Unverified paper record
Optimizing Whole-Cell Biosensors for the Early Detection of Crop Infections: A Proof-of-Concept Study
Biosensors · 8 May 2025 · 10.3390/bios15050300
Abstract
This study presents a proof-of-concept evaluation of optimized whole-cell biosensors designed for the real-time detection of crop infections. Genetically engineered luminescent bacterial strains were used to detect volatile organic compounds (VOCs) emitted by crops during spoilage. Key factors investigated include bacterial uniformity, nutrient supply, and temperature effects. The results demonstrated that lower temperatures (+4 °C) yielded higher sensor sensitivity and prolonged bacterial viability. A proof-of-concept evaluation was conducted in storage-like conditions, showing effective infection detection in potatoes. These findings underscore the potential of whole-cell-based biosensors for monitoring postharvest production in cold storage environments.
Plant phenotyping relevance
作物感染状態を検出する全細胞バイオセンサーの最適化と実証が研究の中心であり、植物状態のセンシング手法に該当する。
abstractThis study presents a proof-of-concept evaluation of optimized whole-cell biosensors designed for the real-time detection of crop infections.
abstractA proof-of-concept evaluation was conducted in storage-like conditions, showing effective infection detection in potatoes.
Code and data availability
The paper's bioluminescence/phenotyping data are explicitly available only on request and not public; the supplement contains only a schematic illustration, not datasets, images, or analysis code.
No evidence-backed public reproduction asset is currently recorded.
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