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Ameliorative effects of potassium nitrate doses on seedling growth, physiology, and water use of sorghum (Sorghum bicolor L. Moench) under salinity stress

Yıl 2024, Cilt: 12 Sayı: 2, 183 - 194, 16.12.2024
https://doi.org/10.33409/tbbbd.1561044

Öz

Salt stress is a major abiotic factor that adversely impacts global agricultural productivity and sustainability. Effective solutions are essential to enhance agricultural yields under such conditions. This study investigated the effects of potassium nitrate (KNO3) doses (0, 12.5, 25, and 50 mM) on seedling growth, stomatal conductance, SPAD values, and evapotranspiration in sorghum seeds across four soil salinity levels (0.63, 5.10, 9.55, and 14.02 dS m-1). As salinity increased, seedling height, aboveground fresh and dry weight, leaf area, stomatal conductance, and SPAD values significantly decreased. At 0.63 dS m-1 soil salinity, leaf area increased by 123.9%, stomatal conductance by 159.6%, and SPAD value by 100.4% compared to 14.02 dS m-1. Potassium nitrate applications did not significantly affect the evapotranspiration of sorghum seedlings. However, potassium nitrate doses positively affected sorghum seedling growth. Specifically, at 50 mM KNO3, plant height increased by 13.1%, aboveground fresh weight by 29.3%, leaf area by 26.4%, and SPAD value by 45.0% compared to 0 mM KNO3. Moreover, pre-treatment with 50 mM KNO3 enhanced seedling development under 5.10 dS m-1 soil salinity. The findings indicate that potassium nitrate effectively mitigates the toxic effects of salt stress on sorghum. Finally, it is advisable to pre-treat sorghum seeds with 50 mM KNO3 prior to planting in saline agricultural areas to promote seedling development.

