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Título: Calcium and silicon precipitation in Pinus taeda needles in response to soil application of cellulosic residue.
Autor: BARBOSA, J. Z.
MENDES, E. J.
MAEDA, S.
SASS, A. L.
ARAUJO, E.
MAGRI, E.
PRIOR, S. A.
MOTTA, A. C. V.
Afiliación: JULIERME ZIMMER BARBOSA, INSTITUTO FEDERAL CATARINENSE; EVELYN JOSLIN MENDES, UNIVERSIDADE FEDERAL DO PARANÁ; SHIZUO MAEDA, CNPF; ANNE LUIZ SASS, UNIVERSIDADE FEDERAL DO PARANÁ; ELOA ARAUJO, UNIVERSIDADE FEDERAL DO PARANÁ; EDERLAN MAGRI, UNIVERSIDADE FEDERAL DO PARANÁ; STEPHEN ARTHUR PRIOR, AGRICULTURAL RESEARCH SERVICE - USA; ANTONIO CARLOS VARGAS MOTTA, UNIVERSIDADE FEDERAL DO PARANÁ.
Año: 2025
Referencia: Floresta e Ambiente, v. 32, n. 3, e20240048, 2025.
Descripción: The use of biosolids as a sustainable alternative in the management of planted Pinus taeda forests affects availability of nutrients and beneficial elements. Calcium (Ca) and Silicon (Si) play important roles in plant regulatory and protective systems; therefore, our objective was to use scanning electron microscopy combined with energy-dispersive spectroscopy (SEM-EDS) to analyze the accumulation of elements in P. taeda needles grown in soil that received 0 to 60 Mg ha-1 applications of cellulosic waste. Microanalyses of needle sections were performed using a SEM with elemental detection by EDS. Mapping mode allowed for detection and analysis of Ca, Si, and C distributions in needle sections. Calcium and Si precipitation occurred in needles, with Ca accumulating in the phloem and Si in the epidermal cells. Application of 60 Mg ha-1 changed the availability and accumulation of elements, which resulted in more Ca crystals and fewer Si crystals.
Thesagro: Pinus Taeda
Microscopia Eletrônica
Manejo
Silício
NAL Thesaurus: Calcium oxalate
Electron microscopy
Phytoliths
Forest management
Silicon
Palabras clave: Oxalato de cálcio
Fitólitos
ISSN: 2179-8087
DOI: https://doi.org/10.1590/2179-8087-FLORAM-2024-0048
Tipo de Material: Artigo de periódico
Acceso: openAccess
Aparece en las colecciones:Artigo em periódico indexado (CNPF)

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