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花柱糖蛋白在体外与S-核酸酶结合。

Stylar glycoproteins bind to S-RNase in vitro.

作者信息

Cruz-Garcia Felipe, Nathan Hancock C, Kim Donggiun, McClure Bruce

机构信息

Department of Biochemistry, University of Missouri-Columbia, 117 Schweitzer Hall, Columbia, MO 65211, USA.

出版信息

Plant J. 2005 May;42(3):295-304. doi: 10.1111/j.1365-313X.2005.02375.x.

Abstract

S-RNases determine the specificity of S-specific pollen rejection in self-incompatible plants of the Solanaceae, Rosaceae, and Scrophulariaceae. They are also implicated in at least two distinct types of unilateral interspecific incompatibility in Nicotiana. However, S-RNase itself is not sufficient for most types of pollen rejection, and evidence for its direct interaction with pollen tubes is limited. Thus, non-S-RNase factors also are required for pollen rejection. As one approach to identifying such factors, we tested whether SC10-RNase from Nicotiana alata would bind to other stylar proteins in vitro. SC10-RNase was immobilized on Affi-gel, and binding proteins were analyzed by SDS-PAGE and immunoblotting. In addition to SC10-RNase and a small protein similar to lily chemocyanin, the most prominent binding proteins include NaTTS, 120K, and NaPELPIII, these latter three being arabinogalactan proteins previously shown to interact directly with pollen tubes. We also show that SC10-RNase and these glycoproteins migrate as a complex in a native PAGE system. Our hypothesis is that S-RNase forms a complex with these glycoproteins in the stylar ECM, that the glycoproteins interact directly with the pollen tubes and thus that the initial interaction between the pollen tube and S-RNase is indirect.

摘要

S-RNases决定了茄科、蔷薇科和玄参科自交不亲和植物中S-特异性花粉排斥的特异性。它们还与烟草中至少两种不同类型的单侧种间不亲和有关。然而,S-RNase本身不足以导致大多数类型的花粉排斥,并且其与花粉管直接相互作用的证据有限。因此,花粉排斥还需要非S-RNase因子。作为鉴定此类因子的一种方法,我们测试了来自烟草的SC10-RNase在体外是否会与其他花柱蛋白结合。SC10-RNase固定在Affi-凝胶上,通过SDS-PAGE和免疫印迹分析结合蛋白。除了SC10-RNase和一种类似于百合化学花青素的小蛋白外,最突出的结合蛋白包括NaTTS、120K和NaPELPIII,后三种是先前已证明可直接与花粉管相互作用的阿拉伯半乳聚糖蛋白。我们还表明,SC10-RNase和这些糖蛋白在天然PAGE系统中以复合物形式迁移。我们的假设是,S-RNase在花柱细胞外基质中与这些糖蛋白形成复合物,这些糖蛋白直接与花粉管相互作用,因此花粉管与S-RNase之间的初始相互作用是间接的。

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