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Fine root production and decomposition of integrated plants under intensified farming systems in Brazil

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Bieluczyk, Wanderlei ; Piccolo, Marisa de Cassia ; Goncalves, Joao Vitor Matos ; Pereira, Marcos Gervasio ; Lambais, George Rodrigues ; de Camargo, Plinio Barbosa ; Tavares, Tiago Rodrigues ; Germon, Amandine ; Bosi, Cristiam ; Bernardi, Alberto Carlos de Campos ; Pezzopane, Jose Ricardo Macedo ; Cherubin, Mauricio Roberto ; de Moraes, Moacir Tuzzin
Número total de Autores: 13
Tipo de documento: Artigo Científico
Fonte: RHIZOSPHERE; v. 31, p. 14-pg., 2024-09-01.
Resumo

To ensure food security, foster agri-environmental sustainability, and prevent agricultural expansion into preserved areas, it is imperative to intensify plus diversify agriculture within integrated farming systems in the coming decades. Maximizing productivity and carbon sequestration through such systems demands understanding below-ground interactions and further research into plant root dynamics, which have often been neglected or overlooked. This study examined the effects of integrated farming systems, specifically crop-livestock and crop-livestock-forestry, on fine-root dynamics of crops and pastures (i.e., herbaceous plants). Using an extensive grazing pasture as a control, and intensification through crop-livestock and crop-livestock-forestry, we aimed to evaluate if integrated systems (i) enhance herbaceous root growth and necromass addition, and (ii) accelerate root turnover. We also investigated whether multiple linear regression modeling could predict root production and decomposition using the edaphoclimatic variables monitored in the areas. Herbaceous fine-root dynamics were observed over two years using the minirhizotron technique. Installation involved five 70 cm-deep acrylic tubes in extensive grazing and crop-livestock and fifteen in crop-livestock-forestry (1.9, 4.3, and 7.5m tree inter-row distances). In integrated systems, annual corn cropping was succeeded by grazing on a palisadegrass pasture. The trial measured eight additional soil and climatic parameters for a regression model using a stepwise selection procedure, including average soil temperature, photosynthetically active radiation, available soil water, soil bulk density, soil pH, available soil phosphorus, the sum of soil bases, and cation exchange capacity. Extensive grazing accumulated 124.8 m m(-2) of roots, constituting 48% of crop-livestock (259.7 m m(-2)) and 66% of crop-livestock-forestry (189.5 m m(-2)). Root growth near Eucalyptus trees was reduced by 51% compared to crop-livestock. Root turnover followed the order of extensive grazing < crop-livestock < crop-livestock-forestry. The peak daily root productivity was from 31 to 80 days of the crop cycle when corn was intercropped with palisade grass in the integrated systems. Multiple regression models were superior for predicting root decomposition, reaching adjusted R-2 values of 0.81 and 0.71 for crop and pasture cycles, but were ineffective for root growth (R-2 < 0.25). Therefore, additional parameters are needed to fit the root growth accurately. We conclude that integrated farming enhances fine-root production and root necromass accrual, accelerating root cycling compared to extensive pasture. However, as introducing Eucalyptus in crop-livestock impairs herbaceous root development near trees, we recommend adjusting tree density and inter-row spaces to alleviate these adverse effects, especially for annual crop cultivations. (AU)

Processo FAPESP: 23/18333-8 - Quantificando as Respostas do Carbono Orgânico do Solo ao Fogo em Escala de Paisagem na Amazônia
Beneficiário:Wanderlei Bieluczyk
Modalidade de apoio: Bolsas no Brasil - Pós-Doutorado
Processo FAPESP: 20/15230-5 - Centro de Pesquisa e Inovação de Gases de Efeito Estufa - RCG2I
Beneficiário:Julio Romano Meneghini
Modalidade de apoio: Auxílio à Pesquisa - Programa Centros de Pesquisa em Engenharia
Processo FAPESP: 14/17927-2 - Crescimento e decomposição de raízes finas e qualidade do solo sob sistemas integrados de agricultura, pecuária e floresta (São Carlos, SP)
Beneficiário:Wanderlei Bieluczyk
Modalidade de apoio: Bolsas no Brasil - Doutorado