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СОРНЫЕ РАСТЕНИЯ: ПРОБЛЕМЫ И РЕШЕНИЯ В СИСТЕМЕ УСТОЙЧИВОГО СЕЛЬСКОГО ХОЗЯЙСТВА

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Sustainable agriculture requires comprehensive solutions for weed management that take into account food security, economic efficiency, and environmental protection. The article analyzes both international and Uzbek experiences, as well as modern approaches to weed control: agroecological methods, biotechnology, precision agriculture, and bioherbicides. Particular attention is paid to integrated weed management, which minimizes environmental risks, reduces dependence on chemical herbicides, preserves biodiversity, and enhances the resilience of agroecosystems.

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# biotechnology# weeds# агроэкология# биотехнологии# устойчивое сельское хозяйство# sustainable agriculture# Precision Agriculture# точное земледелие# Aniq dehqonchilik# barqaror qishloq xo‘jaligi# begona o‘tlar# agroekologiya# сорные растения# интегрированная защита растений# резистентность к гербицидам# integrated pest management (IPM)# agroecology# herbicide resistance# integratsiyalashgan begona o‘tla# gerbitsidlarga chidamlilik# biotexnologiyalar

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References

1. Дехканов, А. А. (2022). Развитие резистентности сорняков к гербицидам в условиях хлопководства Узбе- кистана. Ташкент: Fan

2. Эргашев, Э. Э. (2023). Состав и распространение сорных растений в ирригируемых районах Узбекистана. Аграрная наука Узбекистана, 3(2), 34–42.

3. Bawden, R. J. (1995). The Earth only endures: The principles and practices of sustainable agriculture. Journal of Agricultural Science, 124(3), 321–334

4. Charudattan, R. (2001). Biological control of weeds by microorganisms: A comprehensive review. Journal of Crop Production, 4(1–2), 1–28

5. DiTomaso, J. M., & Healy, E. A. (2007). Weeds of California and other western states. University of California Agriculture and Natural Resources

6. FAO. (2018). The state of food and agriculture 2018: The global challenge of weeds. Food and Agriculture Organization of the United Nations

7. FAO. (2019). Integrated pest management: Guidelines and principles. Food and Agriculture Organization of the United Nations.

8. Gurevich, V., & O’Hara, P. (2020). A review of genetic engineering for weed management. Journal of Agricultural and Food Chemistry, 68(19), 5275–5285

9. Heap, I. (2014). Global perspective of herbicide-resistant w eeds. Pest Management Science, 70(11), 1699–1705

11. Korres, N. E., Norsworthy, J. K., & Steppuhn, H. (2017). Crop-weed competition for water and nutrients: A review. Weed Research, 57(1), 1–13.

12. Kropff, M. J., & van Laar, H. H. (2000). Modeling crop–weed interactions. CAB Internatio nal

13. Lal, R. (2015). Restoring soil quality to mitigate soil degradation. The Nature of Sustainable Agriculture, 1, 199–228

14. Lati, R. N., & O’Hanlon, J. P. (2021). The use of drones for weed management: A review. Weed Science, 69(1), 101–115

15. Liebman, M., & Gallandt, E. R. (1997). Many little hammers: Agroecology, weed control and the management of weed seedbanks. Weed Science, 45(4), 519–522

16. Miralles-Crespo, A., & Pérez, E. (2019). The potential of cover crops in weed management. Agronomy, 9(7), 358

17. Oerke, E. C., & Dehne, H. W. (2004). Safeguarding production—Losses in major crops and the role of crop protection. Crop Protection, 23(4), 275–285

18. Vollmer, M. P., & O’Hanlon, R. F. (2020). Integrated weed management: An ecosystem approach. Journal of Agricultural Science, 158(2), 173–186