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参与甘蓝型油菜发育花朵不亲和性花粉柱头相互作用的糖蛋白的生物合成

Biosynthesis of glycoproteins involved in the pollen-stigma interaction of incompatibility in developing flowers of Brassica oleracea L.

机构信息

Section of Genetics and Development, Cornell University, 14853, Ithaca, NY.

出版信息

Planta. 1985 Jul;165(1):100-7. doi: 10.1007/BF00392217.

Abstract

De-novo synthesis of the S-allele-specific glycoproteins of Brassica oleracea is demonstrated in stigmas at different developmental stages. Excised stigmas incorporate (14)C-labeled amino acids into their S-glycoproteins early in development and before the self-incompatibility response is acquired, but the rate of synthesis accelerates prior to anthesis, resulting in the accumulation of high levels of the S-glycoproteins in the stigma and coinciding with the acquisition of the pollen-stigma incompatibility response. Since the self-compatible and self-incompatible zones of developing inflorescences are very sharply delineated, a threshold quantity of S-glycoproteins appears to be critical for the onset of self-incompatibility. Incorporation experiments in which [(35S)methionine was applied to intact stigma surfaces indicate that the papillae are the main sites of synthesis of the S-specific glycoproteins.

摘要

在不同发育阶段的柱头中证明了甘蓝型油菜 S 等位基因特异性糖蛋白的从头合成。在发育早期和获得自交不亲和反应之前,切除的柱头将(14)C 标记的氨基酸掺入其 S 糖蛋白中,但在开花前合成速度加快,导致柱头中 S 糖蛋白的积累水平升高,并与花粉-柱头不亲和反应的获得同时发生。由于发育花序的自交亲和和自交不亲和区域划分得非常明显,因此 S 糖蛋白的阈值似乎对自交不亲和的发生至关重要。在将 [(35S)甲硫氨酸应用于完整柱头表面的掺入实验中表明,乳突是 S 特异性糖蛋白合成的主要部位。

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