BE_2026v16n1

Bioscience Evidence 2026, Vol.16, No.1, 52-67 http://bioscipublisher.com/index.php/be 65 Hu Z., Chang C., Shen R., and Yang W., 2025, Multi-parameter orchard monitoring and control system, 2025 IEEE International Conference on Consumer Electronics - Taiwan (ICCE-Taiwan), pp. 609-610. https://doi.org/10.1109/ICCE-Taiwan66881.2025.11207799 Huang D., Liu Z., and Wang W., 2025, Construction of dwarf-dense cultivation models for high yield in bayberry and adaptability assessment of representative varieties, Tree Genetics and Molecular Breeding, 15(4): 154-160. https://doi.org/10.5376/tgmb.2025.15.0018 Iost Filho F.H., Heldens W.B., Kong Z., and De Lange E.S., 2020, Drones: Innovative technology for use in precision pest management, Journal of Economic Entomology, 113(1): 1-25. https://doi.org/10.1093/jee/toz268 Jain S., Saxena S., Minz V., Behera S.D., Harini K., Mishra S., and Nidhi N., 2023, Post harvest handling of fruit crops, International Journal of Environment and Climate Change, 13(11): 1990-1999. https://doi.org/10.9734/ijecc/2023/v13i113357 Javaid K., Qureshi S., Masoodi L., Sharma P., Fatima N., and Saleem I., 2017, Orchard designing in fruit crops, Journal of Pharmacognosy and Phytochemistry, 6(4): 1081-1091. Jiao Y., Jia H., Li X., Chai M., Jia H., Chen Z., Wang G., Chai C., Van De Weg E., and Gao Z., 2012, Development of simple sequence repeat (SSR) markers from a genome survey of Chinese bayberry (Myrica rubra), BMC Genomics, 13(1): 201. https://doi.org/10.1186/1471-2164-13-201 John M.A., Bankole I., Ajayi-Moses O., Ijila T., Jeje T., and Lalit P., 2023, Relevance of advanced plant disease detection techniques in disease and pest management for ensuring food security and their implication: A review, American Journal of Plant Sciences, 14(11): 1260-1295. https://doi.org/10.4236/ajps.2023.1411086 Kai H., Huan L., Zeyu J., Tianlun H., Zaili C., and Nan W., 2021, Bayberry maturity estimation algorithm based on multi-feature fusion, In 2021 IEEE International Conference on Artificial Intelligence and Computer Applications (ICAICA), IEEE, pp. 514-518. https://doi.org/10.1109/ICAICA52286.2021.9498084 Kulikova E.S., Rushchitskaya O.A., and Kruzhkova T.I., 2024, Analysis of the implementation of digital marketing in the agro-industrial complex, Agrarian Bulletin of the Urals, 50(5): 1107. Kumar P., Singh V., Johar V., Kumar A., and Kadlag S.S., 2022, Uses of plant growth regulators and biofertilizers in fruit crops: A review, International Journal of Environment and Climate Change, 12: 314-326. https://doi.org/10.9734/ijecc/2022/v12i1130977 Kunwar A., Bist D.R., Khatri L., Dhami R., and Joshi G.R., 2024, Optimizing post-harvest handling practices to reduce losses and enhance quality of fruits and vegetables, Food and Agri Economics Review, 2: 54-58. https://doi.org/10.26480/faer.02.2024.78.82 Li S., Zhang Q., Hua S., Xu M., Han K., Hu J., and Wang R., 2024, Estimating the light distribution within Chinese bayberry tree canopy based on a three-dimensional structural model, In International Conference on Computer Graphics, Artificial Intelligence, and Data Processing (ICCAID 2023), SPIE, 13105: 442-448. https://doi.org/10.1117/12.3026592 Li W., Hu M., Xue Y., Li Z., Zhang Y., Zheng D., Lu G., Wang J., and Zhou J., 2020, Five fungal pathogens are responsible for bayberry twig blight and fungicides were screened for disease control, Microorganisms, 8(5): 689. https://doi.org/10.3390/microorganisms8050689 Long X., Chen P., Zheng E., Meng F., Geng G., Zang Y., and Yang J., 2025, Sustainable water management in sugar beet cultivation: Balancing irrigation efficiency and crop yield, Agricultural Water Management, 319: 109791. https://doi.org/10.1016/j.agwat.2025.109791 Loupit G., Brocard L., Ollat N., and Cookson S.J., 2023, Grafting in plants: Recent discoveries and new applications, Journal of Experimental Botany, 74(8): 2433-2447. https://doi.org/10.1093/jxb/erad061 Mathieu A., Cogliastro A., and Rivest D., 2024, Drivers of tree establishment in planted windbreaks and riparian buffers: A case study of farms in southern Quebec, Canada, Geoderma Regional, 37: e00788. https://doi.org/10.1016/j.geodrs.2024.e00788 Mo J., Rashwan A.K., Osman A.I., Eletmany M.R., and Chen W., 2024, Potential of Chinese bayberry (Myrica rubra Sieb. Et Zucc.) fruit, kernel, and pomace as promising functional ingredients for the development of food products: A comprehensive review, Food and Bioprocess Technology, 17(11): 3506-3524. https://doi.org/10.1007/s11947-023-03313-9 Ortega-Farias S., Meza S.E., López-Olivari R., Araya-Alman M., and Carrasco-Benavides M., 2022, Effects of four irrigation regimes on yield, fruit quality, plant water status, and water productivity in a furrow-irrigated red raspberry orchard, Agricultural Water Management, 273: 107885. https://doi.org/10.1016/j.agwat.2022.107885 Palumbo M., Attolico G., Capozzi V., Cozzolino R., Corvino A., De Chiara M., Pace B., Pelosi S., Ricci I., Romaniello R., and Cefola M., 2022, Emerging postharvest technologies to enhance the shelf-life of fruit and vegetables: An overview, Foods, 11(23): 3925. https://doi.org/10.3390/foods11233925 Pandit M., Kumar J., Gulati S., Bhandari N., Mehta P., Katyal R., Rawat C., Mishra V., and Kaur J., 2022, Major biological control strategies for plant pathogens, Pathogens, 11(2): 273. https://doi.org/10.3390/pathogens11020273

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