Soil Predisposing Factors to Fusarium oxysporum f.sp Cubense Tropical Race 4 on Banana Crops of La Guajira, Colombia

Author:

Rodríguez-Yzquierdo Gustavo1,Olivares Barlin Orlando2ORCID,González-Ulloa Antonio3,León-Pacheco Rommel1,Gómez-Correa Juan Camilo1,Yacomelo-Hernández Marlon1,Carrascal-Pérez Francisco1,Florez-Cordero Elías1,Soto-Suárez Mauricio1ORCID,Dita Miguel4ORCID,Betancourt-Vásquez Mónica1

Affiliation:

1. Colombian Corporation for Agricultural Research-AGROSAVIA. CI Tibaitatá, Sede Central, Km 14 vía Mosquera-Bogotá, Mosquera 250047, Colombia

2. Biodiversity Management Research Group (GESBIO-UCO), Rabanales Campus, University of Cordoba (UCO), Carretera Nacional IV, km 396, 14014 Córdoba, Spain

3. Grupo Agrovid SAS, Avenida Libertador, Santa Marta 470001, Colombia

4. Bioversity International and CIAT, Cali 763537, Colombia

Abstract

Fusarium wilt of banana caused by the soil-borne fungi Fusarium oxysporum f. sp. cubense, Tropical Race 4 (Foc TR4) (Syn. Fusarium odoratissimum), is a major threat to the global banana industry. Aiming to identify predisposing soil factors for Fusarium wilt of banana (FWB) TR4, the 23 physical and chemical soil properties were studied in three commercial banana farms in La Guajira, Colombia. Disturbed and undisturbed soil samples were collected from areas affected by the disease (affected plots) and disease-free areas (healthy plots). Five repetitions per farm were considered, with a total sample of n = 30. The data were analyzed using one-way analysis of variance (ANOVA). Subsequently, the debiased sparse partial correlation (DSPC) algorithm was applied. Organic matter (OM), pH, calcium (Ca), magnesium (Mg), zinc (Zn), and cation-exchange capacity on the exchange complex (ECEC), showed significant differences between the affected and healthy plots. In addition, the bulk density and saturated hydraulic conductivity (HC) were associated suggesting that physical attributes, such as soil compaction and poor drainage, create favorable conditions for FWB. According to the DSPC algorithm, the HC variable presented a grade of 5 and an intermediation of 14.67, which indicates that it has significant associations with BD, sand, porosity, ECEC, and OM and plays a critical role in the connection of other variables in the network and the differentiation of healthy and affected plots. These findings establish a baseline of information under field conditions in Colombia, which can be used to design soil management strategies to mitigate the detrimental effects of Foc TR4 by creating less favorable conditions for the pathogen.

Funder

Colombian Ministry of Agriculture

National Plant Protection Organization

Agrosavia

Fontagro

Publisher

MDPI AG

Subject

Agronomy and Crop Science

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