120 lines
14 KiB
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120 lines
14 KiB
XML
<document id="29406FAE1FA82FFE2B94DAD36769634C" ID-DOI="10.4467/16890027AP.15.005.2192" ID-ISSN="1689-0027" ID-Zenodo-Dep="10994295" IM.bibliography_approvedBy="felipe" IM.illustrations_approvedBy="felipe" IM.materialsCitations_approvedBy="felipe" IM.metadata_approvedBy="felipe" IM.taxonomicNames_approvedBy="felipe" IM.treatments_approvedBy="felipe" checkinTime="1713466906787" checkinUser="felipe" docAuthor="Lee, Won Je" docDate="2015" docId="0B708784E666892AFFECFDCA27A4D665" docLanguage="en" docName="ActaProtozool.54.1.53-76.pdf" docOrigin="Acta Protozoologica 54 (1)" docSource="https://www.mendeley.com/catalogue/2d9e5f2c-507d-342d-bf76-2776eae6f93a/" docStyle="DocumentStyle:64ABA4BEA387EE5C24A0DDEB32CC92E7.3:ActaProtozool.2014-.journal_article" docStyleId="64ABA4BEA387EE5C24A0DDEB32CC92E7" docStyleName="ActaProtozool.2014-.journal_article" docStyleVersion="3" docTitle="Neobodo curvifilus Moreira et al. 2004" docType="treatment" docVersion="2" lastPageNumber="58" masterDocId="F749FFFCE663892FFF93FFEC2516D308" masterDocTitle="Small Free-Living Heterotrophic Flagellates from Marine Sediments of Gippsland Basin, South-Eastern Australia" masterLastPageNumber="76" masterPageNumber="53" pageNumber="58" updateTime="1713467542417" updateUser="ExternalLinkService" zenodo-license-document="CC-BY-4.0">
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<mods:title id="318620D9A6A3D52E10E3F2CE668E0065">Small Free-Living Heterotrophic Flagellates from Marine Sediments of Gippsland Basin, South-Eastern Australia</mods:title>
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<mods:namePart id="8FAFEC61FDB6D60C41DA68EF84620B31">Lee, Won Je</mods:namePart>
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<mods:typeOfResource id="FFD223A641046B72E67E8184172E985C">text</mods:typeOfResource>
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<mods:title id="EF54E3259F7E0EDF1F81FB92CE1BD4CB">Acta Protozoologica</mods:title>
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<mods:part id="05AE6C979F545A969310C29AA62B0E78">
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<mods:date id="31F0E61807CC40169263056174E1F858">2015</mods:date>
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<mods:detail id="2290FA9E9956C703D5F12EEC09B7F4EC" type="volume">
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<mods:number id="E8C5DBE49F88CE900129D225EBA20888">54</mods:number>
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<mods:start id="D478D85EE8DB9F48B7183C6937729FCC">53</mods:start>
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<mods:url id="87981640A4960D9A86BFB70FE8828502">https://www.mendeley.com/catalogue/2d9e5f2c-507d-342d-bf76-2776eae6f93a/</mods:url>
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<mods:identifier id="564B73E1F26780934BB7AFD9FEF9D5DA" type="DOI">10.4467/16890027AP.15.005.2192</mods:identifier>
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<mods:identifier id="F97FFE039CCF9AC9DE8A902117D4EC8D" type="ISSN">1689-0027</mods:identifier>
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<treatment id="0B708784E666892AFFECFDCA27A4D665" ID-DOI="http://doi.org/10.5281/zenodo.10994362" ID-Zenodo-Dep="10994362" LSID="urn:lsid:plazi:treatment:0B708784E666892AFFECFDCA27A4D665" httpUri="http://treatment.plazi.org/id/0B708784E666892AFFECFDCA27A4D665" lastPageNumber="58" pageId="5" pageNumber="58">
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<subSubSection id="CBC36519E666892AFFECFDCA242DD0C5" pageId="5" pageNumber="58" type="nomenclature">
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<paragraph id="83663692E666892AFFECFDCA2434D16C" blockId="5.[127,771,550,612]" pageId="5" pageNumber="58">
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<heading id="D82E81FEE666892AFFECFDCA2434D16C" centered="true" fontSize="11" level="2" pageId="5" pageNumber="58" reason="5">
