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首页> 外文期刊>Breeding science >Ploidy variation and agronomic performance of F-1 hybrids of tetraploid and diploid forms of Humulus lupulus L.
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Ploidy variation and agronomic performance of F-1 hybrids of tetraploid and diploid forms of Humulus lupulus L.

机译:卵子羽割L型二倍体和二倍体形式F-1杂种的倍增性变化和农艺学性能。

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摘要

Humulus lupulus (2n = 2x = 20) as a source of hop resins, essential oils and polyphenols has value in brewing, pharmacy and cosmetology. Conventional crossing between tetraploids of 'Sybilla' and diploid males were performed to obtain F-1 hybrids. Cytological studies revealed that 83.8% of the hybrids were triploids (2n = 3x = 30), 15.2% were aneuploids in which the chromosome number ranged from 28-32. Tetraploids (2n = 4x = 40) and diploids were also observed, which indicates numerous disturbances of gametogenesis of the parental forms. STS markers specific for male plants showed that females outnumbered male individuals among the F-1 hybrids, which is in accordance with the distribution of sex ratio characteristic for diploid hybrids of H. lupulus. Female triploids were compared to the control 'Sybilla' with regard to their functional characteristics and alpha acids content in cones. A two year-long experiment showed that most of the triploids had a significantly higher position of fructiferous branches and shoot twist index compared to diploids of 'Sybilla'. There was also a significantly extended time for them to reach technological maturity of cones. Triploids were distinguished by a significantly lower seed content compared to 'Sybilla', therefore the raw material obtained from them is more suitable for the production of hop pellets and extracts.
机译:Humulus Lupulus(2n = 2x = 20)作为啤酒花树脂的来源,精油和多酚具有酿造,药房和美容的价值。进行“Sybilla”和二倍体雄性的四倍体之间的常规交叉,以获得F-1杂种。细胞学研究表明,83.8%的杂种是三倍体(2n = 3x = 30),15.2%是一种非细倍性,其中染色体数为28-32。还观察到四倍体(2N = 4x = 40)和二倍体,这表明了父母形式的许多紊乱。对雄性植物特异的STS标记显示,雌性在F-1杂交种中偏离雄性个体,这与Hupulus Hupulus二倍体杂交种的性别比特征的分布。将雌性三倍体与对照'Sybilla'进行比较,关于它们的功能特性和锥体中的α酸含量。两年长的实验表明,与“Sybilla”的二倍体相比,大多数三倍体的果实分支和射击指数具有明显更高的位置。他们还有一个明显延长的时间,以达到锥体的技术成熟度。与“Sybilla”相比,三倍体通过显着较低的种子含量来区分,因此从它们获得的原料更适合于生产啤酒花粒料和提取物。

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