Altitude and management affect soil fertility, leaf nutrient status and Xanthomonas wilt prevalence in enset gardens
Author:
Shara Sabura, Swennen RonyORCID, Deckers Jozef, Weldesenbet Fantahun, Vercammen Laura, Eshetu Fassil, Woldeyes Feleke, Blomme Guy, Merckx RoelORCID, Vancampenhout KarenORCID
Abstract
Abstract. Enset (Ensete ventricosum) is a productive, drought-tolerant and multipurpose food security crop grown in the densely populated Ethiopian highlands. It is a so-called orphan crop, and its production suffers from a lack of information on proper soil fertility management and its interaction with bacterial wilt disease caused by the pathogen Xanthomonas campestris pv. musacearum. The aim of this study was therefore to assess soil–plant nutrient variation within enset home gardens at three altitudes (ranging from 2000 to 3000 m above sea level – a.s.l.) in the Gamo highlands and investigate whether this variation affects disease prevalence. Altitude in the rift valley covaries with soil leaching, and plant available P, Ca and Mg in soils significantly raised with decreasing altitude. Soil carbon and most nutrients reached very high levels in the gardens, whereas the more distant outfields were severely nutrient deprived. Differences in management intensity within the garden caused soil pH, conductivity, total organic carbon, total N and available P, K, Ca, Mg, Mn and Fe levels to significantly decline with distance from the house; yet, this decrease in soil nutrients was not mirrored in a response of foliar nutrient content, except for N. Hence, over-fertilization is likely, and establishing evidence-based nutrient recommendations for enset would benefit soil quality and productivity both in the gardens and in the outfields. Disease prevalence was high in the study area, with one-third of the farms affected in the recent past. Although more experimental work is needed to exclude confounding factors, our data indicate that the effects of altitude, P fertilization, micronutrients and K-Ca-Mg balance are promising avenues for further investigation into Xanthomonas wilt disease susceptibility.
Publisher
Copernicus GmbH
Reference104 articles.
1. Abdala, D. B., da Silva, I. R., Vergütz, L., and Sparks, D. L.: Long-term manure
application effects on phosphorus speciation, kinetics and distribution in highly weathered
agricultural soils, Chemosphere, 119, 504–514, https://doi.org/10.1016/j.chemosphere.2014.07.029, 2015. 2. Agbede, T. M. and Adekiya, A. O.: Effect of wood ash, poultry manure and NPK fertilizer
on soil and leaf nutrient composition, growth and yield of okra (Abelmoschus esculentus),
Emirates J. Food Agric., 24, 314–321, 2012. 3. Allemann, J., Laurie, S. M., Thiart, S., Vorster, H. J., and Bornman, C. H.: Sustainable
production of root and tuber crops (potato, sweet potato, indigenous potato, cassava) in southern
Africa, S. Afr. J. Bot., 70, 60–66, https://doi.org/10.1016/S0254-6299(15)30307-0, 2004. 4. Amede, T. and Taboge, E.: Optimizing soil fertility gradients in the Enset
(Ensete ventricosum) systems of the Ethiopian Highlands: Trade-offs and local
innovations, in: Advances in Integrated Soil Fertility management in Sub-Saharan Africa:
Challenges and Opportunities, Springer, Dordrecht,
289–297, 2007. 5. Andeta, A. F., Vandeweyer, D., Woldesenbet, F., Eshetu, F., Hailemicael, A., Woldeyes,
S., Crauwels., B, Lievens., J, Ceusters., K, Vancampenhout and Van Campenhout, L.: Fermentation of
enset (Ensete ventricosum) in the Gamo highlands of Ethiopia: physicochemical and
microbial community dynamics, Food Microbiol., 73, 342–350, https://doi.org/10.1016/j.fm.2018.02.011, 2018.
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