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Response of Italian Ryegrass (Lolium multiflorum L.) Cultivars to Different Drought Levels

Yıl 2025, Cilt: 12 Sayı: 1, 91 - 100, 28.03.2025
https://doi.org/10.19159/tutad.1637771

Öz

This study is aims to determine the germination and seedling growth responses of Italian ryegrass (Lolium multiflorum L.) cultivars under drought stress. The research was conducted in the Laboratory of the Department of Field Crops, Faculty of Agriculture, Siirt University. The plant material used in the study consisted of three Italian ryegrass cultivars Çiğdem, Elif, and Zeybek-19. These cultivars were germinated under different drought levels (0%, 5%, 10%, 15%, and 20%). The laboratory experiment was conducted with a randomized split-plot design, with four replications. In the study, germination percentage (GP), mean germination time (MGT), germination index (GI), germination of uniformity coefficient (CUG), germination energy (GE), seedling fresh weight (SFW), and seedling vigor index (SVI) parameters were examined. The increase in drought levels significantly (p<0.01) affected the germination and seedling characteristics of the Italian ryegrass cultivars. The cultivars had a statistically significant effect (p<0.01) on the GP, GE, SFW, and SVI. The drought values of the GP, MGT, CUG, GI, GE, SFW, and SVI parameters ranged from 49.8-89.8%, 1.9-3.4 days, 15.0-49.0, 4.8-15.8, 4.4-47.6, 22.3-38.0 mg, and 1.1-3.4, respectively, while the variety averages varied between 70.9-78.7%, 2.1-2.2 days, 38.5-40.4, 12.3-12.6, 28.0-38.4, 28.3-33.5 mg, and 2.1- 2.7, respectively. The effects of drought stress were observed in the germination and seedling growth parameters starting from the 10% drought level. According to the results of the study, the stress tolerance exhibited by the cultivars in response to drought levels also varied. Among the Italian ryegrass cultivars Çiğdem and Elif were more tolerant to drought in terms of germination and seedling growth parameters compared to the other cultivar. In areas experiencing drought, it is important to use drought-tolerance cultivars in Italian ryegrass cultivation, taking into account the genotypic differences.

