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Bor İçeriği Farklı Olan Filtre Atıklarının Arpada (Hordeum vulgare L.) Çimlenme ve Bazı Fizyolojik Parametrelere Etkisi

Year 2022, Volume: 5 Issue: 1, 46 - 54, 21.10.2022

Abstract

Bu çalışmada Emet Borik Asit Tesisine ait bor içerikleri farklı olan iki atığın arpa (Hordeum vulgare L. cv. İnce04) tohumlarının çimlenmesi ve erken fide evresindeki bazı vejetatif parametreler üzerine etkileri araştırılmıştır. 101 ve 102 filtre atıklarından farklı konsantrasyonlarda hazırlanan çözeltiler kullanılarak arpa tohumları kontrollü ortamda çimlendirilmiş ve bitkiciklerin erken evredeki fide büyümesi gözlenmiştir. Arpa tohumlarının çimlenme oranları atık çeşidi ya da konsantrasyonundan etkilenmemiştir, ancak atıklardan hazırlanmış çözeltilerin artan konsantrasyonları bitkiciklerin gövde ve kök uzunluk değerlerini ve yaş-kuru ağırlıklarını olumsuz yönde etkilemiştir. Bu negatif etki bor içeriği daha fazla olan 101 filtre atığı kullanıldığı zaman daha belirgin olarak görülmüştür.

Supporting Institution

Dumlupınar Üniversitesi BAP

Project Number

DPÜBAP/ 2006-3

Thanks

Dumlupınar Üniversitesi Bilimsel Araştırma Projeleri Koordinatörlüğüne destekleri için teşekkür ederiz.

