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矮牵牛中一种缺乏核糖核酸酶活性的突变型S3核糖核酸酶对自交不亲和相互作用具有等位基因特异性显性负效应。

A Mutant S3 RNase of Petunia inflata Lacking RNase Activity Has an Allele-Specific Dominant Negative Effect on Self-Incompatibility Interactions.

作者信息

McCubbin A. G., Chung Y. Y., Kao Th.

机构信息

Department of Biochemistry and Molecular Biology, Pennsylvania State University, University Park, Pennsylvania 16802-4500.

出版信息

Plant Cell. 1997 Jan;9(1):85-95. doi: 10.1105/tpc.9.1.85.

Abstract

Gametophytic self-incompatibility in the Solanaceae is controlled by a multiallelic locus called the S locus. Growth of pollen tubes in the pistil is inhibited when the pollen has one of the two S alleles carried by the pistil. The products of a number of pistil S alleles[mdash]S proteins or S RNases[mdash]have been identified, and their role in controlling the pistil's ability to reject self-pollen has been positively established. In contrast, the existence of pollen S allele products has so far been inferred entirely from genetic evidence. Here, we introduced a modified S3 gene of Petunia inflata encoding an S3 RNase lacking RNase activity into P. inflata plants of the S2S3 genotype to determine whether the production of the mutant protein, designated S3(H93R), would have any effect on the ability of the transgenic plants to reject S2 and S3 pollen. Analysis of the self-incompatibility behavior of 49 primary transgenic plants and the progeny of three plants (H30, H37, and H40) that produced S3(H93R) in addition to producing wild-type levels of endogenous S2 and S3 RNases revealed that S3(H93R) had a dominant negative effect on the function of the S3 RNase in rejecting self-pollen; however, it had no effect on the function of the S2 RNase. One likely explanation of the results is that S3(H93R) competes with the S3 RNase for binding to a common molecule, which is presumably the product of the pollen S3 allele.

摘要

茄科植物的配子体自交不亲和性由一个称为S位点的多等位基因座控制。当花粉具有雌蕊所携带的两个S等位基因之一时,花粉管在雌蕊中的生长就会受到抑制。已经鉴定出许多雌蕊S等位基因的产物——S蛋白或S核糖核酸酶——并且它们在控制雌蕊排斥自花花粉能力方面的作用已得到明确证实。相比之下,花粉S等位基因产物的存在迄今为止完全是从遗传证据中推断出来的。在这里,我们将矮牵牛一个编码缺乏核糖核酸酶活性的S3核糖核酸酶的修饰S3基因导入S2S3基因型的矮牵牛植株中,以确定被命名为S3(H93R)的突变蛋白的产生是否会对转基因植株排斥S2和S3花粉的能力产生任何影响。对49株初级转基因植株以及三株除产生野生型水平的内源性S2和S3核糖核酸酶外还产生S3(H93R)的植株(H30、H37和H40)的后代的自交不亲和行为分析表明,S3(H93R)对S3核糖核酸酶排斥自花花粉的功能具有显性负效应;然而,它对S2核糖核酸酶的功能没有影响。这些结果的一个可能解释是,S3(H93R)与S3核糖核酸酶竞争结合一个共同分子,这个分子大概是花粉S3等位基因的产物。

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