MAIN PERIODS OF GROWTH AND DEVELOPMENT OF F1 CUCUMBER HYBRIDS AND THEIR YIELDS DEPENDING ON WEATHER

O. V. Serhiienko, T. M. Нarbovska, L. D. Solodovnik, L. O. Radchenko
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Abstract

Purpose. To evaluate effects of weather on growth and development of cucumber plants, lengths of the main interphase periods, and cucumber yield the Left-Bank Forest-Steppe of Ukraine; to select breedingvaluable genotypes for heterosis breeding under climatic changes. Methods. Field, analytical, measuring, statistical. Results. The study was conducted outdoors at the Institute of Vegetable and Melon Growing of NAAS in 2019–2020. The weather in the study years varied significantly, allowing us to assess its influence on phenological processes of growth and development of cucumber plants. Summarizing the results, we established that sufficiently high average daily air temperature (25.3–25.8 °С), a large amount of unevenly distributed precipitation (0–104 mm), with little or no precipitation during certain phases of cucumber development, significantly affected the growing period length and yield of the cucumber hybrids under investigation. We found that the onset of mass anthesis of female flowers did not vary significantly across the years, averaging 33–36 days. (35 days in the check accession). Fructification started on day 37–40 in 2019 and on day 42–45 in 2020, which was 4–6 days later. Fructification lasted 32–40 days in 2019 and 20–24 days in 2020, which was 12–16 days longer. Analysis of the cucumber yield dynamics over the study years showed that the weather in 2019 was more favorable for the growth and development of cucumber plants. Thus, in 2019, the total yields of hybrids ranged 20.8 t/ha to 64.9 t/ha. In 2020, at high temperatures and low air humidity, the total yield was 12.7–26.9 t/ha, which was significantly lower (by 41.4–61.0 %). Conclusions. The weather in the study years reflected the climate instability in the Forest-Steppe of Ukraine. The lengths the main periods of the growth and development of cucumber hybrid plants and their yields were revealed to vary significantly under variable growing conditions. We selected hybrids with annual parameters that would be valuable for further breeding: by early ripeness – F1 ‘BD 96-18’ / ‘Tsezar’, F1 ‘RD 96 2-95’/ ‘Dzherelo’, F1 ‘RD 96 2-95’ / ‘Heim’ and F1 ‘Mah-62’ / ‘Toma-18’ (42 days); by fructification length – F1 ‘RD 96 2-95’/‘Dzherelo’ (35 days), F1 ‘Mah-62’ / ‘Toma-18’, F1 ‘BD 96-18’/ ‘Heim’ and F1 ‘RD 96 2-95/‘Heim’ (32 days); by yield capacity – F1 ‘Mah-62’ / ‘Toma-18’ (45,9 t/ha), F1 ‘BD 96-18’/ ‘Toma-18’ (39,3 t/ha), F1 ‘Krak’ / ‘RD-96 2-95’ (36,8 t/ha), F1 ‘RD 96 2-95’/ ‘Heim’ (35,8 t/ha), F1 ‘BD 96-18’/ ‘Heim’ (34,6 t/ha), and F1 ‘RD 96 2-95’/ ‘Dzherelo’ (34.2 t/ha). The selected hybrids yielded significantly more than the check F1 hybrid ‘Ajax’ (by 80-142 % or by 19.0 t/ha).
黄瓜杂种1代主要生长发育时期及其产量对天气的影响
目的。评价天气对乌克兰左岸森林草原黄瓜植株生长发育、主间期长度和黄瓜产量的影响;为气候变化条件下的杂种优势育种选择有育种价值的基因型。方法。现场,分析,测量,统计。结果。该研究于2019-2020年在中国科学院蔬菜和甜瓜种植研究所进行。研究年份的天气变化显著,使我们能够评估其对黄瓜生长发育物候过程的影响。综上所述,足够高的日平均气温(25.3 ~ 25.8°С)、大量分布不均匀的降水(0 ~ 104 mm)、黄瓜发育的某些阶段降水少或无降水对黄瓜的生育期长度和产量有显著影响。研究发现,雌花的大量开花时间在不同年份间变化不显著,平均为33-36天。(35天内核对入账)。2019年是37-40天,2020年是42-45天,4-6天后。2019年果期32 ~ 40 d, 2020年果期20 ~ 24 d,延长12 ~ 16 d。对研究年份的黄瓜产量动态分析表明,2019年的天气更有利于黄瓜植株的生长发育。因此,2019年杂交作物的总产量在20.8吨/公顷至64.9吨/公顷之间。2020年高温低湿条件下,总单产12.7 ~ 26.9 t/ha,显著降低41.4 ~ 61.0%。结论。研究年份的天气反映了乌克兰森林草原的气候不稳定。在不同的生长条件下,黄瓜杂交种的生长发育长度、主要生育期和产量均有显著差异。我们选择了具有年度参数对进一步育种有价值的杂种:通过早熟,F1 ' BD 96-18 ' / ' Tsezar ', F1 ' RD 96 2-95 ' / ' Dzherelo ', F1 ' RD 96 2-95 ' / ' Heim '和F1 ' ma- 62 ' / ' Toma-18 '(42天);结果长度分别为:F1 ' RD 96 2-95 ' / ' Dzherelo ' (35 d)、F1 ' Mah-62 ' / ' Toma-18 '、F1 ' BD 96-18 ' / ' Heim '和F1 ' RD 96 2-95/ ' Heim ' (32 d);按产量分别为:F1‘Mah-62’/‘Toma-18’(45,9吨/公顷)、F1‘BD 96-18’/‘Toma-18’(39,3吨/公顷)、F1‘Krak’/‘RD-96 2-95’(36,8吨/公顷)、F1‘RD 96 2-95’/‘Heim’(35,8吨/公顷)、F1‘BD 96-18’/‘Heim’(34,6吨/公顷)和F1‘RD 96 2-95’/‘Dzherelo’(34.2吨/公顷)。所选杂交种的产量显著高于对照F1杂交种‘Ajax’(高出80- 142%或19.0吨/公顷)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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