乌克兰森林草原中部条件下春大麦1000粒重的育种和遗传特性

V. Hudzenko, T. Polishchuk, A. Lysenko, L. Khudolii, A. Babenko
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引用次数: 2

摘要

目的。目的:揭示乌克兰中部森林草原条件下春大麦千粒重的选育和遗传特点,寻找选育的遗传来源。调查是在乌克兰国家科学院的v.m. Remeslo Myronivka小麦研究所进行的。对两个完全(6 × 6)双列杂交方案的春大麦F1进行了研究。第一个方案包括现代国内外春季大麦麦芽品种(' MIP Tytul ', ' Avhur ', ' Datcha ', ' Quench ', ' Gladys ', ' Beatrix '),第二个方案是经典的带蓬(' MIP Myroslav ', ' Sebastian '),无蓬(' Kozyr ', ' Vitrazh ')和裸(' Condor ', ' CDC Rattan ')品种。结果。除负显性遗传外,千粒重遗传表现出多种类型。具有相应表型显性程度值的组合所占比例根据杂交所涉及的基因型和检测年份而变化。在2019年和2020年两个杂交方案中,大多数组合均存在正显性。品种‘Gladys’和‘MIP Myroslav’杂交时,在不同的生长条件下,具有异玫瑰表现的组合数量最多。根据遗传变异参数,表明该性状主要由加性-显性系统决定。优势度的目的是增加千粒重。只有在2019年的第二个穿越方案中,方向优势指标的值不可靠。该基因座在2019年呈现不完全显性,在2020年呈现过显性。在这两年中,‘Datcha’、‘Gladys’、‘MIP Myroslav’、‘Kozyr’和‘Vitrazh’品种的一般配合力都具有可靠的高效果。所揭示的育种和遗传特性表明,当显性等位基因为纯合子时,绝大多数被创造的杂交组合将需要在后代中进行最终选择。春大麦有芒品种“Gladys”、“MIP Myroslav”和“Datcha”以及无芒品种“Kozyr”和“Vitrage”可以作为提高千粒重的有效遗传资源
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Breeding and genetic peculiarities of spring barley 1000 kernel weight under conditions of the central part of the Ukrainian Forest-Steppe
Purpose. To reveal the breeding and genetic peculiarities for spring barley 1000 kernel weight and to identify genetic sources for breeding under conditions of the central part of the Forest-Steppe of Ukraine. Methods. Investigations were carried out at the V. M. Remeslo Myronivka Institute of Wheat of the NAAS of Ukraine. Spring barley F1 of two comp­lete (6 ´ 6) diallel crossing schemes was investigated. The first scheme included modern both domestic and foreign spring barley malting varieties (‘MIP Tytul’, ‘Avhur’, ‘Datcha’, ‘Quench’, ‘Gladys’, ‘Beatrix’), the second – classic covered awned (‘MIP Myroslav’, ‘Sebastian’), awnless (‘Kozyr’, ‘Vitrazh’) and naked (‘Condor’, ‘CDC Rattan’) varieties. Results. Various types of inheritance of 1000 kernel weight were revealed, with the exception of negative dominance. The proportion of combinations with corresponding values ​​of the degree of phenotypic dominance varied depending on the genotypes involved in the crossing and the years of testing. In both crossing schemes, both in 2019 and in 2020, positive overdominance was found in most combinations. The grea­test number of combinations with the manifestation of hete­rosis under different growing conditions was noted when varieties ‘Gladys’ and ‘MIP Myroslav’ were used in crossing. According to the parameters of genetic variation, it was revealed that the trait was determined mainly by the additive-dominant system. The dominance was aimed at increasing the 1000 kernel weight. Only in the second crossing scheme in 2019 the value of the directional dominance indicator was unreliable. In the loci, incomplete dominance in 2019 and over-dominance in 2020 were revealed. Reliably high effects of the general combining ability in both years were noted for varieties ‘Datcha’, ‘Gladys’, ‘MIP Myroslav’, ‘Kozyr’ and ‘Vitrazh’. Conclusions. The revealed breeding and genetic peculiarities indicate that for the overwhelming majority of created hybrid combinations will be required the final selection in later generations, when the dominant alleles are homozygous. Spring barley awned varieties ‘Gladys’, ‘MIP Myroslav’ and ‘Datcha’, as well as awnless varieties ‘Kozyr’ and ‘Vitrage’ can be used as effective genetic sources for increa­sing the 1000 kernel weight
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