Moving towards improved surveillance and earlier diagnosis of aquatic pathogens: From traditional methods to emerging technologies

Переход к улучшенному надзору и более ранней диагностике водных патогенов: от традиционных методов к новым технологиям
Amy Ellison, Jo Cable, Scott MacAulay, Peter Kille
2022-03-19

AI image diagnosis and drone surveillanceaquatic pathogen surveillanceenvironmental DNA (eDNA) diagnosticsloop-mediated isothermal amplification (LAMP)portable next generation sequencing (portable NGS)
Early and accurate diagnosis is key to mitigating the impact of infectious diseases, along with efficient surveillance. This however is particularly challenging in aquatic environments due to hidden biodiversity and physical constraints. Traditional diagnostics, such as visual diagnosis and histopathology, are still widely used, but increasingly technological advances such as portable next generation sequencing (NGS) and artificial intelligence (AI) are being tested for early diagnosis. The most straightforward methodologies, based on visual diagnosis, rely on specialist knowledge and experience but provide a foundation for surveillance. Future computational remote sensing methods, such as AI image diagnosis and drone surveillance, will ultimately reduce labour costs whilst not compromising on sensitivity, but they require capital and infrastructural investment. Molecular techniques have advanced rapidly in the last 30 years, from standard PCR through loop-mediated isothermal amplification (LAMP) to NGS approaches, providing a range of technologies that support the currently popular eDNA diagnosis. There is now vast potential for transformative change driven by developments in human diagnostics. Here we compare current surveillance and diagnostic technologies with those that could be used or developed for use in the aquatic environment, against three gold standard ideals of high sensitivity, specificity, rapid diagnosis, and cost-effectiveness.
1
AI-driven remote sensing and drone surveillance could reduce labor costs without compromising sensitivity, but require capital and infrastructure investment.
2
Comparative evaluation against ideals (high sensitivity, specificity, rapid diagnosis, cost-effectiveness) highlights vast transformative potential from applying advances in human diagnostics to aquatic pathogen surveillance.
3
Early and accurate diagnosis plus efficient surveillance are essential to mitigate aquatic infectious disease impact, but are particularly challenging in aquatic environments due to hidden biodiversity and physical constraints.
4
Emerging technologies—portable NGS, AI (image diagnosis), drone surveillance, and molecular methods like LAMP and eDNA—are being tested and offer potential for earlier, more sensitive diagnosis.
5
Traditional diagnostics (visual diagnosis, histopathology) remain widely used and provide foundational surveillance but depend on specialist knowledge and experience.

Diagnostic and surveillance technologies for aquatic pathogens in aquatic environments

Performance and suitability of methods (traditional visual/histopathology, molecular assays including PCR/LAMP/eDNA/NGS, and emerging technologies such as portable NGS, AI image diagnosis, and drone surveillance) for earlier diagnosis and improved surveillance measured by sensitivity, specificity, speed, and cost-effectiveness

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2022-03-19
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Amy Ellison
Jo Cable
Scott MacAulay
Peter Kille
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