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Identification of Self-Incompatibility Alleles by Specific PCR Analysis and S-RNase Sequencing in Apricot

机译:通过特异性PCR分析和S-RNase测序鉴定杏的自交不亲和性等位基因

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摘要

Self-incompatibility (SI) is one of the most efficient mechanisms to promote out-crossing in plants. However, SI could be a problem for fruit production. An example is apricot (Prunus armeniaca), in which, as in other species of the Rosaceae, SI is determined by an S-RNase-based-Gametophytic Self-Incompatibility (GSI) system. Incompatibility relationships between cultivars can be established by an S-allele genotyping PCR strategy. Until recently, most of the traditional European apricot cultivars were self-compatible but several breeding programs have introduced an increasing number of new cultivars whose pollination requirements are unknown. To fill this gap, we have identified the S-allele of 44 apricot genotypes, of which 43 are reported here for the first time. The identification of Sc in 15 genotypes suggests that those cultivars are self-compatible. In five genotypes, self-(in)compatibility was established by the observation of pollen tube growth in self-pollinated flowers, since PCR analysis could not allowed distinguishing between the Sc and S8 alleles. Self-incompatible genotypes were assigned to their corresponding self-incompatibility groups. The knowledge of incompatibility relationships between apricot cultivars can be a highly valuable tool for the development of future breeding programs by selecting the appropriate parents and for efficient orchard design by planting self-compatible and inter-compatible cultivars.
机译:自我不相容性(SI)是促进植物杂交的最有效机制之一。然而,SI对于水果生产可能是一个问题。一个例子是杏(Prunus armeniaca),其中像在蔷薇科的其他物种中一样,SI是通过基于S-RNase的配子体自我不相容性(GSI)系统确定的。品种之间的不相容性关系可以通过S-等位基因基因分型PCR策略来建立。直到最近,大多数传统的欧洲杏品种都是自交配的,但是一些育种计划已经引入了越来越多的新品种,其授粉要求尚不清楚。为了填补这一空白,我们确定了44种杏基因型的S等位基因,其中首次报道了43种。在15个基因型中对Sc的鉴定表明,这些品种具有自我相容性。在五个基因型中,通过观察自花中花粉的花粉管生长来建立自(不)亲和力,因为PCR分析无法区分Sc和S8等位基因。将自我不相容的基因型分配给其相应的自我不相容性组。通过选择合适的亲本,以及通过种植自交和互交的品种,杏品种之间不相容关系的知识可以成为开发未来育种计划的极有价值的工具。

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