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90 lines
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<mods:title id="4BBF9B6564BC06500C24D99658124139">Taxonomic diversity of marine planktonic ‘ y-larvae’ (Crustacea: Facetotecta) from a coral reef hotspot locality (Japan, Okinawa), with a key to y-nauplii</mods:title>
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<mods:namePart id="96D7653CDEC235741C0F4D59393A572D">Olesen, Jørgen</mods:namePart>
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<mods:affiliation id="6FAED775E8B8A10817D2104F966D1656">Natural History Museum of Denmark, University of Copenhagen, Universitetsparken 15, DK- 2100 Copenhagen Ø, Denmark.</mods:affiliation>
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<mods:nameIdentifier id="9B01C8EFB3FE95573F9B4911CC1D6050" type="email">jolesen@snm.ku.dk&jolesen@snm.ku.dk&thecostracans@gmail.com</mods:nameIdentifier>
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<mods:namePart id="30A389B68F484429672AB9D4A32A1715">Grygier, Mark J.</mods:namePart>
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<mods:affiliation id="AC36EC10D662C33D2E5B5BB9B193BB53">National Museum of Marine Biology & Aquarium, 2, Houwan Rd., Checheng, Pingtung 944401, Taiwan.</mods:affiliation>
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<mods:nameIdentifier id="D3CC17F11FB87808DCAE60D73BE10161" type="email">thecostracans@gmail.com&jolesen@snm.ku.dk&thecostracans@gmail.com</mods:nameIdentifier>
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<mods:title id="920FCB7EC7DE1C87FDB99E66DD8966FB">European Journal of Taxonomy</mods:title>
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<mods:date id="76DB2DFF24757EDB650BC83668411ED1">2024</mods:date>
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<mods:number id="58F53088BB8D8B7C14C6014F71C44AD4">929</mods:number>
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<treatment id="6515E6230A011E333BB46620FBF8962A" ID-DOI="http://doi.org/10.5281/zenodo.10987906" ID-GBIF-Taxon="225201510" ID-Zenodo-Dep="10987906" LSID="urn:lsid:plazi:treatment:6515E6230A011E333BB46620FBF8962A" httpUri="http://treatment.plazi.org/id/6515E6230A011E333BB46620FBF8962A" lastPageNumber="55" pageId="54" pageNumber="55">
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<subSubSection id="A5A604BE0A011E333BB46620FE0893E7" pageId="54" pageNumber="55" type="nomenclature">
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<paragraph id="ED0357350A011E333BB46620FE0893E7" blockId="54.[189,1374,366,434]" pageId="54" pageNumber="55">
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<emphasis id="DFC88B270A011E333BB46620FE0893E7" bold="true" italics="true" pageId="54" pageNumber="55">
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Relative abundance and constancy of LSN morphospecies of
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<taxonomicName id="2ABC2CB60A011E3338ED6621FBD493DD" authority="Grygier, 1985" authorityName="Grygier" authorityYear="1985" box="[996,1149,367,395]" class="Malacostraca" higherTaxonomySource="GBIF" kingdom="Animalia" pageId="54" pageNumber="15" phylum="Arthropoda" rank="subClass" subClass="Facetotecta">Facetotecta</taxonomicName>
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at Sesoko Island in 2018 and 2019
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</emphasis>
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</paragraph>
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<subSubSection id="A5A604BE0A011E333BB46684FBF8962A" pageId="54" pageNumber="55" type="discussion">
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<paragraph id="ED0357350A011E333BB46684FEEB90C2" blockId="54.[189,1400,457,660]" pageId="54" pageNumber="55">Because the youngest and most common naupliar stages caught in plankton frequently cannot be directly tied to the corresponding LSN and cyprid stages, direct assessments of the relative abundance of different y-larval morphospecies in plankton samples, based on all naupliar stages present, cannot be done. In consequence, the following results concerning relative abundance are based solely on the 420 lecithotrophic individuals that were reared to their LSN and videographed at Sesoko Island in 2018/2019.</paragraph>
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<paragraph id="ED0357350A011E333BB465F5FBF8962A" blockId="54.[188,1400,699,1148]" pageId="54" pageNumber="55">
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The relative abundance of lecithotrophic morphospecies (LSN ‘Types’ and cyprids) is presented visually in a bar chart (
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<figureCitation id="75874BB00A011E333A6E6590FE6990AE" box="[359,448,734,760]" captionStart="Fig" captionStartId="55.[189,232,1856,1882]" captionTargetBox="[189,1399,592,1826]" captionTargetId="figure-199@55.[189,1399,592,1826]" captionTargetPageId="55" captionText="Fig. 20. Relative abundance of lecithotrophic y-nauplii at Sesoko Island (Okinawa, Japan) during field work in 2018 and 2019. Grey bars denote the number of lecithotrophic nauplii of each morphospecies that survived until the last naupliar stage during laboratory rearing. Blue bars show the numbers of cyprids that successfully molted from these last-stage nauplii. Images of all lecithotrophic y-naupliar morphospecies obtained during those two years are shown to the same scale." figureDoi="http://doi.org/10.5281/zenodo.10876344" httpUri="https://zenodo.org/record/10876344/files/figure.png" pageId="54" pageNumber="55">Fig. 20</figureCitation>
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). A weak negative correlation (-0.35075) was found between the number of last-stage nauplii and their size (
