Enzyme activity, glomalin, and soil organic carbon in agroforestry systems.

dc.contributorCristiane Figueira da Silva, UFRRJ; Marcos Gervásio Pereira; João Henrique Gaia Gomes, UFRRJ; MARCELO ANTONIOL FONTES, CNPAB; ELIANE MARIA RIBEIRO DA SILVA, CNPAB.
dc.creatorSILVA, C. F. da
dc.creatorPEREIRA, M. G.
dc.creatorGOMES, J. H. G.
dc.creatorMARCELO ANTONIOL FONTES
dc.creatorSILVA, E. M. R. da
dc.date2020-09-15T04:41:14Z
dc.date2020-09-15T04:41:14Z
dc.date2020-09-14
dc.date2020
dc.date.accessioned2026-06-30T22:59:28Z
dc.descriptionThis study aimed to evaluate enzyme activity, glomalin-related soil proteins (GRSP), soil chemical attributes, and total organic carbon (TOC) in two Agroforestry systems (AFS) (AFS-1 and AFS-2), in a traditional agriculture area (TA), and secondary forest (SF) area in Paraty (RJ). Soil samples (from 0 to 5 cm depth) were collected during the rainy and dry seasons. AFS improves and/or maintains soil chemical indicators based on pH increase, reduces aluminum saturation and maintains soil nutrient content (Ca, Mg and K), when compared with SF. The contribution of organic material and the biodiversity of the AFS provide the maintenance of the total organic carbon content of the soil. AFS maintain the activity of the enzymes protease, ?-glucosidase, acid phosphatase, and total enzyme activity (FDA), and theproduction of glomalin-related soil protein at levels similar to those observed in SF, especially during the rainy season.
dc.identifierFloresta e Ambiente, v. 27, n, 3, e20170716, 2020.
dc.identifier2179-8087
dc.identifierhttp://www.alice.cnptia.embrapa.br/alice/handle/doc/1124915
dc.identifierhttps://doi.org/10.1590/2179-8087.071617
dc.identifier.urihttp://hdl.handle.net/123456789/372053
dc.languagefra
dc.rightsopenAccess
dc.subjectB glucosidase
dc.subjectFDA
dc.subjectProtease
dc.subjectAcid phosphatase
dc.subjectAgroecology
dc.titleEnzyme activity, glomalin, and soil organic carbon in agroforestry systems.
dc.typeArtigo de periódico

Archivos