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Masake, M.

Publications and source records attributed to Masake, M..

2 recordsLinked to original sources

Bacterial succession, functional organization, and ecological drivers during spontaneous ukwa (Treculia africana) fermentation

Spontaneous fermentation of ukwa (Treculia africana) involves complex microbial succession that remains poorly characterized. Here, bacterial community dynamics during ukwa fermentation were resolved across six time points using high-throughput 16S rRNA gene sequencing. Fermentation followed a structured, stage-wise trajectory, beginning with plant-associated aerobic taxa, transitioning through a mid-phase dominated by fermentative firmicutes, and culminating in late-stage enrichment of acid-tolerant lactic and acetic acid bacteria. Microbial richness increased progressively during fermentation, while community composition clustered by time and correlated strongly with declining pH and moisture. Multivariate analyses identified these physicochemical gradients as primary drivers of succession. Network analysis further revealed distinct co-occurrence modules, indicating coordinated microbial guilds that underpin functional transitions during fermentation. This study provides the first sequencing-based ecological framework for ukwa fermentation and highlights how environmental filtering and microbial interactions shape community assembly in traditional African solid-state fermentations. These insights provide a basis for improving process control and guiding future starter culture development for ukwa and related fermented foods.

microbiology↗

Do African savanna elephants (Loxodonta africana) eat crops because they crave micronutrients?

O_LIElephants can cause negative consequences for both themselves and for humans by consuming agricultural crops. It is unclear whether savanna elephant crop consumption is merely opportunistic behaviour or related to insufficient quality of natural forage. We analysed the role of vegetation quality on elephant crop consumption. We focused on the role of micronutrients, as natural elephant diets are thought to be insufficient in elements such as sodium and phosporus, which can influence their foraging decisions.\nC_LIO_LIFor 12 months across four seasons we collected elephant feeding trail data along with tree, grass and crop samples. We investigated how the quality and availability of these items influenced elephant dietary choices across months and seasons. Subsequently, we compared levels of fibre, digestible energy, dry matter intake, and micronutrients, together with secondary compounds (tannins) across the three vegetation groups. As elephants do not make dietary choices based on one component, we also analysed the nutrient balance of food items with right-angle mixture models.\nC_LIO_LIThe levels of phosphorus, magnesium and dry matter intake corresponded to foraging preference. Compared to trees and grasses, crops contained significantly higher amounts of digestible energy content, dry matter intake, nitrogen, phosphorus, calcium and magnesium. PCA results showed that crops differed in phosphorus and magnesium levels. The right-angle mixture models indicated that except for one tree species, all food items elephants consumed were relatively deficient in phosphorus.\nC_LIO_LIThe combined results of these analyses suggest a phosphorus deficiency in elephant diet in northern Botswana. Crops, with their high absolute phosphorus levels and dry matter intake, provide an alternative source of phosphorus to reduce the deficiency. This may explain the high intensity of crop consumption in the wet season in our study area. A potential mitigation measure against elephant crop consumption might be to provide supplementary phosphorus sources.\nC_LI

ecology↗