Kaynakça

  • Abeed AHA, Saleem MH, Asghar MA, Mumtaz S, Ameer A, Ali B, Alwahibi MS, Elshikh MS, Ercisli S, Elsharkawy MM, Ali S, Soudy FA, 2023. Ameliorative effects of exogenous potassium nitrate on antioxidant defense system and mineral nutrient uptake in radish (Raphanus sativus L.) under salinity stress. ACS Omega. 8: 22575–22588.
  • Ahmadvand G, Soleimani F, Saadatian, B., Pouya, M., 2012. Effect of seed priming with potassium nitrate on germination and emergence traits of two soybean cultivars under salinity stress conditions. J. Agric. and Environ. Sci. 12: 769–774.
  • Ambreen S, Athar H ur R, Khan A, Zafar ZU, Ayyaz A, Kalaji HM, 2021. Seed priming with proline improved photosystem II efficiency and growth of wheat (Triticum aestivum L.). BMC Plant Biol. 21: 1–12.
  • Angon PB, Tahjib-Ul-Arif M, Samin SI, Habiba U, Hossain MA, Brestic M, 2022. How do plants respond to combined drought and salinity stress?—a systematic review. Plants. 11: 2884.
  • Anosheh HP, Sadeghi H, Emam Y, 2012. Chemical priming with urea and KNO3 enhances maize hybrids (Zea mays L.) seed viability under abiotic stress. Journal of Crop Sci. and Biotech. 14(4): 289–295.
  • Dehnavi AR, Zahedi M, Ludwiczak A, Perez SC, Piernik A, 2020. Effect of salinity on seed germination and seedling development of sorghum (Sorghum bicolor (L.) moench) genotypes. Agronomy. 10: 859.
  • Dehnavi AR, Zahedi M, Ludwiczak A, Piernik A, 2022. Foliar application of salicylic acid improves salt tolerance of sorghum (Sorghum bicolor (L.) Moench). Plants. 11: 368.
  • Fayez KA, Bazaid SA, 2014. Improving drought and salinity tolerance in barley by application of salicylic acid and potassium nitrate. Journal of the Saudi Society of Agric. Sci. 13: 45–55.
  • Gucdemir İ, 2006. Türkiye fertilizer and fertilization guide, Updated and expanded edition. Soil Fertilizer and Water Resources Central Research Institute Directorate. General publication no: 213, Technical publication no: T69. Ankara, Türkiye.
  • Guo X, Zhi W, Feng Y, Zhou G, Zhu G, 2022. Seed priming improved salt-stressed sorghum growth by enhancing antioxidative defense. PLoS One. 17: e0263036.
  • Hasanuzzaman M, Bhuyan MHMB, Nahar K, Hossain MS, Al Mahmud J, Hossen MS, Masud AAC, Moumita FM, 2018. Potassium: a vital regulator of plant responses and tolerance to abiotic stresses. Agronomy. 8: 31.
  • Huang RD, 2018. Research progress on plant tolerance to soil salinity and alkalinity in sorghum. J Integr Agric. 17(4), 739-746.
  • Hussain MI, Elnaggar A, El-Keblawy A, 2020. Eco-physiological adaptations of Salsola drummondii to soil salinity: role of reactive oxygen species, ion homeostasis, carbon isotope signatures and anti-oxidant feedback. Plant Biosystems-An International Journal Dealing with all Aspects of Plant Bio, 155(6): 1133-1145.
  • Ibrahim EA, 2016. Seed priming to alleviate salinity stress in germinating seeds. J Plant Physiol. 192: 38-46.
  • Javed SA, Jaffar MT, Shahzad SM, Ashraf M, Piracha MA, Mukhtar A, Rahman SU, Almoallim HS, Ansari MJ, Zhang J, 2024. Optimization of nitrogen regulates the ionic homeostasis, potassium efficiency, and proline content to improve the growth, yield, and quality of maize under salinity stress. Environ. Exp. Bot. 226: 105836.
  • Johnson R, Puthur JT, 2021. Seed priming as a cost effective technique for developing plants with cross tolerance to salinity stress. Plant Physio. and Biochem.162: 247–257.
  • Kiremit MS, 2024. Effect of melatonin on increasing leaf development of sweet corn seedlings under salt stress conditions. International Congress of Sustainable Agriculture, 310-336. 01-03 March 2024, Iğdır.
  • Kiremit MS, Öztürk E, Arslan H, Subrata BAG, Akay H, Bakirova A, 2024. Effects of melatonin, proline, and salicylic acid on seedling growth, photosynthetic activity, and leaf nutrients of sorghum under salt stress. Plant Direct 8: e574.
  • Krishnamurthy L, Serraj R, Hash CT, Dakheel AJ, Reddy BVS, 2007. Screening sorghum genotypes for salinity tolerant biomass production. Euphytica. 156: 15–24.
  • Kurunc A, 2021. Effects of water and salinity stresses on growth, yield, and water use of iceberg lettuce. J Sci Food Agric. 101: 5688–5696.
  • Kurunc A, Unlukara A, Cemek B, 2011. Salinity and drought affect yield response of bell pepper similarly. Acta Agric Scand B Soil Plant Sci. 61: 514–522.
  • Läuchli A, Grattan SR, 2007. Plant growth and development under salinity stress. Advances in Molecular Breeding Toward Drought and Salt Tolerant Crops. 1–32.
  • Liu J, Zhang W, Long S, Zhao C, 2021. Maintenance of cell wall ıntegrity under high salinity. Inter. Journal of Molecular Sci. 22: 3260.
  • Mansour MMF, Emam MM, Salama KHA, Morsy AA, 2021. Sorghum under saline conditions: responses, tolerance mechanisms, and management strategies. Planta. 254: 1-38.
  • Minhas PS, Ramos TB, Ben-Gal A, Pereira LS, 2020. Coping with salinity in irrigated agriculture: Crop evapotranspiration and water management issues. Agric. Water Manag. 227: 105832.
  • Munns R, Tester M, 2008. Mechanisms of salinity tolerance. Annu. Rev. Plant Biol. 59: 651–681.
  • Parihar P, Singh S, Singh R, Singh VP, Prasad SM, 2015. Effect of salinity stress on plants and its tolerance strategies: a review. Envir. Sci. and Pollution Res. 22: 4056–4075.
  • Rehman B, Zulfiqar A, Attia H, Sardar R, Saleh MA, Alamer KH, Alsudays IM, Mehmood F, Uz Zaman Q, 2024. seed priming with potassium nitrate can enhance salt stress tolerance in maize. Phyton-Inter. Journal of Exper. Bot. 93:1819–1838.
  • Rhaman MS, Imran S, Rauf F, Khatun M, Baskin CC, Murata Y, Hasanuzzaman M, 2021. Seed priming with phytohormones: an effective approach for the mitigation of abiotic stress. Plants. 10: 1–17.
  • Roy RC, Sagar A, Tajkia JE, Razzak MA, Hossain AZ, 2018. Effect of salt stress on growth of sorghum germplasms at vegetative stage. Journal of the Bangladesh Agri. Uni. 16: 67–72.
  • Sezer İ, Kiremit MS, Öztürk E, Subrata BAG, Osman HM, Akay H, Arslan H, 2021. Role of melatonin in improving leaf mineral content and growth of sweet corn seedlings under different soil salinity levels. Sci. Hortic. 288:110376.
  • Singh A, 2022. Soil salinity: A global threat to sustainable development. Soil Use Manag. 38: 39–67.
  • Steiner F, Zuffo AM, Da CE, Oliveira S, Honda GB, Machado JS, 2019. Potassium nitrate priming mitigates salt stress on wheat seedlings. Revista de Ciências Agrárias. 41: 989–1000.
  • Takma Ç, Gevrekçi Y, Hızlı H, 2023. Statistical analysis in agricultural research, 1stEdition ed. Holistence Publications, Çanakkale, Türkiye.
  • Ünlükara A, Kurunç A, Kesmez GD, Yurtseven E, Suarez DL, 2010. Effects of salinity on eggplant (Solanum melongena L.) growth and evapotranspiration. Irrigation and Drainage. 59: 203–214.
  • Zeeshan M, Lu M, Sehar S, Holford P, Wu F, 2020. Comparison of biochemical, anatomical, morphological, and physiological responses to salinity stress in wheat and barley genotypes deferring in salinity tolerance. Agronomy. 10(1): 127.

