Organic acids allied with paclobutrazol modify mango tree ‘Keitt’ flowering

Author:

Silva Luan dos Santos1ORCID,Cavalcante Ítalo Herbert Lucena2ORCID,Cunha Jenilton Gomes da2ORCID,Lobo Jackson Teixeira2ORCID,Carreiro Daniel Almeida2ORCID,Paiva Neto Vespasiano Borges de2ORCID

Affiliation:

1. Federal University of Piauí, Brasil

2. Federal University of Vale do São Francisco, Brasil

Abstract

Abstract The objective of this study was to evaluate the effectiveness of fulvic acids and free amino acids on paclobutrazol in the flowering of mango ‘Keitt’ cultivated in the semi-arid region. The experiment was performed from 2017 to 2018 simultaneously in two orchards with the same plants and management characteristics, located in Cabrobó, State of Pernambuco, Brazil. The experimental design was randomized blocks with four treatments and five replications of four trees. The treatments were: T1: paclobutrazol + water (control); T2: paclobutrazol + fulvic acids; T3: paclobutrazol + amino acids; T4: paclobutrazol + fulvic acids + amino acids. Applying fulvic acids plus paclobutrazol increased gas exchange efficiency, favoring flowering and fruiting. In contrast, amino acids alone or with fulvic acids decreased the flowering efficiency.

Publisher

FapUNIFESP (SciELO)

Subject

Plant Science,Agronomy and Crop Science,Food Science

Reference36 articles.

1. Indução floral.;ALBUQUERQUE J.A.S.,2002

2. Köppen’s climate classification map for Brazil.;ALVARES C.A.;Meteorologische Zeitschrift,2013

3. Impact of drought on growth, photosynthesis, osmotic adjustment, and cell wall elasticity in Damask rose.;AL-YASI H.;Plant Physiology Biochemistry,2020

4. Ácidos húmicos.;BALDOTTO M.A.;Revista Ceres,2014

5. A spectrophotometric method for measuring the breakdown of hydrogen peroxide by catalase.;BEERS R.F.;Journal of Biological Chemistry,1952

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