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<taxonomicName id="44D94D11E666892AFFECFDCA25ACD16B" authority="(Griessmann 1913) Moreira et al. 2004" authorityName="Moreira et al." authorityYear="2004" baseAuthorityName="Griessmann" baseAuthorityYear="1913" class="Kinetoplastea" family="Neobodonidae" genus="Neobodo" kingdom="Protozoa" order="Bodonida" pageId="5" pageNumber="58" phylum="Euglenozoa" rank="species" species="curvifilus">
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<emphasis id="B1ADEA80E666892AFFECFDCA2470D149" bold="true" box="[127,358,550,577]" italics="true" pageId="5" pageNumber="58">Neobodo curvifilus</emphasis>
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(
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<bibRefCitation id="E7484B63E666892AFEEBFDCA275DD149" author="Griessmann K." box="[376,587,550,577]" pageId="5" pageNumber="58" pagination="1 - 78" refId="ref15769" refString="Griessmann K. (1913) Uber marine Flagellaten. Arch. Protistenkd. 32: 1 - 78" type="journal article" year="1913">Griessmann 1913</bibRefCitation>
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) Moreira
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<emphasis id="B1ADEA80E666892AFD55FDCB2615D148" box="[710,771,550,576]" italics="true" pageId="5" pageNumber="58">et al.</emphasis>
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2004
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</taxonomicName>
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(
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<figureCitation id="1BE22A17E666892AFF5AFDA5240CD16C" box="[201,282,585,612]" captionStart="Fig" captionStartId="3.[124,159,1487,1509]" captionTargetBox="[147,1432,223,1443]" captionTargetId="figure-6@3.[147,1432,223,1443]" captionTargetPageId="3" captionText="Fig. 2. a – Chilomastix cuspidata, showing general appearance of cell; b – Goniomonas amphinema, showing general appearance of cell; c – G. pacifica, note two flagella diverging; d – Percolomonas similis, note ventral groove; e – Bodo platyrhynchus; f – Neobodo curvifilus; g – N. saliens; h–i – Hemistasia phaeocysticola, note a papillum (arrow); j – Bordnamonas tropicana, showing general appearance and mouth (arrow); k – Rhynchomonas nasuta; l–o – Rhynchobodo simius; l – tubular ingestion organelle (arrow); m, o – showing groove; n – general appearance of cell; p–q – Rhynchopus amitus; r–s – Spironema multiciliatum; t – Amastigomonas debruynei, general appearance of cell; u – Amastigomonas mutabilis, note anterior flagellum projecting from sleeve and recurrent flagellum; v – Apusomonas sp.; w – Psammosa unguis nov. comb., general appearance of cell; x–y – Mantamonas plastica; x – note anterior flagellum (arrow) and y – ventral depression.All micrographs are DIC images. Scale bar: 5 µm for all figures." figureDoi="http://doi.org/10.5281/zenodo.10994300" httpUri="https://zenodo.org/record/10994300/files/figure.png" pageId="5" pageNumber="58">Fig. 2f</figureCitation>
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)
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</heading>
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</paragraph>
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<paragraph id="83663692E666892AFF37FD97242DD0C5" blockId="5.[126,774,635,1389]" pageId="5" pageNumber="58">
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<emphasis id="B1ADEA80E666892AFF37FD97245FD19D" bold="true" box="[164,329,635,661]" pageId="5" pageNumber="58">Observation:</emphasis>
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Cell outline is oval or bean-shaped. The cells are 5 to 8 µm long, flattened, and pliable. The two flagella of unequal length insert subapically to one side in a small pocket. The anterior flagellum is about the cell length, hook shaped, and beats slowly in a broad curve in front of the gliding cell. The trailing posterior flagellum is acronematic and 2.5 to 3 times the cell length. The cells normally glide but may have a squirming movement, and rotate when swimming. Often observed.
