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Content of Phenolic Acid and Yielding of Hybrid Wheat in Response to Growing Year Under Integrated Management


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Abotaleb, M., Liskova, A., Kubatka, P. & Büsselberg, D. (2020). Therapeutic potential of plant phenolic acids in the treatment of cancer. Biomolecules 10, 221. DOI: org/10.3390/biom10020221 Search in Google Scholar

Buczek, J., Jańczak-Pieniążek, M., Harasim, E., Kwiatkowski, C.A. & Kapusta, I. (2023). Effect of cropping systems and environment on phenolic acid profiles and yielding of hybrid winter wheat genotypes. Agriculture 13, 834. DOI: 10.3390/agriculture13040834 Search in Google Scholar

Ditzler, C., Scheffe, K. & Monger, H.C. (2017). Soil Science Division Staff: Soil Survey Manual; USDA Handbook 18; Government Printing Office: Washington, Distribution Center, USA. Search in Google Scholar

Engert, N., John, A., Henning, W. & Honermeier, B. (2011). Effect of sprouting on the concentration of phenolic acids and antioxidative capacity in wheat cultivars (Triticum aestivum ssp. aestivum L.) in dependency of nitrogen fertilization. J. Appl. Bot. Food Qual. 84, 111-118. Search in Google Scholar

FAOSTAT (2022). Available online: https://www.fao.org/faostat/en/#data/QCL (accessed on 27 October 2023). Search in Google Scholar

Fares, C., Menga, V., Codianni, P., Russo, M., Perrone, D., Suriano, S., Savino, M. & Rascio, A. (2019). Phenolic acids variability and grain quality of organically and conventionally fertilised old wheats under a warm climate. J. Sci. Food Agric. 99, 10, 4615-4623. DOI: 10.1002/jsfa.9701 Search in Google Scholar

Giorgi, A., Mingozzi, M., Madeo, M., Speranza, G. & Cocucci, M. (2009). Effect of nitrogen starvation on the phenolic metabolism and antioxidant properties of yarrow (Achillea collina Becker ex Rchb.). Food Chem. 2009, 114, 204-211. DOI: 10.1016/j.foodchem.2008.09.039 Search in Google Scholar

Gupta, P. K., Balyan, H. S., Gahlaut, V., Saripalli, G., Pal, B., Basnet, B. R. & Joshi, A. K. (2019). Hybrid wheat: Past, present and future. Theor. Appl. Genet. 132, 2463-2483. DOI: 10.1007/s00122-019-03397-y Search in Google Scholar

Haque, A. N. A., Hossain, M., Haque, M., Hasan, M., Malek, M., Rafii, M. & Shamsuzzaman, S. (2017). Response of yield, nitrogen use efficiency and grain protein content of wheat (Triticum aestivum L.) varieties to different nitrogen levels. Bangladesh J. Bot. 46, 1, 389-396. Search in Google Scholar

Horvat, D., Šimic, G., Drezner, G., Lalic, A., Ledencan, T., Tucak, M., Plavšic, H., Andric, L. & Zdunic, Z. (2009). Phenolic acid profiles and antioxidant activity of major cereal crops. Antioxidants 9, 527. DOI: 10.3390/antiox9060527 Search in Google Scholar

Irmak, S., Jonnala, R. S. & MacRitchie, F. (2008). Effect of genetic variation on phenolic acid and policosanol contents of Pegaso wheat lines. J. Cereal Sci. 48, 20-26. DOI: 10.1016/j.jcs.2007.07.007 Search in Google Scholar

IUSS Working Group WRB World Reference Base for Soil Resources 2014, First Update. 2015. Available online: https://icdc.cen.uni-hamburg.de/fileadmin/user_upload/icdc_Dokumente/WorldSoilResources_a-i3794e.pdf (accessed on 7 March 2023). Search in Google Scholar

Czaban, J., Sułek, A., Pecio, Ł., Żuchowski, J. & Podolska, G. (2013). Effect of genotype and crop management systems on phenolic acid content in winter wheat grain. J. Food Agric. Environ. 11, 3-4, 1201-1206. Search in Google Scholar

Klikocka, H., Cybulska, M., Barczak, B., Narolski, B., Szostak, B., Kobiałka, A., Nowak, A. & Wójcik, E. (2016). The effect of sulphur and nitrogen fertilization on grain yield and technological quality of spring wheat. Plant Soil Environ. 62, 230-236. DOI: 10.17221/18/2016-PSE Search in Google Scholar