References

  • Abali, Y., Yurdusev, M. A. , Zeybek, M. S. , Kumanlioglu, A. A., 2007.Using phosphogypsume and boron concentrator wastes in light brick production. Construction and Building Materials, 21(1), 52-56.
  • Alamri, S.A, Siddiqui,M.H., Al-Khaishani, M.Y.,. Ali, H.M., 2018. Boron induces seed germination and seedling growth of Hordeum vulgare L. under Nacl stress. Journal of Advances in Agriculture, 8(1), 1224-1234.
  • Ashagre, H., Hamza, I.A., Fita, U., Nedesa, W., 2014. Influence of boron on seed germination and seedling growth of wheat (Triticum aestivum L.). African Journal of Plant Science. 8(2), 133-139.
  • Ayvaz, M., 2002. Bazı arpa çeşitlerinde borun büyüme ve gelişme üzerine etkileri. Yüksek Lisans Tezi. Ege Üniversitesi, İzmir, Türkiye.
  • Ayvaz, M., Koyuncu, M., Güven, A., Fagerstedt, K.V., 2012. Does boron affect hormone levels of barley cultivars?. Eur. Asian J. Biosci., 6, 113-120.
  • Babaoğlu, M, Gezgin, S., Topal, A., Sade, B., Dural, H., 2004. Gypsophila sphaerocephala Fenzl ex Tchihat.: A boron hyperaccumulator plant species that may phytoremediate soils with toxic B levels. Turkish Journal of Botany, 28, 273-278.
  • Brown, P.H.; Hu, H., 1997. Does boron play only a structural role in the growing tissues of higher plants? Plant Soil, 196, 211–215.
  • Brown, P. H., Bellaloui, N., Wimmer, M. A., Bassil, E. S., Ruiz, J., Hu, H., Pfeffer, H., Dannel, Römheld, V., 2002. Boron in plant biology. Plant Biol., 4, 205- 223.
  • Chormova, D., Fry, S.C.,2017. Boron bridging of rhamnogalacturonan-II is promoted in vitro by cationic chaperones, including polyhistidine and wall glycoproteins. New Phytol., 209, 241–251.
  • Costa, B.G.P, Justino, G.C., Aguiar, L.F., Souza, L.A., Camargos, L.S., 2018. Boron phytoremediation: Stizolobium aterrimum is tolerant and can be used for phytomanagement of boron excess in soils. International Journal of Environmental Studies, 76(2), 329-337.
  • Dordas, C., Chrispeels, M.J., Brown, P.H.,2000. Permeability and channel-mediated transport of boric acid across membrane vesicles isolated from squash roots. Plant Physiol., 124, 1349–1361.
  • Ediz, N., Özdağ, H., 2001. Bor mineralleri ve ekonomisi, DPÜ Fen Bilim. Enst. Derg., 2, 133-152.
  • Elfeky, S., El-Shintinawy, F., Shaker, E.M., El Din, H.S. 2012. Effect of elevated boron concentrations on the growth and yield of barley (Hordeum vulgare l.) and alleviation of its toxicity using different plant growth modulators. Australian Journal of Crop Science, 6(12), 1687-1695.
  • Ermiş, İ., 2002. Bazı arpa çeşitlerinin çimlenme yüzdesi ve antioksidant enzim düzeylerine bor stresinin etkisi.Yüksek Lisans Tezi. Ege Üniversitesi, İzmir, Türkiye.
  • Farag, M., Fang, Z. M. 2014. Effect of boron toxicity stress on seed germination, root elongation and early seedling development of watermelon Citrullus lanatus Thumb. Journal of Animal and Plant Science, 21(2), 3313 – 3325.
  • Farooq, M., Rehman, A., Aziz, T, Habib, M., 2011. Boron nutripriming improves the germination and early seedling growth of rice (Oryza sativa L.). Journal of Plant Nutrition, 34(10), 1507-1515. doi:10.1080/01904167.2011.585207.
  • Goldbach, H.E., Wimmer, M.A., Findeklee, P., 2000. Discussion paper: Boron – How can the critical level be defined? J. Plant Nutr. Soil Sci., 163, 115–121.
  • Iqbal, S., Farooq, M., Cheema, S.A., Afzal, I., 2017. Boron seed priming improves the seedling emergence, growth, grain yield and grain biofortification of bread wheat. International Journal of Agriculture and Biology, 19(1), 177‒182.
