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Duygu T. Yildirim, A. Baki Yildirim, D. Martin, T. Beccari, Oscar Vicente, I. Radecka, F. Tchuenbou-Magaia, Robert S Marks, Ratnesh Lal, S. Prakash, A. Mechler, M. Milkov, S. Georgieva, I. Iliev, R. Kaneva, Nuriye Gokce, G. Yaneva, N. Agova, Nikoleta Ivanova, I. O. Sahin, Mariya Kiryakova Tsvetkova, I. Iliev, M. Salzet, Kisung Ko, M. Maffia, M. Bertelli, Isabelle Fournier, L. Pojskić, Qun Sun, Lembit Nei, Reynir Armgrisson, G. Henehan, D. Matulis, D. Plaseska‐Karanfilska, K. Santacruz-Gomez, I. Belo, H. Çobanoğulları, M. C. Ergoren, S. G. Temel, A. Zajakina, O. Greiner-Tollersrud, D. Tăpăloagă, A. Janecke, E. Ateş, Ivana Márová, B. Spedicato, P. Žnidaršič-Plazl, I. Plazl, A. Bacu, A. Moulas, A. Kilchevsky, P. Bartolini, M. Sait Dundar, Anita Slavica, Francisco Fuentes, José Carlos Lorenzo Feijoo, Andres Romero, H. Moussa, Amin Hejazi, A. Bhatti, B. Berisha, A. Kokhmetova, N. Zhelev, Juraj Krajčovič, D. Vešelényiová, Irem Kalay, Viktor A. Nedović, A. Salmina, Mark Nujiten, V.O. Revin, Luis Izquierdo López, H. Akalın, Munis Dundar
0 1. 4. 2026.

Integrated Biotechnological Strategies for Planetary Health and Ecosystem Restoration

Abstract The escalation of ecological degradation, marked by climatic instability, precipitous biodiversity loss, and systemic chemical infiltration, necessitates a shift toward integrated biotechnological intervention. This analysis considers how the trajectory of diverse advanced methodologies, including environmental DNA (eDNA) surveillance, CRISPR-based genetic restitution, and synthetic biology-driven bioremediation, might be synthesized into a unified Planetary Health Framework. By exploring the convergence of high-precision genomic engineering, AI-augmented bioinformatic modeling, and the tenets of a circular bio-economy, we examine the capacity of technological intervention to ameliorate ecological stressors and restore critical ecosystems. Moving beyond the constraints of conventional conservation, this discourse explores frontier solutions in climate-resilient agrotechnology, photo-driven biomanufacturing, and technologically integrated urban ecology, highlighting the criticality of microbiome modulation and comprehensive genomic repositories in stabilizing the biosphere. By reconciling molecular-level precision with macro-scale systems ecology, this framework points to a trajectory for sustainable development where technological scalability is constrained by, yet optimized for, planetary boundaries. Ultimately, this review addresses the imperatives of ethical oversight and highlights the multi-sectoral governance architectures required for the responsible global deployment of these “living technologies.”

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