首页> 外文期刊>The Horticulture Journal >Effects of Crossing and Selection for Seven Generations Based on Flower Vase Life in Carnations (Dianthus caryophyllus L.), and the Relationship between Ethylene Production and Flower Vase Life in the Breeding Lines
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Effects of Crossing and Selection for Seven Generations Based on Flower Vase Life in Carnations (Dianthus caryophyllus L.), and the Relationship between Ethylene Production and Flower Vase Life in the Breeding Lines

机译:基于花瓶寿命的杂志(Dianthus Caryophyllus L.)的交叉和选择对七代的影响,以及育种线乙烯生产与花瓶寿命的关系

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Flower vase life of cut ornamental flowers, including carnations, is important in determining their quality and consumer preference for cut flowers. Therefore, we repeatedly crossed and selected promising offspring with long vase life for seven generations, from 1992 to 2008, in order to improve the vase life of carnation (Dianthus caryophyllus L.) flowers using conventional cross-breeding techniques. We investigated flower vase life, ethylene production at natural senescence, ethylene production after ethylene treatment (autocatalytic ethylene biosynthesis), response time to ethylene treatment (ethylene sensitivity), and flower diameter in six carnation cultivars used for initial breeding materials and a total of 123 selected lines from the first to seventh generations. Our results indicate that there was a large genetic variability in the five traits. Significant negative correlations were observed between flower vase life and ethylene production at natural senescence (r = -0.88**), between flower vase life and ethylene production after ethylene treatment (r = -0.90**), and between flower vase life and flower diameter (r = -0.92**). However, there was no correlation between flower vase life and ethylene sensitivity. Thus, the long vase life of selected carnation lines was strongly associated with a decrease in their ethylene production. Our results indicate that variation in flower vase life is not due to differences in ethylene sensitivity, but due to differences in ethylene production. Although flower size is an important floricultural trait for commercial production, crossing and selection for flower vase life resulted in a considerable reduction in flower diameter. The course of mean flower vase life over generations showed that selection was effectively made in the first to sixth generations. Repeatability for the flower vase life was roughly constant (0.3 to 0.4) in the first to sixth generations, but decreased to 0.12 in the seventh generation, suggesting a decrease in genetic variation in the seventh generation.
机译:剪切装饰花的花瓶寿命,包括康乃馨,在确定他们的剪切花卉的质量和消费者偏好方面都很重要。因此,我们从1992年到2008年反复交叉和选择了长期以来的七代人使用寿命,以提高使用常规交叉育种技术的康乃馨(Dianthus Caryophylus L.)花的花瓶寿命。我们调查了花瓶寿命,在自然衰老时乙烯生产,乙烯处理后乙烯处理(自催化乙烯生物合成),响应时间与乙烯处理(乙烯敏感性),和六种康乃馨品种中的花直径,用于初始繁殖材料,共123例从第一个到第七代的选择线。我们的结果表明,五种特征中存在较大的遗传变异性。在乙烯处理后的花瓶寿命和乙烯生产之间,在天然衰老(R = -0.88 **)之间观察到显着的负相关性,在乙烯处理后的花瓶寿命和乙烯生产之间(r = -0.90 **)之间,花瓶生命和花卉直径(r = -0.92 **)。然而,花瓶寿命与乙烯敏感性之间没有相关性。因此,所选康乃馨线的长瓶寿命与乙烯生产的降低强烈相关。我们的结果表明,花瓶寿命的变化不是由于乙烯敏感性的差异,而是由于乙烯生产的差异。虽然花大小是用于商业生产的重要花卉特征,横穿和花瓶寿命的选择导致花卉直径减少。在几代人的平均花瓶生命的过程表明,选择的选择是在第一个至第六代中进行的。在第一个至第六代中,花瓶寿命的可重复性大致恒定(0.3〜0.4),但第七代中的速度降至0.12,表明第七代遗传变异降低。

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