Kołodziejczyk, M. & Szmigiel, A. (2014). Influence of intensity cultivation technology on yielding of some spring wheat cultivars. Fragm. Agron. 31, 3, 75-84. (In Polish). Search in Google Scholar

Kurasiak-Popowska, D., Stuper-Szablewska, K., Nawracała, J., Tomkowiak, A. & Perkowski, J. (2016). Phenolic acid content in wheat grain (Triticum spp.) of different genotypes. Rev. FCA UNCUYO 48, 1, 1-7. Search in Google Scholar

Lacko-Bartošová, M., Lacko-Bartošová, L., Kobida, L., Kaur, A. & Moudrý, J. (2023). Phenolic acids profiles and phenolic concentrations of emmer cultivars in response to growing year under organic management. Foods 12, 1480. DOI: 10.3390/ foods12071480 Search in Google Scholar

Laddomada, B., Blanco, A., Mita, G., D’Amico, L., Singh, R. P., Ammar, K., Crossa, J. & Guzmán, C. (2021). Drought and heat stress impacts on phenolic acids accumulation in durum wheat cultivars. Foods 10, 2142. DOI: 10.3390/foods10092142 Search in Google Scholar

Li, L., Shewry, P. R. & Ward, J. L. (2008). Phenolic acids in wheat varieties in the HEALTHGRAIN diversity screen. J. Agric. Food Chem. 56, 9732-9739. DOI: 10.1021/jf801069s Search in Google Scholar

Linina, A. & Ruza, A. (2018.). The influence of cultivar, weather conditions and nitrogen fertilizer on winter wheat grain yield. Agron. Res. 16, 1, 147-156. DOI: 10.15159/ar.18.034 Search in Google Scholar

Liu, H., Bruce, D.R., Sissons, M., Able, A.J. & Able, J. A. (2018). Genotype-dependent changes in the phenolic content of durum under water-deficit stress. Cereal Chem. J. 95, 59-78. DOI: 10.1002/cche.10007 Search in Google Scholar

Ma, D., Sun, D., Li, Y., Wang, C., Xie, Y. & Guo, T. (2015). Effect of nitrogen fertilization and irrigation on phenolic content, phenolic acid, composition and antioxidant activity of winter wheat grain. J. Sci. Food Agric. 95, 1039-1046. DOI: 10.1002/jsfa.6790 Search in Google Scholar

Mariem, S. M., González-Torralba, J., Collar, C., Aranjuelo, I. & Morales, F. (2020). Durum wheat grain yield and quality under low and high nitrogen conditions: insights into natural variation in low- and high-yielding genotypes. Plants, 9, 1636. DOI:10.3390/plants9121636 Search in Google Scholar

Mpofu, A., Sapirstein, H. D. & Beta, T. (2006). Genotype and environmental variation in phenolic content, phenolic acid composition, and antioxidant activity of hard spring wheat. J. Agric. Food Chem. 54, 1265-1270. DOI: 10.1021/jf052683d Search in Google Scholar

Pandino, G., Mattiolo, E., Lombardo, S., Lombardo, G. M. & Mauromicale, G. (2020). Organic cropping system affects grain chemical composition, rheological and agronomic performance of durum wheat. Agriculture 10, 2, 46. DOI:10.3390/agriculture10020046 Search in Google Scholar

Podolska G. (2008). Effect of nitrogen fertilization doses and way of its application on yield and technological quality of winter wheat cultivars grain. Acta Sci. Pol. Agricultura. 7, 1, 57-65. (In Polish). Search in Google Scholar

Rozbicki J., Ceglińska A., Gozdowski D., Jakubczak M., Cacek-Pietrzak G., Mądry W., Golba J., Piechociński M., Sobczyński G., Studnicki M. & Drzazga T. (2015). Influence of cultivar, environment and management on the grain yield and bread-making quality in winter wheat. J. Cereal Sci. 61, 126-132. DOI: 10.1016/j.jcs.2014.11.001 Search in Google Scholar

Šip, V., Vavera, R., Chrpova, J. & Kusa, P. (2013). Winter wheat yield and quality related to tillage practice. input level and environmental condition. Soil Till. Res. 132, 77-85. DOI: 10.1016/j.still.2013.05.002. Search in Google Scholar