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<tableCitation id="A03E628E0A011E333902644FFDCC914D" box="[523,613,769,795]" captionStart="Table 1" captionStartId="8.[187,256,1680,1706]" captionTargetPageId="7" captionText="Table 1 (page 8). Lecithotrophic y-naupliar morphospecies (‘Types’) successfully reared during fieldwork at Sesoko Island (Okinawa) in 2018 and 2019, based on 5137 sampled lecithotrophic nauplii, with sporadic data added from earlier sampling in 1991–2005. The y-naupliar morphospecies are listed in descending order of abundance in 2018 and 2019 (column 4). Developmental time to cyprid and mean body length of last-stage nauplii (LSN) are shown, along with calculated rearing success to LSN or cyprid, degree of overlap in occurrence in both years, and correlation between morphospecies abundance and size (see Fig. 20). The data are extracted from the more comprehensive supplementary Table S1. Asterisks (e.g., Types A*, D*, E*) are added to the designations of morphospecies that exhibited molecular variation among specimens in Dreyer et al. (2023a) and might therefore represent more than one biological species." httpUri="http://table.plazi.org/id/B9C307BD0A3F1E0D3BB261DEFDED95B1" pageId="54" pageNumber="55" tableUuid="B9C307BD0A3F1E0D3BB261DEFDED95B1">Table 1</tableCitation>
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; cf. the same-scale photos of all morphospecies in
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<figureCitation id="75874BB00A011E333FCE644FFAB6914D" box="[1223,1311,769,795]" captionStart="Fig" captionStartId="55.[189,232,1856,1882]" captionTargetBox="[189,1399,592,1826]" captionTargetId="figure-199@55.[189,1399,592,1826]" captionTargetPageId="55" captionText="Fig. 20. Relative abundance of lecithotrophic y-nauplii at Sesoko Island (Okinawa, Japan) during field work in 2018 and 2019. Grey bars denote the number of lecithotrophic nauplii of each morphospecies that survived until the last naupliar stage during laboratory rearing. Blue bars show the numbers of cyprids that successfully molted from these last-stage nauplii. Images of all lecithotrophic y-naupliar morphospecies obtained during those two years are shown to the same scale." figureDoi="http://doi.org/10.5281/zenodo.10876344" httpUri="https://zenodo.org/record/10876344/files/figure.png" pageId="54" pageNumber="55">Fig. 20</figureCitation>
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). Since only about 8% of reared individuals survived to the LSN stage and the identity of the failed individuals was largely unknown and not recorded, the proportions of morphospecies among these LSNs may be different from their proportions in the plankton. Nonetheless, overall, the relative abundance of different y-naupliar forms followed the same pattern in 2018 and 2019 (
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<tableCitation id="A03E628E0A011E3338A064C0FBA891FE" box="[937,1025,910,936]" captionStart="Table 1" captionStartId="8.[187,256,1680,1706]" captionTargetPageId="7" captionText="Table 1 (page 8). Lecithotrophic y-naupliar morphospecies (‘Types’) successfully reared during fieldwork at Sesoko Island (Okinawa) in 2018 and 2019, based on 5137 sampled lecithotrophic nauplii, with sporadic data added from earlier sampling in 1991–2005. The y-naupliar morphospecies are listed in descending order of abundance in 2018 and 2019 (column 4). Developmental time to cyprid and mean body length of last-stage nauplii (LSN) are shown, along with calculated rearing success to LSN or cyprid, degree of overlap in occurrence in both years, and correlation between morphospecies abundance and size (see Fig. 20). The data are extracted from the more comprehensive supplementary Table S1. Asterisks (e.g., Types A*, D*, E*) are added to the designations of morphospecies that exhibited molecular variation among specimens in Dreyer et al. (2023a) and might therefore represent more than one biological species." httpUri="http://table.plazi.org/id/B9C307BD0A3F1E0D3BB261DEFDED95B1" pageId="54" pageNumber="55" tableUuid="B9C307BD0A3F1E0D3BB261DEFDED95B1">Table 1</tableCitation>
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), with 22 of 30 morphospecies (73%) occurring in both years. The nine most abundant morphospecies overall (
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<typeStatus id="3207E9970A011E333F7C64FFFB14919D" box="[1141,1213,945,971]" pageId="54" pageNumber="55">Types</typeStatus>
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O*, E*, C, D*, AH*, AG*, K, G, N*) were, with a few exceptions, the most common ones in both years. Notable exceptions were
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<typeStatus id="3207E9970A011E333A8864B6FE129644" box="[385,443,1016,1042]" pageId="54" pageNumber="55">Type</typeStatus>
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K (only
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<specimenCount id="FBBA9CBC0A011E33392C64B6FD6C9644" box="[549,709,1016,1042]" count="1" pageId="54" pageNumber="55" type="generic">one specimen</specimenCount>
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in 2019) and
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<typeStatus id="3207E9970A011E33386E64B6FC049644" box="[871,941,1016,1042]" pageId="54" pageNumber="55">Types</typeStatus>
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G and N* (few specimens in 2018 and 2019, respectively). Conversely, the same set of low-abundance morphospecies was found in both years. There was a smaller overlap in occurrence between 2018/2019 and the earlier more sporadic collections from 1991 to 2005, involving only 18 of the total of 34 morphospecies (53%).
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</paragraph>
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</subSubSection>
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</treatment>
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</document> |