Tuzluluk stresi koşullarında potasyum nitrat dozlarının sorgumun (Sorghum bicolor L. Moench) fide büyümesi, fizyolojisi ve su kullanımı üzerine iyileştirici etkileri

Yıl 2024, Cilt: 12 Sayı: 2, 183 - 194, 16.12.2024
https://doi.org/10.33409/tbbbd.1561044

Öz

Tuz stresi, dünya genelinde tarımsal üretimde verimlilik ve sürdürülebilirliği olumsuz etkileyen en önemli abiyotik stres faktörlerinden biridir. Bu koşullarda, tarımsal verimliliğini arttırmak için etkili ve sürdürülebilir çözümlerin üretilmesi gerekmektedir. Bu çalışmada potasyum nitrat (KNO3) dozları (0, 12.5 25 ve 50 mM) ile ön uygulamaya tabi tutulmuş sorgum tohumlarının 4 farklı toprak tuzluluğu koşullarında (0.63, 5.10, 9.55 ve 14.02 dS m-1) fide büyümesi, stoma iletkenliği, SPAD ve bitki su tüketimi parametreleri incelenmiştir. Toprak tuzluluğu arttıkça fide boyu, toprak üstü yaş ve kuru ağırlık, yaprak alanı, stoma iletkenliği ve SPAD değerleri önemli derecede azalmıştır. Toprak tuzluluğu 14.02 dS m-1'e kıyasla, 0.63 dS m-1 tuzluluk seviyesinde yaprak alanı %123.9, stoma iletkenliği %159.6 ve SPAD değeri %100.4 oranında artmıştır. Potasyum nitrat uygulamalarının sorgum fidelerinin bitki su tüketimi üzerine önemli bir etkilerinin olmadığı tespit edilmiştir. Ancak, potasyum nitrat dozları sorgum fide büyümesini pozitif etkilemiştir. Buna göre, 0 mM potasyum nitrata kıyasla, 50 mM potasyum nitrat uygulaması bitki boyunu %13.1, toprak üstü yaş ağırlığı %29.3, yaprak alanını %26.4 ve SPAD değerini %45.0 oranında artırmıştır. Özellikle, 0, 12.5 ve 25 mM KNO3 kıyasla, sorgum tohumlarının 50 mM KNO3 ile ön uygulamaya tabi tutulması, 5.10 dS m-1 toprak tuzluluğu koşullarında sorgum fide gelişimini arttırmıştır. Elde edilen bulgular, potasyum nitratın sorgum bitkilerinde tuz stresinin toksik etkisini iyileştirmede etkili olduğunu göstermiştir. Sonuç olarak, tuzlu tarımsal üretim alanlarında, sorgum fide gelişimini arttırmak için sorgum tohumlarının ekiminden önce 50 mM KNO3 ile ön uygulamaya tabi tutulması önerilebilir.

