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谷物中的β-淀粉酶:玉米β-淀粉酶系统的研究

beta-Amylases in Cereals : A Study of the Maize beta-Amylase System.

作者信息

Laurière C, Doyen C, Thévenot C, Daussant J

机构信息

Laboratoire de Physiologie des Organes Végétaux après Récolte, Centre National de la Recherche Scientifique et Université Pierre et Marie Curie, 4 ter route des Gardes, 92190 Meudon, France.

出版信息

Plant Physiol. 1992 Oct;100(2):887-93. doi: 10.1104/pp.100.2.887.

Abstract

beta-Amylase of maize (Zea mays L.) caryopses was studied during development and germination by means of enzymic, electrophoretic, and immunochemical techniques. beta-Amylase activity increased during caryopsis development to a maximum value at the beginning of the water content plateau (at this stage the enzyme was located primarily within the pericarp) and then decreased. Almost no beta-amylase (activity or antigen) was found in either free or bound forms in the mature maize caryopsis. The activity increased again during seedling growth and reached much higher values. Both the aleurone layer (to a major extent) and the scutellum produced and secreted beta-amylase during germination, the secretion being stimulated by Ca(2+). No posttranslational modification of the enzyme was detected during germination. The molecular specific activity of the enzyme remained unchanged during the observed periods, indicating that the regulation of the activity is based essentially on protein turnover. The enzyme from developing and germinating caryopses was found to be identical in terms of antigenicity, isoelectric point, and molecular mass to the beta-amylases extracted from the roots and the leaves of the maize seedling. The maize beta-amylase resembles in all respects the ubiquitous beta-amylase described for rye and wheat, whereas the major beta-amylase of those cereals appears to be lacking in the maize caryopsis.

摘要

利用酶学、电泳和免疫化学技术,对玉米(Zea mays L.)颖果发育和萌发过程中的β-淀粉酶进行了研究。在颖果发育过程中,β-淀粉酶活性增加,在含水量稳定期开始时达到最大值(在此阶段,该酶主要位于果皮中),然后下降。在成熟的玉米颖果中,几乎未发现游离或结合形式的β-淀粉酶(活性或抗原)。在幼苗生长过程中,活性再次增加并达到更高的值。糊粉层(在很大程度上)和盾片在萌发过程中产生并分泌β-淀粉酶,Ca(2+)刺激这种分泌。在萌发过程中未检测到该酶的翻译后修饰。在观察期内,该酶的分子比活性保持不变,表明活性调节主要基于蛋白质周转。发现发育中和萌发的颖果中的酶在抗原性、等电点和分子量方面与从玉米幼苗的根和叶中提取的β-淀粉酶相同。玉米β-淀粉酶在所有方面都类似于描述的黑麦和小麦中普遍存在的β-淀粉酶,而这些谷物中的主要β-淀粉酶在玉米颖果中似乎不存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2a8/1075640/445a3fb4c73d/plntphys00710-0350-a.jpg

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