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甘蓝(Brassica oleracea)II类花粉隐性自交不亲和单倍型中S位点糖蛋白基因的一个可变转录本编码一种膜锚定蛋白。

An alternative transcript of the S locus glycoprotein gene in a class II pollen-recessive self-incompatibility haplotype of Brassica oleracea encodes a membrane-anchored protein.

作者信息

Tantikanjana T, Nasrallah M E, Stein J C, Chen C H, Nasrallah J B

机构信息

Section of Plant Biology, Cornell University, Ithaca, New York 14853.

出版信息

Plant Cell. 1993 Jun;5(6):657-66. doi: 10.1105/tpc.5.6.657.

Abstract

Recent reports have shown that SLG, one of two genes linked to the S locus of Brassica, encodes a secreted glycoprotein. We have used RNA gel blot analysis, genomic and cDNA clone analysis, expression in transgenic plants, and immunodetection to characterize SLG2, the SLG gene derived from the S2 haplotype. This haplotype belongs to the class II group of S haplotypes that exhibit a weak incompatibility phenotype and are pollen recessive. We showed that SLG2 produces two transcript forms: the expected 1.6-kb transcript that predicts a secreted glycoprotein and an alternative 1.8-kb transcript that predicts a membrane-anchored protein. Stigmas of the S2 haplotype and pistils of transgenic tobacco plants transformed with the SLG2 gene produce a membrane-associated 62-kD protein as well as soluble 57- and 58-kD glycoforms. Because of the sequence similarity between SLG2 and the extracellular domain of the S Locus Receptor Kinase (SRK2) gene, the membrane-anchored form of SLG2 may be viewed as a naturally occurring truncated form of the receptor that lacks the kinase catalytic domain. The occurrence of this protein has potential implications for the activity of the full-length receptor. Furthermore, the underlying structure of the SLG2 gene suggests the evolution of SLG from an ancestral SRK-like gene.

摘要

最近的报道表明,SLG是与芸苔属S位点相关的两个基因之一,编码一种分泌型糖蛋白。我们利用RNA凝胶印迹分析、基因组和cDNA克隆分析、转基因植物中的表达以及免疫检测来表征SLG2,这是一个源自S2单倍型的SLG基因。该单倍型属于S单倍型的II类,表现出较弱的不亲和表型且花粉隐性。我们发现SLG2产生两种转录本形式:预期的1.6 kb转录本,预测一种分泌型糖蛋白;以及另一种1.8 kb转录本,预测一种膜锚定蛋白。S2单倍型的柱头和用SLG2基因转化的转基因烟草植株的雌蕊产生一种膜相关的62-kD蛋白以及可溶性的57-kD和58-kD糖型。由于SLG2与S位点受体激酶(SRK2)基因的胞外结构域之间存在序列相似性,SLG2的膜锚定形式可被视为该受体的一种天然截短形式,缺少激酶催化结构域。这种蛋白的出现对全长受体的活性具有潜在影响。此外,SLG2基因的潜在结构表明SLG是从一个祖先的类SRK基因进化而来的。

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