Etik Beyan

Bu çalışmanın, özgün bir çalışma olduğunu ve koşullarını kabul ederek etik görev ve sorumluluklara riayet ettiğimi beyan ederim

Destekleyen Kurum

Bu çalışma için herhangi bir kurumdan maddi destek almamıştır.

Kaynakça

  • Abeed AHA, Saleem MH, Asghar MA, Mumtaz S, Ameer A, Ali B, Alwahibi MS, Elshikh MS, Ercisli S, Elsharkawy MM, Ali S, Soudy FA, 2023. Ameliorative effects of exogenous potassium nitrate on antioxidant defense system and mineral nutrient uptake in radish (Raphanus sativus L.) under salinity stress. ACS Omega. 8: 22575–22588.
  • Ahmadvand G, Soleimani F, Saadatian, B., Pouya, M., 2012. Effect of seed priming with potassium nitrate on germination and emergence traits of two soybean cultivars under salinity stress conditions. J. Agric. and Environ. Sci. 12: 769–774.
  • Ambreen S, Athar H ur R, Khan A, Zafar ZU, Ayyaz A, Kalaji HM, 2021. Seed priming with proline improved photosystem II efficiency and growth of wheat (Triticum aestivum L.). BMC Plant Biol. 21: 1–12.
  • Angon PB, Tahjib-Ul-Arif M, Samin SI, Habiba U, Hossain MA, Brestic M, 2022. How do plants respond to combined drought and salinity stress?—a systematic review. Plants. 11: 2884.
  • Anosheh HP, Sadeghi H, Emam Y, 2012. Chemical priming with urea and KNO3 enhances maize hybrids (Zea mays L.) seed viability under abiotic stress. Journal of Crop Sci. and Biotech. 14(4): 289–295.
  • Dehnavi AR, Zahedi M, Ludwiczak A, Perez SC, Piernik A, 2020. Effect of salinity on seed germination and seedling development of sorghum (Sorghum bicolor (L.) moench) genotypes. Agronomy. 10: 859.
  • Dehnavi AR, Zahedi M, Ludwiczak A, Piernik A, 2022. Foliar application of salicylic acid improves salt tolerance of sorghum (Sorghum bicolor (L.) Moench). Plants. 11: 368.
  • Fayez KA, Bazaid SA, 2014. Improving drought and salinity tolerance in barley by application of salicylic acid and potassium nitrate. Journal of the Saudi Society of Agric. Sci. 13: 45–55.
  • Gucdemir İ, 2006. Türkiye fertilizer and fertilization guide, Updated and expanded edition. Soil Fertilizer and Water Resources Central Research Institute Directorate. General publication no: 213, Technical publication no: T69. Ankara, Türkiye.
  • Guo X, Zhi W, Feng Y, Zhou G, Zhu G, 2022. Seed priming improved salt-stressed sorghum growth by enhancing antioxidative defense. PLoS One. 17: e0263036.
  • Hasanuzzaman M, Bhuyan MHMB, Nahar K, Hossain MS, Al Mahmud J, Hossen MS, Masud AAC, Moumita FM, 2018. Potassium: a vital regulator of plant responses and tolerance to abiotic stresses. Agronomy. 8: 31.
  • Huang RD, 2018. Research progress on plant tolerance to soil salinity and alkalinity in sorghum. J Integr Agric. 17(4), 739-746.
  • Hussain MI, Elnaggar A, El-Keblawy A, 2020. Eco-physiological adaptations of Salsola drummondii to soil salinity: role of reactive oxygen species, ion homeostasis, carbon isotope signatures and anti-oxidant feedback. Plant Biosystems-An International Journal Dealing with all Aspects of Plant Bio, 155(6): 1133-1145.
  • Ibrahim EA, 2016. Seed priming to alleviate salinity stress in germinating seeds. J Plant Physiol. 192: 38-46.
  • Javed SA, Jaffar MT, Shahzad SM, Ashraf M, Piracha MA, Mukhtar A, Rahman SU, Almoallim HS, Ansari MJ, Zhang J, 2024. Optimization of nitrogen regulates the ionic homeostasis, potassium efficiency, and proline content to improve the growth, yield, and quality of maize under salinity stress. Environ. Exp. Bot. 226: 105836.
  • Johnson R, Puthur JT, 2021. Seed priming as a cost effective technique for developing plants with cross tolerance to salinity stress. Plant Physio. and Biochem.162: 247–257.
