<?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>1659-1321</journal-id>
<journal-title><![CDATA[Agronomía Mesoamericana]]></journal-title>
<abbrev-journal-title><![CDATA[Agron. Mesoam]]></abbrev-journal-title>
<issn>1659-1321</issn>
<publisher>
<publisher-name><![CDATA[Universidad de Costa Rica]]></publisher-name>
</publisher>
</journal-meta>
<article-meta>
<article-id>S1659-13212026000100008</article-id>
<article-id pub-id-type="doi">10.15517/gpmbn475</article-id>
<title-group>
<article-title xml:lang="es"><![CDATA[Evaluación del rendimiento y la productividad del agua en soya (Glycine max) con AquaCrop]]></article-title>
<article-title xml:lang="en"><![CDATA[Assessment of yield and water productivity in soybean (Glycine max) with AquaCrop]]></article-title>
</title-group>
<contrib-group>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Zúñiga-Herrera]]></surname>
<given-names><![CDATA[Dania]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Chaves-Barrantes]]></surname>
<given-names><![CDATA[Néstor Felipe]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Gutiérrez-Soto]]></surname>
<given-names><![CDATA[Marco Vinicio]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Monge-Muñoz]]></surname>
<given-names><![CDATA[Mayela]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Chinchilla-Soto]]></surname>
<given-names><![CDATA[Cristina]]></given-names>
</name>
<xref ref-type="aff" rid="Aff"/>
</contrib>
</contrib-group>
<aff id="Af1">
<institution><![CDATA[,Universidad de Costa Rica Centro de Investigación en Contaminación Ambiental ]]></institution>
<addr-line><![CDATA[ Montes de Oca]]></addr-line>
<country>Costa Rica</country>
</aff>
<aff id="Af2">
<institution><![CDATA[,Universidad de Costa Rica Estación Experimental Agrícola Fabio Baudrit Moreno Programa de Leguminosas]]></institution>
<addr-line><![CDATA[ Alajuela]]></addr-line>
<country>Costa Rica</country>
</aff>
<aff id="Af3">
<institution><![CDATA[,Universidad de Costa Rica Centro de Investigación en Contaminación Ambiental ]]></institution>
<addr-line><![CDATA[ Montes de Oca]]></addr-line>
<country>Costa Rica</country>
</aff>
<aff id="Af4">
<institution><![CDATA[,Universidad de Costa Rica Estación Experimental Agrícola Fabio Baudrit Moreno Programa de Ecofisiología de Plantas Tropicales]]></institution>
<addr-line><![CDATA[ Alajuela]]></addr-line>
<country>Costa Rica</country>
</aff>
<aff id="Af5">
<institution><![CDATA[,Universidad de Costa Rica Centro de Investigación en Contaminación Ambiental ]]></institution>
<addr-line><![CDATA[ Montes de Oca]]></addr-line>
<country>Costa Rica</country>
</aff>
<pub-date pub-type="pub">
<day>00</day>
<month>12</month>
<year>2026</year>
</pub-date>
<pub-date pub-type="epub">
<day>00</day>
<month>12</month>
<year>2026</year>
</pub-date>
<volume>37</volume>
<numero>1</numero>
<copyright-statement/>
<copyright-year/>
<self-uri xlink:href="http://www.scielo.sa.cr/scielo.php?script=sci_arttext&amp;pid=S1659-13212026000100008&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://www.scielo.sa.cr/scielo.php?script=sci_abstract&amp;pid=S1659-13212026000100008&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://www.scielo.sa.cr/scielo.php?script=sci_pdf&amp;pid=S1659-13212026000100008&amp;lng=en&amp;nrm=iso"></self-uri><abstract abstract-type="short" xml:lang="es"><p><![CDATA[Resumen  Introducción.  Los modelos de simulación son una herramienta para estudiar el comportamiento de los cultivos bajo distintas condiciones climáticas, hídricas y prácticas de manejo agronómico. Objetivo. Evaluar el modelo AquaCrop en la estimación del rendimiento y la productividad del agua en el cultivo de la soya variedad CIGRAS-06. Materiales y métodos. El estudio se realizó en la Estación Experimental Agrícola Fabio Baudrit Moreno de la Universidad de Costa Rica, en Alajuela, Costa Rica, del 6 de junio al 23 de octubre de 2018. Se utilizó el modelo AquaCrop v. 7.1 para simular el desarrollo y el rendimiento del cultivo de soya. Se compararon datos simulados de cobertura del dosel vegetal, producción de biomasa y rendimiento con datos experimentales de una parcela sembrada con soya variedad CIGRAS-06. Se emplearon parámetros de suelo medidos en campo y generados mediante ecuaciones de pedotransferencia. Resultados. Las predicciones del rendimiento, la biomasa total y la cobertura fueron buenas (similitud: d &#8805; 0,97), pero las predicciones de cobertura foliar durante el inicio del ciclo del cultivo resultaron susceptibles de mejora. Las diferencias en los dos tipos de parámetros de suelo utilizados no afectaron significativamente la simulación final. Conclusiones. AquaCrop permitió simular de manera satisfactoria el rendimiento de la soya, la biomasa y la cobertura foliar. La simulación de la productividad del agua fue superior a otros valores reportados en la literatura.]]></p></abstract>
<abstract abstract-type="short" xml:lang="en"><p><![CDATA[Abstract  Introduction.  Simulation models are a tool to study crop behavior under different climatic and water conditions and agronomic management practices. Objective. To evaluate the AquaCrop model for estimating yield and water productivity in soybean var. CIGRAS-06. Materials and methods. The study was carried out at the Estación Experimental Agrícola Fabio Baudrit Moreno of the University of Costa Rica, in Alajuela, Costa Rica, from June 6 to October 23, 2018. The AquaCrop v. 7.1 model was used to simulate soybean crop development and yield. Simulated data on canopy cover, biomass production, and yield were compared with experimental data from a plot planted with soybean variety CIGRAS-06. Soil parameters measured in the field and generated with pedotransfer equations were used. Results. Predictions of yield, total biomass, and canopy cover were good (similarity values: d &#8805; 0.97), but predictions of leaf coverage during the early crop cycle were susceptible to improvement. Differences between the two types of soil parameters used did not significantly affect the final simulation. Conclusions. AquaCrop successfully simulated soybean yield, biomass, and leaf coverage. Water productivity simulation was higher than values reported in the literature.]]></p></abstract>
<kwd-group>
<kwd lng="es"><![CDATA[biomasa]]></kwd>
<kwd lng="es"><![CDATA[cobertura de dosel]]></kwd>
<kwd lng="es"><![CDATA[conductividad hidráulica]]></kwd>
<kwd lng="es"><![CDATA[simulación]]></kwd>
<kwd lng="es"><![CDATA[sensibilidad]]></kwd>
<kwd lng="es"><![CDATA[uso consuntivo]]></kwd>
<kwd lng="en"><![CDATA[biomass]]></kwd>
<kwd lng="en"><![CDATA[canopy cover]]></kwd>
<kwd lng="en"><![CDATA[hydraulic conductivity]]></kwd>
<kwd lng="en"><![CDATA[simulation]]></kwd>
<kwd lng="en"><![CDATA[sensitivity]]></kwd>
<kwd lng="en"><![CDATA[consumptive use]]></kwd>
</kwd-group>
</article-meta>
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