Kaynakça

  • Açıkbaş, S., Özyazıcı, M.A., 2023. Effect of nitrogen doses on some agricultural characteristics of Italian ryegrass (Lolium multiflorum L.). EU 3rd International Conference On Health, Engineering And Applied Sciences, November 17-19, Tiran, p. 239-246. (In Turkish).
  • Açıkbaş, S., Taşkıran, S., Özyazıcı, M.A., 2024. Effect of organo-mineral fertilizer doses on forage yield and some agricultural characteristics of Italian ryegrass (Lolium multiflorum L.). VI. Baskent International Conference On Multidisciplinary Studies, 24-26 July, Ankara, Türkiye, p. 161-165. (In Turkish).
  • Açıkgöz, N., Açıkgöz, N., 2001. Common mistakes in the statistical analysis of agricultural experiments I. single factorials. ANADOLU Journal of the Aegean Agricultural Research Institute, 11(1): 135-147. (In Turkish).
  • Aganga, A.A., Omphile, U.J., Thema, T., Wilson. L.Z., 2004. Chemical composition of ryegrass (Lolium multiflorum L.) at different stages of growth and ryegrass silages with additives. Journal of Biological Sciences, 4(5): 645-649.
  • Ahmad, S., Ahmad, R., Ashraf, M.Y., Waraich, E.A., 2009. Sunflower (Helianthus annuus L.) response to drought stress at germination and seedling growth stages. Pakistan Journal of Botany, 41: 647-654.
  • Ahmadi, S., Ahmad, R., Ashraf, M.Y., Ashraf, M., Waraich, E.A., 2009. Sunflower (Helianthus annuus L.) response to drought stress at germination and seedling growth stages. Pakistan Journal of Botany, 41(2): 647-654.
  • An, Y.Y., Liang, Z.S., 2012. Staged strategy of plants in response to drought stress. Chinese Journal of Applied Ecology, 23(10): 2907-2915.
  • Anjum, S.A., Ashraf, U., Zohaib, A., Tanveer, M., Naeem, M., Ali, I., Tabassum, T., Nazir, U., 2017. Growth and developmental responses of crop plants under drought stress: A review. Zemdirbyste-Agriculture, 104: 267-276.
  • Arslan, M., Aksu, E., Doğan, E., 2018. Assessment of two grass pea (Lathyrus sativus L.) varieties in term of tolerance to drought stress. Turkish Journal of Agrıcultural and Natural Sciences, 5(3): 261-267. (In Turkish).
  • Aslan, H., Atış, İ., 2018. Effect of drought stress on germination and seedling growth of some grass pea cultivars. Journal of Agricultural Faculty of Mustafa Kemal University, 23(2): 218-231. (In Turkish).
  • Asma, H.I., Ashraf, M.Y., Saleem, M.H., Ashraf, M.A., Ali, B., Shereen, A., Farid, G., Ali, M., Shirazi, M.U., Yasin, G., 2023. Alleviating effects of salicylic acid spray on stage-based growth and antioxidative defense system in two droughtstressed rice (Oryza sativa L.) cultivars. Turkish Journal of Agriculture and Forestry, 47(1): 79-99.
  • Aydın, M., Hossein Pour, A., Haliloğlu, K., Tosun, M., 2015. Effect of putrescine application and drought stress on germination of wheat (Triticum aestivum L.). Atatürk University Journal of the Agricultural Faculty, 46(1): 43-45.
  • Bewely, J., Black, M., 1994. Seeds: Physiology of Development and Germination. Springer Science & Business Media, New York.
  • Bibi, H., Sadaqat, A., Tahir, M.H.N., Akram, H.M., 2012. Screening of sorghum (Sorghum bicolor var moench) for drought tolerance at seedling stage in polyethylene glycol. Journal of Animal and Plant Sciences, 22(3): 671-678.
  • Borawska-Jarmułowicz, B., Mastalerczuk, G., Gozdowski, D., Małuszyńska, E., Szydłowska, A., 2017. The sensitivity of Lolium perenne and Poa pratensis to salinity and drought during the seed germination and under different photoperiod conditions. Zemdirbyste-Agriculture, 104(1): 71-78.
  • Castroluna, A., Ruiz, O.M., Quiroga, A.M., Pedranzani, H.E., 2014. Effects of salinity and drought stress on germination, biomass and growth in three varieties of Medicago sativa L. avences. En Investigacion Agropecuaria, 18(1): 39-50.
  • Carrasco-Chilón, W., Cervantes-Peralta, M., Mendoza, L., Muñoz-Vílchez, Y., Quilcate, C., Nuñez-Melgar, D.C., Vásquez, H., Alvarez-García,W.Y., 2024. Morphological differentiation, yield, and cutting time of Lolium multiflorum L. under acid soil conditions in highlands. Plants, 13: 2331.
  • Chowdhury, J.A., Karim, M.A., Khaliq, Q.A., Ahmed, A.U., Khan, M.S.A., 2016. Effect of drought stress on gasexchange characteristics of four soybean genotypes. Bangladesh Journal of Agricultural Research, 41: 195-205.
  • Çığ, F., Erman, M., Ceritoğlu, M., 2021. Combined application of microbial inoculation and biochar to mitigate drought stress in wheat. Journal of the Institute of Science and Technology, 11(Special Issue): 3528-3538.
  • Çığ, F., Erman, M., İnal, B., Bektaş, H., Sonkurt, M., Mirzapour, M., Ceritoğlu, M., 2022. Mitigation of drought stress in wheat by bio-priming by PGPB containing ACC deaminase activity. Atatürk University Journal of Agricultural Faculty, 53(1): 51-57.
  • Çifçi, H., Açıkbaş, S., 2023. Effect of drought stress on germination and seedling growth of common vetch (Vicia sativa L.) cultivars. Turkish Journal of Agricultural Research, 10(3): 288-299. (In Turkish).
  • Ellis, R.A., Roberts, E.H., 1981. The quantification of ageing and survival in orthodox seed. Seed Science and Technology, 9(2): 373-409.
  • Farooq, M., Wahid, A., Kobayashi, N., Fujita, D., Basra, S.M.A., 2009. Plant drought stress: effects, mechanisms and management. Agronomy Sustain. Development, 29: 185-212.
  • Goettelmann, F., Chen, Y., Knorst, V., Yates, S., Copetti, D., Studer, B., Kölliker, R., 2024. High‐resolution bulked segregant analysis enables candidate gene identification for bacterial wilt resistance in Italian ryegrass (Lolium multiflorum Lam.). The Plant Journal, 118(5): 1516-1527.
  • Gürbüz, A., Kaya, M., Divanlı Türkan, A., Kaya, G., Kaya, M.D., Çiftçi, C.Y., 2009. The effects of seed size and drought stress on germination characteristics of chickpea (Cicer arietinum L.). Akdeniz University Journal of the Faculty of Agriculture, 22(1): 69-74. (In Turkish).
  • Hazarika, N., Sharma, K.K., Kurmi, K., Deka, B., 2024. Growth and yield parameters of ryegrass (Lolium multiflorum) as ınfluenced by irrigation regimes and nitrogen levels. Journal of Scientific Research and Reports, 30(7): 319-339.
  • Humphreys, M., Feuerstein, U., Vandewalle, M., Baert, J., 2010. Ryegrasses. In: B. Boller, U.K. Posselt and F. Veronesi (Eds.), Fodder Crops and Amenity Grasses, Springer, New York, pp. 211-260.
