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Farklı sulama suyu uygulamalarının kudret narı (Momordica charantia L.) bitkisinde çimlenme ve fide gelişimi ile mineral alımına etkileri

Yıl 2025, Cilt: 13 Sayı: 2, 136 - 149, 29.12.2025
https://doi.org/10.33409/tbbbd.1800321

Öz

Bu çalışma, kudret narı (Momordica charantia L.) bitkisinde çimlenme ve sürgün gelişimi ile mineral alımı üzerine farklı düzeylerde çözünmüş oksijen ve tuz içeren sulama uygulamalarının etkilerini değerlendirmeyi amaçlamıştır. Deney; kontrol grubu olarak çeşme suyu (N), farklı tuzluluk düzeyleri (düşük: T1, orta: T2, yüksek: T3), farklı çözünmüş oksijen düzeyleri (düşük: O1, orta: O2, yüksek: O3) ve bir kombinasyon (yüksek: T3, yüksek: O3) oluşan gruplarda yürütülmüştür. Deney kapsamında; bitki fizyolojisini yansıtan büyüme parametreleri olarak fide ve kök uzunlukları, yaprak alanı, yaprak çevresi, yaprak uzunluğu ve yaprak genişliği gibi morfolojik ölçümler ile birlikte, bitki biyokütlesini belirlemek amacıyla kök ve yaprakların yaş ve kuru ağırlıkları ölçülmüştür. Ayrıca, toprak, kök ve yaprakların Fe, Cu, Mn, Zn gibi mineral içerikleri analiz edilmiştir. Elde edilen tüm veriler, istatistiksel olarak ANOVA ve Tukey testi kullanılarak değerlendirilmiştir. Bulgulara göre, orta düzey çözünmüş oksijen (O2) uygulaması, kök ve yaprak gelişimi ile mineral birikimi açısından en başarılı sonucu vermiştir (p <0.05). Buna karşılık, yüksek tuzluluk (T3) ve T3O3 grupları, gelişimini belirgin şekilde baskılamış, bazı bitkilerde yaprak gelişimi gözlenmemiştir. Toprak ve bitki analizleri, sulamanın sadece su temini değil, mineral dengesi ve alınabilirliği üzerinde de önemli etkililer oluşturduğunu ortaya koymuştur. Sonuç olarak, kudret narı fideleri için en uygun sulama koşulunun orta düzey çözünmüş oksijen içeren su olduğu, yüksek tuzluluk veya yüksek oksijen seviyelerinin ise bitki gelişimini olumsuz yönde etkilediği belirlenmiştir. Elde edilen bulgular, tıbbi bitki yetiştiriciliğinde sulama suyu kalitesinin (özellikle oksijen ve tuz içeriğinin) kritik öneme sahip olduğunu göstermektedir. Bulguların farklı çevresel koşullarda tekrarlanması önerilmektedir.

