<?xml version="1.0" encoding="ISO-8859-1"?><article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance">
<front>
<journal-meta>
<journal-id>0034-7744</journal-id>
<journal-title><![CDATA[Revista de Biología Tropical]]></journal-title>
<abbrev-journal-title><![CDATA[Rev. biol. trop]]></abbrev-journal-title>
<issn>0034-7744</issn>
<publisher>
<publisher-name><![CDATA[Universidad de Costa Rica]]></publisher-name>
</publisher>
</journal-meta>
<article-meta>
<article-id>S0034-77442024000100058</article-id>
<article-id pub-id-type="doi">10.15517/rev.biol.trop..v72i1.57696</article-id>
<title-group>
<article-title xml:lang="en"><![CDATA[Ectomycorrhizal fungi associated with Coccoloba uvifera (Polygonaceae) in coastal ecosystems of Eastern Cuba]]></article-title>
<article-title xml:lang="es"><![CDATA[Hongos ectomicorrícicos asociados con Coccoloba uvifera (Polygonaceae) en ecosistemas costeros del oriente cubano]]></article-title>
</title-group>
<contrib-group>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Bullaín-Galardis]]></surname>
<given-names><![CDATA[Mijail-Mijares]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Pruneau]]></surname>
<given-names><![CDATA[Ludovic]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Eichler-Löbermann]]></surname>
<given-names><![CDATA[Bettina]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Fall]]></surname>
<given-names><![CDATA[Fatoumata]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[López-Sánchez]]></surname>
<given-names><![CDATA[Raúl-Carlos]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Mustapha-Bâ]]></surname>
<given-names><![CDATA[Amadou]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
<xref ref-type="aff" rid="Aaf"/>
<xref ref-type="aff" rid="A a"/>
<xref ref-type="aff" rid="A5"/>
</contrib>
</contrib-group>
<aff id="Af1">
<institution><![CDATA[,Universidad de Granma Facultad de Ciencias Agropecuarias Centro de Estudios de Biotecnología Vegetal]]></institution>
<addr-line><![CDATA[ Granma]]></addr-line>
<country>Cuba</country>
</aff>
<aff id="Af2">
<institution><![CDATA[,Université des Antilles Unité Mixte de Recherche7205 Institut de Systématique, Évolution, Biodiversité]]></institution>
<addr-line><![CDATA[ Guadeloupe]]></addr-line>
<country>France</country>
</aff>
<aff id="Af3">
<institution><![CDATA[,Université des Antilles Laboratoire de Biologie et Physiologie Végétales ]]></institution>
<addr-line><![CDATA[ Guadeloupe]]></addr-line>
<country>France</country>
</aff>
<aff id="Af4">
<institution><![CDATA[,Université Montpellier Laboratoire des Symbioses Tropicales et Méditerranéennes, Unité Mixte de Recherche113 Centre de coopération internationale en recherche agronomique pour le développement/ Institut de Recherche pour le Développement/Sup-Agro]]></institution>
<addr-line><![CDATA[ Montpellier]]></addr-line>
<country>France</country>
</aff>
<aff id="Af5">
<institution><![CDATA[,Académie Nationale des Sciences et Techniques du Sénégal  ]]></institution>
<addr-line><![CDATA[ Dakar]]></addr-line>
<country>Sénégal</country>
</aff>
<aff id="Af6">
<institution><![CDATA[,University of Rostock Faculty of Agriculture Department of Plant Sciences]]></institution>
<addr-line><![CDATA[ Rostock]]></addr-line>
<country>Germany</country>
</aff>
<pub-date pub-type="pub">
<day>00</day>
<month>12</month>
<year>2024</year>
</pub-date>
<pub-date pub-type="epub">
<day>00</day>
<month>12</month>
<year>2024</year>
</pub-date>
<volume>72</volume>
<numero>1</numero>
<copyright-statement/>
<copyright-year/>
<self-uri xlink:href="http://www.scielo.sa.cr/scielo.php?script=sci_arttext&amp;pid=S0034-77442024000100058&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://www.scielo.sa.cr/scielo.php?script=sci_abstract&amp;pid=S0034-77442024000100058&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://www.scielo.sa.cr/scielo.php?script=sci_pdf&amp;pid=S0034-77442024000100058&amp;lng=en&amp;nrm=iso"></self-uri><abstract abstract-type="short" xml:lang="en"><p><![CDATA[Abstract  Introduction: Coccoloba uvifera, named also seagrape, establishes symbiotic relationships with many ectomycorrhizal fungi. However, in Cuba, these fungi have been little studied.  Objective:  To characterize the diversity of sporocarps and ectomycorrhizae of ectomycorrhizal fungi associated with C. uvifera in three coastal ecosystems of Eastern Cuba.  