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Imboma, T.

Publications and source records attributed to Imboma, T..

2 recordsLinked to original sources

Ecosystem disservices are underrepresented in literature on annual crop agroecosystems

Maximising ecosystem service (ES) benefits while minimising ecosystem disservices (EDS) is essential for ecological intensification in annual crop systems. Yet ecosystem disservices are often underreported in the scientific literature, potentially biasing how agroecosystem functioning is understood. To test this, we built a predicted network of plausible links between ecosystem service providers (taxa or functional groups that can deliver ecosystem services or disservices), and the ES or EDS they may provide. We then compared this with a realised network based on systematic Scopus searches of annual crop literature. The predicted network contained 47 nodes and 103 links, whereas the realised network contained 33 nodes and 58 links, representing declines of 29.8% in nodes and 43.7% in links. Overall connectivity declined, especially for highly connected nodes, and four of the nine predicted disservice nodes were absent from the literature. ES links were more likely to be documented than EDS links, and EDS links were three times more likely to be absent. Across all links, ES were reported in 6.6 times more papers than EDS. Projected networks, which map indirect connections by linking ES directly to EDS if they share common providers, showed that these bundled interactions were strongly reduced, obscuring multifunctionality and trade-offs. This systematic underrepresentation of EDS, reflecting a cognitive bias, can inflate perceived benefits, distort the evaluation of key taxa and interactions, and create unrealistic expectations about intervention outcomes in biological crop protection. Addressing EDS alongside ES is therefore essential for more balanced assessments of crop-system management and better-informed decisions.

ecology↗

One Health assessment of antimicrobial-resistant Enterobacterales and ESKAPE pathogens in little stints (Calidris minuta) and aquatic ecosystems of the Kenyan Rift Valley

Palearctic migratory little stints (Calidris minuta) can acquire resistant bacteria from anthropized environments and spread them across different hosts and borders. This two-year cross-sectional study assessed the prevalence of multidrug-resistant (MDR) and extended-spectrum beta-lactamase (ESBL)-producing Enterobacterales and ESKAPE pathogens isolated from C. minuta and their aquatic foraging ecosystems at two Kenyan Rift Valley lakes, Bogoria (low anthropogenic activities) and Magadi (high impact). A total of 184 fecal samples from C. minuta and 48 water samples were collected during the birds arrivals (cohort 1) and departures (cohort 2). Samples were cultured, bacterial isolates were identified using MALDI-TOF MS platform and tested against 12 antimicrobials using the Kirby-Bauer disk method. Of the 294 isolates (16 genera and 33 species), Enterobacter species (31%) and Escherichia coli (17.3%) were predominant. Resistance was highest for ampicillin (50%), amoxicillin-clavulanic acid (36.4%), and tetracycline (32.7%), and lowest for meropenem (1.0%) and cefepime (3.4%). The predominant MDR phenotype was a combination of resistances to ampicillin, tetracycline, and trimethoprim-sulfamethoxazole. Enterobacter species showed the highest frequencies of MDR (8.5%) and ESBL-MDR (4.4%) phenotypes, while Acinetobacter species were the most frequent ESBL producers. Despite observing higher median resistances in isolates from Lake Magadi (7.1), C. minuta (8.0) and cohort 2 (7.1) than those from Lake Bogoria (6.7), water samples (5.9) and cohort 1 (6.5), these differences were statistically insignificant (p-values= 0.833, 0.147, 0.210). This suggests that while human activities drive AMR spread, resistant strains are pervasive even in minimal human-influenced environments. This is the first study to link C. minuta to the AMR epidemiological circuit. Our findings underscore the need to include migratory wild birds in AMR surveillance in the Kenyan Rift Valley, to implement stringent environmental stewardship measures to curb anthroponotic AMR transmissions and utilizing whole-genome sequencing to accurately trace the origin and dissemination pathways of AMR strains.

microbiology↗