Etik Beyan

Çıkar çatışması bulunmamaktadır

Destekleyen Kurum

bulunmamaktadır

Kaynakça

  • Ali A, Ferdosi FH, Sarwar M, Anjum S, Mushtaq Z, Liaquat M, Abbas MT, Anees M, Tariq MR, Ashraf MI, Alasmari A, Mondol MSA, Abdi G, 2025. Inducing salt stress tolerance in bitter gourd (Momordica charantia) through seed treatment with chitosan. Front. Plant Sci, 15, 1525561. https://doi.org/10.3389/fpls.2024.1525561
  • Angon PB, Mollah MR, Rahman MM, 2022. How do plants respond to combined drought and salinity stress? Front. Plant Sci, 13, 965390. https://doi.org/10.3389/fpls.2022.965390
  • Ashraf M, Harris PJC, 2013. Photosynthesis under stressful environments: An overview. Photosynthetica, 51(2), 163–190. https://doi.org/10.1007/s11099-013-0021-6
  • Atta K, Mondal S, Gorai S, Singh AP, Kumari A, Ghosh T, Roy A, Hembram S, Gaikwad DJ, Mondal S, Bhattacharya S, Jha UC, Jespersen D, 2023. Impacts of salinity stress on crop plants: improving salt tolerance through genetic and molecular dissection. Front. Plant Sci., 14, 1241736. https://doi.org /10.3389/fpls.2023.1241736
  • Barba-Espín G, Diaz-Vivancos P, Job D, Belghazi M, Job C, Hernández JA, 2011. Understanding the role of H2O2 during pea seed germination: a combined proteomic and hormone profiling approach. Plant Cell Environ, 34(11), 1907–1919. https://doi.org/10.1111/j.1365-3040.2011.02386.x
  • Fiorani F, Schurr U, 2013. Future scenarios for plant phenotyping. Annu. Rev. Plant Biol., 64, 267–291. https://doi.org/10.1146/annurev-arplant-050312-120137
  • Fonseka HH, Wickramasinghe IP, Bandara DC, 2011. Studies on deterioration and germination of bitter gourd seed (Momordica charantia L.) during storage. Acta Hortic, 898, 13–18. https://doi.org/10.17660/ActaHortic.2011.898.2
  • Gill SS, Tuteja N, 2010. Reactive oxygen species and antioxidant machinery in abiotic stress tolerance in crop plants. Plant Physiol. Biochem, 48(12), 909–930. https://doi.org/10.1016/j.plaphy.2010.08.016
  • Hasanuzzaman M, Bhuyan MHMB, Zulfiqar F, Raza A, Mohsin SM, Mahmud JA, Fujita M, Fotopoulos V, 2020. Reactive oxygen species and antioxidant defense in plants under abiotic stress: Revisiting the crucial role of a universal defense regulator. Antioxidants, 9(8), 681. https://doi.org/10.3390/antiox9080681
  • Jisha KC, Vijayakumari K, Puthur JT, 2013. Seed priming for abiotic stress tolerance: An overview. Acta Physiol. Plant., 35(5), 1381–1396. https://doi.org/10.1007/s11738-012-1186-5
  • Joseph B, Jini D, 2013. Antidiabetic effects of Momordica charantia (bitter melon) and its medicinal potency. Asian Pac. J. Trop. Dis., 3(2), 93–102. https://doi.org/10.1016/S2222-1808(13)60052-3
  • Kabata-Pendias A, 2011. Trace elements in soils and plants (4th ed.). CRC Press. https://doi.org/10.1201/b10158 Khan MA, Asaf S, Khan AL, Jan R, Kang SM, Lee IJ, 2022. Abiotic stress responses in plants: A review on seed germination and early seedling growth under stress conditions. Plants, 11(15), 1932. https://doi.org/10.3390/plants11151932
  • López-Méndez AG, Rodríguez-Pérez JE, Mascorro-Gallardo JO, Sahagún-Castellanos J, Lobato-Ortiz R, 2024. Sodium chloride tolerance during germination and seedling stages of tomato (Solanum lycopersicum L.) lines native to Mexico. Horticulturae, 10(5), 466. https://doi.org/10.3390/horticulturae10050466
  • Marschner P, 2012. Marschner’s Mineral Nutrition of Higher Plants, 3rd Edition, Academic Press. https://doi.org/ 10.1016/C2009-0-63043-9
  • Naïtchédé LHS, Nyende AB, Runo S, Borlay AJ, 2023. Plant regeneration from embryogenic callus-derived from immature leaves of Momordica charantia L. Heliyon, 9(11), e22122. https://doi.org/10.1016/j.heliyon.2023.e22122
  • Özsan Kılıç T, Onus AN, 2023. A study on bitter gourd (Momordica charantia L.) callogenesis optimization based on hormone balance and explant types. Int. J. Agric. Environ. Food Sci., 7(3): 633–638. https://doi.org/10.31015/jaefs.2023.3.17
  • Paul V, Pandey R, Solaiyappan M, Mukherjee P, 2024. Sample collection and digestion methods for elemental analysis of plant. https://doi.org/10.13140/RG.2.2.35285.64481
  • Pongkitwitoon B, 2019. In vitro cultures of medicinal plant Momordica charantia L. and their applications. Isan J. Pharm. Sci., 15(1): 58-68. https://doi.org/10.14456/ijps.2019.4
  • Taiz L, Zeiger E, 2010. Plant Physiol., 5th Edition. Sinauer Associates.
  • Tavakkoli E, Fatehi F, Rengasamy P, McDonald GK, 2010. Additive effects of Na⁺ and Cl⁻ ions on growth, physiological processes, and yield of faba bean (Vicia faba L.) under salinity stress. J. Exp. Bot., 61(15), 4449–4459. https://doi.org/10.1093/jxb/erq251
  • Temizel KE, Odabaş MS, Şenyer N, Kayhan G, Bajwa S, Çalışkan O, Ergun E, 2014. Comparision of some models for estimation of reflectance of hypericum leaves under stress conditions. Cent. Eur. J. Biol., 9(12): 1226-1234.
  • Thomas P, 2025. Continuous injection of hydrogen peroxide in drip irrigation. Agronomy, 15(2), 385. https://doi.org/10.3390/agronomy1502038