  • Hussain, M., Farooq, S., Hasan, W., Ul-allah, S., Tanveer, M., 2018. Drought stress in sunflower: Physiological effects and its management through breeding and agronomic alternatives. Agricultural Water Management, 201: 152-166.
  • Kalefetoğlu, T., Ekmekçioğlu, Y., 2005. The effects of drought on plants and tolerance mechanisms. Gazi University Journal of Science, 18(4): 723-740. (In Turkish).
  • Kalsa, K.K., Abebie, B., 2012. Influence of seed priming on seed germination and vigor traits of Vicia villosa ssp. dasycarpa (Ten.). African Journal of Agricultural Research, 7(21): 3202-3208.
  • Khan, M.A., Kashmir, S., Ali, H.H., Gul, B., Raza, A., Umm-E-Kulsoom, U., Uslu, O.S., Waheed, H., 2019. Environmental factors can affect the germination and growth of Parthenium hysterophorus and Rumex crispus. Pakistan Journal of Botany, 46(1): 81-90.
  • Khan, M.I., Shabbir, G., Akram, Z., Shah, M.K.N., Ansar, M., Cheema, N.M., Iqbal, M.S., 2013. Character association studies of seedling traits in different wheat genotypes under moisture stress conditions. SABRAO Journal of Breeding and Genetics, 45(3): 458-467.
  • Khodarhmpour, Z., 2011. Effect of drought stress induced by polyethylene glycol (PEG) on germination indices in corn (Zea mays L.) hybrids. African Journal of Biotechnology, 10(79): 18222-18227.
  • Li, Y., Li, H., Li, Y., Zhang, S., 2017. Improving wateruse efficiency by decreasing stomatal conductance and transpiration rate to maintain higher ear photosynthetic rate in drought-resistant wheat. The Crop Journal, 5(3): 231-239.
  • Molor, A., Khajidsuren, A., Myagmarjav, U., Vanjidorj, E., 2016. Comparative analysis of drought tolerance of Medicago L. plants under stressed conditions. Mongolian of Agricultural Sciences, 19(3): 32-40.
  • Muscolo, A., Sidari, M., Anastasi, U., Santonoceto, C., Maggio, A., 2014. Effect of PEG-induced drought stress on seed germination of four lentil genotypes. Journal of Plant Interactions, 9(1): 354-363.
  • Okçu, G., Kaya, M.D., Atak, M., 2005. Effects of salt and drought stresses on germination and seedling growth of pea (Pisum sativum L.). Turkish Journal of Agriculture and Forestry, 29(4): 237-242.
  • Rouhi, H.R., Aboutalebian, M.A., Sharif-Zadeh, F., 2011. Effects of hydro and osmopriming on drought stress tolerance during germination in four grass species. International Journal of Agriculture Science, 1(2): 701-774.
  • Samancıoğlu, A., Yıldırım, E., 2015. The effects of plant growth promoting bacteria applications on the ıncrease of drought tolerance in plants. Journal of Agricultural Faculty of Mustafa Kemal University, 20(1): 72-79. (In Turkish).
  • Scott, S.J., Jones, R.A., Williams, W.A., 1984. Review of data analysis methods for seed germination. Crop Science, 24(6): 1192-1199.
  • Seleiman, M.F., Al-Suhaibani, N., Ali, N., Akmal, M., Alotaibi, M., Refay, Y., Battaglia, M.L., 2021. Drought stress impacts on plants and different approaches to alleviate its adverse effects. Plants, 10(2): 259.
  • Soleymani, A., Shahrajabian, M.H., 2018. Changes in germination and seedling growth of different cultivars of cumin to drought stress. Cercetări Agronomice în Moldova, 1(173): 91-100.
  • Tiryaki, İ., 2016. Drought stress and tolerance mechanisms in alfalfa (Medicago sativa L.). Kahramanmaraş Sütçü İmam University Journal of Agriculture and Nature, 19(3): 296-304. (In Turkish).
  • Todaka, D., Zhao, Y., Yoshida, T., Kudo, M., Kidokoro, S., Mizoi, J., Kodaira, K., 2017. Temporal and spatial changes in gene expression, metabolite accumulation and phytohormone content in rice seedlings grown under drought stress conditions. The Plant Journal, 90: 61-78.
  • Turan, F., Samur, S., 2024. Investigation of the effect of boric acid and gibberellic acid priming on rapeseed (Brassica napus L.) seeds against drought stress. ISPEC Journal of Agricultural Sciences, 8(3): 756-765. (In Turkish).
  • Türkan, I., Bor, M., Özdemir, F., Koca, H., 2005. Differential responses of lipid peroxidants in the leaves of drought tolerant P. acutifolius gray and drought sensitive P. vulgaris L. subjected to polyethylene glycol mediated water stress. Plant Science, 168(1): 223-231.
  • Uslu, Ö.S., Gedik, O., Alhumedi, M., Alminfi, K., 2021. Effect of drought stress on germination and seedling development of some forage pea (Pisum sativum L.) varieties. International Journal of Anatolia Agricultural Engineering, 3(2): 28-36. (In Turkish).
  • Wang, Y.R., Yu, L., Nan, Z.B., Liu, Y.L., 2004. Vigor tests used to rank seed lot quality and predict field emergence in four forage species. Crop Sciences, 44(2): 535-541.
  • Wang, W., Wang, C., Pan, D., Zhang, Y., Luo, B., Ji, J., 2018. Effects of drought stress on photosynthesis and chlorophyll fluorescence images of soybean (Glycine max) seedlings. International Journal of Agricultural and Biological Engineering, 11(2): 196-201.
  • Wei, Y., Jin, J., Jiang, S., Ning, S., Liu, L., 2018. Quantitative response of soybean development and yield to drought stress during different growth stages in the Huaibei Plain China. Agronomy, 8(7): 97.
  • Windauer, L., Altuna, A., Benech-Arnold, R., 2007. Hydritime analysis of lesquerella fendleri seed germination responses to priming treatments. Industrial Crops and Products, 25: 70-74.
  • Van den Berg, L., Zeng, Y.J., 2006. Response of South African indigenous grass species to drought stress induced by polyethylene glycol (PEG) 6000, South African Journal of Botany, 72: 284-286.
  • Yasmeen, S., Wahab, A., Saleem, M.H., Ali, B., Qureshi, K.A., Jaremko, M., 2022. Melatonin as a foliar application and adaptation in lentil (Lens culinaris Medik.) crops under drought stress. Sustainability, 14: 16345.
  • Yılmaz, M.B., Kısakürek, Ş., 2020. Effects of salt and PEG-induced drought stress on seedling performance of perennial ryegrasses (Lolium perenne L.) cultivars. Journal of Agricultural Faculty of Mustafa Kemal University, 25(3): 360-369. (In Turkish).
  • Yılmaz, M., Doğru, A., Kozan, Y., 2022. Effects of drought stress on the germination and shoot development in some cool climate turfgrass. Journal of Agricultural Biotechnology, 3(1): 1-10. (In Turkish).
  • Yousefi, A.R., Rashidi, S., Moradi, P., Mastinu, A., 2020. Germination and seedling growth responses of Zygophyllum fabago, Salsola kali L. and Atriplex canescens to PEG-induced drought stress. Environments, 7(107): 1-10.
  • Zeid, I.M., Shedeed, Z.A., 2006. Response of alfalfa to putrescine treatment under drought stress. Biologia Plantarum, 50: 635-640.

