Environmental Science, Policy and Management, University of California, Berkeley, California, United States of America.
Plant Science, University of California, Davis, California, United States of America.
PLoS One. 2021 May 13;16(5):e0251305. doi: 10.1371/journal.pone.0251305. eCollection 2021.
Self-compatibility has become the primary objective of most prune (Prunus domestica) breeding programs in order to avoid the problems related to the gametophytic self-incompatibility (GSI) system present in this crop. GSI is typically under the control of a specific locus., known as the S-locus., which contains at least two genes. The first gene encodes glycoproteins with RNase activity in the pistils., and the second is an SFB gene expressed in the pollen. There is limited information on genetics of SI/SC in prune and in comparison., with other Prunus species, cloning., sequencing and discovery of different S-alleles is very scarce. Clear information about S-alleles can be used for molecular identification and characterization of the S-haplotypes. We determined the S-alleles of 36 cultivars and selections using primers that revealed 17 new alleles. In addition, our study describes for the first time the association and design of a molecular marker for self-compatibility in P. domestica. Our phylogenetic tree showed that the S-alleles are spread across the phylogeny, suggesting that like previous alleles detected in the Rosaceae., they were of trans-specific origin. We provide for the first time 3D models for the P. domestica SI RNase alleles as well as in other Prunus species, including P. salicina (Japanese plum), P. avium (cherry), P. armeniaca (apricot), P. cerasifera and P. spinosa.
自交亲和性已成为大多数李(Prunus domestica)育种计划的主要目标,以避免该作物配子体自交不亲和性(GSI)系统相关的问题。GSI 通常受特定基因座 S 基因座控制,该基因座至少包含两个基因。第一个基因在雌蕊中编码具有 RNase 活性的糖蛋白,第二个是在花粉中表达的 SFB 基因。李属植物中 SI/SC 的遗传信息有限,与其他李属物种相比,S 等位基因的克隆、测序和发现非常有限。关于 S 等位基因的明确信息可用于 S 单倍型的分子鉴定和特征描述。我们使用揭示 17 个新等位基因的引物来确定 36 个品种和选择的 S 等位基因。此外,我们的研究首次描述了 P. domestica 自交亲和性的关联和分子标记设计。我们的系统发育树表明 S 等位基因分布在系统发育中,表明它们与先前在蔷薇科中检测到的等位基因一样,是跨种起源的。我们首次为 P. domestica SI RNase 等位基因以及其他李属物种(包括日本李、樱桃、杏、欧洲李和刺李)提供了 3D 模型。