{"id":{"repo_id":"the-open-u","oai_identifier":"oai:oro.open.ac.uk:54674"},"canonical_url":"https://search.dev.ndltd.org/etd/the-open-u/oai:oro.open.ac.uk:54674","repository":{"repo_id":"the-open-u","name":"The Open University","base_url":"https://oro.open.ac.uk/cgi/oai2"},"display":{"title":"Genetic, physiological and ecological diversity of the diatom genus <i>Leptocylindrus</i>","abstract":"Diatoms are among the most productive photoautotrophic organisms on Earth. Within the diatom genus <i>Leptocylindrus</i>, two species, <i>L. danicus</i> and <i>L. minimus</i>, are reported as abundant in coastal waters worldwide and in the Gulf of Naples (GoN). This thesis aimed at a closer characterisation of <i>Leptocylindrus</i> species through different approaches, including the study of their morphology, molecular phylogeny, metagenomics and biochemistry. Eighty-three strains from the GoN and one strain (CCMP 1856) from the Atlantic US coast were analysed. Based on the morphological, molecular and life cycle differences, the taxonomy of the genus was revised. The GoN species previously identified as <i>L. minimus</i> was in fact identified as <i>L. belgicus</i> Meunier and was placed in a new genus, <i>Tenuicylindrus</i> Nanjappa and Zingone which, along with <i>Leptocylindrus</i> Cleve, belongs to the family Leptocylindraceae. Five species in all were included in the genus <i>Leptocylindrus</i>: <i>L. danicus</i> Cleve and <i>L. minimus</i> Gran, two novel species <i>L. hargravesii</i> and <i>L. convexus</i>, and <i>L. aporus</i> (Hargraves) Nanjappa & Zingone, which was raised from the variety to the species status. The real <i>Leptocylindrus minimus</i> was not found in the GoN. To address the distribution of the 6 species outside the GoN, two metagenomic databases, BioMarKs (Europe) and Tara Oceans (worldwide) were explored. Sequences of <i>L. aporus</i>, <i>L. convexus</i> and <i>L. danicus</i> were recovered at many sites in European waters and across the world's seas, while those of <i>L. minimus</i> were retrieved only in the Oslo fjord and those of <i>T. belgicus</i> were only found in the GoN and Oslo fjord. Additional diversity was observed in the Tara Oceans dataset but, in lack of morphological information, whether this diversity is real remains to be clarified. All species except <i>L. minimus</i> were also categorised based on the diversity in their oxylipins pathways. <i>Leptocylindrus danicus</i> and <i>L. hargravesii</i> shared common lipoxygenase pathways, different from the ones shared by the species <i>L. aporus</i> and <i>L. convexus</i>. <i>Tenuicylindrus belgicus</i> exhibits a pathway distinct from that of <i>Leptocylindrus</i> species. Species-specific compounds produced in minor quantities were also observed. Physiological experiments show that <i>L. aporus</i> can withstand higher (26 \"C) temperature but not lower (12 CC) temperature, while <i>L. danicus</i> can withstand low temperature but not high temperature. This corresponds to the species occurrence in the natural environment, where <i>L. aporus</i> blooms during summer and <i>L. danicus</i> is found in all seasons except summer. Altogether, through an interdisciplinary approach, the studies described in this thesis provide substantial information that may have important implications in the field of ecology, evolution, conservation biology and biotechnology.","abstract_html":"Diatoms are among the most productive photoautotrophic organisms on Earth. Within the diatom genus &lt;i&gt;Leptocylindrus&lt;/i&gt;, two species, &lt;i&gt;L. danicus&lt;/i&gt; and &lt;i&gt;L. minimus&lt;/i&gt;, are reported as abundant in coastal waters worldwide and in the Gulf of Naples (GoN). This thesis aimed at a closer characterisation of &lt;i&gt;Leptocylindrus&lt;/i&gt; species through different approaches, including the study of their morphology, molecular phylogeny, metagenomics and biochemistry. Eighty-three strains from the GoN and one strain (CCMP 1856) from the Atlantic US coast were analysed. Based on the morphological, molecular and life cycle differences, the taxonomy of the genus was revised. The GoN species previously identified as &lt;i&gt;L. minimus&lt;/i&gt; was in fact identified as &lt;i&gt;L. belgicus&lt;/i&gt; Meunier and was placed in a new genus, &lt;i&gt;Tenuicylindrus&lt;/i&gt; Nanjappa and Zingone which, along with &lt;i&gt;Leptocylindrus&lt;/i&gt; Cleve, belongs to the family Leptocylindraceae. Five species in all were included in the genus &lt;i&gt;Leptocylindrus&lt;/i&gt;: &lt;i&gt;L. danicus&lt;/i&gt; Cleve and &lt;i&gt;L. minimus&lt;/i&gt; Gran, two novel species &lt;i&gt;L. hargravesii&lt;/i&gt; and &lt;i&gt;L. convexus&lt;/i&gt;, and &lt;i&gt;L. aporus&lt;/i&gt; (Hargraves) Nanjappa &amp; Zingone, which was raised from the variety to the species status. The real &lt;i&gt;Leptocylindrus minimus&lt;/i&gt; was not found in the GoN. To address the distribution of the 6 species outside the GoN, two metagenomic databases, BioMarKs (Europe) and Tara Oceans (worldwide) were