CGG2025v16n2

Cotton Genomics and Genetics 2025, Vol.16, No.2, 57-71 http://cropscipublisher.com/index.php/cgg 69 Joji Mitto K.S., and Savant P., 2022, A research paper on auto controlling irrigation system using arduino UNO, International Journal for Research in Applied Science and Engineering Technology, 10(IV): 1207-1212. https://doi.org/10.22214/ijraset.2022.41401 Li Y., Pang H., Chen F., and Zhang F., 2009, Effect of drip irrigation under plastic mulch on aeolian sandy soil salt dynamic and cotton yield, Journal of Soil and Water Conservation, 23(4): 96-100. Li M., Xiao J., Bai Y., Du Y., Zhang F., Cheng H., and Wang H., 2020, Response mechanism of cotton growth to water and nutrients under drip irrigation with plastic mulch in Southern Xinjiang, Journal of Sensors, 2020(1): 2575162. https://doi.org/10.1155/2020/2575162 Li X., Jin M., Zhou N., Huang J., Jiang S., and Telesphore H., 2016, Evaluation of evapotranspiration and deep percolation under mulched drip irrigation in an oasis of Tarim basin, China, Journal of Hydrology, 538: 677-688. https://doi.org/10.1016/J.JHYDROL.2016.04.045 Lin M., Wang L., LüG., Gao C., Zhao Y., Li X., He L., and Sun W., 2024, Deficit irrigation effects on cotton growth cycle and preliminary optimization of irrigation strategies in arid environment, Plants, 13(10): 1403. https://doi.org/10.3390/plants13101403 Luo H., Zhang Y., and Zhang W., 2016, Effects of water stress and rewatering on photosynthesis, root activity, and yield of cotton with drip irrigation under mulch, Photosynthetica, 54(1): 65-73. https://doi.org/10.1007/s11099-015-0165-7 Nazar A., Iftikhar M., Shahbaz B., and Ishaq W., 2012, Influence of irrigation water types and stress levels on cotton fibre and yarn quality for different varieties, Pakistan Journal of Agricultural Sciences, 49(4): 597-601. Nie J., Wang N., Wang K., Li Y., Chao X., and Li J., 2021, Effect of drip irrigation with magnetised water and fertiliser on cotton nutrient absorption, In: IOP conference series: earth and environmental science, IOP Publishing, 697(1): 012009. https://doi.org/10.1088/1755-1315/697/1/012009 O'Shaughnessy S., Colaizzi P., and Bednarz C., 2023, Sensor feedback system enables automated deficit irrigation scheduling for cotton, Frontiers in Plant Science, 14: 1149424. https://doi.org/10.3389/fpls.2023.1149424 Ouda S., El-Baky H., Shreif M., and Elenin R., 2010, Simulation of the effect of irrigation water management on cotton yield at two locations in Egypt, In: Proceedings of the 14th international conference on water technology, Egypt, pp.331-343. Papastylianou P., and Argyrokastritis I., 2014, Effect of limited drip irrigation regime on yield, yield components, and fiber quality of cotton under Mediterranean conditions, Agricultural Water Management, 142: 127-134. https://doi.org/10.1016/J.AGWAT.2014.05.005 Pchelkin V., Kuziev U., Razikov N., and Soloshenkov A., 2023, Justification of the humidity regime of grey-earth soils during drip irrigation of cotton, Prirodoobustrojstvo, (4): 46-51. https://doi.org/10.26897/1997-6011-2023-4-46-51 Pendergast L., Bhattarai S., and Midmore D., 2013, Benefits of oxygation of subsurface drip-irrigation water for cotton in a Vertosol, Crop and Pasture Science, 64(12): 1171-1181. https://doi.org/10.1071/CP13348 Pettigrew W., 2004, Physiological consequences of moisture deficit stress in cotton, Crop Science, 44(4): 1265-1272. https://doi.org/10.2135/CROPSCI2004.1265 Pilon C., 2015, Physiological responses of cotton genotypes to water-deficit stress during reproductive development, Dissertation for Ph.D., University of Arkansas, Fayetteville, Supervisor: Oosterhuis D.M., pp.98-120. Rao S., Tanwar S., and Regar P., 2016, Effect of deficit irrigation, phosphorous inoculation and cycocel spray on root growth, seed cotton yield and water productivity of drip irrigated cotton in arid environment, Agricultural Water Management, 169: 14-25. https://doi.org/10.1016/J.AGWAT.2016.02.008 Rasheed A., Zhao L., Raza A., Mahmood A., Xing H., LüX., Saeed H., Alqahtani F., Hashem M., Hassan M., Gillani S., and Jie Y., 2023, Role of molecular breeding tools in enhancing the breeding of drought-resilient cotton genotypes: an updated review, Water, 15(7): 1377. https://doi.org/10.3390/w15071377 Reeves H., 2012, Effects of irrigation termination date on cotton yield and fiber quality, Thesis for M.S., Graduate Faculty of Texas Tech University, Supervisor: Ritchie G., pp.9-22. Sajid I., Tischbein B., Borgemeister C., and Flörke M., 2022, Performance evaluation and water availability of canal irrigation scheme in Punjab Pakistan, Water, 14(3): 405. https://doi.org/10.3390/w14030405 Shanmugapriya P., Latha K., Pazhanivelan S., Kumaraperumal R., Karthikeyan G., and Sudarmanian N., 2022, Spatial prediction of leaf chlorophyll content in cotton crop using drone-derived spectral indices, Current Science, 123(1473): 1473-1480. https://doi.org/10.18520/cs/v123/i12/1473-1480 Shareef M., 2018, Drought induced interactive changes in physiological and biochemical attributes of cotton (Gossypium hirsutum), International Journal of Agriculture and Biology, 20: 539-546. https://doi.org/10.17957/IJAB/15.0513

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