Response of Italian Ryegrass (Lolium multiflorum L.) Cultivars to Different Drought Levels

Yıl 2025, Cilt: 12 Sayı: 1, 91 - 100, 28.03.2025
https://doi.org/10.19159/tutad.1637771

Öz

This study is aims to determine the germination and seedling growth responses of Italian ryegrass (Lolium multiflorum L.) cultivars under drought stress. The research was conducted in the Laboratory of the Department of Field Crops, Faculty of Agriculture, Siirt University. The plant material used in the study consisted of three Italian ryegrass cultivars Çiğdem, Elif, and Zeybek-19. These cultivars were germinated under different drought levels (0%, 5%, 10%, 15%, and 20%). The laboratory experiment was conducted with a randomized split-plot design, with four replications. In the study, germination percentage (GP), mean germination time (MGT), germination index (GI), germination of uniformity coefficient (CUG), germination energy (GE), seedling fresh weight (SFW), and seedling vigor index (SVI) parameters were examined. The increase in drought levels significantly (p<0.01) affected the germination and seedling characteristics of the Italian ryegrass cultivars. The cultivars had a statistically significant effect (p<0.01) on the GP, GE, SFW, and SVI. The drought values of the GP, MGT, CUG, GI, GE, SFW, and SVI parameters ranged from 49.8-89.8%, 1.9-3.4 days, 15.0-49.0, 4.8-15.8, 4.4-47.6, 22.3-38.0 mg, and 1.1-3.4, respectively, while the variety averages varied between 70.9-78.7%, 2.1-2.2 days, 38.5-40.4, 12.3-12.6, 28.0-38.4, 28.3-33.5 mg, and 2.1- 2.7, respectively. The effects of drought stress were observed in the germination and seedling growth parameters starting from the 10% drought level. According to the results of the study, the stress tolerance exhibited by the cultivars in response to drought levels also varied. Among the Italian ryegrass cultivars Çiğdem and Elif were more tolerant to drought in terms of germination and seedling growth parameters compared to the other cultivar. In areas experiencing drought, it is important to use drought-tolerance cultivars in Italian ryegrass cultivation, taking into account the genotypic differences.

