Changes in oat grain yield and quality with increased adaptability of cultivars

Author:

Nikolaev P. N.1ORCID,Yusova O. A.1ORCID,Safonova I. V.2ORCID,Aniskov N. I.2ORCID

Affiliation:

1. Omsk Agrarian Scientific Center

2. N.I. Vavilov All-Russian Institute of Plant Genetic Resources

Abstract

Background. Among spring cereals, oat is one of the main grain crops in Siberia. The aim of this study was to determine how the parameters of adaptability in oat cultivars are correlated with yield and basic indicators of grain quality.Material and methods. The studies were carried out from 2011 to 2019 in the southern forest steppe of Western Siberia. The content of protein, crude fat and starch in grain, and its hull content were measured according to B. V. Pleshkov and N. S. Berkutova. Mathematical processing was performed following the guidelines by B. A. Dospekhov, S. A. Eberhart and W. A. Russell.Results. There was a significant variation in grain yield and grain quality (CV > 20%) in oat cultivars due to a high contribution from the conditions of the year (26.7...80.9%) as well as a strong direct (r = 0,607...0.825) or strong reverse (r = –0.660...–0.994) conjugation with climatic factors. As the protein content in grain increased, starch, oil (r = 0.960...0.962) and hull content (r = 0.442) increased as well. Naked oat cultivars manifested higher grain quality (4.6% protein, 17.6% starch, and 2.2% crude fat) and reduced yield (–1.45 t/ha) compared with hulled oat cultivars.Conclusion. Increased plasticity (bi) and stability (σ2d) of oat cultivars contributed to higher yields (rbi = 0.943;rσ2d = 0.344) but reduced grain quality indicators (rbi = –0.697…–0.812;rσ2d = –0.270…–0.300). Hull content in plastic cultivars decreased (rbi = –0.201).

Publisher

FSBSI FRC N.I. Vavilov All-Russian Institute of Plant Genetic Resources

Subject

Plant Science,Genetics,Molecular Biology,Physiology,Biochemistry,Ecology, Evolution, Behavior and Systematics,Biotechnology

Reference21 articles.

1. Berkutova N.S. Methods of grain quality evaluation and formation (Metody otsenki i formirovaniya kachestva zerna). Moscow: Rosagropromizdat; 1991. [in Russian]

2. Chayka V.M., Rubezhniak I.G., Grib O.G. Effect of climatic changes on the productivity of agrocoenoses and seminatural forest-steppe ecosystems. Science and Society. 2013;1:192-201.

3. Dospekhov B.A. Methodology of field trial (Metodika polevogo opyta). Moscow: Agropromizdat; 1985. [in Russian]

4. Eberhart S.A., Russell W.A. Stability parameters for comparing varieties. Crop Science. 1966;6(1);36-40.

5. Feng B., Liu P., Li G., Dong S.T., Wang F.H., Kong L.A. et al. Effect of heat stress on the photosynthetic characteristics in flag leaves at the grain-filling stage of different heat-resistant winter wheat varieties. Journal of Agronomy and Crop Science. 2014;200(2):143-155. DOI: 10.1111/jac.12045

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