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Biochemical Models for S-Rnase-Based Self-Incompatibility

机译:基于S-核糖核酸的自我不相容性的生化模型

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摘要

S-RNase-based self-incompatibility (SI) is a genetically determined selfon-self-recognition process employed by many flowering plant species to prevent inbreeding and promote outcrosses.For the Plantaginaceae,Rosa-ceae and Solanaceae,it is now known that S-RNase and S-Iocu F-box(two multiple allelic genes at the S-locus)determine the female and male specificity,respectively,during SI interactions.However,how allelic products of these two genes interact inside pollen tubes to result in specific growth inhibition of self-pollen tubes remains to be investigated.Here,we review all the previously proposed biochemical models and discuss whether their predictions are consistent with all SI phenomena,including competitive jnteraction where SI breaks down in pollen that carries two different pollen 5-alleles.We also discuss these models in Iight of the recent findings of compartmentalization of S-RNases in both incompatible and compatible pollen tubes.Lastly,we summarize the results from our recent biochemical studies of PiSLF(Petunia inflata SLF)and S-RNase.and present a new model for the biochemical mechanism of SI in the Solanaceae.The tenet of this model is that a PiSLF preferentially interacts with its non-self S-RNases in the cytoplasm of a pollen tube to result in the assembly of an E3-like complex,which then mediates ubiquitination and degradation of non-self S-RNases through the ubiquitin-26S proteasome pathway.This model can explain all SI phenomena and,at the same time,has raised new questions for further study.
机译:基于S-RNase的自我不相容性(SI)是一种遗传决定的自我/非自我识别过程,许多开花植物物种都采用该过程来防止近交和促进异交。对于Plantaginaceae,Rosa-ceae和Solanaceae来说,这是众所周知的S-RNase和S-Iocu F-box(S位点上的两个等位基因)在SI相互作用中分别确定了雌性和雄性特异性。但是,这两个基因的等位基因产物如何在花粉管中相互作用自花粉管在特定生长抑制方面的研究尚待研究。在这里,我们回顾所有先前提出的生化模型,并讨论它们的预测是否与所有SI现象一致,包括竞争性相互作用,其中SI在携带两种不同花粉的花粉中分解。 5个等位基因。我们还在不相容和相容花粉管中S-RNase间隔化的最新发现中讨论了这些模型。最后,我们总结了我们的结果PiSLF(Petunia inflata SLF)和S-RNase的近期生化研究,为茄科植物SI的生化机理提供了新的模型,该模型的宗旨是PiSLF优先与其非自身S-RNase相互作用。花粉管的细胞质导致E3样复合物的组装,然后通过遍在蛋白26S蛋白酶体途径介导非自身S-RNase的遍在蛋白化和降解。该模型可以解释所有的SI现象,并且在同时,提出了进一步研究的新问题。

著录项

  • 来源
    《分子植物(英文版)》 |2008年第4期|575-585|共11页
  • 作者单位

    Department of Genetics, University of Wisconsin, Madison, WI 53706,USA;

    Department of Biochemistry and Molecular Biology,The Pennsylvania State University,University Park,PA 16802,USA;

    Intercollege Graduate Degree Program in Plant Biology,The Pennsylvania State University,University Park,PA 16802,USA;

    Department of Biochemistry and Molecular Biology,The Pennsylvania State University,University Park,PA 16802,USA;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 植物学;
  • 关键词

  • 入库时间 2022-08-19 03:37:53
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