Shewry, P.R., Charmet, G., Branlard, G., Lafiandra, D., Gergely, S., Salgó, A., Saulnier, L., Bedo, Z., Mills, E.N.C. & Ward, J. L. (2012). Developing new types of wheat with enhanced health benefits. Trends Food Sci. Technol. 25, 70-77. DOI: 10.1016/j.tifs.2012.01.003 Search in Google Scholar

Skowera B. (2014). Changes of hydrothermal conditions in the Polish area (1971-2010). Fragm. Agron. 31, 74-87. (In Polish) Search in Google Scholar

Stracke, B. A., Eitel, J., Watzl, B., Mäder, P. & Rüfer, C. E. (2009). Influence of the production method on phytochemical concentrations in whole wheat (Triticum aestivum L.): A comparative study. J. Agric. Food Chem. 57, 10116-10121. DOI: 10.1021/jf901267z Search in Google Scholar

Stumpf, B., Yan, F. & Honermeier, B. (2019). Influence of nitrogen fertilization on yield and phenolic compounds in wheat grains (Triticum aestivum L. ssp. aestivum). J. Plant Nutr. Soil Sci. 182, 111-118. DOI: 10.1002/jpln.201800342 Search in Google Scholar

Tobiasz-Salach, R., Kalaji, M.K., Mastalerczuk, G., Bąba, W., Bobrecka-Jamro, D. & Noras, K. (2019). Can photosynthetic performance of oat (Avena Sativa L.) plants be used as bioindicator for their proper growth conditions? Chiang Mai J. Sci. 46, 5, 880-895. Search in Google Scholar

Tian, W., Wang, F., Xu, K., Zhang, Z., Yan, J., Yan, J., Tian, Y., Liu, J.; Zhang, Y. & Zhang, Y. (2022). Accumulation of wheat phenolic acids under different nitrogen rates and growing environments. Plants 11, 2237. DOI:10.3390/plants11172237 Search in Google Scholar

Van Hung, P. (2016). Phenolic compounds of cereals and their antioxidant capacity. Crit. Rev. Food Sci. Nutr. 55, 25-35. DOI:10.1080/10408398.2012.708909 Search in Google Scholar

Whitford, R., Fleury, D., Reif, J. C., Garcia, M., Okada, T., Korzun, V. & Langridge, P. (2013). Hybrid breeding in wheat: Technologies to improve hybrid wheat seed production. J. Exp. Bot. 64, 5411-5428. DOI: 10.1093/jxb/ert333 Search in Google Scholar

Zhao, Y., Zeng, J., Fernando, R. & Reif J. C. (2013). Genomic prediction of hybrid wheat performance. Crop Sci. 53, 802-810. DOI: 10.2135/cropsci2012.08.0463 Search in Google Scholar

Zrcková, M., Capouchová, I., Eliášová, M., Paznocht, L., Pazderů, K., Dvořák, P., Konvalina, P., Orsák M. & Štěrba, Z. (2018). The effect of genotype, weather conditions and cropping system on antioxidant activity and content of selected antioxidant compounds in wheat with coloured grain. Plant Soil Environ. 64, 530-538. DOI: 10.17221/430/2018-PSE Search in Google Scholar

Zrcková, M., Capouchová, I., Paznocht, L., Eliášová, M., Dvorák, P., Konvalina, P., Janovská, D., Orsák, M. & Becková, L. (2019). Variation of the total content of polyphenols and phenolic acids in einkorn, emmer, spelt and common wheat grain as a function of genotype, wheat species and crop year. Plant Soil Environ. 65, 260-266. DOI: 10.17221/134/2019-PSE Search in Google Scholar

Żuchowski, J., Kapusta, I., Szajwaj, B., Jończyk, K. & Oleszek, W. (2009). Phenolic acid content of organic and conventionally grown winter wheat. Cereal Res. Commun. 37, 189-197. Search in Google Scholar

Żuchowski, J., Jończyk, K., Pecio, Ł. & Oleszek, W. (2011). Phenolic acid concentrations in organically and conventionally cultivated spring and winter wheat. J. Sci. Food Agric. 91, 1089-1095. DOI:10.1002/jsfa.4288 Search in Google Scholar

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