  • Jokanovi´c, M.B., 2020. Boron Toxicity and Deficiency in Agricultural Plants, Int. J. Mol. Sci., 21, 1424; doi:10.3390/ijms21041424.
  • Karabal, E., Yücel, M., Öktem, H.A., 2003. Antioxidant responses of tolerant and sensitive barley cultivars to boron toxicity. Plant Science, 164(6), 925-933.
  • Karasu, B., Kaya, G., Yurdakul, H. 2002. Etibor Kırka Boraks İşletmesi konsantre ve türev atıklarının duvar karosu bünye özelliklerine etkisi. I. Uluslararası Bor Sempozyumu (224-228), Kütahya, Türkiye.
  • Keskin, H., 2010. Arpa çeşitleri (Hordeum vulgare) ile çorak çimi’nde (Puccinellia distans) bor toksisitesinin temel fizyolojik ve biyokimyasal özelliklere etkisinin belirlenmesi. Yüksek Lisans Tezi. Selçuk Üniversitesi, Konya, Türkiye.
  • Mirshekari, B., 2012. Seed priming with iron and boron enhances germination and yield of dill (Anethum graveolens). Turk Journal of Agriculture and Forestry, 36, 27-33.
  • Munawar, M., Ikram, M., Iqbal, M., Raza, M.M., Habib, S., Hammad, G., Najeebullah, M., Saleem, M., Ashraf, R., 2013. Effect of seed priming with zinc, boron and manganese on seedling health in carrot (Daucus carota L.). International Journal of Agriculture and Crop Sciences, 5 (22), 2697-2702.
  • Rehman, A., Fatima, F., Qamar, R., Farukh, F., Alwahibi, M.S., Hussain, M., 2022. The impact of boron seed priming on seedling establishment, growth, and grain biofortification of mungbean (Vigna radiata L.) in yermosols. PLoS ONE 17(3): e0265956.
  • Seth, K., Aery, N.C.,2017. Boron induced changes in biochemical constituents, enzymatic activities, and growth performance of wheat. Acta Physiol. Plant., 39, 244.
  • Stiles, A.R., Bautista, D, Atalay, E., Babaoğlu, M., Terry, N., 2010. Mechanisms of boron tolerance and accumulation in plants: A physiological comparison of the extremely boron-tolerant plant species, Puccinellia distans, with the moderately boron-tolerant Gypsophila arrostil, Environ. Sci. Technol. 44(18), 7089–7095.
  • Taban, S. ve Erdal, İ., 2000. Bor uygulamasının değişik buğday çeşitlerinde gelişme ve toprak üstü aksamda bor dağılımı üzerine etkisi. Turkish Journal of Agriculture and Forestry, 24, 255-262.
  • Topçu, İ.B., Boğa, A.R., 2009. Effect of boron waste on the properties of mortar and concrete. Waste Management & Research: The Journal for a Sustainable Circular Economy, 28(7), 626-633. Doi: 10.1177/0734242X09345561.
  • Torun, A., Yazıcı, A., Erdem, H., Çakmak, İ.,2006. Genotypic variation in tolerance to boron toxicity in 70 durum wheat genotypes. Turk Journal of Agriculture and Forestry, 30, 49-58.
  • Wang, Q., Lu, L., Wu, X., Li, Y., Lin, J., 2003. Boron influences polen germination and pollen tube growth in Picea meyeri. Tree Physiology, 23, 345- 351.
  • Yazıcı, D.T., Çetinkaya, H., 2017. Evaluation of boron industrial solid waste in composite materials. Composite Interfaces, 25(1), 13-25. Doi: 10.1080/09276440.2017.1319668.
  • Yılmaz, A., 2002. Her derde deva hazinemiz:bor. Bilim ve Teknik Dergisi, 414, 38- 48.
  • Zhao, D., Oosterhuis, D.M. 2002. Cotton carbon exchange, nonstructural carbohydrates and boron distribution in tissues during development of boron deficiency. Field Crops Research, 78, 75-87.
  • Zorluer, İ., Gücek, S., 2017. Usage of Fly Ash and Waste Slime Boron for Soil Stabilization. Periodicals of Engineering and Natural Sciences. 5(1), 51-54. Doi: 10.21533/pen.v5i1.74.
Year 2022, Volume: 5 Issue: 1, 46 - 54, 21.10.2022