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</paragraph>
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</subSubSection>
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<subSubSection id="CBC36519E666892AFF37FC3A27A4D665" pageId="5" pageNumber="58" type="discussion">
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<paragraph id="83663692E666892AFF37FC3A27A4D665" blockId="5.[126,774,635,1389]" pageId="5" pageNumber="58">
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<emphasis id="B1ADEA80E666892AFF37FC3A2436D0F8" bold="true" box="[164,288,982,1008]" pageId="5" pageNumber="58">Remarks:</emphasis>
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This species has been described under the name
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<taxonomicName id="44D94D11E666892AFF65FC1424B3D71A" box="[246,421,1016,1042]" class="Kinetoplastea" family="Bodonidae" genus="Bodo" kingdom="Protozoa" order="Bodonida" pageId="5" pageNumber="58" phylum="Euglenozoa" rank="species" species="curvifilis">
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<emphasis id="B1ADEA80E666892AFF65FC1424B3D71A" box="[246,421,1016,1042]" italics="true" pageId="5" pageNumber="58">Bodo curvifilis</emphasis>
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</taxonomicName>
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from marine sites in
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<collectingCountry id="FBCE7602E666892AFD3AFC1525BAD73D" name="Antarctica" pageId="5" pageNumber="58">Antarctica</collectingCountry>
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, Arctic, north Atlantic, northeast Atlantic,
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<collectingCountry id="FBCE7602E666892AFD59FBF725A8D750" name="Australia" pageId="5" pageNumber="58">Australia</collectingCountry>
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,
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<collectingCountry id="FBCE7602E666892AFF41FBD22454D750" box="[210,322,1086,1112]" name="Denmark" pageId="5" pageNumber="58">Denmark</collectingCountry>
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, West
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<collectingCountry id="FBCE7602E666892AFE0DFBD2270ED750" box="[414,536,1086,1112]" name="Greenland" pageId="5" pageNumber="58">Greenland</collectingCountry>
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and
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<collectingCountry id="FBCE7602E666892AFDF2FBD227A9D750" box="[609,703,1086,1112]" name="Norway" pageId="5" pageNumber="58">Norway</collectingCountry>
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with cell lengths of 4–12 µm (
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<bibRefCitation id="E7484B63E666892AFE35FB8C276CD772" author="Griessmann K." box="[422,634,1120,1146]" pageId="5" pageNumber="58" pagination="1 - 78" refId="ref15769" refString="Griessmann K. (1913) Uber marine Flagellaten. Arch. Protistenkd. 32: 1 - 78" type="journal article" year="1913">Griessmann 1913</bibRefCitation>
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;
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<bibRefCitation id="E7484B63E666892AFD15FB8C25ABD795" author="Throndsen J." pageId="5" pageNumber="58" pagination="161 - 216" refId="ref17637" refString="Throndsen J. (1969) Flagellates of Norwegian Coastal Waters. Nytt Magasin for Botanik 16: 161 - 216" type="journal article" year="1969">Throndsen 1969</bibRefCitation>
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;
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<bibRefCitation id="E7484B63E666892AFF5BFB6F24E0D795" author="Turley C. M. & Carstens M." box="[200,502,1155,1181]" pageId="5" pageNumber="58" pagination="403 - 413" refId="ref17863" refString="Turley C. M., Carstens M. (1991) Pressure tolerance of oceanic flagellates: implications for reminealization of organic matter. Deep-Sea Res. 38: 403 - 413" type="journal article" year="1991">Turley and Carstens 1991</bibRefCitation>
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;
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<bibRefCitation id="E7484B63E666892AFD92FB68279DD795" author="Vors N." box="[513,651,1155,1182]" pageId="5" pageNumber="58" pagination="1 - 109" refId="ref17974" refString="Vors N. (1992 a). Heterotrophic amoebae, flagellates and heliozoa from the Tvarminne area, Gulf of Finland in 1988 - 1990. Ophelia 36: 1 - 109" type="journal article" year="1992">Vørs 1992a</bibRefCitation>
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, b, 1993a;
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<bibRefCitation id="E7484B63E666892AFFEDFB4A2462D7C8" author="Patterson D. J. & Nygaard K. & Steinberg G. & Turley C. M." box="[126,372,1190,1216]" pageId="5" pageNumber="58" pagination="67 - 95" refId="ref17305" refString="Patterson D. J., Nygaard K., Steinberg G., Turley C. M. (1993) Het- erotrophic flagellates and other protists associated with oceanic detritus throughout the water column in the Mid North Atlantic. J. Mar. Biol. Ass. U. K. 73: 67 - 95" type="journal article" year="1993">
