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S 蛋白突变体表明 SBP 在虞美人自交不亲和反应中具有功能作用。

S-protein mutants indicate a functional role for SBP in the self-incompatibility reaction of Papaver rhoeas.

作者信息

Jordan N D, Kakeda K, Conner A, Ride J P, Franklin-Tong V E, Franklin F C

机构信息

Wolfson Laboratory for Plant Molecular Biology, School of BioSciences, University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.

出版信息

Plant J. 1999 Oct;20(1):119-25. doi: 10.1046/j.1365-313x.1999.00585.x.

Abstract

The self-incompatibility response involves S-allele specific recognition between stigmatic S proteins and incompatible pollen, resulting in S-specific pollen inhibition. In Papaver rhoeas, the pollen S gene product is predicted to be a receptor that interacts with the stigmatic S protein in an S specific manner. We recently identified an S protein binding protein (SBP) in pollen that binds stigmatic S proteins, although apparently not in an S-allele-specific manner. In order to investigate the functional significance of the interaction between S proteins and SBP, we constructed mutant derivatives of the S1 protein and tested their SBP-binding activity and their biological activity. Here we present an evaluation of nine mutant derivatives of the S1 protein. Western ligand blotting was used to show that mutations to amino acid residues in predicted loops 2 and 6 of the S1 protein cause significant reductions in their SBP-binding activity. These same mutants show a concomitant reduction in their ability to inhibit incompatible pollen. This establishes a direct link between SBP binding and inhibition of incompatible pollen and implicates SBP as a pollen component playing a key role in the self-incompatibility reaction. We discuss the possible nature of the contribution of SBP in the S-specific rejection of incompatible pollen.

摘要

自交不亲和反应涉及柱头S蛋白与不亲和花粉之间的S等位基因特异性识别,导致S特异性花粉抑制。在虞美人中,花粉S基因产物预计是一种受体,它以S特异性方式与柱头S蛋白相互作用。我们最近在花粉中鉴定出一种S蛋白结合蛋白(SBP),它能结合柱头S蛋白,尽管显然不是以S等位基因特异性方式。为了研究S蛋白与SBP之间相互作用的功能意义,我们构建了S1蛋白的突变衍生物,并测试了它们的SBP结合活性和生物学活性。在此我们展示了对S1蛋白的九种突变衍生物的评估。Western配体印迹法用于表明,S1蛋白预测环2和环6中氨基酸残基的突变会导致其SBP结合活性显著降低。这些相同的突变体在抑制不亲和花粉的能力上也随之降低。这建立了SBP结合与抑制不亲和花粉之间的直接联系,并表明SBP作为花粉成分在自交不亲和反应中起关键作用。我们讨论了SBP在不亲和花粉的S特异性排斥中可能的作用性质。

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