Preliminary Assessment of Aphid Risk Using Smart Agriculture Station Data in a Nectarine Orchard: A Case Study from Nurdağı/Gedikli, Türkiye
Smart agriculture stations provide continuous agroclimatic data that can support pest risk assessment and early-warning decision-making in crop protection. This short communication evaluates model-derived aphid risk patterns using smart agriculture station data collected from a nectarine orchard in Nurdağı/Gedikli, Gaziantep Province, Türkiye. The analysis covered the continuous observation period from 13 September 2023 to 3 January 2024, comprising 2,680 consecutive hourly records. Model-derived aphid risk values were classified into low, moderate, high, and very high categories for descriptive assessment. Mean risk was 51.85%, with very high-risk conditions accounting for 47.46% and low-risk conditions for 43.58% of records. The longest continuous very-high-risk period occurred from 25 September to 17 November 2023, and October represented the peak risk period. Aphid risk showed a positive relationship with air temperature and negative relationships with relative humidity and leaf wetness. These results indicate that station-based model outputs may help identify periods requiring intensified field monitoring and support site-specific pest management. However, the study did not include direct aphid population observations, species identification, or crop damage assessment. Therefore, the results represent a preliminary assessment of model-derived environmental risk rather than direct evidence of aphid abundance or infestation. Multi-season and multi-site field validation is required to assess reliability and practical applicability.
Authors
- Ekrem ASLAN (ORCID: https://orcid.org/0000-0001-8829-7301)
Institutions
- Cukurova University (TR)
Publication Details
- Journal
- Journal of Agricultural Production
- Published
- 2026-09-30
- DOI
- https://doi.org/10.56430/japro.1985629
- Primary Topic
- Insect-Plant Interactions and Control
- Type
- article
- Field-Weighted Citation Impact
- 0.00