Kaynakça

  • Açıkbaş, S., Özyazıcı, M.A., 2023. Effect of nitrogen doses on some agricultural characteristics of Italian ryegrass (Lolium multiflorum L.). EU 3rd International Conference On Health, Engineering And Applied Sciences, November 17-19, Tiran, p. 239-246. (In Turkish).
  • Açıkbaş, S., Taşkıran, S., Özyazıcı, M.A., 2024. Effect of organo-mineral fertilizer doses on forage yield and some agricultural characteristics of Italian ryegrass (Lolium multiflorum L.). VI. Baskent International Conference On Multidisciplinary Studies, 24-26 July, Ankara, Türkiye, p. 161-165. (In Turkish).
  • Açıkgöz, N., Açıkgöz, N., 2001. Common mistakes in the statistical analysis of agricultural experiments I. single factorials. ANADOLU Journal of the Aegean Agricultural Research Institute, 11(1): 135-147. (In Turkish).
  • Aganga, A.A., Omphile, U.J., Thema, T., Wilson. L.Z., 2004. Chemical composition of ryegrass (Lolium multiflorum L.) at different stages of growth and ryegrass silages with additives. Journal of Biological Sciences, 4(5): 645-649.
  • Ahmad, S., Ahmad, R., Ashraf, M.Y., Waraich, E.A., 2009. Sunflower (Helianthus annuus L.) response to drought stress at germination and seedling growth stages. Pakistan Journal of Botany, 41: 647-654.
  • Ahmadi, S., Ahmad, R., Ashraf, M.Y., Ashraf, M., Waraich, E.A., 2009. Sunflower (Helianthus annuus L.) response to drought stress at germination and seedling growth stages. Pakistan Journal of Botany, 41(2): 647-654.
  • An, Y.Y., Liang, Z.S., 2012. Staged strategy of plants in response to drought stress. Chinese Journal of Applied Ecology, 23(10): 2907-2915.
  • Anjum, S.A., Ashraf, U., Zohaib, A., Tanveer, M., Naeem, M., Ali, I., Tabassum, T., Nazir, U., 2017. Growth and developmental responses of crop plants under drought stress: A review. Zemdirbyste-Agriculture, 104: 267-276.
  • Arslan, M., Aksu, E., Doğan, E., 2018. Assessment of two grass pea (Lathyrus sativus L.) varieties in term of tolerance to drought stress. Turkish Journal of Agrıcultural and Natural Sciences, 5(3): 261-267. (In Turkish).
  • Aslan, H., Atış, İ., 2018. Effect of drought stress on germination and seedling growth of some grass pea cultivars. Journal of Agricultural Faculty of Mustafa Kemal University, 23(2): 218-231. (In Turkish).
  • Asma, H.I., Ashraf, M.Y., Saleem, M.H., Ashraf, M.A., Ali, B., Shereen, A., Farid, G., Ali, M., Shirazi, M.U., Yasin, G., 2023. Alleviating effects of salicylic acid spray on stage-based growth and antioxidative defense system in two droughtstressed rice (Oryza sativa L.) cultivars. Turkish Journal of Agriculture and Forestry, 47(1): 79-99.
  • Aydın, M., Hossein Pour, A., Haliloğlu, K., Tosun, M., 2015. Effect of putrescine application and drought stress on germination of wheat (Triticum aestivum L.). Atatürk University Journal of the Agricultural Faculty, 46(1): 43-45.
  • Bewely, J., Black, M., 1994. Seeds: Physiology of Development and Germination. Springer Science & Business Media, New York.
  • Bibi, H., Sadaqat, A., Tahir, M.H.N., Akram, H.M., 2012. Screening of sorghum (Sorghum bicolor var moench) for drought tolerance at seedling stage in polyethylene glycol. Journal of Animal and Plant Sciences, 22(3): 671-678.
  • Borawska-Jarmułowicz, B., Mastalerczuk, G., Gozdowski, D., Małuszyńska, E., Szydłowska, A., 2017. The sensitivity of Lolium perenne and Poa pratensis to salinity and drought during the seed germination and under different photoperiod conditions. Zemdirbyste-Agriculture, 104(1): 71-78.
  • Castroluna, A., Ruiz, O.M., Quiroga, A.M., Pedranzani, H.E., 2014. Effects of salinity and drought stress on germination, biomass and growth in three varieties of Medicago sativa L. avences. En Investigacion Agropecuaria, 18(1): 39-50.
  • Carrasco-Chilón, W., Cervantes-Peralta, M., Mendoza, L., Muñoz-Vílchez, Y., Quilcate, C., Nuñez-Melgar, D.C., Vásquez, H., Alvarez-García,W.Y., 2024. Morphological differentiation, yield, and cutting time of Lolium multiflorum L. under acid soil conditions in highlands. Plants, 13: 2331.
  • Chowdhury, J.A., Karim, M.A., Khaliq, Q.A., Ahmed, A.U., Khan, M.S.A., 2016. Effect of drought stress on gasexchange characteristics of four soybean genotypes. Bangladesh Journal of Agricultural Research, 41: 195-205.
