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‘早红’甜樱桃自交亲和性与其花粉 S 基因失活有关。

Self-compatibility in 'Zaohong' Japanese apricot is associated with the loss of function of pollen S genes.

机构信息

College of Horticulture, Nanjing Agricultural University, No.1 Weigang, Nanjing City, 210095, Jiangsu Province, People's Republic of China.

出版信息

Mol Biol Rep. 2013 Nov;40(11):6485-93. doi: 10.1007/s11033-013-2765-2. Epub 2013 Sep 24.

Abstract

While most Japanese apricot (Prunus mume Sieb. et Zucc.) cultivars display typical S-RNase-based gametophytic self-incompatibility, some self-compatible (SC) cultivars have also been identified. In this study, we confirmed SC of 'Zaohong' through replicated self-pollination tests. Cross-pollination tests showed that SC of 'Zaohong' was caused by a loss of pollen function, so we determined that the S-genotype of 'Zaohong' was S 2 S 15 . Sequence analysis of the S-haplotypes of 'Zaohong' showed no mutations which were likely to alter gene function. Furthermore, expression analysis based on RT-PCR of S-locus genes revealed no differences at the transcript level when compared with 'Xiyeqing', a self-incompatible cultivar with the same S haplotypes. In addition, except for S-locus genes, a new type of F-box gene encoding a previously uncharacterised protein with high sequence similarity (61.03-64.65 %) to Prunus SFB genes was identified. Putative structural regions of PmF-box genes have been described, corresponding to regions in PmSFB alleles, but with some sequence variations. These results suggest that SC in 'Zaohong' occurs in pollen, and that other factors outside the S-locus, including PmF-box genes, might be associated with the loss of function of pollen S genes.

摘要

虽然大多数日本李(Prunus mume Sieb. et Zucc.)品种表现出典型的配子体 S-RNase 基础自交不亲和性,但也已经鉴定出一些自交亲和(SC)品种。在这项研究中,我们通过重复自交授粉试验证实了“早红”的 SC 特性。异交授粉试验表明,“早红”的 SC 是由于花粉功能丧失引起的,因此我们确定“早红”的 S 基因型为 S 2 S 15 。对“早红”S 单倍型的序列分析显示,没有可能改变基因功能的突变。此外,基于 S 基因座基因的 RT-PCR 表达分析与具有相同 S 单倍型的自交不亲和品种“细叶青”相比,在转录水平上没有差异。此外,除了 S 基因座基因外,还鉴定到一种新的 F-box 基因,该基因编码一种以前未被描述的具有高序列相似性(61.03-64.65%)的蛋白质与李属 SFB 基因相似。已经描述了 PmF-box 基因的假定结构区域,与 PmSFB 等位基因的区域相对应,但存在一些序列变异。这些结果表明,“早红”中的 SC 发生在花粉中,而 S 基因座以外的其他因素,包括 PmF-box 基因,可能与花粉 S 基因功能丧失有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/782c/3824209/02231aca0936/11033_2013_2765_Fig1_HTML.jpg

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