150 lines
21 KiB
XML
150 lines
21 KiB
XML
<document id="1B063D6744BA9E5CBDD03EB5F0568050" ID-DOI="10.11646/phytotaxa.154.1.1" ID-ISSN="1179-3163" ID-Zenodo-Dep="5100778" IM.materialsCitations_approvedBy="felipe" IM.metadata_approvedBy="felipe" IM.tables_requiresApprovalFor="existingObjects,plazi" IM.taxonomicNames_approvedBy="felipe" checkinTime="1626240419267" checkinUser="felipe" docAuthor="Kociolek, John P., Kulikovskiy, Maxim S. & Solak, Cüneyt N." docDate="2013" docId="242F87F03A57DD06B6FCFF63F618FC9B" docLanguage="en" docName="Phytotaxa.154.1.1-37.pdf" docOrigin="Phytotaxa 154 (1)" docSource="http://dx.doi.org/10.11646/phytotaxa.154.1.1" docStyle="DocumentStyle:13F189B31CB4CCCE9197361A4E100104.3:Phytotaxa.2011-2013.journal_article" docStyleId="13F189B31CB4CCCE9197361A4E100104" docStyleName="Phytotaxa.2011-2013.journal_article" docStyleVersion="3" docTitle="Gomphoneis metzeltinii Kociolek, Kulikovskiy & Solak 2013, sp. nov." docType="treatment" docVersion="3" lastPageNumber="14" masterDocId="D816FF883A5ADD0BB66AFFF4F32DFF84" masterDocTitle="The diatom genus Gomphoneis Cleve (Bacillariophyceae) from Lake Baikal, Russia" masterLastPageNumber="37" masterPageNumber="1" pageNumber="14" updateTime="1699007394933" updateUser="plazi" zenodo-license-document="CLOSED">
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<mods:title id="CF0A87BCE1A57C66426143A2809782A5">The diatom genus Gomphoneis Cleve (Bacillariophyceae) from Lake Baikal, Russia</mods:title>
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<mods:namePart id="D01E7B3658213E7799A9D044749E28FE">Kociolek, John P.</mods:namePart>
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<mods:affiliation id="09C6E4D1F3437069888C8477BB4FA2FF">Museum of Natural History and Department of Ecology and Evolutionary Biology & University of Colorado, Boulder, Colorado, 80309 USA</mods:affiliation>
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<mods:namePart id="519D626C3141583701CC5A60394B49D8">Kulikovskiy, Maxim S.</mods:namePart>
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<mods:affiliation id="177BC833C94E9BE84431152394D49934">I. D. Papanin Institute for Biology of Inland Waters Russian Academy of Sciences,</mods:affiliation>
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<mods:namePart id="5FD7DAFAB6BEFD0D1A33412D6049CA8F">Solak, Cüneyt N.</mods:namePart>
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<mods:affiliation id="CD4E85EB08FD21D293D3651501FA2745">Dumlupiner University, Department of Biology, Art & Science Faculty, Kütahya, 431000, Turkey</mods:affiliation>
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<mods:title id="D6ED36EAC8BA7CF3D2AECD82A03862F1">Phytotaxa</mods:title>
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<mods:date id="9FD4FE628AD4DDBAE56BC130768ABF0B">2013</mods:date>
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<mods:number id="B7D98E854C21AB1A824DBF967DCF6628">2013-12-17</mods:number>
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<heading id="F771818A3A57DD06B6FCFF63F799FF36" box="[150,1204,151,178]" fontSize="11" level="2" pageId="13" pageNumber="14" reason="3">
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<taxonomicName id="6B864D653A57DD06B6FCFF63F008FF36" authority="Kociolek, Kulikovskiy & Solak" authorityName="Kociolek, Kulikovskiy & Solak" authorityYear="2013" box="[150,805,151,178]" class="Bacillariophyceae" family="Gomphonemataceae" genus="Gomphoneis" higherTaxonomySource="GBIF" kingdom="Chromista" order="Cymbellales" pageId="13" pageNumber="14" phylum="Ochrophyta" rank="species" species="metzeltinii" status="sp. nov.">
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<emphasis id="9EF2EAF43A57DD06B6FCFF63F282FF35" bold="true" box="[150,431,151,177]" italics="true" pageId="13" pageNumber="14">Gomphoneis metzeltinii</emphasis>
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Kociolek, Kulikovskiy & Solak
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,
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<emphasis id="9EF2EAF43A57DD06B55AFF6CF0A4FF35" box="[816,905,152,177]" italics="true" pageId="13" pageNumber="14">
