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Chatukuta, P.

Publications and source records attributed to Chatukuta, P..

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A Modular, AI-assisted Digitization Toolkit for Resource-Constrained Herbaria: A Case Study from Zimbabwe

Herbaria serve as invaluable spatio-temporal repositories of plant diversity information. Digitization of herbarium collections enhances the accessibility, discoverability, and long-term preservation of this important plant information, yet financial and infrastructural constraints often prevent herbaria in resource-constrained regions from digitizing their collections. Consequently, critical plant diversity data gaps remain due to underrepresentation of these collections in global biodiversity databases. Here, we describe an AI-assisted modular digitization toolkit specifically designed for herbaria operating under limited funding, developed and refined through our experience digitizing the crop wild relative (CWR) collection of the National Herbarium of Zimbabwe. The toolkit comprises three core components: (1) a portable, cost-effective photostation assembled from commodity parts, (2) a streamlined cascade workflow for systematic digital imaging, and (3) an AI-assisted data management pipeline for image quality control, label transcription, data analysis, and presentation. Compared to manual transcription and legacy optical character recognition approaches, AI-based transcription achieves lower time cost while maintaining high accuracy, and AI-driven data management delivers accessibility and reduced expenditure relative to conventional database infrastructure. The toolkit is designed to allow herbarium staff full autonomy over the digitization procedure, ensuring institutional ownership and the capacity for independent continuation beyond initial project support. By prioritizing affordability, modularity, and simplicity, this toolkit provides a replicable framework that may enable resource-constrained herbaria to locally generate high-quality scientific data for conservation and the sustainable utilization of plant genetic resources.

plant biology↗

A national crop wild relative checklist for Zimbabwe reveals edible crop wild relative diversity of regional and global importance

Crop wild relatives (CWRs) are wild plant species genetically related to cultivated crops and represent vital reservoirs of genetic diversity for food security and agricultural resilience. Zimbabwe, with its five floristic regions, hosts substantial plant biodiversity, yet a comprehensive national inventory of its CWRs has been lacking. This study presents a desk-based assessment to develop a national checklist of Zimbabwean CWRs, applying a conceptual framework that evaluates edible CWRs in terms of taxonomic composition, use categories, biogeographic status, extinction risk, breeding potential, and vernacular nomenclature. An integrated approach combining floristic, ecological, and ethnobotanical data was employed to contextualize their utility in food systems and conservation. Findings reveal that Zimbabwe harbors over 2,700 CWR taxa across more than 100 plant families and nearly 400 genera, related to approximately 260 cultivated crops. Documented uses span food, fodder, medicine, ornamental, and industrial applications, with edible uses comprising nearly 40% of taxa with recorded utility. Edible CWRs span 53 families, predominantly Orchidaceae, Poaceae, Fabaceae, Convolvulaceae, Lamiaceae, and Euphorbiaceae, and serve diverse dietary roles including vegetables, fruits, spices, herbs, cereals, oils, and beverages. Around 90% CWR are native, and one-third are regionally endemic, with the Eastern Highlands region identified as a biodiversity hotspot. Despite their significance, only 30% of edible CWRs have been assessed for extinction risk, and just 0.2% have documented confirmed or potential traits for crop improvement. Vernacular names were recorded in six local languages for 26% of edible taxa, highlighting significant cultural knowledge and integration into local food systems. This study underscores the underutilized potential of edible CWRs in plant breeding and conservation planning. Their diversity, cultural embeddedness, and adaptive traits present significant opportunities for enhancing food security and advancing sustainable development in Zimbabwe and beyond. Strategic conservation and utilization of these genetic resources are urgently needed.

plant biology↗