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Research Articles

Vol. 12 No. sp4 (2025): Recent Advances in Agriculture by Young Minds - III

Morphological and yield performance of potato (Solanum tuberosum L.) varieties under organic farming in the North Eastern Hill Region of India

DOI
https://doi.org/10.14719/pst.10131
Submitted
19 June 2025
Published
16-12-2025

Abstract

Raising awareness about the benefits of organic food has spurred consumer demand and organic farming practices. However, organic farming often criticized for its lower productivity than conventional farming. Poorly adapted varieties are partially responsible for the lower yields in organic farming. Therefore, it's crucial to identify suitable varieties for organic farming to minimize the yield gap between organic and conventional farming practices. To address this, a field experiment was conducted at Indian Council of Agricultural Research (ICAR)-Central Potato
Research Institute (CPRI), Regional Station, Shillong, during the kharif seasons of 2020 to 2022. The study evaluated the performance of six potato varieties viz., Kufri Jyoti, Kufri Megha, Kufri Giriraj, Kufri Kanchan, Kufri Himalini and Kufri Girdhari under organic farming. The findings indicated that Kufri Himalini is suitable for organic cultivation, exhibiting the highest total tuber yield (14.44 t ha-1) combined with marketable tuber yield (10.89 t ha-1). This variety has moderate resistant to late blight and medium tuber dormancy. Storage behaviour varied among the varieties.
Tubers of Kufri Girdhari and Kufri Kanchan were exhibited excellent keeping quality with long tuber dormancy and minimum storage losses, indicating their suitability for low-cost country storage for six months.