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<taxonomicNameLabel id="85C1578F3A57DD06B55AFF6CF0A4FF35" box="[816,905,152,177]" pageId="13" pageNumber="14" rank="species">sp. nov.</taxonomicNameLabel>
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</emphasis>
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(
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<figureCitation id="34BD2A633A57DD06B5FDFF6CF717FF36" box="[919,1082,152,178]" captionStart="PLATE 7" captionStartId="15.[151,229,1847,1868]" captionTargetBox="[187,1400,153,1825]" captionTargetId="figure-130@15.[187,1400,153,1836]" captionTargetPageId="15" captionText="PLATE 7: LM. Figs 169–174: Gomphoneis metzeltinii sp. nov. Fig. 169 is of the holotype. Figs 175–192: G. cf. subcapitata. Figs 193– 200: G. subcapitata sp. nov. Fig. 200 is of the holotype. Figs 201–214: G. inconspicua sp. nov. Fig. 201 is of the holotype. Figs 215– 222: G sp. cf. subcapitata. Figs 223–228: G. reichardtii sp. nov. Fig. 223 is of the holotype. Figs 229–237: G. sp. cf. skabitchevskii. Figs 238–250: G.sp. cf. skabitchevskii. Figs 251–260: G. skabitchevskii sp. nov. Fig. 258 is of the holotype. Figs 261–282: G.sp. cf. reichardtii. Scale bar = 10 µm for all figures." figureDoi="http://doi.org/10.5281/zenodo.5100800" httpUri="https://zenodo.org/record/5100800/files/figure.png" pageId="13" pageNumber="14">Figs 169–174</figureCitation>
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;
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<figureCitation id="34BD2A633A57DD06B22FFF6CF786FF36" box="[1093,1195,152,178]" captionStart="PLATE 14" captionStartId="29.[151,229,1760,1781]" captionTargetBox="[196,1401,153,1736]" captionTargetId="figure-209@29.[196,1401,153,1743]" captionTargetPageId="29" captionText="PLATE 14: SEM. Gomphoneis metzeltinii. Figs 389–391: Extenal valve views. Figs 389, 390: Whole valve views should fine striae and indistinct stigmoids. Proximal raphe ends are dilated slightly. Fig. 391. Footpole shows the rounded porelli of the apical pore field appear as condensed striae. G. capitata. Figs 392–396: Figs 392–395: Internal valve views. Figs 392–394: Entire valve views. Fig. 392: Specimen with girdle bands shows septa at the poles, wide, rectangular central area and central nodule with recurved proximal raphe ends. Fig. 393: Specimen lacking girdle bands revealing the smaller pseudosepta at the poles. The helictoglossae are evident also. Only two stigmoid openings are evident around the central nodule. Fig. 394: Specimen without girdle bands, showing pseudosepta, recurved proximal raphe ends on small central nodule, and helictoglossae at the poles. Fig. 395: Internal valve view showing only two prominent stigmoidal opening. The appear simple, without occlusions. Fig. 396: External valve view. The valve has proximal raphe ends that are prominently dilated, and has 2 types of stigmoidal openings, one larger and one smaller." figureDoi="http://doi.org/10.5281/zenodo.5100819" httpUri="https://zenodo.org/record/5100819/files/figure.png" pageId="13" pageNumber="14">389–391</figureCitation>
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)
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<paragraph id="AC3936E63A57DD06B6FDFF11F077FE63" blockId="13.[151,1436,229,799]" pageId="13" pageNumber="14">
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Valves lanceolate-clavate with headpole protracted, rounded and footpole rounded. Length 14.5–32.0 µm, breadth 4.0–
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. Axial area narrow, straight, expanded laterally to form a rectangular to bow-tie shaped central area, with 1–2 shortened striae on either side at the margins, more coarsely arranged than other striae. 4 isolated stigmoids arranged around the central area, usually offset from one another. Raphe lateral, weakly undulate, with external proximal raphe ends rounded and distal raphe ends straight and extending onto the valve mantle. Costate striae radiate, except parallel at the headpole. Striae 10–14/
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. Apical pore fields small, indistinct. Septa and pseudosepta present at the poles.
