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Investigation of winter hardiness and cold hardiness in apple progenies.

机译:苹果后代的冬季抗寒性研究。

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Diallel crosses of 8 apple cultivars (Orlik, Noris, Auksis, Katja, Kaunis, Tellissaare, Prima, Idared) were carried out according to Griffings method 4. In the spring of 1991 seedlings of 28 progenies were planted in the orchard in a randomized complete-block design. It was established that apple seedlings could resist -30 to -40℃ during different periods of wintering. Most hardy seedlings were found in crosses of local cultivars Kaunis, Auksis, Noris and Tellissaare. The highest percentage (65.7%) of winter hardy plants was established after the mild winter of 1997-98, the winter 1996-97 -- 16.3%, 1993-94 -- 13.8%, 1995-96 -- 6.8%. Progenies of crosses involving local cultivars were more winter hardy than progenies from other crosses. Similar results of seedling evaluation for cold and winter hardiness were obtained by using the freezing method. Therefore, the freezing method can be suitable for screening of hardy seedlings. Inheritance of winter hardiness was estimated as well. General and specific combining abilities were highly significant for winter hardiness. But the mean square for the general combining ability was several times larger than the one for the specific combining ability. It indicates that winter hardiness is mainly controlled by additive genes. Selection of parents based on their own winter hardiness or general combining ability effects should be effective to increase winter hardiness of breeding populations.
机译:根据格里芬斯方法4,对8个苹果品种(Orlik,Noris,Auksis,Katja,Kaunis,Tellissaare,Prima,Idared)的Diallel杂交进行了研究。1991年春季,果园里随机种植了28个子代的完整幼苗。块设计。结果表明,苹果幼苗在越冬期间可以抵抗-30〜-40℃。在当地品种Kaunis,Auksis,Noris和Tellissaare的杂交品种中发现了最耐寒的幼苗。在1997-98年的温和冬季,1996-97年的冬季-16.3%,1993-94年的-13.8%,1995-96年的6.8%之后,确立了最高耐寒植物百分比(65.7%)。涉及本地品种的杂交后代比其他杂交后代耐寒性更高。使用冷冻方法获得的幼苗抗寒性和抗寒性的评估结果相似。因此,冷冻方法可适合于筛选强壮的幼苗。还估计了耐寒性的遗传。一般和特定的结合能力对冬季的耐寒性非常重要。但是,一般合并能力的均方根比特定合并能力的均方根大几倍。这表明冬季抗寒性主要由加性基因控制。根据自身的抗寒性或综合结合能力的影响选择亲本应有效地提高繁殖种群的抗寒性。

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