EN
Humic Acid Mitigates Drought Stress in Tomato
Öz
Drought stress, one of the most important abiotic stresses, severely limits global crop production. To increase tolerance to this stress, environmentally friendly practices are emphasised. Humic acid, one of the most important natural biostimulants, has positive effects on plant growth and yield. Recently, it has also been reported to play an important role in resistance to various abiotic stresses. However, many physiological and molecular mechanisms by which humic acid confers drought resistance have not been fully elucidated. Therefore, the effects of humic acid application on different morphological and physiological stress indicators and some antioxidative enzyme gene expressions of tomato seedlings under drought stress conditions were investigated in this study. It was found that drought stress decreased shoot fresh/dry weight, root fresh/dry weight, shoot and root length, chlorophyll and relative water content of plants by 67%, 56%, 31%, 38%, 22%, 20%, 15% and 25%, respectively. Humic acid application significantly increased these parameters, while reducing ion leakage, MDA and proline levels. The antioxidant enzyme gene expression of tomato seedlings under drought conditions showed no significant difference in SOD and APX gene expression, whereas CAT gene expression increased and GR gene expression decreased with humic acid application. Our results showed that humic acid application interacted with stress-related antioxidant enzyme gene expression and may be effective in reducing drought stress.
Anahtar Kelimeler
Kaynakça
- Abdelaal, K.A.A., Hafez, Y.M., El-Afry, M.M., Tantawy, D.S., Alshaal, T. (2018). Effect of some osmoregulators on photosynthesis, lipid peroxidation, antioxidative capacity, and productivity of barley (Hordeum vulgare L.) under water deficit stress. Environmental Science and Pollution Research, 25, 30199-30211. https://doi.org/10.1007/S11356-018-3023-X
- Aguiar, N.O., Medici, L.O., Olivares, F.L., Dobbss, L.B., Torres-Netto, A., Silva, S.F., Novotny, E.H., Canellas, L.P. (2016). Metabolic profile and antioxidant responses during drought stress recovery in sugarcane treated with humic acids and endophytic diazotrophic bacteria. Annals of Applied Biology, 168, 203-213.
- Aksoy, E. (2019). The Effects of Humic Acid on Plant Development, Yield, Some Quality and Biochemical Properties on Tomato Grown in Salty Conditions. (Master’s Thesis, Harran University Graduate School of Natural and Applied Sciences)
- Alcázar, R., Bueno, M., Tiburcio, A.F. (2020). Polyamines: Small amines with large effects on plant abiotic stress tolerance. Cells, 9(11), 2373. https://doi.org/10.3390/cells9112373
- Aljemaa, B.A. (2020). Determination of Morphological, Physiological and Biochemical Reactions of Some Pistacia Genotypes in Drought Stress. (Ph.D. Thesis, Selçuk University Graduate School of Natural and Applied Science)
- Alp, Y., Kabay, T. (2017). Kuraklık stresinin yerli ve ticari domates çeşitlerinde bazı fizyolojik parametreler üzerine etkileri. Yüzüncü Yıl Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 22(2), 86-96.
- Alp, Y. (2017). The Effect of Drought Stress on Early Plant Development in Some Native and Commercial Tomato Genotypes. (Master’s Thesis, Yüzüncü Yıl University Graduate School of Applied and Natural Sciences)
- Altunlu, H. (2011). The Effects of Grafting Against Drought Stresse in Tomatoes. (Ph.D. Thesis, Ege University Graduate School of Applied and Natural Sciences)
Ayrıntılar
Birincil Dil
İngilizce
Konular
Ekolojik Fizyoloji
Bölüm
Araştırma Makalesi
Erken Görünüm Tarihi
31 Mart 2024
Yayımlanma Tarihi
31 Mart 2024
Gönderilme Tarihi
17 Ocak 2024
Kabul Tarihi
13 Mart 2024
Yayımlandığı Sayı
Yıl 2024 Cilt: 8 Sayı: 1
APA
Aytaç, E., Ünlü, H., Erkan, İ. E., & Çelikkol Akçay, U. (2024). Humic Acid Mitigates Drought Stress in Tomato. Bilge International Journal of Science and Technology Research, 8(1), 27-37. https://doi.org/10.30516/bilgesci.1421304
AMA
1.Aytaç E, Ünlü H, Erkan İE, Çelikkol Akçay U. Humic Acid Mitigates Drought Stress in Tomato. bilgesci. 2024;8(1):27-37. doi:10.30516/bilgesci.1421304
Chicago
Aytaç, Esra, Halime Ünlü, İbrahim Ertan Erkan, ve Ufuk Çelikkol Akçay. 2024. “Humic Acid Mitigates Drought Stress in Tomato”. Bilge International Journal of Science and Technology Research 8 (1): 27-37. https://doi.org/10.30516/bilgesci.1421304.
EndNote
Aytaç E, Ünlü H, Erkan İE, Çelikkol Akçay U (01 Mart 2024) Humic Acid Mitigates Drought Stress in Tomato. Bilge International Journal of Science and Technology Research 8 1 27–37.
IEEE
[1]E. Aytaç, H. Ünlü, İ. E. Erkan, ve U. Çelikkol Akçay, “Humic Acid Mitigates Drought Stress in Tomato”, bilgesci, c. 8, sy 1, ss. 27–37, Mar. 2024, doi: 10.30516/bilgesci.1421304.
ISNAD
Aytaç, Esra - Ünlü, Halime - Erkan, İbrahim Ertan - Çelikkol Akçay, Ufuk. “Humic Acid Mitigates Drought Stress in Tomato”. Bilge International Journal of Science and Technology Research 8/1 (01 Mart 2024): 27-37. https://doi.org/10.30516/bilgesci.1421304.
JAMA
1.Aytaç E, Ünlü H, Erkan İE, Çelikkol Akçay U. Humic Acid Mitigates Drought Stress in Tomato. bilgesci. 2024;8:27–37.
MLA
Aytaç, Esra, vd. “Humic Acid Mitigates Drought Stress in Tomato”. Bilge International Journal of Science and Technology Research, c. 8, sy 1, Mart 2024, ss. 27-37, doi:10.30516/bilgesci.1421304.
Vancouver
1.Esra Aytaç, Halime Ünlü, İbrahim Ertan Erkan, Ufuk Çelikkol Akçay. Humic Acid Mitigates Drought Stress in Tomato. bilgesci. 01 Mart 2024;8(1):27-3. doi:10.30516/bilgesci.1421304
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