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细胞脱水与水合作用:发育调控蛋白以及种子胚的成熟与萌发

Cellular desiccation and hydration: developmentally regulated proteins, and the maturation and germination of seed embryos.

作者信息

Lane B G

机构信息

Department of Biochemistry, University of Toronto, Ontario, Canada.

出版信息

FASEB J. 1991 Nov;5(14):2893-901. doi: 10.1096/fasebj.5.14.1752357.

Abstract

Little more than a decade ago, 2-dimensional mapping of proteins and biochemical study of their allied coding elements (mRNA and DNA) were first used to probe possible changes in the embryo during seed germination. Because specification was of primary importance, our attention was initially directed toward the characterization of individual proteins and coding elements which, in preliminary surveys of the germinating wheat embryo, were found to be conspicuously subject to developmental regulation. Three of the proteins have become subjects of comprehensive investigations in this and other laboratories: the Em protein, the Ec protein, and germin. The Em and Ec proteins are encoded by the conserved mRNA 'stored' in the mature embryos of dry, field-ripened seeds but germin is encoded by the nascent mRNA formed after mature embryos are germinated in water. The Ec protein is the only bona fide Zn metallothionein yet found in higher plants. Studies of their biology and molecular biology suggest that the Em protein has a role in hormone-mediated (abscisic acid) cellular desiccation and that germin has a role in hormone-mediated (auxin) cellular hydration. It is projected that further studies of the Em protein may help elucidate the molecular basis for a loss of dessication tolerance during germination, and that further studies of germin may help elucidate the molecular basis of plant cell enlargement.

摘要

仅仅在十多年前,蛋白质的二维图谱及其相关编码元件(mRNA和DNA)的生化研究首次被用于探究种子萌发过程中胚胎可能发生的变化。由于特异性至关重要,我们最初的注意力集中在单个蛋白质和编码元件的表征上,在对萌发的小麦胚胎进行的初步调查中,发现这些蛋白质和编码元件明显受到发育调控。其中三种蛋白质已成为本实验室和其他实验室全面研究的对象:Em蛋白、Ec蛋白和胚根萌发素。Em蛋白和Ec蛋白由储存在干燥、田间成熟种子的成熟胚胎中的保守mRNA编码,但胚根萌发素由成熟胚胎在水中萌发后形成的新生mRNA编码。Ec蛋白是高等植物中迄今发现的唯一真正的锌金属硫蛋白。对它们的生物学和分子生物学研究表明,Em蛋白在激素介导(脱落酸)的细胞脱水过程中起作用,而胚根萌发素在激素介导(生长素)的细胞水合过程中起作用。预计对Em蛋白的进一步研究可能有助于阐明萌发过程中耐脱水能力丧失的分子基础,而对胚根萌发素的进一步研究可能有助于阐明植物细胞扩大的分子基础。

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