Huang S, Lee H S, Karunanandaa B, Kao T H
Department of Biochemistry and Molecular Biology, Pennsylvania State University, University Park 16802.
Plant Cell. 1994 Jul;6(7):1021-8. doi: 10.1105/tpc.6.7.1021.
S proteins, pistil-specific ribonucleases that cosegregate with S alleles, have previously been shown to control rejection of self-pollen in Petunia inflata and Nicotiana alata, two solanaceous species that display gametophytic self-incompatibility. The ribonuclease activity of S proteins was thought to degrade RNA of self-pollen tubes, resulting in the arrest of their growth in the style. However, to date no direct evidence has been obtained. Here, the ribonuclease activity of S3 protein of P. inflata was abolished, and the effect on the pistil's ability to reject S3 pollen was examined. The S3 gene was mutagenized by replacing the codon for His-93, which has been implicated in ribonuclease activity, with a codon for asparagine, and the mutant S3 gene was introduced into P. inflata plants of S1S2 genotype. Two transgenic plants produced a level of mutant S3 protein comparable to that of the S3 protein produced in self-incompatible S1S3 and S2S3 plants, yet they failed to reject S3 pollen. The mutant S3 protein produced in these two transgenic plants did not exhibit any detectable ribonuclease activity. We have previously shown that transgenic plants (S1S2 plants transformed with the wild-type S3 gene) producing a normal level of wild-type S3 protein acquired the ability to reject S3 pollen completely. Thus, the results reported here provide direct evidence that the biochemical mechanism of gametophytic self-incompatibility in P. inflata involves the ribonuclease activity of S proteins.
S蛋白是与S等位基因共分离的雌蕊特异性核糖核酸酶,此前已证明它能控制矮牵牛和烟草中自花花粉的排斥,这两种茄科植物表现出配子体自交不亲和性。S蛋白的核糖核酸酶活性被认为会降解自花花粉管的RNA,导致其在花柱中生长停滞。然而,迄今为止尚未获得直接证据。在此,矮牵牛S3蛋白的核糖核酸酶活性被消除,并检测了其对雌蕊排斥S3花粉能力的影响。通过将与核糖核酸酶活性有关的His-93密码子替换为天冬酰胺密码子,使S3基因发生突变,并将突变的S3基因导入S1S2基因型的矮牵牛植株中。两株转基因植株产生的突变S3蛋白水平与自交不亲和的S1S3和S2S3植株产生的S3蛋白水平相当,但它们无法排斥S3花粉。这两株转基因植株产生的突变S3蛋白未表现出任何可检测到的核糖核酸酶活性。我们之前已表明,产生正常水平野生型S3蛋白的转基因植株(用野生型S3基因转化的S1S2植株)完全获得了排斥S3花粉的能力。因此,此处报道的结果提供了直接证据,证明矮牵牛配子体自交不亲和的生化机制涉及S蛋白的核糖核酸酶活性。