Open Access
Issue |
BIO Web Conf.
Volume 37, 2021
International Scientific-Practical Conference “Agriculture and Food Security: Technology, Innovation, Markets, Human Resources” (FIES 2021)
|
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Article Number | 00034 | |
Number of page(s) | 5 | |
DOI | https://doi.org/10.1051/bioconf/20213700034 | |
Published online | 27 October 2021 |
- B. AbrhaDelbecque, N. Raes, D. Tsegay, A. Todorovic, M. Heng, L. Vanutrecht, E. Geerts, S. Garcia-Vila, S. Deckers, Sowing strategies for barley (Hordeum vulgare L.) based on modelled yield response to water with AquaCrop, Experim. Agricult., 48, 252–271 (2012) [Google Scholar]
- E. Pohankovâ, P. Hlavinka, M. Orsâg, J. Takâc, K. Kersebaum, A. Gobin, M. Trnka, Estimating the water use efficiency of spring barley using crop models, J. of Agricult. Sci., 156 (5), 628–644 (2018) [CrossRef] [Google Scholar]
- O. Gorash, R. Klymyshena, V. Khomina, L. Vilchynska, Ecological and biological conformity of conditions of the brewing barley cultivation zone, Ukrain. J. of Ecol., 10 (1), 246–253 (2020) [Google Scholar]
- G. Fischbeck, In R. von Bothmer, T. van Hintum, H. Knüpffer, K. Sato (Ed.), Diversity in barley (Hordeum vulgare) (Elsevier Science; Diversification through breeding, Amsterdam, 2003), pp. 29–52 [Google Scholar]
- H.M. Gauger, GmbH Barley Malt World News, Market report 7, August 3, (2015). [Google Scholar]
- H. Jones, P. Civân, J. Cockram, F.J. Leigh, L. Smith et al., Evolutionary history of barley cultivation in Europe revealed by genetic analysis of extant landraces, BMC evolut. Boil., 11, 320 (2011) [CrossRef] [Google Scholar]
- P. Marcinkowski, M. Piniewski, Effect of climate change on sowing and harvest dates of spring barley and maize in Poland, Int. Agrophys., 32(2) (2018) [Google Scholar]
- M. Trnka, P. Hlavinka, D. Semerâdovâ, M. Dubrovsky, Z. Zalud, M. Mozny, Agricultural drought and spring barley yields in the Czech Republic, Plant, Soil and Envir., 53 (7), 306–316 (2007) [Google Scholar]
- B. Muzfkovâ, T. Stfeda, P. Krmelovâ, O. Dvofâckovâ, Yields of spring barley in the climatic conditions of the Czech Republic, Kvasny Prum., 59 (12), 352–357 (2013) [CrossRef] [Google Scholar]
- S.G. Thabet, Y.S. Moursi, M.A. Karam, A. Graner, A.M. Alqudah, Genetic basis of drought tolerance during seed germination in barley, PLoS One, 13(11), e0206682 (2018) [CrossRef] [PubMed] [Google Scholar]
- K. Mikolajczak, P. Ogrodowicz, K. Gudys, K. Krystkowiak, A. Sawikowska, W. Frohmberg et al., Quantitative Trait Loci for Yield and Yield-Related Traits in Spring Barley Populations Derived from Crosses between European and Syrian Cultivars, PLoS One 11(5), e0155938 (2016) [CrossRef] [PubMed] [Google Scholar]
- R. Sharma, S. Shaaf, K. Neumann, Y. Go et al., Bon the origin of photoperiod non-responsiveness in barley, bioRxiv (2020) [Google Scholar]
- L.M. Bondareva, T.N. Radyukevich, L. I. Kartasheva, D.A. Danilov, Complex resistance to leaf diseases of spring barley in Leningrad region, Advan. in Engin. Res., 151, 1–7 (2018) [Google Scholar]
- L. Bondareva, D. Danilov, L. Kartashova, Breeding spring barley for ecological plasticity and adaptability in the North-Western Region, BIO Web Conf., 27, (2020) [Google Scholar]
- M. Wiegmann, A. Maurer, A. Pham, T.J. March, A. Al-Abdallat, et al., Barley yield formation under abiotic stress depends on the interplay between flowering time genes and environmental cues, Sci. Rep., 9, 6397 (2019) [CrossRef] [Google Scholar]
- J. Russell, M. Mascher, I.K. Dawson, S. Kyriakidis, C. Calixto et al., Exome sequencing of geographically diverse barley landraces and wild relatives gives insights into environmental adaptation, Nat. Genet., 48, 1024–1030 (2016) [CrossRef] [PubMed] [Google Scholar]
- S. Hübner, M. Höffken, E. Oren, G. Haseneyer, N. Stein et al., Strong correlation of wild barley (Hordeum spontaneum) population structure with temperature and precipitation variation, Mol. Ecol., 18, 1523–1536 (2009) [CrossRef] [Google Scholar]
- P. Herzig, A. Maurer, V. Draba, R. Sharma, F. Draicchio et al., Contrasting genetic regulation of plant development in wild barley grown in two european environments revealed by nested association mapping, J. Exp. Bot., 69, 1517–1531 (2018) [CrossRef] [PubMed] [Google Scholar]
- I.Y. Zaytseva, L.V. Mamaeva, I.N. Shchennikova, L.P. Kokina, E.V. Dyagileva, Initial material for breeding drought-resistant varieties of spring barley in the conditions of the Volga-Vyatka region, E3S Web Conf., 254, (2021) [Google Scholar]
- M. Wiegmann, A. Maurer, A. Pham et al., Barley yield formation under abiotic stress depends on the interplay between flowering time genes and environmental cues, Sci. Rep., 9, 6397 (2019) [CrossRef] [Google Scholar]
- M. Gomez-Garrido, S. Martinez-Martinez, Ä. Faz Cano, A. Büyükkilif-Yanardag, J. Arocena, Soil fertility status and nutrients provided to spring barley (Hordeum distichon L.) by pig slurry, Chil. J. Agric. Res., scielocl. (2014) [Google Scholar]
- W. Friedt, F. Ordon, Barley Production and Breeding in Europe: Modern Cultivars Combine Disease Resistance, Malting Quality and High Yield, In G. Zhang, C. Li, X. Liu (Ed.), Advance in Barley Sciences (Springer, Dordrech, 2013) [Google Scholar]
- D.K. Vohnout, Mathematical modeling for system analysis in agricultural research (Elsevier Science B. V. Sara Burgerharhartstraat 25P.O. Box 211,1000 AE Amsterdam, The Netherland, 2003), 452 p. [Google Scholar]
- S.A. Eberhart, W.A. Rassel, Stability parameters for comparing varieties, Crop. Sci., 6 (1), 36–40 (1966) [CrossRef] [Google Scholar]
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