References

  1. 1. Sanwal SK, Yadav RK, Singh PK. Effect of types of organic manure on growth, yield and quality parameters of ginger (Zingiber officinale). Indian J Agric Res. 2007;77:67–72.
  2. 2. Bujarbaruah KM. Organic farming: opportunities and challenges in northeastern region of India. In: Souvenir of international conference on organic food; ICAR (RC) for NEH region, Umiam, Meghalaya; 2004. p. 13–24.
  3. 3. Das A, Ramakrishna GI, Layek J, Babu S, Ngangom B, Suiting D. Package of practices of Meghalaya. In: Ravisankar N, Panwar AS, Kamta P, Vipin K, Bhaskar S, editors. Organic farming crop production guide. Modipuram, UP, India: ICAR IIFSR; 2017. p. 226–44.
  4. 4. FAOSTAT. Food balance sheet. 2016. Available from: http://www.fao.org/faostat/en/#data/FBS
  5. 5. Singh B, Dutt S. Seventy-five years of potato in India: an inspiring success story. Indian Farming. 2024;74(05):3–8.
  6. 6. Sailo N, Janani P, Challam C, Lyngdoh YA. Potato production technologies for northeastern region. Indian Farming. 2024;74(05):20–2.
  7. 7. Nath D, Shil S, Dey D, Chakraborty A. Bringing prosperity to potato growers through true potato seed (TPS) cultivation: a case of Khowai district of Tripura. Innovative Farming. 2017;2(1):22–5.
  8. 8. Koch M, Naumann M, Pawelzik E, Gransee A, Thiel H. The importance of nutrient management for potato production part I: plant nutrition and yield. Potato Res. 2020;63:97–119. https://doi.org/10.1007/s11540-019-09431-2
  9. 9. Murphy MK, Campbell KG, Kimberly, Lyon SR, Stephen SS. Evidence of varietal adaptation to organic farming systems. Field Crops Res. 2007;102(3):172–7. https://doi.org/10.1016/j.fcr.2007.03.011
  10. 10. Anastasi U, Corinzia SA, Cosentino SL, Scordia D. Performances of durum wheat varieties under conventional and no-chemical input management systems in a semiarid Mediterranean environment. Agronomy. 2019;9(12):788. https://doi.org/10.3390/agronomy9120788
  11. 11. van Bueren ETL, Struik PC, Jacobsen E. Ecological concepts in organic farming and their consequences for an organic crop ideotype. NJAS Wageningen J Life Sci. 2002;50:1–26. https://doi.org/10.1016/S1573-5214(02)80001-X
  12. 12. Mankar P, Rawal S, Das P, Janani P, Dua VK, SK Chakrabarti. Package of practice for organic potato cultivation in hills. Shimla, HP: ICAR-Central Potato Research Institute; 2020. p. 36.
  13. 13. Luthra SK, Gopal J, Pandey SK. Selection of superior parents and crosses in potato for developing cultivars suitable for early planting in UP. J Indian Potato Assoc. 2003;30(1–2):1–2.
  14. 14. Panse VG, Sukhatme PV. Statistical methods for agricultural workers. New Delhi: Indian Council of Agricultural Research; 1967. p. 1–381.
  15. 15. Sadawarti M, Patel K, Samadhiya RK, Gupta PK, Singh SP, Gupta VK, et al. Evaluation of table and processing varieties of potato (Solanum tuberosum L) for North-Central India. Int J Chem Stud. 2018;6(4):823–33.
  16. 16. Das S, Mitra B, Luthra SK, Saha A, Hassan MM, Hossain A. Study on morphological, physiological characteristics and yields of twenty one potato (Solanum tuberosum L) cultivars grown in Eastern Sub-Himalayan plains of India. Agronomy. 2021;11:335. https://doi.org/10.3390/agronomy11020335
  17. 17. Sruthi V, Suchitra V, Laxmi Narayana D, Bhagyashali H. Evaluation of potato (Solanum tuberosum L) varieties for growth and yield attributes under Southern Telangana agroclimatic conditions. Pharma Innov J. 2021;10(12):1459–62.
  18. 18. Shankar D, Markam PS, Siwana H, Ganjeer PK, Kujur A. Evaluation of potato varieties/genotypes in Kanker district of Chhattisgarh. Pharma Innov J. 2022;SP-11(9):3206–9.
  19. 19. Asnake D, Alemayehu M, Asredie S. Growth and tuber yield responses of potato (Solanum tuberosum L) varieties to seed tuber size in northwest highlands of Ethiopia. Heliyon. 2023;9(3):e14586. https://doi.org/10.1016/j.heliyon.2023.e14586
  20. 20. Eaton TE, Azad AK, Kabir H, Siddiq AB. Evaluation of six modern varieties of potatoes for yield, plant growth parameters and resistance to insects and diseases. Agric Sci. 2017;8(11):1315–26. https://doi.org/10.4236/as.2017.811095
  21. 21. Malik NJ. Potatoes in Pakistan: a handbook. Islamabad, Pakistan: Pakistan agricultural research council, Pak Swiss potato development Project; 1995. p. 80–5.
  22. 22. Getie AT, Madebo MP, Abrar SA. Evaluation of growth, yield and quality of potato (Solanum tuberosum L) varieties at Bule, Southern Ethiopia. African J Plant Sci. 2018;12:277–83.
  23. 23. Iritani WM, Thornton R, Welter L, Leavy O. Relationship of seed size, spacing, stem numbers to yield of Russet Burbank potatoes. Am J Potato Res. 1972;40:463–79. https://doi.org/10.1007/BF02895746
  24. 24. Knowles N, Knowles L. Manipulating stem number, tuber set and yield relationships for northern- and southern-grown potato seed lots. Crop Sci. 2006;46:284–96.
