面包小麦品种的遗传变异和生物计量指标评价:对现代选择方法的启示

D. Juraev, Sh. Dilmurodov, Norboy Sh. Kayumov, Sevara R. Xujakulova, Umida Sh. Karshiyeva
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摘要

加拿大、美利坚合众国、墨西哥、巴西、澳大利亚、中国、印度、土耳其和俄罗斯等主要粮食生产国,在选育抗非生物因素小麦新品种的方向上,非常重视培育新的小麦品种,通过鉴定具有有价值经济性状的高质量和积极指标的供体,开发新的基因型,并将其引入现代选育方法。全世界都在这方面取得了进展。今天,许多具有宝贵经济性状和高品质的小麦品种已经被创造出来并大面积推广。本研究从45个面包小麦品种和品系中筛选出23个基因型。苗圃生育期为233 ~ 238 d,株系比地方对照品种成熟。与地方对照品种相比,植株生物特征指标中,株高阳性15个品系,花梗长阳性10个品系,穗长阳性5个品系,穗数阳性1个品系,抗倒伏阳性1个品系。用Dospekhov法对籽粒产量和籽粒品质进行统计分析,结果表明,各指标的实验误差率分别为:产量0.888%、千粒重3.018%、试重0.627%、蛋白质含量2.028%、面筋含量1.519%、IDK 2.001%、籽粒玻璃性4.01%。值得注意的是,实验在重复方面进行得正确,并显示出积极的结果。选择10个基因型,产量为72.6 ~ 96.7 c/ha,千粒重37.9 ~ 43.2 g,试重803 ~ 835 g/l,蛋白质含量16.2 ~ 19.3%,面筋含量28.5 ~ 30.4%。据此,观察到铁的含量为1.0-1.8 mg。结果表明,戈斯贡(Gozgon)和安东尼纳(Antonina)分别为1.3 mg和1.4 mg。KR20-27-FAWIR-67、KR20-BWF5IR-2625、KR20-27-FAWIR-138系1.6 mg相对于当地检验品种。品系KR20-BWF5IR-2460, KR20-27-FAWIR-39, KR20-BWF5IR-246结果表明,KR20-27-FAWIR-154系的高结果为1.8 mg。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating Genetic Variability and Biometric Indicators in Bread Wheat Varieties: Implications for Modern Selection Methods
Major grain-producing countries such as Canada, the United States of America, Mexico, Brazil, Australia, China, India, Turkey, and Russia, in the direction of selection for the creation of new varieties of wheat resistant to abiotic factors, are paying great attention to creating new wheat varieties by developing new genotypes by identifying donors with high-quality and positive indicators of valuable economic traits and introducing them into modern selection methods. Progress has been made in this direction worldwide. Today, many varieties of wheat with valuable economic traits and high grain quality have been created and introduced to large areas. In this study, 23 genotypes were selected from 45 genotypes of bread wheat varieties and lines. The nursery’s growth period lasted between 233-238 days, and the lines appeared more mature than the local check varieties. Compared to the local check varieties, among the plant’s biometric indicators, 15 lines showed positive results in terms of plant height, 10 lines in peduncle length, 5 lines in spike length, 1 line in spike number, and 1 line in resistance to lodging. The statistical analysis of grain yield and grain quality using the Dospekhov method  showed that the experimental error rates for various indices as follows: 0.888% for yield, 3.018% for weight of 1000 grains, 0.627% for Test weight, 2.028% for protein content, 1.519% for gluten content, 2.001% for IDK, and 4.01% for grain glassiness. It was noted that the experiment was conducted correctly in terms of repetitions and showed a positive result. 10 genotypes with yield of genotypes 72.6-96.7 c/ha, weight of 1000 grains 37.9-43.2 g, test weight 803-835 g/l, protein content 16.2-19.3%, gluten content 28.5-30.4% were selected. Accordingly, it was observed that the amount of iron was 1.0-1.8 mg. It was observed that the sample was 1.3 mg in the Gozgon variety and 1.4 mg in the Antonina variety. KR20-27-FAWIR-67, KR20-BWF5IR-2625, KR20-27-FAWIR-138 lines 1.6 mg relative to the local check variety. Lines KR20-BWF5IR-2460, KR20-27-FAWIR-39, KR20-BWF5IR-246 1.7 mg. It was observed that the KR20-27-FAWIR-154 line showed a high result of 1.8 mg.
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