Ai Y J, Kron E, Kao T H
Department of Molecular and Cell Biology, Pennsylvania State University, University Park 16802.
Mol Gen Genet. 1991 Dec;230(3):353-8. doi: 10.1007/BF00280291.
We identified two S-allele-associated proteins (S-proteins) in a self-compatible cultivar of Petunia hybrida based on their segregation in F1 hybrids between P. hybrida and its self-incompatible relative, Petunia inflata (with S2S2 genotype), and in selfed progeny of P. hybrida. These two S-proteins, designated Sx-protein (24 kDa) and So-protein (31 kDa), are pistil specific, and their expression follows a temporal and spatial pattern similar to that of S-proteins characterized in self-incompatible solanaceous species. Their amino-terminal sequences also share a high degree of similarity with those of solanaceous S-proteins. Selfing of P. hybrida yielded plants with SoSo,SxSo, and SxSx genotypes in an approximately 1:2:1 ratio, indicating that the Sx-and So-alleles, though expressed in the pistil, failed to elicit a self-incompatibility response. The S2-allele of P. inflata is expressed in all the F1 hybrids, rendering them capable of rejecting pollen bearing the S2-allele. The So-allele is not functional in the F1 hybrids, because all the F1 progeny with S2So genotype are self-compatible. However, in F1 hybrids with S2Sx genotype, approximately half are self-incompatible and half are self-compatible, indicating that the function of the Sx-allele depends on the genetic background. These results strongly suggest that the presence of functional S-alleles alone is not sufficient for expression of a self-incompatibility phenotype, and reaffirm the multigenic nature of gametophytic self-incompatibility suggested by earlier genetic studies.
我们在矮牵牛的一个自交亲和品种中鉴定出了两种与S等位基因相关的蛋白质(S蛋白),这是基于它们在矮牵牛与其自交不亲和的近缘种烟草(基因型为S2S2)的F1杂种以及矮牵牛的自交后代中的分离情况得出的。这两种S蛋白,分别命名为Sx蛋白(24 kDa)和So蛋白(31 kDa),是雌蕊特异性的,它们的表达遵循一种时间和空间模式,类似于在自交不亲和的茄科物种中所鉴定出的S蛋白的表达模式。它们的氨基末端序列也与茄科S蛋白的序列具有高度相似性。矮牵牛自交产生了基因型为SoSo、SxSo和SxSx的植株,比例约为1:2:1,这表明Sx和So等位基因虽然在雌蕊中表达,但未能引发自交不亲和反应。烟草的S2等位基因在所有F1杂种中都有表达,使它们能够排斥携带S2等位基因的花粉。So等位基因在F1杂种中没有功能,因为所有基因型为S2So的F1后代都是自交亲和的。然而,在基因型为S2Sx的F1杂种中,大约一半是自交不亲和的,一半是自交亲和的,这表明Sx等位基因的功能取决于遗传背景。这些结果有力地表明,仅存在功能性S等位基因不足以表达自交不亲和表型,并重申了早期遗传学研究所表明的配子体自交不亲和的多基因性质。