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Mitigating Soil Sodicity in Irrigated Sugarcane Plantations with Canavalia Rosea: A Pot Experiment

Nonkululeko Sithole; Maria A Pérez-Fernández; Anathi Magadlela
Journal of Soil Science and Plant Nutrition · Vol. 25, Issue 2 · pp. 2962-2975 · 2025

Abstract

To promote the use of legumes for the alleviation of sodicity in small-scale irrigated sugarcane plantations to reduce the cost of soil amendments for small-scale sugarcane farmers. A greenhouse pot experiment was conducted by growing Canavalia rosea (Sw.) DC. in high sodium (Na + ) concentration/sodic sugarcane plantation soils over a period of seven months. Plant material and soil characteristics, including salinity indicators, were analysed pre– and post- C. rosea harvest. Canavalia rosea hyperaccumulated more sodium (Na + ) with age significantly decreasing soil Na + concentrations from 271.870 to 51.573 µmol Na g -1 post- C. rosea harvesting. The electrical conductivity (EC), sodium adsorption ratio (SAR), and exchangeable sodium percentage (ESP) were significantly reduced after three months and remained statistically similar over the period to the seventh month. Pseudomonas putida and various species in the Bacillus genus including B. amyloliquefaciens , B. safensis , B. pumulis , B. subtilis , and B. zhangzhouensis were isolated from C. rosea plants, revealing associations that likely assisted C. rosea in Na + tolerance and improved nutrient availability. The increased abundance of Flavobacterium species in rhizosphere soils was attributed to the ability of C. rosea to reduce soil Na⁺ concentrations, creating favourable conditions for microbial proliferation. Consecutive cultivation of C. rosea reduced Na + concentration by five-folds and improved soil characteristics in sugarcane plantation soils from Sikhwahlane, Mpumalanga. However, field studies are recommended to study the soil Na + / sodicity reduction, microbial interactions and growth of C. rosea at irrigated sugarcane plantations. Pot size and irrigation protocols in controlled experiments may lead to pot binding, potentially influencing the response of C. rosea in sodic soils. Graphical Abstract

Bibliographic Information

JournalJournal of Soil Science and Plant Nutrition
PublisherSpringer
Publication Date2025-06-01
Publication Year2025
Volume25
Issue2
Pages2962-2975
Document TypeJournal Article
Print ISSN0718-9508
eISSN0718-9516
DOI10.1007/s42729-025-02312-3

Access Information

NARA Access Coverage2019-01-01~Current
Journal Homepagehttps://www.springer.com/journal/42729
Publisher PageOpen Publisher Page
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