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Patterson
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<emphasis id="B1ADEA80E666892AFF60FB4A2438D7C8" box="[243,302,1190,1216]" italics="true" pageId="5" pageNumber="58">et al.</emphasis>
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1993
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</bibRefCitation>
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;
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<bibRefCitation id="E7484B63E666892AFE13FB4A2752D7C8" author="Tong S. M. & Vors N. & Patterson D. J." box="[384,580,1190,1216]" pageId="5" pageNumber="58" pagination="91 - 106" refId="ref17819" refString="Tong S. M., Vors N., Patterson D. J. (1997) Heterotrophic flagel- lates, centrohelid heliozoa and filose amoebae from marine and freshwater sites in the Antarctic. Polar Biol. 18: 91 - 106" type="journal article" year="1997">
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Tong
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<emphasis id="B1ADEA80E666892AFE50FB4A24E8D7C8" box="[451,510,1190,1216]" italics="true" pageId="5" pageNumber="58">et al.</emphasis>
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1997
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</bibRefCitation>
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;
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<bibRefCitation id="E7484B63E666892AFDC3FB4A25FAD7EA" author="Patterson D. J. & Lee W. J." pageId="5" pageNumber="58" pagination="267 - 287" refId="ref17238" refString="Patterson D. J., Lee W. J. (2000) Geographic distribution and diver- sity of free-living heterotrophic flagellates. In: The flagellates: unity, diversity and evolution, (Eds. Leadbeater B. S. C., Green J. C.). Taylor & Francis, London and New York. 49: 267 - 287" type="journal article" year="2000">Lee and Patterson 2000</bibRefCitation>
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;
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<bibRefCitation id="E7484B63E666892AFF6BFB2524BAD7EA" author="Lee W. J. & Brandt S. M. & Vors N. & Patterson D. J." box="[248,428,1224,1251]" pageId="5" pageNumber="58" pagination="63 - 98" refId="ref16758" refString="Lee W. J., Brandt S. M., Vors N., Patterson D. J. (2003) Darwin's heterotrophic flagellates. Ophelia 57: 63 - 98" type="journal article" year="2003">
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Lee
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<emphasis id="B1ADEA80E666892AFEB8FB252473D7EA" box="[299,357,1224,1250]" italics="true" pageId="5" pageNumber="58">et al.</emphasis>
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2003
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</bibRefCitation>
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). The description is in accord with
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<bibRefCitation id="E7484B63E666892AFF29FB00244FD60D" author="Vors N." box="[186,345,1259,1286]" pageId="5" pageNumber="58" pagination="1 - 109" refId="ref17974" refString="Vors N. (1992 a). Heterotrophic amoebae, flagellates and heliozoa from the Tvarminne area, Gulf of Finland in 1988 - 1990. Ophelia 36: 1 - 109" type="journal article" year="1992">Vørs (1992a)</bibRefCitation>
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.
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<taxonomicName id="44D94D11E666892AFEF6FB072755D60D" authorityName="Moreira et al." authorityYear="2004" baseAuthorityName="Griessmann" baseAuthorityYear="1913" box="[357,579,1259,1285]" class="Kinetoplastea" family="Neobodonidae" genus="Neobodo" kingdom="Protozoa" order="Bodonida" pageId="5" pageNumber="58" phylum="Euglenozoa" rank="species" species="curvifilus">
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<emphasis id="B1ADEA80E666892AFEF6FB072755D60D" box="[357,579,1259,1285]" italics="true" pageId="5" pageNumber="58">Neobodo curvifilus</emphasis>
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</taxonomicName>
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is characterized by the curved shape and the paddling beat of the anterior flagellum, thus it is easily distinguished from other species of
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<taxonomicName id="44D94D11E666892AFF69FABF2472D665" authorityName="Vickerman" authorityYear="2004" box="[250,356,1363,1389]" class="Kinetoplastea" family="Neobodonidae" genus="Neobodo" kingdom="Protozoa" order="Bodonida" pageId="5" pageNumber="58" phylum="Euglenozoa" rank="genus">
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<emphasis id="B1ADEA80E666892AFF69FABF2472D665" box="[250,356,1363,1389]" italics="true" pageId="5" pageNumber="58">Neobodo</emphasis>
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</taxonomicName>
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because of these characters.
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</paragraph>
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</subSubSection>
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</treatment>
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</document> |