catapyrgus jami sp. nov. B–C. Opacuincola lisannea sp. nov. (B, topotype; C, northern locality). D –E. Op. gretathunbergae sp. nov. F –G. Op. mete kahurangi subsp. nov. H–I. Obtusopyrgus farri sp. nov.

opencc-by-4.0Jan 2021View details →
zenodo40/100

Fig. 9 in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand

Fig. 9. Genitalia of Catapyrgus jami sp. nov. µCT scans. A. ♀. B. ³. Abbreviations: ac = anterior capsule gland; ag = albumen gland; bc = bursa copulatrix; od = oviduct; ov = ovary; pc = posterior capsule gland; pr = prostate; pv = pallial vas deferens; rs = receptaculum seminis; te = testis; vc = ventral channel; vd = vas deferens; vs = vesicula seminalis. Scale bars = 50 µm.

opencc-by-4.0Jan 2021View details →
zenodo40/100

Fig. 4. Types. A–B in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand

Fig. 4. Types. A–B. Catapyrgus jami sp. nov. C–D. Opacuincola lisannea sp. nov. (D from northern locality). E–F. Op. gretathunbergae sp. nov. G–H. Op. mete kahurangi subsp. nov. I–J. Obtusopyrgus farri sp. nov. A, C, E, G, I, holotypes, rest paratypes.

opencc-by-4.0Jan 2021View details →
zenodo40/100

Fig. 2 in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand

Fig. 2. Phylogenetic analysis. Maximum likelihood tree with bootstrap support&gt; 50 / posterior probabilities from Bayesian analysis&gt; 0.50 for nodes. New taxa in bold. Letters A-E after new taxa refer to localities in Figure 1.

opencc-by-4.0Jan 2021View details →
zenodo40/100

Fig. 1. Localities. A in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand

Fig. 1. Localities. A. Type locality of Opacuincola mete kahurangi subsp. nov. B. Type locality (photograph) of Catapyrgus jami sp. nov. and Op. lisannea sp. nov. C. Northern locality of Op. lisannea sp. nov. D. Type locality of Op. gretathunbergae sp. nov. E. Type locality of Obtusopyrgus farri sp. nov. For details see descriptions in text.

opencc-by-4.0Jan 2021View details →
zenodo40/100

Fig. 13 in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand

Fig. 13. Genitalia of Opacuincola m. kahurangi subsp. nov. µCT scans. A. ♀. B. ³. Abbreviations: ag = albumen gland; bc = bursa copulatrix; cg = capsule gland; od = oviduct; ov = ovary; pe = penis; pl = penial lobe; pr = prostate; pv = pallial vas deferens; rs = receptaculum seminis; te = testis; vc = ventral channel; vd = vas deferens; vs = vesicula seminalis. Scale bars = 100 µm.

opencc-by-4.0Jan 2021View details →
zenodo40/100

Linked collectors and determiners for: Fourteen new species of the genus Nesamblyops Jeannel (Coleoptera: Carabidae: Anillini) from the South Island of New Zealand with redescription of the genus and description of a new subtribe.

Natural history specimen data linked to collectors and determiners held within, "Fourteen new species of the genus Nesamblyops Jeannel (Coleoptera: Carabidae: Anillini) from the South Island of New Zealand with redescription of the genus and description of a new subtribe". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/fa0c3b0d-3655-4140-be77-6278172a6d7e">https://bionomia.net/dataset/fa0c3b0d-3655-4140-be77-6278172a6d7e</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/fa0c3b0d-3655-4140-be77-6278172a6d7e">https://gbif.org/dataset/fa0c3b0d-3655-4140-be77-6278172a6d7e</a>. Formatted as a Frictionless Data package.

opencc-zeroApr 2024View details →
dryad40/100

Ranking ecological contingencies from high-order factorial data demonstrate tidy control of biodiversity from facilitation cascades in estuaries on the South Island of New Zealand

Open the record for dataset details and reuse information.

publicFeb 2025View details →
zenodo36/100

Fig. 3 in All-inclusive descriptions of new freshwater snail taxa of the hyperdiverse family Tateidae (Gastropoda, Caenogastropoda) from the South Island of New Zealand

Fig. 3. Shell morphology. Principal component analysis based on five shell measurements of Table 1.

opencc-by-4.0Jan 2021View details →
dryad32/100

Persisting in a glaciated landscape: Pleistocene microrefugia evidenced by the tree wētā Hemideina maori in central South Island, New Zealand

<p><span><span><b>Aim:</b> Repeated cycles of Pleistocene glaciation have influenced phylogeographic structure of taxa on New Zealand's South Island. Many taxa became restricted to refugia at either end of the island during glaciation, resulting in an area of low endemicity in central South Island. This area of low endemism is typified by the so-called beech (or biotic) gap, where the absence of <i>Nothofagus </i>forest (and many other plant and invertebrate taxa) has been attributed to repeated glaciation. Some taxa, however, appear to have persisted <i>in situ</i> in localized refugia within the biotic gap. We test these alternative hypotheses in a large flightless alpine wētā (grasshopper).</span></span></p> <p><span><span><b>Location:</b> Southern Alps, South Island, New Zealand</span></span></p> <p><b>Taxon:</b> <i>Hemideina maori</i> <span>Pictet &amp; Saussure, 1891 </span>(Orthoptera: Anostostomatidae)</p> <p><span><span><b>Methods:</b> We used phylogeographic analysis of mitochondrial cytochrome<i> c </i>oxidase I (<i>cox1</i>) and twenty-five nuclear DNA (nuDNA) markers to test for Pleistocene glacial microrefugia within the current montane South Island range of <i>Hemideina maori.</i></span></span></p> <p><span><span><b>Results:</b> We identified eight deeply differentiated mtDNA lineages with limited sharing of haplotypes among populations. Genetic differentiation assessed using nuDNA revealed a similar pattern, with three groups broadly corresponding to the deepest mtDNA splits. The central South Island region exhibits substantial endemic mtDNA diversity and a distinctive nuclear lineage.</span></span></p> <p><span><span><b>Main conclusions: </b>These results indicate that <i>H. maori </i>likely<i> </i>persisted in microrefugia<i> </i>within the biotic gap during glaciation. These deep lineages are estimated to have started diverging prior to the initiation of glaciation, up to 3 Ma. These results add to a growing number of Southern Hemisphere examples of deep phyleogeographic differentiation in glaciated regions compared to Europe and North America, probably reflecting less intense glaciation. We suggest that other Southern Alps species showing northern and southern clades alone, are more montane than alpine, and were reliant on warmer habitat to the north and south during glacial eras. Thus, there are species-specific responses to climatic processes, influenced by distinctive habitat requirements and physiological traits.</span></span></p>

opencc-zeroNov 2020View details →
zenodo32/100

FIGURE 5 in The Barrier skink Oligosoma judgei n. sp. (Reptilia: Scincidae) from the Darran and Takitimu Mountains, South Island, New Zealand

FIGURE 5. Dorsal and ventral views of (top to bottom) Barrier skink, Sinbad skink, Barrier skink, Sinbad skink. Photographs: Trent Bell

opennotspecifiedDec 2009View details →
zenodo32/100

FIGURE 1 in The Barrier skink Oligosoma judgei n. sp. (Reptilia: Scincidae) from the Darran and Takitimu Mountains, South Island, New Zealand

FIGURE 1. Topographical map for the Darran Mountains and Llawrenny Peaks, showing locations of lizards discovered.

opennotspecifiedDec 2009View details →

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