{"title":"根据生产要素分析燕麦品种和品系在基洛夫地区条件下的适应性","authors":"O. Zhuikova, G. A. Batalova","doi":"10.30766/2072-9081.2023.24.6.949-957","DOIUrl":null,"url":null,"abstract":"The research was carried out in 2020-2022 in the central part of the Kirov region, under varying weather conditions. In the nursery of the competitive variety testing, 3 varieties and 8 lines of hulled oats were studied in order to analyze their adaptive ability according to the elements of the productivity structure. Varieties and lines were characterized based on the sum of the ranks of the evaluation results according to the methods of S. A. Eberhart, W. A. Rassel (1966), N. A. Plokhinsky (1961), L. A. Zhivotkov et al. (1994), A. A. Rosielle and J. Hamblin (1981). There was a direct statistically significant effect of the mass of 1000 grains, the mass of grain from the panicle, the number of grains in the panicle on the yield (r = 0.62…0.85). The formation of the elements of the productivity structure depended on the hydrothermal conditions of individual periods of vegetation (r = 0.63…0.72). The method of two-factor analysis of variance revealed that the influence of the \"year\" factor on the elements of the productivity structure was more significant (33.7...64.3 %) than the \"grade\" factor (8.5...24.6 %). There have been identified lines and varieties able to form consistently high yields in contrasting weather conditions due to certain structural elements or their combined influence. A high adaptive capacity with a minimum amount of ranks was obtained by the number of spikelets in the 41h18 line (Σranks = 17), varieties Kirovsky 2 (Σranks = 14); by the number of grains in the panicle and by the weight of grains from the panicle – line 41h18 (Σranks = 14 and 15); by the weight of 1000 grains – lines 25h18, 91h18, 41h18, 50h18, 162h15 (Σranks = 21…27), varieties Medved’ and Kirovsky 2 (Σranks = 18…22). According to the total lowest sum of ranks (71...97), the Kirovsky grade 2, promising lines 25h18 and 41h18 have been identified.","PeriodicalId":504649,"journal":{"name":"Agricultural Science Euro-North-East","volume":"904 ","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2023-12-15","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Analysis of adaptability of oat varieties and lines by productivity elements in the conditions of Kirov region\",\"authors\":\"O. Zhuikova, G. A. Batalova\",\"doi\":\"10.30766/2072-9081.2023.24.6.949-957\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"The research was carried out in 2020-2022 in the central part of the Kirov region, under varying weather conditions. In the nursery of the competitive variety testing, 3 varieties and 8 lines of hulled oats were studied in order to analyze their adaptive ability according to the elements of the productivity structure. Varieties and lines were characterized based on the sum of the ranks of the evaluation results according to the methods of S. A. Eberhart, W. A. Rassel (1966), N. A. Plokhinsky (1961), L. A. Zhivotkov et al. (1994), A. A. Rosielle and J. Hamblin (1981). There was a direct statistically significant effect of the mass of 1000 grains, the mass of grain from the panicle, the number of grains in the panicle on the yield (r = 0.62…0.85). The formation of the elements of the productivity structure depended on the hydrothermal conditions of individual periods of vegetation (r = 0.63…0.72). The method of two-factor analysis of variance revealed that the influence of the \\\"year\\\" factor on the elements of the productivity structure was more significant (33.7...64.3 %) than the \\\"grade\\\" factor (8.5...24.6 %). There have been identified lines and varieties able to form consistently high yields in contrasting weather conditions due to certain structural elements or their combined influence. A high adaptive capacity with a minimum amount of ranks was obtained by the number of spikelets in the 41h18 line (Σranks = 17), varieties Kirovsky 2 (Σranks = 14); by the number of grains in the panicle and by the weight of grains from the panicle – line 41h18 (Σranks = 14 and 15); by the weight of 1000 grains – lines 25h18, 91h18, 41h18, 50h18, 162h15 (Σranks = 21…27), varieties Medved’ and Kirovsky 2 (Σranks = 18…22). According to the total lowest sum of ranks (71...97), the Kirovsky grade 2, promising lines 25h18 and 41h18 have been identified.