...
首页> 外文期刊>The Horticulture Journal >Distinct Self-recognition in the Prunus S-RNase-based Gametophytic Self-incompatibility System
【24h】

Distinct Self-recognition in the Prunus S-RNase-based Gametophytic Self-incompatibility System

机译:基于李属S-RNase的配子体自交不亲和系统中的独特自我识别

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Prunus fruit tree species exhibit S-ribonuclease (S-RNase)-based gametophytic self-incompatibility (GSI). This system is also present in the families Plantaginaceae and Solanaceae and the tribe Maleae of the family Rosaceae. In S-RNase-based GSI, selfonself-recognition between the pistil and pollen is controlled by the pistil S determinant S-ribonuclease gene (S-RNase) and the pollen S determinant F-box gene(s). Accumulated evidence indicates the Prunus pollen S locus contains a single F-box gene, while that of other plants consists of multiple F-box genes. The pollen S F-box genes are called S haplotype-specific F-box (SFB), S-locus F-box brothers (SFBB), and S-locus F-box (SLF) in Prunus, Maleae, and Solanaceae species, respectively. The consequences of pollen S gene mutations and heterodiallelic pollen production differ between Prunus species and other plants, suggesting there are different pollen S functions during selfonself-recognition. The GSI systems of Prunus and other plants are believed to include the ubiquitin proteasome system for protein degradation. However, Prunus SFB is assumed to facilitate the S-RNase cytotoxic effects during self recognition, while SLFs and SFBBs are thought to function collaboratively during nonself-recognition to avoid S-RNase cytotoxicity. This review summarizes the distinct features of the S-RNase-based GSI mechanism in Prunus species, with special references to the recent advances in our understanding of S-RNase-based GSI.
机译:李果树种表现出基于S-核糖核酸酶(S-RNase)的配子体自我不相容性(GSI)。该系统也存在于Plantaginaceae和Solanaceae家族以及蔷薇科的Maleae部落中。在基于S-RNase的GSI中,雌蕊和花粉之间的自我/非自我识别受雌蕊S决定簇S-核糖核酸酶基因(S-RNase)和花粉S决定簇F-box基因控制。积累的证据表明,李属花粉S基因座包含一个F-box基因,而其他植物的P基因座则由多个F-box基因组成。花粉中的S F-box基因在李属,马来亚和茄科中被称为S单倍型特异性F-box(SFB),S-locus F-box兄弟(SFBB)和S-locus F-box(SLF),分别。在李属植物和其他植物之间,花粉S基因突变和异花粉体花粉产生的后果是不同的,这表明在自我/非自我识别过程中花粉S的功能不同。认为李属和其他植物的GSI系统包括用于蛋白质降解的泛素蛋白酶体系统。但是,李属SFB被认为在自我识别过程中促进了S-RNase的细胞毒性作用,而SLF和SFBB被认为在非自我识别过程中协同起作用,从而避免了S-RNase的细胞毒性。这篇综述总结了李属物种中基于S-RNase的GSI机制的独特特征,并特别引用了我们对基于S-RNase的GSI理解的最新进展。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号