  • Çığ, F., Erman, M., Ceritoğlu, M., 2021. Combined application of microbial inoculation and biochar to mitigate drought stress in wheat. Journal of the Institute of Science and Technology, 11(Special Issue): 3528-3538.
  • Çığ, F., Erman, M., İnal, B., Bektaş, H., Sonkurt, M., Mirzapour, M., Ceritoğlu, M., 2022. Mitigation of drought stress in wheat by bio-priming by PGPB containing ACC deaminase activity. Atatürk University Journal of Agricultural Faculty, 53(1): 51-57.
  • Çifçi, H., Açıkbaş, S., 2023. Effect of drought stress on germination and seedling growth of common vetch (Vicia sativa L.) cultivars. Turkish Journal of Agricultural Research, 10(3): 288-299. (In Turkish).
  • Ellis, R.A., Roberts, E.H., 1981. The quantification of ageing and survival in orthodox seed. Seed Science and Technology, 9(2): 373-409.
  • Farooq, M., Wahid, A., Kobayashi, N., Fujita, D., Basra, S.M.A., 2009. Plant drought stress: effects, mechanisms and management. Agronomy Sustain. Development, 29: 185-212.
  • Goettelmann, F., Chen, Y., Knorst, V., Yates, S., Copetti, D., Studer, B., Kölliker, R., 2024. High‐resolution bulked segregant analysis enables candidate gene identification for bacterial wilt resistance in Italian ryegrass (Lolium multiflorum Lam.). The Plant Journal, 118(5): 1516-1527.
  • Gürbüz, A., Kaya, M., Divanlı Türkan, A., Kaya, G., Kaya, M.D., Çiftçi, C.Y., 2009. The effects of seed size and drought stress on germination characteristics of chickpea (Cicer arietinum L.). Akdeniz University Journal of the Faculty of Agriculture, 22(1): 69-74. (In Turkish).
  • Hazarika, N., Sharma, K.K., Kurmi, K., Deka, B., 2024. Growth and yield parameters of ryegrass (Lolium multiflorum) as ınfluenced by irrigation regimes and nitrogen levels. Journal of Scientific Research and Reports, 30(7): 319-339.
  • Humphreys, M., Feuerstein, U., Vandewalle, M., Baert, J., 2010. Ryegrasses. In: B. Boller, U.K. Posselt and F. Veronesi (Eds.), Fodder Crops and Amenity Grasses, Springer, New York, pp. 211-260.
  • Hussain, M., Farooq, S., Hasan, W., Ul-allah, S., Tanveer, M., 2018. Drought stress in sunflower: Physiological effects and its management through breeding and agronomic alternatives. Agricultural Water Management, 201: 152-166.
  • Kalefetoğlu, T., Ekmekçioğlu, Y., 2005. The effects of drought on plants and tolerance mechanisms. Gazi University Journal of Science, 18(4): 723-740. (In Turkish).
  • Kalsa, K.K., Abebie, B., 2012. Influence of seed priming on seed germination and vigor traits of Vicia villosa ssp. dasycarpa (Ten.). African Journal of Agricultural Research, 7(21): 3202-3208.
  • Khan, M.A., Kashmir, S., Ali, H.H., Gul, B., Raza, A., Umm-E-Kulsoom, U., Uslu, O.S., Waheed, H., 2019. Environmental factors can affect the germination and growth of Parthenium hysterophorus and Rumex crispus. Pakistan Journal of Botany, 46(1): 81-90.
  • Khan, M.I., Shabbir, G., Akram, Z., Shah, M.K.N., Ansar, M., Cheema, N.M., Iqbal, M.S., 2013. Character association studies of seedling traits in different wheat genotypes under moisture stress conditions. SABRAO Journal of Breeding and Genetics, 45(3): 458-467.
  • Khodarhmpour, Z., 2011. Effect of drought stress induced by polyethylene glycol (PEG) on germination indices in corn (Zea mays L.) hybrids. African Journal of Biotechnology, 10(79): 18222-18227.
  • Li, Y., Li, H., Li, Y., Zhang, S., 2017. Improving wateruse efficiency by decreasing stomatal conductance and transpiration rate to maintain higher ear photosynthetic rate in drought-resistant wheat. The Crop Journal, 5(3): 231-239.
  • Molor, A., Khajidsuren, A., Myagmarjav, U., Vanjidorj, E., 2016. Comparative analysis of drought tolerance of Medicago L. plants under stressed conditions. Mongolian of Agricultural Sciences, 19(3): 32-40.
  • Muscolo, A., Sidari, M., Anastasi, U., Santonoceto, C., Maggio, A., 2014. Effect of PEG-induced drought stress on seed germination of four lentil genotypes. Journal of Plant Interactions, 9(1): 354-363.
  • Okçu, G., Kaya, M.D., Atak, M., 2005. Effects of salt and drought stresses on germination and seedling growth of pea (Pisum sativum L.). Turkish Journal of Agriculture and Forestry, 29(4): 237-242.
  • Rouhi, H.R., Aboutalebian, M.A., Sharif-Zadeh, F., 2011. Effects of hydro and osmopriming on drought stress tolerance during germination in four grass species. International Journal of Agriculture Science, 1(2): 701-774.
