2017Soil StudiesOpen access

The Effects of Irrigation Regimes on the Yield and Water Use of Eggplant (Solanum melongena L.)

Serhat Ayas

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Abstract

The general objective of this study was to specify the influence of deficit irrigation on yield for eggplant grown under unheated greenhouse condition. The area trials were conducted at the Agricultural Research Station of Yenişehir Vocational School of Uludag University in Bursa, Turkey during growing season of 2007. In the study, irrigation regimes consisted of full irrigation (1.00 K1 cp ) and three deficit irrigation treatments (K2 cp , K3 cp , and K4 cp corresponding to 0.75, 0.50 and 0.25 of accumulative pan evaporation). A nonirrigated treatment (K5 cp ) was also designed for control purpose. Applied irrigation water amounts were changed between 85 and 464 mm, and water consumption were varied from 170 to 472 mm. Eggplant yield, length, diameter, weight and dry matter were significantly influenced by irrigation water level. The highest yield averaging 62 t ha -1 was obtained at K1 cp . Crop yield response factor (k y ) for eggplant was found as 1.14. Water use efficiency (WUE) and irrigation water use efficiency (IWUE) for the K2 cp treatment were calculated to be 13.16 and 10.63 kg m -3 . These were the highest WUE and IWUE values. K2 application (75%) can be recommended as the most effective irrigation level for the eggplant to which drip irrigation is applied under scarce water resource and unheated greenhouse conditions.

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The general objective of this study was to specify the influence of deficit irrigation on yield for eggplant grown under unheated greenhouse condition. The area trials were conducted at the Agricultural Research Station of Yenişehir Vocational School of Uludag University in Bursa, Turkey during growing season of 2007. In the study, irrigation regimes consisted of full irrigation (1.00 K1 cp ) and three deficit irrigation treatments (K2 cp , K3 cp , and K4 cp corresponding to 0.75, 0.50 and 0.25 of accumulative pan evaporation). A nonirrigated treatment (K5 cp ) was also designed for control purpose. Applied irrigation water amounts were changed between 85 and 464 mm, and water consumption were varied from 170 to 472 mm. Eggplant yield, length, diameter, weight and dry matter were significantly influenced by irrigation water level. The highest yield averaging 62 t ha -1 was obtained at K1 cp . Crop yield response factor (k y ) for eggplant was found as 1.14. Water use efficiency (WUE) and irrigation water use efficiency (IWUE) for the K2 cp treatment were calculated to be 13.16 and 10.63 kg m -3 . These were the highest WUE and IWUE values. K2 application (75%) can be recommended as the most effective irrigation level for the eggplant to which drip irrigation is applied under scarce water resource and unheated greenhouse conditions.

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Available abstract

The general objective of this study was to specify the influence of deficit irrigation on yield for eggplant grown under unheated greenhouse condition. The area trials were conducted at the Agricultural Research Station of Yenişehir Vocational School of Uludag University in Bursa, Turkey during growing season of 2007. In the study, irrigation regimes consisted of full irrigation (1.00 K1 cp ) and three deficit irrigation treatments (K2 cp , K3 cp , and K4 cp corresponding to 0.75, 0.50 and 0.25 of accumulative pan evaporation). A nonirrigated treatment (K5 cp ) was also designed for control purpose. Applied irrigation water amounts were changed between 85 and 464 mm, and water consumption were varied from 170 to 472 mm. Eggplant yield, length, diameter, weight and dry matter were significantly influenced by irrigation water level. The highest yield averaging 62 t ha -1 was obtained at K1 cp . Crop yield response factor (k y ) for eggplant was found as 1.14. Water use efficiency (WUE) and irrigation water use efficiency (IWUE) for the K2 cp treatment were calculated to be 13.16 and 10.63 kg m -3 . These were the highest WUE and IWUE values. K2 application (75%) can be recommended as the most effective irrigation level for the eggplant to which drip irrigation is applied under scarce water resource and unheated greenhouse conditions.

Key concepts: Irrigation, Drip irrigation, Water-use efficiency, Yield (engineering), Greenhouse, Solanum, Deficit irrigation, Pan evaporation

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The Effects of Irrigation Regimes on the Yield and Water Use of Eggplant (Solanum melongena L.) — Research Paper | ScholarLens