explored. Sequences of &lt;i&gt;L. aporus&lt;/i&gt;, &lt;i&gt;L. convexus&lt;/i&gt; and &lt;i&gt;L. danicus&lt;/i&gt; were recovered at many sites in European waters and across the world&#x27;s seas, while those of &lt;i&gt;L. minimus&lt;/i&gt; were retrieved only in the Oslo fjord and those of &lt;i&gt;T. belgicus&lt;/i&gt; were only found in the GoN and Oslo fjord. Additional diversity was observed in the Tara Oceans dataset but, in lack of morphological information, whether this diversity is real remains to be clarified. All species except &lt;i&gt;L. minimus&lt;/i&gt; were also categorised based on the diversity in their oxylipins pathways. &lt;i&gt;Leptocylindrus danicus&lt;/i&gt; and &lt;i&gt;L. hargravesii&lt;/i&gt; shared common lipoxygenase pathways, different from the ones shared by the species &lt;i&gt;L. aporus&lt;/i&gt; and &lt;i&gt;L. convexus&lt;/i&gt;. &lt;i&gt;Tenuicylindrus belgicus&lt;/i&gt; exhibits a pathway distinct from that of &lt;i&gt;Leptocylindrus&lt;/i&gt; species. Species-specific compounds produced in minor quantities were also observed. Physiological experiments show that &lt;i&gt;L. aporus&lt;/i&gt; can withstand higher (26 &quot;C) temperature but not lower (12 CC) temperature, while &lt;i&gt;L. danicus&lt;/i&gt; can withstand low temperature but not high temperature. This corresponds to the species occurrence in the natural environment, where &lt;i&gt;L. aporus&lt;/i&gt; blooms during summer and &lt;i&gt;L. danicus&lt;/i&gt; is found in all seasons except summer. Altogether, through an interdisciplinary approach, the studies described in this thesis provide substantial information that may have important implications in the field of ecology, evolution, conservation biology and biotechnology.","abstract_has_math":false,"creators":["Nanjappa, Deepak"],"institution":"The Open University","degree_name":"phd","degree_level":"doctoral","degree_discipline":null,"degree_department":null,"school":null,"contributors":[],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2012,"date_issued":"2012","date_published":"2012","updated_at":"2026-07-24T05:02:45Z","subjects":[],"languages":["en"],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":null,"outbound_label":null,"outbound_source":null},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:creator","label":"Author","values":["Nanjappa, Deepak"]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"dc:date","label":"Dc Date","values":["2012"]},{"key":"dc:date.issued","label":"Date","values":["2012"]},{"key":"dc:publisher.institution","label":"Dc Publisher Institution","values":["The Open University"]},{"key":"dc:relation.isreferencedby","label":"Dc Relation Isreferencedby","values":["https://oro.open.ac.uk/54674/"]},{"key":"dc:type","label":"Dc Type","values":["Thesis"]},{"key":"dc:type.qualificationlevel","label":"Dc Type Qualificationlevel","values":["doctoral"]},{"key":"dc:type.qualificationname","label":"Dc Type Qualificationname","values":["phd"]}]},{"id":"language_rights","label":"Language and Rights","entries":[{"key":"dc:language","label":"Dc Language","values":["en"]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier.uri","label":"Identifier URI","values":["https://oro.open.ac.uk/54674/1/582808.pdf"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["Diatoms are among the most productive photoautotrophic organisms on Earth. Within the diatom genus <i>Leptocylindrus</i>, two species, <i>L. danicus</i> and <i>L. minimus</i>, are reported as abundant in coastal waters worldwide and in the Gulf of Naples (GoN). This thesis aimed at a closer characterisation of <i>Leptocylindrus</i> species through different approaches, including the study of their morphology, molecular phylogeny, metagenomics and biochemistry. Eighty-three strains from the GoN and one strain (CCMP 1856) from the Atlantic US coast were analysed. Based on the morphological, molecular and life cycle differences, the taxonomy of the genus was revised. The GoN species previously identified as <i>L. minimus</i> was in fact identified as <i>L. belgicus</i> Meunier and was placed in a new genus, <i>Tenuicylindrus</i> Nanjappa and Zingone which, along with <i>Leptocylindrus</i> Cleve, belongs to the family Leptocylindraceae. Five species in all were included in the genus <i>Leptocylindrus</i>: <i>L. danicus</i> Cleve and <i>L. minimus</i> Gran, two novel species <i>L. hargravesii</i> and <i>L. convexus</i>, and <i>L. aporus</i> (Hargraves) Nanjappa & Zingone, which was raised from the variety to the species status. The real <i>Leptocylindrus minimus</i> was not found in the GoN. To address the distribution of the 6 species outside the GoN, two metagenomic databases, BioMarKs (Europe) and Tara Oceans (worldwide) were explored. Sequences of <i>L. aporus</i>, <i>L. convexus</i> and <i>L. danicus</i> were recovered at many sites in European waters and across the world's seas, while those of <i>L. minimus</i> were retrieved only in the Oslo fjord and those of <i>T. belgicus</i> were only found in the GoN and Oslo fjord. Additional