Abstract
Floods are increasing worldwide because of the climate change. On the other hand, it is necessary to provide an adequate destination for the large amount of residue produced after banana harvesting. The objective of this study was to evaluate the effect of pseudostem residue on the recovery of banana seedlings subjected to waterlogging. The experiment was carried out in Registry, SP, Brazil, in a greenhouse, in the autumn and spring in 2021, using a design in divided plots with two factors and six repetitions. Waterlogging treatment was carried maintaining a layer of water in pots for three days (72 h). After drainage, pseudostem residue was added to half of the pots. seven days after the start of recovery, detected reduction of 20.3% in height and 28.7% in leaf area, accumulation of soluble carbohydrates in roots and leaves in autumn, reduction in chlorophyll, N, Mg and Zn contents, as well as the activity of POD, SOD and APX enzymes in roots and leaves. The residue proved to be beneficial after stress due to a 37.8% increase in the root area, recovery of Mg and Zn levels in root and leaf, prevention of elevation of activity of POD and SOD enzymes in leaves, APX in root. In the absence of stress, it reduced the activity of antioxidant enzymes; therefore, it should be used regardless of crop area be subject waterlogging.
Publisher
Revista Mexicana de Ciencias Agricolas
Reference27 articles.
1. Adsal, K. A.; Üçtuğ, F. G. and Arikan, O. A. 2020. Environmental life cycle assessment of utilizing stem waste for banana production in greenhouses in Turkey. Sustain. Prod. Consum. 22:110-125. Doi.org/10.1016/j.spc.2020.02.009.
2. Aguilar, E. A., Turner, D. W.; Gibbs, D. J.; Armstrong, W. and Sivasithamparam, K. 2003. Oxygen distribution and movement, respiration and nutrient loading in banana roots (Musa spp. L.) subjected to aerated and oxygen-depleted environments. Plant and Soil. 253:91-102.
3. Asada, K. 1984. Assay of ascorbate specific peroxidase. Methods enzymol. 105:427-429.
4. Bataglia, O. C.; Furlani, A. M. C.; Teixeira, J. P. F.; Furlani, P. R. y Gallo, J. R. 1983. Métodos de análise química de plantas. Instituto Agronômico. Campinas. 48 p.
5. Bradford, M. M. 1976. A rapid and sensitive method for the quantifications of microgram quantities of protein utilizing the principle of protein dye binding. Anal. Biochem. 72:248-254.