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The effect of different levels of additional potassium on yield and industrial qualities of potato (Solanum tuberosum L.) in an irrigated arid region

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Abstract

Soils and irrigation waters in Saudi Arabia are naturally rich in potassium (K). In spite of this, farmers and large-scale agricultural companies usually add K fertilizers to various crops without soil and water testing and whether or not the crop requires high amount of K. The objective of these experiments was to study the response of fresh tuber yield, specific gravity, and frying quality of processed potato to different levels of additional K under farmer conditions. Two field experiments were conducted during the 2000–2001 and 2001–2002 growing seasons in Wadi Addawasir (latitude 20–21 N, longitude 45–46 E), Kingdom of Saudi Arabia. The experimental layout was a randomized complete block design with five K levels (0-100 kg K2O ha-1) and four replicates. Water and soils in this region contained more than 10 and 200 ppm K, respectively. Results indicated that there were no statistical differences (P<0.05) between the levels of K on fresh tuber yield, specific gravity, or frying quality. Similarly, K content of leaves at 45 or 60 days after emergence and of tubers at harvest was not significantly affected (P<0.05) by K rates. Potassium content in leaves was above optimum level. Results of this study indicated that current application rates of K are higher than the potato crop requirement for optimum yield obtained in this region. Results also indicated that farmers’ basic application of 215 kg K2O ha-1 along with soil native K and irrigation water K were sufficient to produce economic yield and high-quality potatoes.

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Literature Cited

  • Chapman KSR, LA Sparrow, PR Hardman, DN Wright, and JRA Thorp. 1992. Potassium nutrition of Kennebec and Russet Burbank potatoes in Tasmania: Effect of soil and fertilizer potassium on yield, petiole and tuber potassium concentrations, and tuber quality. Australian J Exp Agric 32:521–527.

    Article  CAS  Google Scholar 

  • Davenport JR, and EM Bentley. 2001. Does potassium fertilizer form, source, and time of application influence potato yield and quality in Columbia basin? Am J Potato Res 78:311–318.

    Article  Google Scholar 

  • Eastwood T, and J Watts. 1956. The effect of potash fertilization upon potato chipping quality. III. Chip color. Am Potato J 33: 255–257.

    Google Scholar 

  • Edgar AD. 1951. Determining the specific gravity of individual potatoes. Am Potato J 28:729–731.

    Article  Google Scholar 

  • Errebhi M, CJ Rosen, SC Gupta, and DE Birong. 1998. Potato yield response and nitrate leaching as influenced by nitrogen management. Agron J 90:10–15.

    Article  Google Scholar 

  • Gee GW, and JW Bauder. 1986. Particle-size analysis.In A Hute (ed), Methods of Soil Analysis. Part 1. 2nd ed. Agron Monogr 9. ASA and SSSA, Madison, WI. pp. 383–409.

    Google Scholar 

  • Greenberg AE, LS Clesceri, and AD Eaton. 1992. Standard Methods for the Examination of Water and Wastewater. 18th ed. ALPHA, AWWA, and WEF, Washington, DC.

    Google Scholar 

  • Grewal JS, and SN Singh. 1980. Effect of potassium nutrition on frost damage and yield of potato plants on alluvial soils of the Punjab (India). Plant Soil 57:105–110.

    Article  CAS  Google Scholar 

  • James DW, WH Weaver, and RL Reeder. 1968. Soil test index of plant-available potassium and the effects of cropping and fertilization in central Washington irrigated soils. Washington Agric Exp Station Bull 697.

  • Kunkle R, and N Holstad. 1972. Potato chip color, specific gravity and fertilization of potatoes with N-P-K. Am Potato J 49:43–62

    Google Scholar 

  • Lal B, and KB Singh. 1983. Effect of potassium on the quality of potato (Solanum tuberosum L.). Agric Sci Digest 3:30–33.

    Google Scholar 

  • Maier NA, AP Dahlenburg, and CMJ Williams. 1994. Effect of nitrogen, phosphorus, and potassium on yield and petiolar concentration of potato (Solanum tuberosum L.) cvv. Kennebec and Atlantic. Aust J Exp Agric 34:825–834.

    Article  Google Scholar 

  • McDole RE. 1978. Potassium fertilizer trials with potatoes on coarse-textured soils in southern-eastern Idaho. Am Potato J 55: 161–170.

    Article  Google Scholar 

  • Panique E, KA Kelling, EE Schulte, DE Hero, WR Stevenson, and RV James. 1997. Potassium rate and source effects on potato yield, quality, and disease interaction. Am Potato J 74:379–398.

    Article  Google Scholar 

  • Rosen CJ. 1991. Potato fertilization on irrigated soils. University of Minnesota Extension Service, Publication no. AG-FO-3425-B.

  • Rhue RD, DR Hensel, and G Kidder. 1986. Effect of K fertilization on yield and leaf nutrient concentrations of potatoes grown on a sandy soil. Am Potato J 63:665–681.

    Article  Google Scholar 

  • Ryan J, G Estefan, and A Rashid. 2001. Soil and Plant Analysis Laboratory Manual. 2nd ed. ICARDA and NARC, Aleppo, Syria.

    Google Scholar 

  • Satyanarayana V, and PN Arora. 1985. Effect of nitrogen and potassium on yield and yield attributes of potato (var. Kufri Bahar). Indian J Agron 30:292–295.

    Google Scholar 

  • Schippers PA. 1968. The influence of rates of nitrogen and potassium application on yield and specific gravity of four potato varieties. European Potato J 11:23–33.

    Article  Google Scholar 

  • Sharma UC, and BR Arora. 1989. Critical nutrient ranges for potassium in potato leaves and petioles. J Hort Sci 64:47–51.

    CAS  Google Scholar 

  • Sparks DL. 1996. Methods of soil analysis. Part 3. Chemical methods. SSSA Book Ser. 5, SSSA and ASA, Madison, WI.

    Google Scholar 

  • Westermann DT, TA Tindall, DW James, and RL Hurst. 1994a Nitrogen and potassium fertilization of potatoes: Yield and specific gravity. Am Potato J 71:417–431.

    Article  CAS  Google Scholar 

  • Westermann DT, TA Tindall, DW James, and RL Hurst. 1994b. Nitrogen and potassium fertilization of potatoes: Sugars and starch. Am Potato J 71:433–453.

    Article  CAS  Google Scholar 

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Correspondence to A. H. AbdelGadir.

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AbdelGadir, A.H., Errebhi, M.A., Al-Sarhan, H.M. et al. The effect of different levels of additional potassium on yield and industrial qualities of potato (Solanum tuberosum L.) in an irrigated arid region. Am. J. Pot Res 80, 219–222 (2003). https://doi.org/10.1007/BF02855694

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