<?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>0187-7380</journal-id>
<journal-title><![CDATA[Revista fitotecnia mexicana]]></journal-title>
<abbrev-journal-title><![CDATA[Rev. fitotec. mex]]></abbrev-journal-title>
<issn>0187-7380</issn>
<publisher>
<publisher-name><![CDATA[Sociedad Mexicana de Fitogenética A.C.]]></publisher-name>
</publisher>
</journal-meta>
<article-meta>
<article-id>S0187-73802022000300341</article-id>
<article-id pub-id-type="doi">10.35196/rfm.2022.3.341</article-id>
<title-group>
<article-title xml:lang="es"><![CDATA[Crecimiento ex vitro de plántulas de Lycaste aromatica (Graham) Lindl.]]></article-title>
<article-title xml:lang="en"><![CDATA[Ex vitro growth of Lycaste aromatica (Graham) Lindl. seedlings]]></article-title>
</title-group>
<contrib-group>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Solís-Zanotelli]]></surname>
<given-names><![CDATA[Flor Y.]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Hidalgo-Contreras]]></surname>
<given-names><![CDATA[Juan V.]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Baltazar-Bernal]]></surname>
<given-names><![CDATA[Obdulia]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
</contrib-group>
<aff id="Af1">
<institution><![CDATA[,Colegio de Postgraduados  ]]></institution>
<addr-line><![CDATA[Amatlán de los Reyes Veracruz]]></addr-line>
<country>México</country>
</aff>
<pub-date pub-type="pub">
<day>00</day>
<month>09</month>
<year>2022</year>
</pub-date>
<pub-date pub-type="epub">
<day>00</day>
<month>09</month>
<year>2022</year>
</pub-date>
<volume>45</volume>
<numero>3</numero>
<fpage>341</fpage>
<lpage>348</lpage>
<copyright-statement/>
<copyright-year/>
<self-uri xlink:href="http://www.scielo.org.mx/scielo.php?script=sci_arttext&amp;pid=S0187-73802022000300341&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://www.scielo.org.mx/scielo.php?script=sci_abstract&amp;pid=S0187-73802022000300341&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://www.scielo.org.mx/scielo.php?script=sci_pdf&amp;pid=S0187-73802022000300341&amp;lng=en&amp;nrm=iso"></self-uri><abstract abstract-type="short" xml:lang="es"><p><![CDATA[Resumen  En la micropropagación vegetal la aclimatación es una etapa crucial para promover que en las plantas ocurran cambios morfológicos y fisiológicos para su adaptación ex vitro. El objetivo del presente estudio fue evaluar la supervivencia y desarrollo de plántulas de Lycaste aromatica (Graham) Lindl. obtenidas en dos sistemas de micropropagación (medio semisólido y medio líquido en biorreactor de inmersión por gravedad, BIG). Las plantulas se establecieron en sustratos diferentes (peat moss Premier® o musgo Sphagnum chileno) y recibieron diferentes fungicidas (PHC T-22®, Captan Plus® y Ridomil Bravo® 81, y plantas que no recibieron aplicación) en un diseño experimental completamente al azar con arreglo factorial 2 × 2 × 4, resultando 16 tratamientos. Durante 28 semanas de aclimatación las plantas estuvieron en charolas de plástico transparente con los sustratos correspndientes, en invernadero con temperatura en el intervalo de 20 a 37 °C, irradiancia de 85 &#956;mol m-2 s-1 y 70 % de humedad relativa. Los resultados mostraron que las plantas tuvieron diferencias significativas en supervivencia y número de brotes debido al sistema de micropropagación en que se obtuvieron, mientras que los sustratos influyeron en la supervivencia y clorofila total en hojas. Las plantas obtenidas en medio semisólido y establecidas en sustrato musgo Sphagnum chileno sobrevivieron en proporción del 88 al 100 %. Las plantas obtenidas en el sistema BIG fueron las más altas, con 7.2 cm. Las plantas obtenidas en medio semisólido y establecidas en peat moss Premier® formaron 1.25 brotes. Por otro lado, las plantas obtenidas en medio semisólido, establecidas en peat moss Premier® con aplicación de fungicida Captan Plus® tuvieron más clorofila total (0.43 mg g-1 de peso fresco foliar). Los fungicidas no indujeron diferencias en la supervivencia de las plantas.]]></p></abstract>
<abstract abstract-type="short" xml:lang="en"><p><![CDATA[Summary  In plant micropropagation, acclimatization is a crucial step to promote morphological and physiological changes in plants for their ex vitro adaption. The objective of this study was to evaluate the survival and development of Lycaste aromatica (Graham) Lindl. seedlings obtained from two micropropagation systems (semi-solid medium and liquid medium in a gravity immersion bioreactor, BIG). The seedlings were established in different substrates (peat moss Premier® or Chilean Sphagnum moss) and received different fungicides (PHC T-22®, Captan Plus® and Ridomil Bravo® 81, and plants that did not receive application), in a completely randomized experimental design with 2 × 2 × 4 factorial arrangement, resulting in 16 treatments. During 28 weeks of acclimatization, the plants were in transparent plastic trays with the corresponding substrates, in a greenhouse with temperature in the range from 20 to 37 °C, irradiance of 85 &#956;mol m-2 s-1 and 70 % relative humidity. Results showed that plants had significant differences in survival and number of shoots due to the micropropagation system in which they were obtained, while the substrates influenced survival and total chlorophyll in leaves. Plants obtained in semi-solid medium and established in Chilean Sphagnum moss substrate survived in proportions from 88 to 100 %. The plants obtained in the BIG system were the tallest with 7.2 cm. The plants obtained in semi-solid medium and established in peat moss Premier® formed 1.25 shoots. On the other hand, the plants obtained in semi-solid medium, established in peat moss Premier® with fungicide Captan Plus® applied, had more total chlorophyll (0.43 mg g-1 of fresh leaf weight). Fungicides did not induce differences on plant survival.]]></p></abstract>
<kwd-group>
<kwd lng="es"><![CDATA[Trichoderma harzianum]]></kwd>
<kwd lng="es"><![CDATA[aclimatación]]></kwd>
<kwd lng="es"><![CDATA[biorreactor de inmersión por gravedad]]></kwd>
<kwd lng="es"><![CDATA[orquídea]]></kwd>
<kwd lng="es"><![CDATA[Sphagnum]]></kwd>
<kwd lng="en"><![CDATA[Trichoderma harzianum]]></kwd>
<kwd lng="en"><![CDATA[acclimatization]]></kwd>
<kwd lng="en"><![CDATA[gravity immersion bioreactor]]></kwd>
<kwd lng="en"><![CDATA[orchid]]></kwd>
<kwd lng="en"><![CDATA[Sphagnum]]></kwd>
</kwd-group>
</article-meta>
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