The analysis of the Crimean weather conditions during the autumn vegetation period of winter wheat indicates climate warming and, in this regard, the necessity to adjust the optimal sowing dates. The purpose of the current study was to estimate the productivity and grain quality of winter bread wheat varieties depending on different sowing dates. The objects of the study were five winter wheat varieties sown in 5 dates from October 1 to November 30 with an interval of 15 days. Field trials were conducted with appropriate observations, records, measurements and analyzes, according to the methodology of the State Variety Testing. Statistical processing of the trials was carried out by the B.A. Dospekhov’s method of dispersion and correlation analyzes. The study was carried out through three years, two vegetation periods of which (2017–2018 and 2019–2020) were dry, one period (2018-2019) was favorable for the development of winter grain crops. According to the results of the analysis of variance, there have been identified significant differences in the effect of all three factors (‘variety’, ‘length’ and ‘year’) and their correlation in all combinations on the productivity formation. The factors ‘sowing date’ (33%) and ‘correlation between date and year’ (49%) had the greatest influence on the productivity formation. In 2018, the most optimal for all studied varieties was the second sowing date (15.10), in 2019 it was the first (1.10), and under the conditions of 2020, the later sowing dates were more favorable, and the 4th period was marked as optimal (15.11). The mean productivity of all varieties at the optimum sowing dates was 4.0; 5.5 and 3.46 t/ha, respectively. The factors ‘sowing date’, ‘year’, and the correlation between them significantly influenced protein percentage in grain. Their effect on the manifestation of the above trait was 29%, 14% and 23%, respectively; on gluten content it was 29%, 16% and 21%, respectively.
Since the registry of common oregano (Origanum vulgare L.) cultivars does not involve regionalization, a comprehensive study of cultivars bred by different institutions in the intended cultivation region is valuable and relevant. The objective of the research was to assess the possibility of using various indices of ecological adaptability originally developed for grain crops for their use in the most adapted genotypes’ selection (breeding samples and cultivars) of Origanum vulgare L. to the temperate climate of the Crimean Peninsula. The research was carried out in the piedmont zone of Crimea from 2016 to 2019. The study material consisted of breeding samples No. 10 and No. 82 from the collection of FSBSI “Research Institute of Agriculture of Crimea”, as well as cultivars Zima, Raduga, and Slavnitsa selected by the All-Russian Scientific Research Institute of Medicinal and Aromatic Plants (ARSRIMAP). Genotype had the greatest influence on yield of fresh oregano material (43%) with the influence of the weather conditions of the year being 2%. On the contrary, meteorological conditions had a much greater effect on the essential oil accumulation and its areal yield, which were 30% and 25%, respectively. In terms of the coefficient of ecological variation of fresh yield, sample No. 82 and Slavnitsa cultivar were the best (11.47–16.7%). The local genotypes No. 10 and No. 82 varied less by the essential oil content and its yield. The genotype effect value was greater than 0 in the Raduga cultivar and local genotype No. 82 for the yield, but only in No. 82 genotype for the other two characteristics. Cultivars Zima and Raduga were classified as intensive (bi > 1) by the environmental flexibility of fresh yield, while local genotype No. 82 and Slavnitsa cultivar formed the group of intensive ones by essential oil content and essential oil yield. Local genotypes No. 10 and No. 82 were better than the introduced cultivars in terms of essential oil content homeostability and essential oil yield (Hom = 1.91–2.18). Thus, local genotypes proved to be more adapted to the region’s conditions in terms of essential oil accumulation. However, they were inferior to the registered cultivars of ARSRIMAP breeding in terms of fresh yield.
Coriander is a valuable, highly profitable essential oil crop. Therefore, the development of new highly productive varieties is the main direction of breeding. The aim of the research was to study the collection of Coriandrum sativum L. (owner – Research Institute of Agriculture of Crimea) by a complex of valuable traits to identify promising samples for breeding purposes. In 2017–2019, under the conditions of the Crimean Foothills (village of Krymskaya Roza, Belogorsky district), we analyzed 164 samples from 30 regions of the world. The territory of the experimental plots belongs to the upper foothill, warm, insufficiently humid agro-climatic region. To compare the parameters, we included five coriander varieties in our study. They were created in the Research Institute of Agriculture of Crimea (‘Yantar’, ‘Ranniy’, ‘Nektar’, ‘Medun’ and ‘Silach’) and registered in the “State Register of Breeding Achievements Permitted for Use” of the Russian Federation. The work was guided by the methodological recommendations on essential oil crops breeding. Plot area – 0.6 m2, double replication. The analysis revealed high variability of the collection samples in terms of the main indicators of productivity: fruit yield (Cv = 37.2 %), content of essential oil (Cv = 51.3 %), yield of essential oil per unit area (Cv = 60.0 %). Optimal weather conditions for the accumulation of essential oil with a high content of linalool (the main component) are relatively low air humidity and increased temperature regime during flowering and fruit ripening. The following samples were identified as sources of valuable traits: vr. 341, vr. 757, vr. 756, vr. 387, VIR 415 with a mass fraction of essential oil in fruits at the level of 2.81–3.62 %; VIR 258, vr. 233, VIR 144, VIR 165, VIR 246, vr. 705 with a fruit yield that reached 52.0–73.9 g per plot. Five samples – VIR 348, VIR 421, VIR 180, VIR 431 and vr. 521 – provided a high amount of essential oil (0.90–1.23 g per plot) because of the combination of the increased yield and essential oil mass fraction.
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