Response of yellow passion fruit (Passiflora edulis Sims) under flooding conditions
Keywords:
Ecophysiology, flooding, flowering, substrateAbstract
Poor drainage has been shown as an important factor that promotes low productivity of passion fruit crop. The objective of this study was to evaluate the response of the plants after subjecting them to flooding in the soil. The trial was carried out at the UCV Agronomy School, Maracay, Venezuela, using 4-month old passion fruit plants at the flowering stage, which were grown in 9 L polyethylene bags with a peat substrate. The experimental design was a randomized complete block, with eight treatments, four replications and two plants per plot. The effect of different flood intensities on physiological performance and growth of plants was evaluated. The crop response was evaluated by determining the chlorophyll index, photosynthetic rate, transpiration, stomatal conductance, xylem water potential, fresh and dry weight of leaves, stems and roots, and root length. It was shown that passion fruit plants developed a capacity to tolerate flood conditions up to 4 days; later, there were negative effects on the variables associated with the crop physiology. Root and stem biomass were the most affected plant organs, and as the flooding time increased their weights decreased, while water content of plant tissues increased. The results indicated that passion fruit plants subjected to flooding for 5 or more days are adverse affected irreversibly.
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2. Castro, F., E. Campostrini, A. Torres-Netto y L. Hespanhol. 2011. Relationship between photochemical efficiency (JIP-Test paramaters) and portable chlorophyll meter Reading in papaya plants. Braz. Plant. Physiol. 23: 295-304.
3. Cavalcante, U., L. Maia, R. Nogueira y V. Santos. 2001. Respostas fisiológicas em mudas de maacujazeiro amaerllo (Passiflora edulis Sims f. flavicarpa) inoculadas com fungos micorrízicos arbuculares e submetidas a estresse hídrico. Acta Bot. Bras. 15(3): 379-390.
4. Cubillos, J., J. Páez y L. Mejía. 2011. Evaluación de la capacidad controladora de Trichoderma harzianum Rifai sobre Fusarium solani (Mart) Sacs. Asociado al complejo secadera en maracuyá en condiciones de invernadero. Revista Facultad Nacional de Agronomía-Medellín. 64(1): 5821-5830.
5. Da Silva, G., I. Lucena, F. Albano y J. Antiveli. 2013. Estado nutricional e clorofila foliar do maracujazeiro amarello en funçao de biofertilizantes, calagen e adubaçao con N e K. Rev. de Ciencias Agrarias 36(2): 163-173.
6. Dwivedi, P. y R. Dwivedi. 2012. Physiology of abiotic stress in plants. Agrobios, Jodhpur, India. 354 p.
7. Ezin, V., R. De la Pena y A. Ahanchede. 2010. Flooding tolerance of tomato genotypes during vegetative and reproductive stages. Braz. J. Plant. Physiol. 22: 131-142.
8. Fischer, G. 2005. Aspectos de la fisiología aplicada de los frutales promisorios en cultivo y poscosecha. Rev. Comalfi 32(1): 22-34.
9. Fitter, A. y R. Hay. 2002. Environmental Physiology of Plants. Academic Press. London.
10. Jiménez, J., L. Moreno y S. Magnitskiy. 2012. Respuesta de las plantas a estrés por inundación. Una revisión. Rev. Colomb. Cienc. Hortic. 6(1): 96-109
11. Khondaker, N. y Ozawa, K. 2007. Papaya plant growth as affected by soil air oxygen deficiency. Acta Hortic. 740: 225-232.
12. Martínez-Alcántara, B., S. Jover, A. Quiñones, M. Forner, J. Rodríguez, F. Legaz et al. 2012. Flooding affects uptake and distribution of carbon and nitrogen in citrus seedlings. J. Plant Physiol. 169: 1150-1157.
13. Mielke, M. y B. Schaffer. 2010. Leaf gas exchange, chlorophyll fluorescence and pigment indexes of Eugenia uniflora L, in response to change in the light intensity and soil flooding. Tree Physiol. 30(1): 45-55.
14. Naor, A. 2000. Midday stem water potential as a plant water stress indicator for irrigation scheduling in fruit trees. Acta Hortc. 537: 447-454.
15. Pardos, J. 2004. Respuestas de las plantas al anegamiento del suelo. Invest. Agrar.: Sist Recur Forest. 13(1): 101-107.
16. Pérez, L. y L. Melgarejo. 2012. Caracterización ecofisiológica de la gulupa (Passiflora edulis Sims) bajo tres condiciones ambientales en el departamento de Cundinamarca. Facultad de Ciencias. Universidad Nacional de Colombia. pp. 11-32.
17. Rajendran, C., K. Ramamoorthy y S. Hepziba. 2012. Nutritional and physiological disorders in crop plants. Scientific Publishers, Jodhpur, India. 116 p.
18. Ribon, A., J. Tavares, K. Lourenço e V. Lourenceti. 2014. Seleção de método estatístico para modelos de estimativa da qualidade física de solos argilosos. Revista de Agricultura 89(1): 29-40.
19. Rodríguez, G., B. Schaffer, C. Basso y A. Vargas. 2014a. Efecto del tiempo de inundación del sistema radical sobre algunos aspectos fisiológicos y desarrollo del cultivo de lechosa (Carica papaya L.). Rev. Fac. Agron. (UCV) 40(3): 89-98.
20. Rodríguez, G., B. Schaffer, A.I. Vargas y C. Basso. 2014b. Effect of flooding duration and percentage of roots submerged on physiology growth, survival and recovery of papaya. HortScience 49: S293 (abstr).
21. Schaffer, B., F.S. Davies y J.H. Crane. 2006. Response of subtropical and tropical fruit trees to flooding in calcareous soil. HortScience 41: 549-555.
22. Scholander, P.F., H. Hammel, E. Bradstreet y E. Hemmingsen. 1965. Sap pressure in vascular plants. Science 148: 339-346.
23. Thani, Q., A. Vargas, B. Schaffer, G. Liu y J. Crane. 2016. Response of papaya plants in a potting medium in containers to flooding and solid oxygen fertilization. Proc. Fla. State. Hort. Soc. 129: 27-34.
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