Abstract

Project Number

DPÜBAP/ 2006-3

References

  • Abali, Y., Yurdusev, M. A. , Zeybek, M. S. , Kumanlioglu, A. A., 2007.Using phosphogypsume and boron concentrator wastes in light brick production. Construction and Building Materials, 21(1), 52-56.
  • Alamri, S.A, Siddiqui,M.H., Al-Khaishani, M.Y.,. Ali, H.M., 2018. Boron induces seed germination and seedling growth of Hordeum vulgare L. under Nacl stress. Journal of Advances in Agriculture, 8(1), 1224-1234.
  • Ashagre, H., Hamza, I.A., Fita, U., Nedesa, W., 2014. Influence of boron on seed germination and seedling growth of wheat (Triticum aestivum L.). African Journal of Plant Science. 8(2), 133-139.
  • Ayvaz, M., 2002. Bazı arpa çeşitlerinde borun büyüme ve gelişme üzerine etkileri. Yüksek Lisans Tezi. Ege Üniversitesi, İzmir, Türkiye.
  • Ayvaz, M., Koyuncu, M., Güven, A., Fagerstedt, K.V., 2012. Does boron affect hormone levels of barley cultivars?. Eur. Asian J. Biosci., 6, 113-120.
  • Babaoğlu, M, Gezgin, S., Topal, A., Sade, B., Dural, H., 2004. Gypsophila sphaerocephala Fenzl ex Tchihat.: A boron hyperaccumulator plant species that may phytoremediate soils with toxic B levels. Turkish Journal of Botany, 28, 273-278.
  • Brown, P.H.; Hu, H., 1997. Does boron play only a structural role in the growing tissues of higher plants? Plant Soil, 196, 211–215.
  • Brown, P. H., Bellaloui, N., Wimmer, M. A., Bassil, E. S., Ruiz, J., Hu, H., Pfeffer, H., Dannel, Römheld, V., 2002. Boron in plant biology. Plant Biol., 4, 205- 223.
  • Chormova, D., Fry, S.C.,2017. Boron bridging of rhamnogalacturonan-II is promoted in vitro by cationic chaperones, including polyhistidine and wall glycoproteins. New Phytol., 209, 241–251.
  • Costa, B.G.P, Justino, G.C., Aguiar, L.F., Souza, L.A., Camargos, L.S., 2018. Boron phytoremediation: Stizolobium aterrimum is tolerant and can be used for phytomanagement of boron excess in soils. International Journal of Environmental Studies, 76(2), 329-337.
  • Dordas, C., Chrispeels, M.J., Brown, P.H.,2000. Permeability and channel-mediated transport of boric acid across membrane vesicles isolated from squash roots. Plant Physiol., 124, 1349–1361.
  • Ediz, N., Özdağ, H., 2001. Bor mineralleri ve ekonomisi, DPÜ Fen Bilim. Enst. Derg., 2, 133-152.
  • Elfeky, S., El-Shintinawy, F., Shaker, E.M., El Din, H.S. 2012. Effect of elevated boron concentrations on the growth and yield of barley (Hordeum vulgare l.) and alleviation of its toxicity using different plant growth modulators. Australian Journal of Crop Science, 6(12), 1687-1695.
  • Ermiş, İ., 2002. Bazı arpa çeşitlerinin çimlenme yüzdesi ve antioksidant enzim düzeylerine bor stresinin etkisi.Yüksek Lisans Tezi. Ege Üniversitesi, İzmir, Türkiye.
  • Farag, M., Fang, Z. M. 2014. Effect of boron toxicity stress on seed germination, root elongation and early seedling development of watermelon Citrullus lanatus Thumb. Journal of Animal and Plant Science, 21(2), 3313 – 3325.
  • Farooq, M., Rehman, A., Aziz, T, Habib, M., 2011. Boron nutripriming improves the germination and early seedling growth of rice (Oryza sativa L.). Journal of Plant Nutrition, 34(10), 1507-1515. doi:10.1080/01904167.2011.585207.
  • Goldbach, H.E., Wimmer, M.A., Findeklee, P., 2000. Discussion paper: Boron – How can the critical level be defined? J. Plant Nutr. Soil Sci., 163, 115–121.
  • Iqbal, S., Farooq, M., Cheema, S.A., Afzal, I., 2017. Boron seed priming improves the seedling emergence, growth, grain yield and grain biofortification of bread wheat. International Journal of Agriculture and Biology, 19(1), 177‒182.
  • Jokanovi´c, M.B., 2020. Boron Toxicity and Deficiency in Agricultural Plants, Int. J. Mol. Sci., 21, 1424; doi:10.3390/ijms21041424.