  • Kiremit MS, 2024. Effect of melatonin on increasing leaf development of sweet corn seedlings under salt stress conditions. International Congress of Sustainable Agriculture, 310-336. 01-03 March 2024, Iğdır.
  • Kiremit MS, Öztürk E, Arslan H, Subrata BAG, Akay H, Bakirova A, 2024. Effects of melatonin, proline, and salicylic acid on seedling growth, photosynthetic activity, and leaf nutrients of sorghum under salt stress. Plant Direct 8: e574.
  • Krishnamurthy L, Serraj R, Hash CT, Dakheel AJ, Reddy BVS, 2007. Screening sorghum genotypes for salinity tolerant biomass production. Euphytica. 156: 15–24.
  • Kurunc A, 2021. Effects of water and salinity stresses on growth, yield, and water use of iceberg lettuce. J Sci Food Agric. 101: 5688–5696.
  • Kurunc A, Unlukara A, Cemek B, 2011. Salinity and drought affect yield response of bell pepper similarly. Acta Agric Scand B Soil Plant Sci. 61: 514–522.
  • Läuchli A, Grattan SR, 2007. Plant growth and development under salinity stress. Advances in Molecular Breeding Toward Drought and Salt Tolerant Crops. 1–32.
  • Liu J, Zhang W, Long S, Zhao C, 2021. Maintenance of cell wall ıntegrity under high salinity. Inter. Journal of Molecular Sci. 22: 3260.
  • Mansour MMF, Emam MM, Salama KHA, Morsy AA, 2021. Sorghum under saline conditions: responses, tolerance mechanisms, and management strategies. Planta. 254: 1-38.
  • Minhas PS, Ramos TB, Ben-Gal A, Pereira LS, 2020. Coping with salinity in irrigated agriculture: Crop evapotranspiration and water management issues. Agric. Water Manag. 227: 105832.
  • Munns R, Tester M, 2008. Mechanisms of salinity tolerance. Annu. Rev. Plant Biol. 59: 651–681.
  • Parihar P, Singh S, Singh R, Singh VP, Prasad SM, 2015. Effect of salinity stress on plants and its tolerance strategies: a review. Envir. Sci. and Pollution Res. 22: 4056–4075.
  • Rehman B, Zulfiqar A, Attia H, Sardar R, Saleh MA, Alamer KH, Alsudays IM, Mehmood F, Uz Zaman Q, 2024. seed priming with potassium nitrate can enhance salt stress tolerance in maize. Phyton-Inter. Journal of Exper. Bot. 93:1819–1838.
  • Rhaman MS, Imran S, Rauf F, Khatun M, Baskin CC, Murata Y, Hasanuzzaman M, 2021. Seed priming with phytohormones: an effective approach for the mitigation of abiotic stress. Plants. 10: 1–17.
  • Roy RC, Sagar A, Tajkia JE, Razzak MA, Hossain AZ, 2018. Effect of salt stress on growth of sorghum germplasms at vegetative stage. Journal of the Bangladesh Agri. Uni. 16: 67–72.
  • Sezer İ, Kiremit MS, Öztürk E, Subrata BAG, Osman HM, Akay H, Arslan H, 2021. Role of melatonin in improving leaf mineral content and growth of sweet corn seedlings under different soil salinity levels. Sci. Hortic. 288:110376.
  • Singh A, 2022. Soil salinity: A global threat to sustainable development. Soil Use Manag. 38: 39–67.
  • Steiner F, Zuffo AM, Da CE, Oliveira S, Honda GB, Machado JS, 2019. Potassium nitrate priming mitigates salt stress on wheat seedlings. Revista de Ciências Agrárias. 41: 989–1000.
  • Takma Ç, Gevrekçi Y, Hızlı H, 2023. Statistical analysis in agricultural research, 1stEdition ed. Holistence Publications, Çanakkale, Türkiye.
  • Ünlükara A, Kurunç A, Kesmez GD, Yurtseven E, Suarez DL, 2010. Effects of salinity on eggplant (Solanum melongena L.) growth and evapotranspiration. Irrigation and Drainage. 59: 203–214.
  • Zeeshan M, Lu M, Sehar S, Holford P, Wu F, 2020. Comparison of biochemical, anatomical, morphological, and physiological responses to salinity stress in wheat and barley genotypes deferring in salinity tolerance. Agronomy. 10(1): 127.
Toplam 36 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Toprak ve Su Kaynaklarının Korunması ve Islahı
Bölüm Makaleler
Yazarlar