Methods:  Four samplings of sporocarps and ectomycorrhizae were carried out at three-week intervals during the rainy season, from June to September, in 2018 and 2019. Ectomycorrhizae were collected from three mature trees and 30 young individuals per tree. The samples were transferred to the Abiotic Stress Laboratory of the Center for Plant Biotechnology Studies of the University of Granma and the Laboratory of Plant Biology and Physiology of the University of French West Indies for processing and subsequent identification.  Results:  Five species of ectomycorrhizal fungi were identified from sporocarps collected under C. uvifera in the three sampling sites (Scleroderma bermudense, Russula sp., Cantharellus sp., Inocybe sp., and Amanita sp.). Using internal transcribed spacer sequencing, six taxa of ectomycorrhizal fungi were identified from ectomycorrhizas of mature trees and seedlings (S. bermudense, two Tuber spp., Tomentella sp., Inocybe sp., and Thelephora sp.). Only S. bermudense coincided (similarity 99-100 %) with sporocarps. S. bermudense was the most frequent ectomycorrhizal fungus in the ectomycorrhizas and sporocarps collected. Mature trees and C. uvifera seedlings shared between 75 and 100 % of the ectomycorrhizal fungal communities, being able to form potential common ectomycorrhizal networks.  Conclusions:  At the three collection sites, sporocarp weakly reflected the belowground ectomycorrhizal fungal community, ectomycorrhizal fungal diversity is quite limited, and S. bermudense was the only ectomycorrhizal fungus that overlapped in sporocarps and ectomycorrhizae.]]></p></abstract>
<abstract abstract-type="short" xml:lang="es"><p><![CDATA[Resumen  Introducción: Coccoloba uvifera, también llamada uva de mar, establece relaciones simbióticas con varios hongos ectomicorrícicos, sin embargo, en Cuba, estos hongos han sido poco estudiados.  Objetivo:  Caracterizar la diversidad de esporocarpos y ectomicorrizas de hongos ectomicorrízicos asociados a C. uvifera en tres ecosistemas costeros del oriente de Cuba.  Métodos:  Se realizaron cuatro muestreos de esporocarpos y ectomicorrizas a intervalos de tres semanas durante la temporada de lluvias, de junio a septiembre, entre 2018 y 2019. Las ectomicorrizas se recolectaron en tres árboles maduros y en 30 individuos jóvenes por árbol. Las muestras se trasladaron al Laboratorio de Estrés Abiótico del Centro de Estudios de Biotecnología Vegetal de la Universidad de Granma y al Laboratorio de Biología y Fisiología Vegetal de la Universidad de las Antillas, para su procesamiento y posterior identificación.  Resultados:  A partir de esporocarpos recolectados bajo C. uvifera en los tres sitios de muestreo se identificaron cinco especies de hongos ectomicorrícicos (Scleroderma bermudense, Russula sp., Cantharellus sp., Inocybe sp. y Amanita sp.). Utilizando la secuenciación espaciador transcrito interno se identificaron seis taxones de hongos ectomicorrícicos a partir de ectomicorrizas de árboles maduros y plántulas (S. bermudense, dos Tuber spp., Tomentella sp., Inocybe sp., y Thelephora sp.). Solo S. bermudense coincidió (similitud 99-100 %) con esporocarpos. S. bermudense fue el hongo ectomicorrícico más frecuente en las ectomicorrizas y los esporocarpos recolectados. Los árboles maduros y las plántulas de C. uvifera compartieron entre el 75 y el 100 % de las comunidades fúngicas ectomicorrícicas, pudiendo formar redes ectomicorrícicas comunes.  Conclusiones:  En los tres sitios de recolección, los esporocarpos reflejaron débilmente la comunidad de hongos ectomicorrízicos subterránea, la diversidad de hongos ectomicorrízicos fue bastante limitada y S. bermudense fue el único hongo ectomicorrícico que se superpuso en esporocarpos y ectomicorrizas.]]></p></abstract>
<kwd-group>
<kwd lng="en"><![CDATA[seagrape]]></kwd>
<kwd lng="en"><![CDATA[fungal diversity]]></kwd>
<kwd lng="en"><![CDATA[fruiting body]]></kwd>
<kwd lng="en"><![CDATA[ectomycorrhizae]]></kwd>
<kwd lng="en"><![CDATA[ITS sequencing.]]></kwd>
<kwd lng="es"><![CDATA[uva de mar]]></kwd>
<kwd lng="es"><![CDATA[diversidad fúngica]]></kwd>
<kwd lng="es"><![CDATA[cuerpo fructífero]]></kwd>
<kwd lng="es"><![CDATA[micorrizas]]></kwd>
<kwd lng="es"><![CDATA[secuenciación ITS.]]></kwd>
</kwd-group>
</article-meta>
</front><back>
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