<Record><identifier xmlns="http://purl.org/dc/elements/1.1/">URN:NBN:SI:DOC-623FGL5Z</identifier><date>2026</date><creator>Jatoba, Matheus Ferreira</creator><creator>Jonack, Marcos Vinícius</creator><creator>Lisboa, Lucas Aparecido Manzani</creator><creator>Pinow, Vinicius de Lima</creator><creator>Siqueira, Hiago Rocha</creator><relation>documents/doc/6/URN_NBN_SI_doc-623FGL5Z_001.pdf</relation><format format_type="issue">1</format><format format_type="volume">122</format><format format_type="extent">9 str.</format><format format_type="type">article</format><identifier identifier_type="DOI">10.14720/aas.2026.122.1.24344</identifier><identifier identifier_type="ISSN">1854-1941</identifier><identifier identifier_type="COBISSID_HOST">271200771</identifier><identifier identifier_type="URN">URN:NBN:SI:doc-623FGL5Z</identifier><language>eng</language><publisher publisher_location="Ljubljana">Založba Univerze v Ljubljani</publisher><source>Acta agriculturae Slovenica</source><rights>BY</rights><subject language_type_id="eng">Glycine max L.</subject><subject language_type_id="eng">grain production</subject><subject language_type_id="eng">micronutrient</subject><subject language_type_id="slv">mikrohranila</subject><subject language_type_id="eng">plant growth</subject><subject language_type_id="slv">rast rastlin</subject><subject language_type_id="slv">tvorba zrnja</subject><title>The effects of foliar application of selenium sources at different soybean development stages, focusing on leaf morphology, development, and grain yield</title></Record>