  • Karabal, E., Yücel, M., Öktem, H.A., 2003. Antioxidant responses of tolerant and sensitive barley cultivars to boron toxicity. Plant Science, 164(6), 925-933.
  • Karasu, B., Kaya, G., Yurdakul, H. 2002. Etibor Kırka Boraks İşletmesi konsantre ve türev atıklarının duvar karosu bünye özelliklerine etkisi. I. Uluslararası Bor Sempozyumu (224-228), Kütahya, Türkiye.
  • Keskin, H., 2010. Arpa çeşitleri (Hordeum vulgare) ile çorak çimi’nde (Puccinellia distans) bor toksisitesinin temel fizyolojik ve biyokimyasal özelliklere etkisinin belirlenmesi. Yüksek Lisans Tezi. Selçuk Üniversitesi, Konya, Türkiye.
  • Mirshekari, B., 2012. Seed priming with iron and boron enhances germination and yield of dill (Anethum graveolens). Turk Journal of Agriculture and Forestry, 36, 27-33.
  • Munawar, M., Ikram, M., Iqbal, M., Raza, M.M., Habib, S., Hammad, G., Najeebullah, M., Saleem, M., Ashraf, R., 2013. Effect of seed priming with zinc, boron and manganese on seedling health in carrot (Daucus carota L.). International Journal of Agriculture and Crop Sciences, 5 (22), 2697-2702.
  • Rehman, A., Fatima, F., Qamar, R., Farukh, F., Alwahibi, M.S., Hussain, M., 2022. The impact of boron seed priming on seedling establishment, growth, and grain biofortification of mungbean (Vigna radiata L.) in yermosols. PLoS ONE 17(3): e0265956.
  • Seth, K., Aery, N.C.,2017. Boron induced changes in biochemical constituents, enzymatic activities, and growth performance of wheat. Acta Physiol. Plant., 39, 244.
  • Stiles, A.R., Bautista, D, Atalay, E., Babaoğlu, M., Terry, N., 2010. Mechanisms of boron tolerance and accumulation in plants: A physiological comparison of the extremely boron-tolerant plant species, Puccinellia distans, with the moderately boron-tolerant Gypsophila arrostil, Environ. Sci. Technol. 44(18), 7089–7095.
  • Taban, S. ve Erdal, İ., 2000. Bor uygulamasının değişik buğday çeşitlerinde gelişme ve toprak üstü aksamda bor dağılımı üzerine etkisi. Turkish Journal of Agriculture and Forestry, 24, 255-262.
  • Topçu, İ.B., Boğa, A.R., 2009. Effect of boron waste on the properties of mortar and concrete. Waste Management & Research: The Journal for a Sustainable Circular Economy, 28(7), 626-633. Doi: 10.1177/0734242X09345561.
  • Torun, A., Yazıcı, A., Erdem, H., Çakmak, İ.,2006. Genotypic variation in tolerance to boron toxicity in 70 durum wheat genotypes. Turk Journal of Agriculture and Forestry, 30, 49-58.
  • Wang, Q., Lu, L., Wu, X., Li, Y., Lin, J., 2003. Boron influences polen germination and pollen tube growth in Picea meyeri. Tree Physiology, 23, 345- 351.
  • Yazıcı, D.T., Çetinkaya, H., 2017. Evaluation of boron industrial solid waste in composite materials. Composite Interfaces, 25(1), 13-25. Doi: 10.1080/09276440.2017.1319668.
  • Yılmaz, A., 2002. Her derde deva hazinemiz:bor. Bilim ve Teknik Dergisi, 414, 38- 48.
  • Zhao, D., Oosterhuis, D.M. 2002. Cotton carbon exchange, nonstructural carbohydrates and boron distribution in tissues during development of boron deficiency. Field Crops Research, 78, 75-87.
  • Zorluer, İ., Gücek, S., 2017. Usage of Fly Ash and Waste Slime Boron for Soil Stabilization. Periodicals of Engineering and Natural Sciences. 5(1), 51-54. Doi: 10.21533/pen.v5i1.74.
There are 35 citations in total.

Details

Primary Language Turkish
Journal Section Articles
Authors

Ayten Eroğlu

Süleyman Topal

Project Number DPÜBAP/ 2006-3
Publication Date October 21, 2022
Submission Date April 29, 2022
Published in Issue Year 2022 Volume: 5 Issue: 1

Cite

APA Eroğlu, A., & Topal, S. (2022). Bor İçeriği Farklı Olan Filtre Atıklarının Arpada (Hordeum vulgare L.) Çimlenme ve Bazı Fizyolojik Parametrelere Etkisi. Doğu Fen Bilimleri Dergisi, 5(1), 46-54.