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This species have doubly-punctate striae, isolated stigmoidal openings that are indistinct and appear similar to the areolae, and proximal raphe ends that are dilated (
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<figureCitation id="34BD2A633A57DD06B5E3FDEEF71CFDB0" box="[905,1073,538,564]" captionStart="PLATE 14" captionStartId="29.[151,229,1760,1781]" captionTargetBox="[196,1401,153,1736]" captionTargetId="figure-209@29.[196,1401,153,1743]" captionTargetPageId="29" captionText="PLATE 14: SEM. Gomphoneis metzeltinii. Figs 389–391: Extenal valve views. Figs 389, 390: Whole valve views should fine striae and indistinct stigmoids. Proximal raphe ends are dilated slightly. Fig. 391. Footpole shows the rounded porelli of the apical pore field appear as condensed striae. G. capitata. Figs 392–396: Figs 392–395: Internal valve views. Figs 392–394: Entire valve views. Fig. 392: Specimen with girdle bands shows septa at the poles, wide, rectangular central area and central nodule with recurved proximal raphe ends. Fig. 393: Specimen lacking girdle bands revealing the smaller pseudosepta at the poles. The helictoglossae are evident also. Only two stigmoid openings are evident around the central nodule. Fig. 394: Specimen without girdle bands, showing pseudosepta, recurved proximal raphe ends on small central nodule, and helictoglossae at the poles. Fig. 395: Internal valve view showing only two prominent stigmoidal opening. The appear simple, without occlusions. Fig. 396: External valve view. The valve has proximal raphe ends that are prominently dilated, and has 2 types of stigmoidal openings, one larger and one smaller." figureDoi="http://doi.org/10.5281/zenodo.5100819" httpUri="https://zenodo.org/record/5100819/files/figure.png" pageId="13" pageNumber="14">Figs 389, 390</figureCitation>
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). Areolae are small, round and unoccluded (
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<figureCitation id="34BD2A633A57DD06B747FDB5F2FEFDDF" box="[301,467,577,603]" captionStart="PLATE 14" captionStartId="29.[151,229,1760,1781]" captionTargetBox="[196,1401,153,1736]" captionTargetId="figure-209@29.[196,1401,153,1743]" captionTargetPageId="29" captionText="PLATE 14: SEM. Gomphoneis metzeltinii. Figs 389–391: Extenal valve views. Figs 389, 390: Whole valve views should fine striae and indistinct stigmoids. Proximal raphe ends are dilated slightly. Fig. 391. Footpole shows the rounded porelli of the apical pore field appear as condensed striae. G. capitata. Figs 392–396: Figs 392–395: Internal valve views. Figs 392–394: Entire valve views. Fig. 392: Specimen with girdle bands shows septa at the poles, wide, rectangular central area and central nodule with recurved proximal raphe ends. Fig. 393: Specimen lacking girdle bands revealing the smaller pseudosepta at the poles. The helictoglossae are evident also. Only two stigmoid openings are evident around the central nodule. Fig. 394: Specimen without girdle bands, showing pseudosepta, recurved proximal raphe ends on small central nodule, and helictoglossae at the poles. Fig. 395: Internal valve view showing only two prominent stigmoidal opening. The appear simple, without occlusions. Fig. 396: External valve view. The valve has proximal raphe ends that are prominently dilated, and has 2 types of stigmoidal openings, one larger and one smaller." figureDoi="http://doi.org/10.5281/zenodo.5100819" httpUri="https://zenodo.org/record/5100819/files/figure.png" pageId="13" pageNumber="14">Figs 389, 391</figureCitation>
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). The apical pore field is present on the valve face and mantle (
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<figureCitation id="34BD2A633A57DD06B2D2FDB5F673FDDF" box="[1208,1374,577,603]" captionStart="PLATE 14" captionStartId="29.[151,229,1760,1781]" captionTargetBox="[196,1401,153,1736]" captionTargetId="figure-209@29.[196,1401,153,1743]" captionTargetPageId="29" captionText="PLATE 14: SEM. Gomphoneis metzeltinii. Figs 389–391: Extenal valve views. Figs 389, 390: Whole valve views should fine striae and indistinct stigmoids. Proximal raphe ends are dilated slightly. Fig. 391. Footpole shows the rounded porelli of the apical pore field appear as condensed striae. G. capitata. Figs 392–396: Figs 392–395: Internal valve views. Figs 392–394: Entire valve views. Fig. 392: Specimen with girdle bands shows septa at the poles, wide, rectangular central area and central nodule with recurved proximal raphe ends. Fig. 393: Specimen lacking girdle bands revealing the smaller pseudosepta at the poles. The helictoglossae are evident also. Only two stigmoid openings are evident around the central nodule. Fig. 394: Specimen without girdle bands, showing pseudosepta, recurved proximal raphe ends on small central nodule, and helictoglossae at the poles. Fig. 395: Internal valve view showing only two prominent stigmoidal opening. The appear simple, without occlusions. Fig. 396: External valve view. The valve has proximal raphe ends that are prominently dilated, and has 2 types of stigmoidal openings, one larger and one smaller." figureDoi="http://doi.org/10.5281/zenodo.5100819" httpUri="https://zenodo.org/record/5100819/files/figure.png" pageId="13" pageNumber="14">Figs 389, 391</figureCitation>
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).