Shuaib Ajetunmobi Abdulrasaq 0009-0008-3480-1961

Mehmet Kiremit 0000-0002-7394-303X

Hakan Arslan 0000-0002-9677-6035

Yayımlanma Tarihi 16 Aralık 2024
Gönderilme Tarihi 4 Ekim 2024
Kabul Tarihi 1 Kasım 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 12 Sayı: 2

Kaynak Göster

APA Abdulrasaq, S. A., Kiremit, M., & Arslan, H. (2024). Tuzluluk stresi koşullarında potasyum nitrat dozlarının sorgumun (Sorghum bicolor L. Moench) fide büyümesi, fizyolojisi ve su kullanımı üzerine iyileştirici etkileri. Toprak Bilimi Ve Bitki Besleme Dergisi, 12(2), 183-194. https://doi.org/10.33409/tbbbd.1561044
AMA Abdulrasaq SA, Kiremit M, Arslan H. Tuzluluk stresi koşullarında potasyum nitrat dozlarının sorgumun (Sorghum bicolor L. Moench) fide büyümesi, fizyolojisi ve su kullanımı üzerine iyileştirici etkileri. tbbbd. Aralık 2024;12(2):183-194. doi:10.33409/tbbbd.1561044
Chicago Abdulrasaq, Shuaib Ajetunmobi, Mehmet Kiremit, ve Hakan Arslan. “Tuzluluk Stresi koşullarında Potasyum Nitrat dozlarının Sorgumun (Sorghum Bicolor L. Moench) Fide büyümesi, Fizyolojisi Ve Su kullanımı üzerine iyileştirici Etkileri”. Toprak Bilimi Ve Bitki Besleme Dergisi 12, sy. 2 (Aralık 2024): 183-94. https://doi.org/10.33409/tbbbd.1561044.
EndNote Abdulrasaq SA, Kiremit M, Arslan H (01 Aralık 2024) Tuzluluk stresi koşullarında potasyum nitrat dozlarının sorgumun (Sorghum bicolor L. Moench) fide büyümesi, fizyolojisi ve su kullanımı üzerine iyileştirici etkileri. Toprak Bilimi ve Bitki Besleme Dergisi 12 2 183–194.
IEEE S. A. Abdulrasaq, M. Kiremit, ve H. Arslan, “Tuzluluk stresi koşullarında potasyum nitrat dozlarının sorgumun (Sorghum bicolor L. Moench) fide büyümesi, fizyolojisi ve su kullanımı üzerine iyileştirici etkileri”, tbbbd, c. 12, sy. 2, ss. 183–194, 2024, doi: 10.33409/tbbbd.1561044.
ISNAD Abdulrasaq, Shuaib Ajetunmobi vd. “Tuzluluk Stresi koşullarında Potasyum Nitrat dozlarının Sorgumun (Sorghum Bicolor L. Moench) Fide büyümesi, Fizyolojisi Ve Su kullanımı üzerine iyileştirici Etkileri”. Toprak Bilimi ve Bitki Besleme Dergisi 12/2 (Aralık 2024), 183-194. https://doi.org/10.33409/tbbbd.1561044.
JAMA Abdulrasaq SA, Kiremit M, Arslan H. Tuzluluk stresi koşullarında potasyum nitrat dozlarının sorgumun (Sorghum bicolor L. Moench) fide büyümesi, fizyolojisi ve su kullanımı üzerine iyileştirici etkileri. tbbbd. 2024;12:183–194.
MLA Abdulrasaq, Shuaib Ajetunmobi vd. “Tuzluluk Stresi koşullarında Potasyum Nitrat dozlarının Sorgumun (Sorghum Bicolor L. Moench) Fide büyümesi, Fizyolojisi Ve Su kullanımı üzerine iyileştirici Etkileri”. Toprak Bilimi Ve Bitki Besleme Dergisi, c. 12, sy. 2, 2024, ss. 183-94, doi:10.33409/tbbbd.1561044.
Vancouver Abdulrasaq SA, Kiremit M, Arslan H. Tuzluluk stresi koşullarında potasyum nitrat dozlarının sorgumun (Sorghum bicolor L. Moench) fide büyümesi, fizyolojisi ve su kullanımı üzerine iyileştirici etkileri. tbbbd. 2024;12(2):183-94.