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首页> 外文期刊>Erwerbsobstbau >An Analysis on Some Reciprocal Pear Hybridization Combinations in Terms of Transferring Resistance to Fire Blight
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An Analysis on Some Reciprocal Pear Hybridization Combinations in Terms of Transferring Resistance to Fire Blight

机译:在转移抗火抗火抗冲击方面的一些互易梨杂交组合分析

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Since it has a wide variety, pear can be grown in all temperate zones and high-altitude areas of tropical and subtropical climates of the Earth. On the other hand, most of the cultured pear varieties are susceptible to fire blight caused by Erwinia amylovora, and their susceptibility is threatening pear cultivation. The lack of a certain solution to fire blight, the harmful effects of the chemicals on environment and human health and the increasing demand for organic products, give priority to breeding new resistant rootstocks and varieties in control of the disease. Due to the polygenic nature of fire blight resistance and the complexity of its mechanism, controlled hybridization is generally used in breeding programs. In order to determine the effect of the parents for the transmission of fire blight resistance, hybridizations are also carried out reciprocally. In the study which was carried out for this aim, susceptibility levels of the F1 hybrids, obtained from the reciprocal combinations of fire blight resistant 'Kieffer' and the susceptible 'Williams', 'Santa Maria' and 'Akca' cultivars, were evaluated. While 'Kieffer' x 'Santa Maria' was found the most resistant combination to fire blight, 'Akca' x 'Williams' was found as the most susceptible one. In addition, it has been determined that F-1 hybrids obtained from 'Kieffer' x 'Santa Maria' and 'Akca' x 'Williams' hybridization combinations and their reciprocals are different in terms of disease resistance, while there was no difference in resistance in F-1 hybrids of 'Williams' x 'Santa Maria' combination and its reciprocal combination.
机译:由于它具有各种各样的梨,可以在所有温带区域和地球热带和亚热带气候的高空区域生长。另一方面,大多数培养的梨品种易受埃尔韦尼亚氨基洛拉引起的火灾枯萎病,它们的易感性是威胁梨种植。缺乏一定的解雇解决方案,对环境和人类健康的化学品的有害影响以及对有机产品的日益增长,优先考虑培育新的抗砧木和品种的控制。由于火焰抗性的多基因性和其机理的复杂性,受控杂交通常用于繁殖计划。为了确定父母对抗火焰抗性的效果,还互相进行杂交。在该研究的目的下,评估了从火焰抗性“Kieffer”和易感“威廉姆斯”,“圣玛丽亚”和“AKCA”品种的互感杂交种的易感性水平,从抗火抗性“Kieffer”和“威廉姆斯”和“Akca”品种。虽然'Kieffer'X'Santa Maria'被发现最耐火的爆炸组合,但是Akca'X'Illiams'被发现是最易感的。此外,已经确定了从“Kieffer”X'Santa Maria'和'Akca'X'Ineriams的杂交组合和它们的互核在疾病抵抗方面具有不同的F-1混合动力车,而抗性没有差异在“Williams”X'Anta Maria组合的F-1混合物中及其互易组合。

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