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Abstract. Information on the relationships between quantitative traits affecting yields is extremely important for winter wheat. For it, the annual genotype*environment interaction is palpable and often masks the influence of individual traits on grain yield. The aim of the study is to determine the traits through the selection of which the grain yield could be significantly increased in the future. The data from three field multifactorial experiments were used (FERT, PGR, ABC), in which a significant influence of various factors (year, point, density, fertilization) on the size and variation of all studied traits was established. In the database thus formed the observed strong variance in the values of the traits is a great prerequisite for the established correlations to be accepted with a high degree of reliability. The mutual influence in the formation of each of the traits is a good basis for their grouping, according to the type of their effect on yield. 1) The characteristics, number of grains per m2 (NGm), grain weight per spike (WGS) and number of productive tillers per m2 (NPT) have a significantly positive effect on grain yield, 2) the weight per 1000 grains (TGW) and number of grains in spike (NGS) are traits that have a direct effect, but it is unstable in manifestation and 3) the traits, as height of stem (HOS), total plant biomass (TBM), and harvest index (HI) do not show a direct effect on grain yields. A significant increase in yield in the breeding of winter wheat can be achieved by increasing the number of grains per unit area (NGm). This is possible while maintaining the achieved level of number of grains in spike (NGS) with a parallel increase of tillering productive ability (NPT). The increase of this trait by selection should be taken into account when reducing the grain size (TGW). This will increase the chance of increasing the number of grains in the spike (NGS), will reduce the weight of the grain per spike (WGS), which in turn will be a prerequisite for optimizing the stability of lodging
Abstract. Information on the relationships between quantitative traits affecting yields is extremely important for winter wheat. For it, the annual genotype*environment interaction is palpable and often masks the influence of individual traits on grain yield. The aim of the study is to determine the traits through the selection of which the grain yield could be significantly increased in the future. The data from three field multifactorial experiments were used (FERT, PGR, ABC), in which a significant influence of various factors (year, point, density, fertilization) on the size and variation of all studied traits was established. In the database thus formed the observed strong variance in the values of the traits is a great prerequisite for the established correlations to be accepted with a high degree of reliability. The mutual influence in the formation of each of the traits is a good basis for their grouping, according to the type of their effect on yield. 1) The characteristics, number of grains per m2 (NGm), grain weight per spike (WGS) and number of productive tillers per m2 (NPT) have a significantly positive effect on grain yield, 2) the weight per 1000 grains (TGW) and number of grains in spike (NGS) are traits that have a direct effect, but it is unstable in manifestation and 3) the traits, as height of stem (HOS), total plant biomass (TBM), and harvest index (HI) do not show a direct effect on grain yields. A significant increase in yield in the breeding of winter wheat can be achieved by increasing the number of grains per unit area (NGm). This is possible while maintaining the achieved level of number of grains in spike (NGS) with a parallel increase of tillering productive ability (NPT). The increase of this trait by selection should be taken into account when reducing the grain size (TGW). This will increase the chance of increasing the number of grains in the spike (NGS), will reduce the weight of the grain per spike (WGS), which in turn will be a prerequisite for optimizing the stability of lodging
Abstract. Growing conditions play a significant role in the yield and grain quality of winter wheat. Global climate changes and in particular in the meteorological situation in the regions typical for the crop presuppose conducting research on the newly created breeding materials for grain quality. The aim of the study is to determine the nature and magnitude of the change in important parameters of grain quality, under the influence of typical environmental conditions for growing common wheat. The working hypothesis suggests that most of the parameters have a good genetic basis that would allow the selection to lead to their increase. In a multi environmental field experiment involving five test locations over three consecutive years, changes in eight grain quality parameters were investigated reflecting different aspects of the end-use quality. The study involved 40 samples of wheat developed by the breeding company "Agronom" in the last 20 years. With the help of modern methods for statistical analysis, the effect of the main breeding factors "location", "year" and "genotype", the limits of variation and the correlations between them have been established. The real possibilities for selection and breeding of each parameter have been analyzed, against the background of the rest of the group. Quality parameters change significantly from the three factors studied. The interaction "genotype x year" has the strongest influence on each of them. The "location x genotype" interaction is not a factor that affects the parameters. Only Deformation energy shows a significant share of the genotype, while the other two factors have a negligible influence on it. Each of the studied parameters, without exception, changes both adequately (linearly, IPC1) and inadequately (nonlinearly, IPC2) when the conditions change during the studied seasons. This nature of change is the reason for the relatively weak positive correlations between the parameters, as well as for their low heritability coefficients in a broad sense. Against the background of the data, the values of Genetic advance are indicated, with which each of them can be increased by selection. There are both positive and negative correlations between the parameters, the direction and value of which must be taken into account in the attempt to change them. An effective selection can be made on the parameters Extensibility index, Deformation energy and P/L ratio which have the strongest genetic control (H2> 0.60), which against the background of the strong influence of the environment ("location", "year", "location x year”) can lead to genetic advantage with 12% (Extensibility index), 17% (Deformation energy), 51% (P/L) of their present value. A selection based on PC or Wet gluten content parameters that have a direct effect on overall quality can also be effective (H2 =0.58-0.63). Instead, it would be more prudent to monitor, not so much their quantitative, but their qualitative composition, the accumulation of known or new alleles of glutenins (Glu) and gliadins (Gli), for which there is specific information that they are directly related to high grain quality.
Purpose. To determine the elements of productivity of new winter wheat varieties of the Myronivka breeding in the conditions of the central Ukrainian ForestSteppe, depending on the predecessors and sowing dates. Methods. The research was conducted in 2019–2021 in a fourfactor experiment on the fields of the V. M. Remeslo Myronivka Institute of Wheat of NAAS (MIW), located in the central part of the Ukrainian ForestSteppe. The subject of the research was the processes of productivity formation of soft winter wheat; five new varieties of Myronivka breeding (‘MIP Fortuna’, ‘MIP Lada’, ‘MIP Yuvileina’, ‘Avrora Myronivska’, ‘MIP Lakomka’) were compared with the standard (‘Podolianka’). The trials were designed according to two predecessors – the common sunflower and soybean; sowing was carried out on 25 September and 5 October with a deviation of 1–3 days. Results. According to the results of the research, the optimal growth and development of the plants of the soft winter wheat varieties in the corresponding phenological phases, as well as the formation of the ear during the growing season were ensured. The best vegetation period was in 2019, when the length of the central ear was more than 10.00 cm. Taking into account the influence of the sowing date after predecessors such as the common sunflower and soybean, the varieties ‘MIP Lada’ and ‘MIW Fortuna’ proved to be stable in terms of central spike length, providing high plant productivity. An important element of the latter is the number of grains in the spike, which was highest in ‘Avrora Myronivska’ (61 pcs) in 2021 at the second sowing date. Grain weight values from the central ear also depended on variety, sowing date and predecessor. A direct correlation between the studied productivity indicators and yield was found. Conclusions. Following an analysis of the indicators of productivity formation, three valuable winter wheat varieties were identified as being suitable for cultivation in the Central ForestSteppe of Ukraine. These are ‘MIP Fortuna’, ‘MIW Lada’ and ‘MIW Lakomka’.
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