Effects of different irrigation water applications on germination, seedling development and mineral uptake in bitter melon (Momordica charantia L.)

Yıl 2025, Cilt: 13 Sayı: 2, 136 - 149, 29.12.2025
https://doi.org/10.33409/tbbbd.1800321

Öz

This study aimed to evaluate the effects of different levels of dissolved oxygen (DO) and salinity in irrigation water on the germination, shoot development, and mineral uptake in bitter melon (Momordica charantia L.). The experiment was conducted across various groups: tap water as the Control (N), different salinity levels (low: T1, moderate: T2, high: T3), different dissolved oxygen levels (low: O1, moderate: O2, high: O3), and a combination (T3O3) of high salinity and high dissolved oxygen. Growth parameters reflecting plant physiology were measured, including shoot and root lengths, and leaf morphology (area, perimeter, length, and width). Additionally, plant biomass was determined by measuring the fresh and dry weights of roots and leaves. Furthermore, the mineral contents (Fe, Cu, Mn, and Zn) in the soil, roots, and leaves were analyzed. All obtained data were statistically evaluated using ANOVA and Tukey tests. The findings revealed that the moderate dissolved oxygen (O2) treatment yielded the most successful results in terms of root and leaf development and mineral accumulation (p < 0.05). Conversely, the high salinity (T3) and the T3O3 combination groups significantly suppressed plant development, with leaf development being absent in some plants. Soil and plant analyses demonstrated that irrigation is not merely a means of water supply but also significantly influences mineral balance and bioavailability. In conclusion, the optimal irrigation condition for bitter melon seedlings was determined to be water containing moderate dissolved oxygen, while high salinity or high DO levels negatively affected plant development. These findings indicate that the quality of irrigation water (especially its oxygen and salt content) is of critical importance in medicinal plant cultivation. Replication of these findings under different environmental conditions is recommended.