  25. 25. Ierna A, Parisi B. Crop growth and tuber yield of “early” potato crop under organic and conventional farming. Sci Hortic. 2014;165:260–5. https://doi.org/10.1016/j.scienta.2013.11.032
  26. 26. Scavo A, Mauromicale G, Ierna A. Genotype × environment interactions of potato tuber quality characteristics by AMMI and GGE biplot analysis. Sci Hortic. 2023;310:111750. https://doi.org/10.1016/j.scienta.2022.111750
  27. 27. Tessema L, Mohammed W, Abebe T. Evaluation of potato (Solanum tuberosum L) varieties for yield and some agronomic traits. Open Agric. 2020;5:63–74. https://doi.org/10.1515/opag-2020-0006
  28. 28. Das SK, Banerjee H, Chakraborty A, Sarkar A. Production potential of newly released potato (Solanum tuberosum L) cultivars under different nitrogen levels. SAARC J Agric. 2015;13(2):121–30. https://doi.org/10.3329/sja.v13i2.26573
  29. 29. Gebreselassie H, Mohamed W, Shimelis B. Evaluation of potato (Solanum tuberosum L) varieties for yield and yield components in eastern Ethiopia. J Biol Agric Healthc. 2016;6(5):146–54.
  30. 30. Giri RA, Bhusal Y, Upadhyay KP, Chalise B, Subedi G, Thapa B, Poudel B. Evaluation of potato genotypes under high hill conditions of Nepal. Asian J Agric Hortic Res. 2023;10(4):1–8. https://doi.org/10.9734/ajahr/2023/v10i4239
  31. 31. Thapa S, Rokaya PR, Parajuli S, Pokhrel B, Aryal Y. Evaluation of performance of different varieties of potato (Solanum tuberosum L.) in Bajhang, Nepal. Int J Appl Biol. 2022;6(2):115-25. https://doi.org/10.20956/ijab.v6i2.21224
  32. 32. Islam J, Choi SP, Azad OK, Kim JW, Lim YS. Evaluation of tuber yield and marketable quality of newly developed thirty-two potato varieties grown in three different ecological zones in South Korea. Agriculture. 2020;10(8):327. https://doi.org/10.3390/agriculture10080327
  33. 33. Hira Moni M, Mannan A, Yamin Kabir M. Evaluation of potato varieties in the south-western coastal region of Bangladesh. Khulna Univ Stud. 2024;21(2):39-47. https://doi.org/10.53808/KUS.2024.21.02.1222-ls
  34. 34. Sharma AK, Sarjeet S. Effect of seed tuber desprouting on potato production in Kufri Giriraj. Potato J. 2009;36(1-2):51-60.
  35. 35. Patel RN, Patel NH, Pandey SK, Kanbi VH, Patel CK. Yield performance and shelf life of some advanced potato hybrids in Gujarat. Potato J. 2006;33(3-4):149-50.
  36. 36. Pande PC, Singh SV, Pandey SK, Singh B. Dormancy sprouting behaviour and weight loss in Indian potato (Solanum tuberosum L.) varieties. Indian J Agric Sci. 2007;77(11):715-20.
  37. 37. Paul V, Ezekiel R. Relationship between tuber size and storage behaviour in two potato cultivars during on-farm storage. J Indian Potato Assoc. 2003;30:161-2.
  38. 38. Gupta VK, Bipul KD, Pandey SK. Performance of local potato varieties in Meghalaya hills. Potato J. 2009;36(1-2):65-7.
  39. 39. Das M, Ezekiel R, Pandey SK, Singh AN. Storage behaviour of potato varieties and advanced cultures at room temperature in Bihar. Potato J. 2004;31(1/2):71-5.
  40. 40. Gupta VK, Luthra SK, Singh BP. Storage behaviour and cooking quality of Indian potato varieties. J Food Sci Technol. 2015;52(8):4863-73. https://doi.org/10.1007/s13197-014-1608-z
  41. 41. Sudha R, Venkatasalam EP, Divya K, Bairwa A, Mhatre PH. Storage behavior of potato cultivars under ambient conditions in the Nilgiris. J Hortic Sci. 2017;12(2):186-92.
  42. 42. Gupta VK, Luthra SK. Storability and organoleptic performance of indigenous and exotic potato collections. Potato J. 2020;47(1):80-91.
  43. 43. Jaiswal RC, Singh AP, Pathak SP, Srivastava RK. Evaluation of potato hybrids/varieties for their storage behaviour. J Indian Potato Assoc. 2003;30:169-70.
  44. 44. van Es A, Hartmans KJ. Dormancy, sprouting and sprout inhibition. In: Rastovski A, van Es A, editors. Storage of potatoes: post-harvest behaviour, store design, storage, practice, handling. Wageningen, the Netherlands: Pudoc; 1987. p. 114-32.
  45. 45. Ezekiel R, Singh B, Sharma ML, Garg ID, Khurana SMP. Relationship between weight loss and periderm thickness in potatoes stored at different temperatures. Potato J. 2004;31:135-40.
  46. 46. Ezeocha CV, Ironkwe AG. Effect of storage methods and period on the physiological and nutrient components of livingstone potato (Plectranthus esculentus) in Abia State, Nigeria. Open Agric. 2017;2:213-9. https://doi.org/10.1515/opag-2017-0022
  47. 47. Bhutani RD, Khurana SC. Storage behaviour of potato genotypes under ambient conditions. Potato J. 2005;32(3-4):209-10.
  48. 48. Beukema HP, van der Zaag DE. Introduction to potato production. Wageningen, the Netherlands: Pudoc; 1990. p. 208.
  49. 49. Paul V, Ezekiel R, Pandey R. Sprout suppression on potato: need to look beyond CIPC for more effective and safer alternatives. J Food Sci Technol. 2016;53(1):1-18. https://doi.org/10.1007/s13197-015-1980-3
  50. 50. Pande PC, Luthra S. Performance and storability of advanced potato hybrids in West-central plains. J Indian Potato Assoc. 2003;30(1-2):21-2.

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