Integrating cutting-edge technology, nature based solutions, and circular bioeconomy for upland restoration toward regenerative landscapes

Widada, Jaka and Subejo, Subejo and Widiyatno, Widiyatno and Akhda, Najmu Tsaqib and Muttaqin, Andi Syahid and Sawitri, Sawitri and Salim, Ishadiyanto and Ardiansyah, Fiqri and Satriagasa, Muhammad Chrisna and Rakino, Sunarno A. and Bangun, Natalia Permata Sari Br and Ansari, Andrianto (2025) Integrating cutting-edge technology, nature based solutions, and circular bioeconomy for upland restoration toward regenerative landscapes. Frontiers in Forests and Global Change, 8. pp. 1-7. ISSN 2624893X

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Abstract

Tropical uplands provide essential ecological functions and socio-economic benefits, but they are rapidly degrading due to deforestation and unsustainable agriculture. This leads directly to severe soil erosion and biodiversity loss. Critically, current restoration efforts are often small-scale, ecologically inefficient, and poorly integrated with local socio-economic needs, resulting in fragmented and ultimately unsustainable outcomes. Conventional reforestation efforts often fall short due to high costs, low seedling survival, and limited community involvement. This perspective presents an integrated framework for upland restoration that combines cutting-edge technology, nature-based solutions, and circular bioeconomy principles. Unmanned aerial vehicles (UAVs) or drones offer a scalable and precise method for distributing seedballs and monitoring ecological progress in challenging terrain, greatly reducing labor and time. Complementary to this, the use of arbuscular mycorrhizal fungi (AMF) improves plant establishment by enhancing nutrient uptake, water absorption, and microbial diversity, particularly in degraded soils. These innovations are unified under a circular bioeconomy model, which promotes the use of biodegradable inputs, local biomass, and species with ecological and economic value. The synergy of these elements results in a modular, adaptive, and community-based system that enhances ecological function while generating rural employment and reducing dependence on external inputs. The model is applicable across diverse restoration contexts and aligns with broader sustainability goals. Through integrating technology, biology, and circular systems thinking, this framework offer adaptive and innovative approaches to restoration for supporting global agendas such as the UN Decade on Ecosystem Restoration and the Sustainable Development Goals. Copyright © 2025 Widada, Subejo, Widiyatno, Akhda, Muttaqin, Sawitri, Salim, Ardiansyah, Satriagasa, Rakino, Bangun and Ansari.

Item Type: Article
Additional Information: Cited by: 0; All Open Access; Gold Open Access; Green Open Access
Uncontrolled Keywords: circular bioeconomy; drone; mycorrhiza; restoration; tropical; upland
Subjects: S Agriculture > SD Forestry
Divisions: Faculty of Forestry
Depositing User: Wiwit Kusuma Wijaya Wijaya
Date Deposited: 03 Sep 2026 02:46
Last Modified: 03 Sep 2026 02:46
URI: https://ir.lib.ugm.ac.id/id/eprint/28548

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