  • Samancıoğlu, A., Yıldırım, E., 2015. The effects of plant growth promoting bacteria applications on the ıncrease of drought tolerance in plants. Journal of Agricultural Faculty of Mustafa Kemal University, 20(1): 72-79. (In Turkish).
  • Scott, S.J., Jones, R.A., Williams, W.A., 1984. Review of data analysis methods for seed germination. Crop Science, 24(6): 1192-1199.
  • Seleiman, M.F., Al-Suhaibani, N., Ali, N., Akmal, M., Alotaibi, M., Refay, Y., Battaglia, M.L., 2021. Drought stress impacts on plants and different approaches to alleviate its adverse effects. Plants, 10(2): 259.
  • Soleymani, A., Shahrajabian, M.H., 2018. Changes in germination and seedling growth of different cultivars of cumin to drought stress. Cercetări Agronomice în Moldova, 1(173): 91-100.
  • Tiryaki, İ., 2016. Drought stress and tolerance mechanisms in alfalfa (Medicago sativa L.). Kahramanmaraş Sütçü İmam University Journal of Agriculture and Nature, 19(3): 296-304. (In Turkish).
  • Todaka, D., Zhao, Y., Yoshida, T., Kudo, M., Kidokoro, S., Mizoi, J., Kodaira, K., 2017. Temporal and spatial changes in gene expression, metabolite accumulation and phytohormone content in rice seedlings grown under drought stress conditions. The Plant Journal, 90: 61-78.
  • Turan, F., Samur, S., 2024. Investigation of the effect of boric acid and gibberellic acid priming on rapeseed (Brassica napus L.) seeds against drought stress. ISPEC Journal of Agricultural Sciences, 8(3): 756-765. (In Turkish).
  • Türkan, I., Bor, M., Özdemir, F., Koca, H., 2005. Differential responses of lipid peroxidants in the leaves of drought tolerant P. acutifolius gray and drought sensitive P. vulgaris L. subjected to polyethylene glycol mediated water stress. Plant Science, 168(1): 223-231.
  • Uslu, Ö.S., Gedik, O., Alhumedi, M., Alminfi, K., 2021. Effect of drought stress on germination and seedling development of some forage pea (Pisum sativum L.) varieties. International Journal of Anatolia Agricultural Engineering, 3(2): 28-36. (In Turkish).
  • Wang, Y.R., Yu, L., Nan, Z.B., Liu, Y.L., 2004. Vigor tests used to rank seed lot quality and predict field emergence in four forage species. Crop Sciences, 44(2): 535-541.
  • Wang, W., Wang, C., Pan, D., Zhang, Y., Luo, B., Ji, J., 2018. Effects of drought stress on photosynthesis and chlorophyll fluorescence images of soybean (Glycine max) seedlings. International Journal of Agricultural and Biological Engineering, 11(2): 196-201.
  • Wei, Y., Jin, J., Jiang, S., Ning, S., Liu, L., 2018. Quantitative response of soybean development and yield to drought stress during different growth stages in the Huaibei Plain China. Agronomy, 8(7): 97.
  • Windauer, L., Altuna, A., Benech-Arnold, R., 2007. Hydritime analysis of lesquerella fendleri seed germination responses to priming treatments. Industrial Crops and Products, 25: 70-74.
  • Van den Berg, L., Zeng, Y.J., 2006. Response of South African indigenous grass species to drought stress induced by polyethylene glycol (PEG) 6000, South African Journal of Botany, 72: 284-286.
  • Yasmeen, S., Wahab, A., Saleem, M.H., Ali, B., Qureshi, K.A., Jaremko, M., 2022. Melatonin as a foliar application and adaptation in lentil (Lens culinaris Medik.) crops under drought stress. Sustainability, 14: 16345.
  • Yılmaz, M.B., Kısakürek, Ş., 2020. Effects of salt and PEG-induced drought stress on seedling performance of perennial ryegrasses (Lolium perenne L.) cultivars. Journal of Agricultural Faculty of Mustafa Kemal University, 25(3): 360-369. (In Turkish).
  • Yılmaz, M., Doğru, A., Kozan, Y., 2022. Effects of drought stress on the germination and shoot development in some cool climate turfgrass. Journal of Agricultural Biotechnology, 3(1): 1-10. (In Turkish).
  • Yousefi, A.R., Rashidi, S., Moradi, P., Mastinu, A., 2020. Germination and seedling growth responses of Zygophyllum fabago, Salsola kali L. and Atriplex canescens to PEG-induced drought stress. Environments, 7(107): 1-10.
  • Zeid, I.M., Shedeed, Z.A., 2006. Response of alfalfa to putrescine treatment under drought stress. Biologia Plantarum, 50: 635-640.
Toplam 57 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Çayır-Mera ve Yem Bitkileri
Bölüm Araştırma Makalesi / Research Article
Yazarlar