Etik Beyan

No riquired

Destekleyen Kurum

any

Kaynakça

  • Ali A, Ferdosi FH, Sarwar M, Anjum S, Mushtaq Z, Liaquat M, Abbas MT, Anees M, Tariq MR, Ashraf MI, Alasmari A, Mondol MSA, Abdi G, 2025. Inducing salt stress tolerance in bitter gourd (Momordica charantia) through seed treatment with chitosan. Front. Plant Sci, 15, 1525561. https://doi.org/10.3389/fpls.2024.1525561
  • Angon PB, Mollah MR, Rahman MM, 2022. How do plants respond to combined drought and salinity stress? Front. Plant Sci, 13, 965390. https://doi.org/10.3389/fpls.2022.965390
  • Ashraf M, Harris PJC, 2013. Photosynthesis under stressful environments: An overview. Photosynthetica, 51(2), 163–190. https://doi.org/10.1007/s11099-013-0021-6
  • Atta K, Mondal S, Gorai S, Singh AP, Kumari A, Ghosh T, Roy A, Hembram S, Gaikwad DJ, Mondal S, Bhattacharya S, Jha UC, Jespersen D, 2023. Impacts of salinity stress on crop plants: improving salt tolerance through genetic and molecular dissection. Front. Plant Sci., 14, 1241736. https://doi.org /10.3389/fpls.2023.1241736
  • Barba-Espín G, Diaz-Vivancos P, Job D, Belghazi M, Job C, Hernández JA, 2011. Understanding the role of H2O2 during pea seed germination: a combined proteomic and hormone profiling approach. Plant Cell Environ, 34(11), 1907–1919. https://doi.org/10.1111/j.1365-3040.2011.02386.x
  • Fiorani F, Schurr U, 2013. Future scenarios for plant phenotyping. Annu. Rev. Plant Biol., 64, 267–291. https://doi.org/10.1146/annurev-arplant-050312-120137
  • Fonseka HH, Wickramasinghe IP, Bandara DC, 2011. Studies on deterioration and germination of bitter gourd seed (Momordica charantia L.) during storage. Acta Hortic, 898, 13–18. https://doi.org/10.17660/ActaHortic.2011.898.2
  • Gill SS, Tuteja N, 2010. Reactive oxygen species and antioxidant machinery in abiotic stress tolerance in crop plants. Plant Physiol. Biochem, 48(12), 909–930. https://doi.org/10.1016/j.plaphy.2010.08.016
  • Hasanuzzaman M, Bhuyan MHMB, Zulfiqar F, Raza A, Mohsin SM, Mahmud JA, Fujita M, Fotopoulos V, 2020. Reactive oxygen species and antioxidant defense in plants under abiotic stress: Revisiting the crucial role of a universal defense regulator. Antioxidants, 9(8), 681. https://doi.org/10.3390/antiox9080681
  • Jisha KC, Vijayakumari K, Puthur JT, 2013. Seed priming for abiotic stress tolerance: An overview. Acta Physiol. Plant., 35(5), 1381–1396. https://doi.org/10.1007/s11738-012-1186-5
  • Joseph B, Jini D, 2013. Antidiabetic effects of Momordica charantia (bitter melon) and its medicinal potency. Asian Pac. J. Trop. Dis., 3(2), 93–102. https://doi.org/10.1016/S2222-1808(13)60052-3
  • Kabata-Pendias A, 2011. Trace elements in soils and plants (4th ed.). CRC Press. https://doi.org/10.1201/b10158 Khan MA, Asaf S, Khan AL, Jan R, Kang SM, Lee IJ, 2022. Abiotic stress responses in plants: A review on seed germination and early seedling growth under stress conditions. Plants, 11(15), 1932. https://doi.org/10.3390/plants11151932
  • López-Méndez AG, Rodríguez-Pérez JE, Mascorro-Gallardo JO, Sahagún-Castellanos J, Lobato-Ortiz R, 2024. Sodium chloride tolerance during germination and seedling stages of tomato (Solanum lycopersicum L.) lines native to Mexico. Horticulturae, 10(5), 466. https://doi.org/10.3390/horticulturae10050466
  • Marschner P, 2012. Marschner’s Mineral Nutrition of Higher Plants, 3rd Edition, Academic Press. https://doi.org/ 10.1016/C2009-0-63043-9
  • Naïtchédé LHS, Nyende AB, Runo S, Borlay AJ, 2023. Plant regeneration from embryogenic callus-derived from immature leaves of Momordica charantia L. Heliyon, 9(11), e22122. https://doi.org/10.1016/j.heliyon.2023.e22122
  • Özsan Kılıç T, Onus AN, 2023. A study on bitter gourd (Momordica charantia L.) callogenesis optimization based on hormone balance and explant types. Int. J. Agric. Environ. Food Sci., 7(3): 633–638. https://doi.org/10.31015/jaefs.2023.3.17
  • Paul V, Pandey R, Solaiyappan M, Mukherjee P, 2024. Sample collection and digestion methods for elemental analysis of plant. https://doi.org/10.13140/RG.2.2.35285.64481
  • Pongkitwitoon B, 2019. In vitro cultures of medicinal plant Momordica charantia L. and their applications. Isan J. Pharm. Sci., 15(1): 58-68. https://doi.org/10.14456/ijps.2019.4
  • Taiz L, Zeiger E, 2010. Plant Physiol., 5th Edition. Sinauer Associates.
  • Tavakkoli E, Fatehi F, Rengasamy P, McDonald GK, 2010. Additive effects of Na⁺ and Cl⁻ ions on growth, physiological processes, and yield of faba bean (Vicia faba L.) under salinity stress. J. Exp. Bot., 61(15), 4449–4459. https://doi.org/10.1093/jxb/erq251
  • Temizel KE, Odabaş MS, Şenyer N, Kayhan G, Bajwa S, Çalışkan O, Ergun E, 2014. Comparision of some models for estimation of reflectance of hypericum leaves under stress conditions. Cent. Eur. J. Biol., 9(12): 1226-1234.
  • Thomas P, 2025. Continuous injection of hydrogen peroxide in drip irrigation. Agronomy, 15(2), 385. https://doi.org/10.3390/agronomy1502038
Toplam 22 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Bitki Besleme ve Toprak Verimliliği
Bölüm Araştırma Makalesi
Yazarlar

