Newbigin Ed, Paape Timothy, Kohn Joshua R
School of Botany, University of Melbourne, VIC 3010, Australia.
Plant Cell. 2008 Sep;20(9):2286-92. doi: 10.1105/tpc.108.060327. Epub 2008 Sep 5.
Many plants have a genetically determined self-incompatibility system in which the rejection of self pollen grains is controlled by alleles of an S locus. A common feature of these S loci is that separate pollen- and style-expressed genes (pollen S and style S, respectively) determine S allele identity. The long-held view has been that pollen S and style S must be a coevolving gene pair in order for allelic recognition to be maintained as new S alleles arise. In at least three plant families, the Solanaceae, Rosaceae, and Plantaginaceae, the style S gene has long been known to encode an extracellular ribonuclease called the S-RNase. Pollen S in these families has more recently been identified and encodes an F-box protein known as either SLF or SFB. In this perspective, we describe the puzzling evolutionary relationship that exists between the SLF/SFB and S-RNase genes and show that in most cases cognate pairs of genes are not coevolving in the expected manner. Because some pollen S genes appear to have arisen much more recently than their style S cognates, we conclude that either some pollen S genes have been falsely identified or that there is a major problem with our understanding of how the S locus evolves.
许多植物具有由基因决定的自交不亲和系统,其中对自身花粉粒的排斥由S位点的等位基因控制。这些S位点的一个共同特征是,分别在花粉和花柱中表达的基因(分别为花粉S和花柱S)决定S等位基因的身份。长期以来的观点认为,花粉S和花柱S必须是一对共同进化的基因,以便在新的S等位基因出现时维持等位基因识别。在至少三个植物科,即茄科、蔷薇科和车前科中,花柱S基因长期以来已知编码一种称为S-核酸酶的细胞外核糖核酸酶。这些科中的花粉S最近已被鉴定出来,编码一种称为SLF或SFB的F-box蛋白。在这篇综述中,我们描述了SLF/SFB和S-核酸酶基因之间存在的令人困惑的进化关系,并表明在大多数情况下,同源基因对并非以预期的方式共同进化。由于一些花粉S基因似乎比它们的花柱S同源基因出现得晚得多,我们得出结论,要么一些花粉S基因被错误鉴定,要么我们对S位点进化方式的理解存在重大问题。