Semih Açıkbaş 0000-0003-4384-3908

Yayımlanma Tarihi 28 Mart 2025
Gönderilme Tarihi 11 Şubat 2025
Kabul Tarihi 23 Mart 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 12 Sayı: 1

Kaynak Göster

APA Açıkbaş, S. (2025). Response of Italian Ryegrass (Lolium multiflorum L.) Cultivars to Different Drought Levels. Türkiye Tarımsal Araştırmalar Dergisi, 12(1), 91-100. https://doi.org/10.19159/tutad.1637771
AMA Açıkbaş S. Response of Italian Ryegrass (Lolium multiflorum L.) Cultivars to Different Drought Levels. TÜTAD. Mart 2025;12(1):91-100. doi:10.19159/tutad.1637771
Chicago Açıkbaş, Semih. “Response of Italian Ryegrass (Lolium Multiflorum L.) Cultivars to Different Drought Levels”. Türkiye Tarımsal Araştırmalar Dergisi 12, sy. 1 (Mart 2025): 91-100. https://doi.org/10.19159/tutad.1637771.
EndNote Açıkbaş S (01 Mart 2025) Response of Italian Ryegrass (Lolium multiflorum L.) Cultivars to Different Drought Levels. Türkiye Tarımsal Araştırmalar Dergisi 12 1 91–100.
IEEE S. Açıkbaş, “Response of Italian Ryegrass (Lolium multiflorum L.) Cultivars to Different Drought Levels”, TÜTAD, c. 12, sy. 1, ss. 91–100, 2025, doi: 10.19159/tutad.1637771.
ISNAD Açıkbaş, Semih. “Response of Italian Ryegrass (Lolium Multiflorum L.) Cultivars to Different Drought Levels”. Türkiye Tarımsal Araştırmalar Dergisi 12/1 (Mart 2025), 91-100. https://doi.org/10.19159/tutad.1637771.
JAMA Açıkbaş S. Response of Italian Ryegrass (Lolium multiflorum L.) Cultivars to Different Drought Levels. TÜTAD. 2025;12:91–100.
MLA Açıkbaş, Semih. “Response of Italian Ryegrass (Lolium Multiflorum L.) Cultivars to Different Drought Levels”. Türkiye Tarımsal Araştırmalar Dergisi, c. 12, sy. 1, 2025, ss. 91-100, doi:10.19159/tutad.1637771.
Vancouver Açıkbaş S. Response of Italian Ryegrass (Lolium multiflorum L.) Cultivars to Different Drought Levels. TÜTAD. 2025;12(1):91-100.

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