diversity was observed in the Tara Oceans dataset but, in lack of morphological information, whether this diversity is real remains to be clarified. All species except <i>L. minimus</i> were also categorised based on the diversity in their oxylipins pathways. <i>Leptocylindrus danicus</i> and <i>L. hargravesii</i> shared common lipoxygenase pathways, different from the ones shared by the species <i>L. aporus</i> and <i>L. convexus</i>. <i>Tenuicylindrus belgicus</i> exhibits a pathway distinct from that of <i>Leptocylindrus</i> species. Species-specific compounds produced in minor quantities were also observed. Physiological experiments show that <i>L. aporus</i> can withstand higher (26 \"C) temperature but not lower (12 CC) temperature, while <i>L. danicus</i> can withstand low temperature but not high temperature. This corresponds to the species occurrence in the natural environment, where <i>L. aporus</i> blooms during summer and <i>L. danicus</i> is found in all seasons except summer. Altogether, through an interdisciplinary approach, the studies described in this thesis provide substantial information that may have important implications in the field of ecology, evolution, conservation biology and biotechnology."]},{"key":"dc:format","label":"Dc Format","values":["application/pdf"]},{"key":"dc:title","label":"Title","values":["Genetic, physiological and ecological diversity of the diatom genus <i>Leptocylindrus</i>"]}]}],"canonical_facts":{"dc:creator":["Nanjappa, Deepak"],"dc:date":["2012"],"dc:date.issued":["2012"],"dc:description.abstract":["Diatoms are among the most productive photoautotrophic organisms on Earth. Within the diatom genus <i>Leptocylindrus</i>, two species, <i>L. danicus</i> and <i>L. minimus</i>, are reported as abundant in coastal waters worldwide and in the Gulf of Naples (GoN). This thesis aimed at a closer characterisation of <i>Leptocylindrus</i> species through different approaches, including the study of their morphology, molecular phylogeny, metagenomics and biochemistry. Eighty-three strains from the GoN and one strain (CCMP 1856) from the Atlantic US coast were analysed. Based on the morphological, molecular and life cycle differences, the taxonomy of the genus was revised. The GoN species previously identified as <i>L. minimus</i> was in fact identified as <i>L. belgicus</i> Meunier and was placed in a new genus, <i>Tenuicylindrus</i> Nanjappa and Zingone which, along with <i>Leptocylindrus</i> Cleve, belongs to the family Leptocylindraceae. Five species in all were included in the genus <i>Leptocylindrus</i>: <i>L. danicus</i> Cleve and <i>L. minimus</i> Gran, two novel species <i>L. hargravesii</i> and <i>L. convexus</i>, and <i>L. aporus</i> (Hargraves) Nanjappa & Zingone, which was raised from the variety to the species status. The real <i>Leptocylindrus minimus</i> was not found in the GoN. To address the distribution of the 6 species outside the GoN, two metagenomic databases, BioMarKs (Europe) and Tara Oceans (worldwide) were explored. Sequences of <i>L. aporus</i>, <i>L. convexus</i> and <i>L. danicus</i> were recovered at many sites in European waters and across the world's seas, while those of <i>L. minimus</i> were retrieved only in the Oslo fjord and those of <i>T. belgicus</i> were only found in the GoN and Oslo fjord. Additional diversity was observed in the Tara Oceans dataset but, in lack of morphological information, whether this diversity is real remains to be clarified. All species except <i>L. minimus</i> were also categorised based on the diversity in their oxylipins pathways. <i>Leptocylindrus danicus</i> and <i>L. hargravesii</i> shared common lipoxygenase pathways, different from the ones shared by the species <i>L. aporus</i> and <i>L. convexus</i>. <i>Tenuicylindrus belgicus</i> exhibits a pathway distinct from that of <i>Leptocylindrus</i> species. Species-specific compounds produced in minor quantities were also observed. Physiological experiments show that <i>L. aporus</i> can withstand higher (26 \"C) temperature but not lower (12 CC) temperature, while <i>L. danicus</i> can withstand low temperature but not high temperature. This corresponds to the species occurrence in the natural environment, where <i>L. aporus</i> blooms during summer and <i>L. danicus</i> is found in all seasons except summer. Altogether, through an interdisciplinary approach, the studies described in this thesis provide substantial information that may have important implications in the field of ecology, evolution, conservation biology and biotechnology."],"dc:format":["application/pdf"],"dc:identifier.uri":["https://oro.open.ac.uk/54674/1/582808.pdf"],"dc:language":["en"],"dc:publisher.institution":["The Open University"],"dc:relation.isreferencedby":["https://oro.open.ac.uk/54674/"],"dc:title":["Genetic, physiological and ecological diversity of the diatom genus <i>Leptocylindrus</i>"],"dc:type":["Thesis"],"dc:type.qualificationlevel":["doctoral"],"dc:type.qualificationname":["phd"]},"updated_at":"2026-07-24T05:02:45Z"}