\",\"PeriodicalId\":504649,\"journal\":{\"name\":\"Agricultural Science Euro-North-East\",\"volume\":\"904 \",\"pages\":\"\"},\"PeriodicalIF\":0.0000,\"publicationDate\":\"2023-12-15\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Agricultural Science Euro-North-East\",\"FirstCategoryId\":\"1085\",\"ListUrlMain\":\"https://doi.org/10.30766/2072-9081.2023.24.6.949-957\",\"RegionNum\":0,\"RegionCategory\":null,\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"\",\"JCRName\":\"\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Agricultural Science Euro-North-East","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.30766/2072-9081.2023.24.6.949-957","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
摘要
研究于 2020-2022 年在基洛夫地区中部不同气候条件下进行。在品种竞争试验苗圃中,对 3 个带壳燕麦品种和 8 个品系进行了研究,以便根据生产力结构要素分析其适应能力。按照 S. A. Eberhart、W. A. Rassel (1966)、N. A. Plokhinsky (1961)、L. A. Zhivotkov 等人 (1994)、A. A. Rosielle 和 J. Hamblin (1981) 的方法,根据评价结果的等级总和对品种和品系进行了定性。据统计,1000 粒谷粒的质量、圆锥花序中谷粒的质量、圆锥花序中谷粒的数量对产量有直接的显著影响(r = 0.62...0.85)。生产力结构要素的形成取决于各个植被时期的水热条件(r = 0.63...0.72)。双因素方差分析法显示,"年份 "因素对生产力结构要素的影响(33.7...64.3%)比 "等级 "因素(8.5...24.6%)更为显著。由于某些结构要素或这些要素的综合影响,已经发现一些品系和品种能够在不同的气候条件下保持稳定的高产。41h18 品系的小穗数(Σranks = 17)、基洛夫斯基 2 号品种(Σranks = 14)以最小的级数获得了较高的适应能力;按圆锥花序粒数和圆锥花序粒重计算 - 41h18 品系(Σranks = 14 和 15);按 1000 粒重计算 - 25h18、91h18、41h18、50h18、162h15 品系(Σranks = 21......27),品种 Medved'和 Kirovsky 2(Σranks = 18...22)。根据最低等级总和(71...97),确定了 Kirovsky 2 级、25h18 和 41h18 有前途的品系。
Analysis of adaptability of oat varieties and lines by productivity elements in the conditions of Kirov region
The research was carried out in 2020-2022 in the central part of the Kirov region, under varying weather conditions. In the nursery of the competitive variety testing, 3 varieties and 8 lines of hulled oats were studied in order to analyze their adaptive ability according to the elements of the productivity structure. Varieties and lines were characterized based on the sum of the ranks of the evaluation results according to the methods of S. A. Eberhart, W. A. Rassel (1966), N. A. Plokhinsky (1961), L. A. Zhivotkov et al. (1994), A. A. Rosielle and J. Hamblin (1981). There was a direct statistically significant effect of the mass of 1000 grains, the mass of grain from the panicle, the number of grains in the panicle on the yield (r = 0.62…0.85). The formation of the elements of the productivity structure depended on the hydrothermal conditions of individual periods of vegetation (r = 0.63…0.72). The method of two-factor analysis of variance revealed that the influence of the "year" factor on the elements of the productivity structure was more significant (33.7...64.3 %) than the "grade" factor (8.5...24.6 %). There have been identified lines and varieties able to form consistently high yields in contrasting weather conditions due to certain structural elements or their combined influence. A high adaptive capacity with a minimum amount of ranks was obtained by the number of spikelets in the 41h18 line (Σranks = 17), varieties Kirovsky 2 (Σranks = 14); by the number of grains in the panicle and by the weight of grains from the panicle – line 41h18 (Σranks = 14 and 15); by the weight of 1000 grains – lines 25h18, 91h18, 41h18, 50h18, 162h15 (Σranks = 21…27), varieties Medved’ and Kirovsky 2 (Σranks = 18…22). According to the total lowest sum of ranks (71...97), the Kirovsky grade 2, promising lines 25h18 and 41h18 have been identified.