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, leg.
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(
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slide no.
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<figureCitation id="34BD2A633A57DD06B5C4FD65F738FD2F" box="[942,1045,657,683]" captionStart="PLATE 7" captionStartId="15.[151,229,1847,1868]" captionTargetBox="[187,1400,153,1825]" captionTargetId="figure-130@15.[187,1400,153,1836]" captionTargetPageId="15" captionText="PLATE 7: LM. Figs 169–174: Gomphoneis metzeltinii sp. nov. Fig. 169 is of the holotype. Figs 175–192: G. cf. subcapitata. Figs 193– 200: G. subcapitata sp. nov. Fig. 200 is of the holotype. Figs 201–214: G. inconspicua sp. nov. Fig. 201 is of the holotype. Figs 215– 222: G sp. cf. subcapitata. Figs 223–228: G. reichardtii sp. nov. Fig. 223 is of the holotype. Figs 229–237: G. sp. cf. skabitchevskii. Figs 238–250: G.sp. cf. skabitchevskii. Figs 251–260: G. skabitchevskii sp. nov. Fig. 258 is of the holotype. Figs 261–282: G.sp. cf. reichardtii. Scale bar = 10 µm for all figures." figureDoi="http://doi.org/10.5281/zenodo.5100800" httpUri="https://zenodo.org/record/5100800/files/figure.png" pageId="13" pageNumber="14">Fig. 169</figureCitation>
|
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);
|
||
<collectionCode id="CA97AE233A57DD06B240FD65F757FD2F" box="[1066,1146,657,683]" country="USA" httpUri="http://biocol.org/urn:lsid:biocol.org:col:15540" lsid="urn:lsid:biocol.org:col:15540" name="University of Colorado Herbarium" pageId="13" pageNumber="14" type="Herbarium">COLO</collectionCode>
|
||
slide no. 18572p,
|
||
<collectionCode id="CA97AE233A57DD06B33EFD65F6B1FD2F" box="[1364,1436,657,683]" country="Poland" httpUri="http://grbio.org/cool/3kak-ye4c" name="University of Szczecin" pageId="13" pageNumber="14" type="Herbarium">SZCZ</collectionCode>
|
||
slide no. 18572a, isotypes)
|
||
</materialsCitation>
|
||
.
|
||
</paragraph>
|
||
</subSubSection>
|
||
<subSubSection id="E49C656D3A57DD06B6ACFD2BF618FC9B" pageId="13" pageNumber="14" type="etymology">
|
||
<paragraph id="AC3936E63A57DD06B6ACFD2BF618FC9B" blockId="13.[151,1436,229,799]" pageId="13" pageNumber="14">
|
||
<emphasis id="9EF2EAF43A57DD06B6ACFD2BF259FD7D" bold="true" box="[198,372,735,761]" pageId="13" pageNumber="14">Etymology:—</emphasis>
|
||
Named in honor of our friend and colleague, Ditmar Metzeltin, Frankfurt (
|
||
<collectingCountry id="D49176763A57DD06B29DFD2BF645FD7D" box="[1271,1384,735,761]" name="Germany" pageId="13" pageNumber="14">Germany</collectingCountry>
|
||
) for his many contributions of our understanding of freshwater diatom biodiversity on a worldwide scale.
|
||
</paragraph>
|
||
</subSubSection>
|
||
</treatment>
|
||
</document> |