Ahmet İlker Levent 0009-0006-4904-2115

Kadir Ersin Temizel 0000-0003-1806-3950

Gönderilme Tarihi 10 Ekim 2025
Kabul Tarihi 11 Aralık 2025
Yayımlanma Tarihi 29 Aralık 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 13 Sayı: 2

Kaynak Göster

APA Levent, A. İ., & Temizel, K. E. (2025). Farklı sulama suyu uygulamalarının kudret narı (Momordica charantia L.) bitkisinde çimlenme ve fide gelişimi ile mineral alımına etkileri. Toprak Bilimi ve Bitki Besleme Dergisi, 13(2), 136-149. https://doi.org/10.33409/tbbbd.1800321
AMA Levent Aİ, Temizel KE. Farklı sulama suyu uygulamalarının kudret narı (Momordica charantia L.) bitkisinde çimlenme ve fide gelişimi ile mineral alımına etkileri. tbbbd. Aralık 2025;13(2):136-149. doi:10.33409/tbbbd.1800321
Chicago Levent, Ahmet İlker, ve Kadir Ersin Temizel. “Farklı sulama suyu uygulamalarının kudret narı (Momordica charantia L.) bitkisinde çimlenme ve fide gelişimi ile mineral alımına etkileri”. Toprak Bilimi ve Bitki Besleme Dergisi 13, sy. 2 (Aralık 2025): 136-49. https://doi.org/10.33409/tbbbd.1800321.
EndNote Levent Aİ, Temizel KE (01 Aralık 2025) Farklı sulama suyu uygulamalarının kudret narı (Momordica charantia L.) bitkisinde çimlenme ve fide gelişimi ile mineral alımına etkileri. Toprak Bilimi ve Bitki Besleme Dergisi 13 2 136–149.
IEEE A. İ. Levent ve K. E. Temizel, “Farklı sulama suyu uygulamalarının kudret narı (Momordica charantia L.) bitkisinde çimlenme ve fide gelişimi ile mineral alımına etkileri”, tbbbd, c. 13, sy. 2, ss. 136–149, 2025, doi: 10.33409/tbbbd.1800321.
ISNAD Levent, Ahmet İlker - Temizel, Kadir Ersin. “Farklı sulama suyu uygulamalarının kudret narı (Momordica charantia L.) bitkisinde çimlenme ve fide gelişimi ile mineral alımına etkileri”. Toprak Bilimi ve Bitki Besleme Dergisi 13/2 (Aralık2025), 136-149. https://doi.org/10.33409/tbbbd.1800321.
JAMA Levent Aİ, Temizel KE. Farklı sulama suyu uygulamalarının kudret narı (Momordica charantia L.) bitkisinde çimlenme ve fide gelişimi ile mineral alımına etkileri. tbbbd. 2025;13:136–149.
MLA Levent, Ahmet İlker ve Kadir Ersin Temizel. “Farklı sulama suyu uygulamalarının kudret narı (Momordica charantia L.) bitkisinde çimlenme ve fide gelişimi ile mineral alımına etkileri”. Toprak Bilimi ve Bitki Besleme Dergisi, c. 13, sy. 2, 2025, ss. 136-49, doi:10.33409/tbbbd.1800321.
Vancouver Levent Aİ, Temizel KE. Farklı sulama suyu uygulamalarının kudret narı (Momordica charantia L.) bitkisinde çimlenme ve fide gelişimi ile mineral alımına etkileri. tbbbd. 2025;13(2):136-49.