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鹰嘴豆的βI-半乳糖苷酶位于厚细胞壁中,如厚角组织、厚壁组织和维管束组织。

The βI-galactosidase of Cicer arietinum is located in thickened cell walls such as those of collenchyma, sclerenchyma and vascular tissue.

机构信息

Departamento de Fisiología Vegetal, Centro Hispano Luso de Investigaciones Agrarias, Universidad de Salamanca, Salamanca, Spain.

出版信息

Plant Biol (Stuttg). 2011 Sep;13(5):777-83. doi: 10.1111/j.1438-8677.2010.00437.x. Epub 2011 Feb 9.

Abstract

We report localisation of the chickpea βI-Gal, a member of the chickpea β-galactosidase family, which contains at least four members. After generation of specific antibodies, the distribution and cellular immunolocalisation of the protein in different organs and developmental stages of the plant was studied. βI-Gal protein is much longer than the other chickpea β-galactosidases because of the presence of a lectin-like domain in the carboxyl terminus of the protein. Western blot experiments indicated that the active βI-Gal retains this lectin-like domain for its function in the plant. The βI-Gal protein was mainly detected in cell walls of elongating organs, such as seedling epicotyls and stem internodes. An immunolocation study indicated a very good correlation between the presence of this βΙ-galactosidase and cells whose walls are thickening, not only in aged epicotyls and mature internodes in the final phase of elongation, but mostly in cells with a support function, such as collenchyma cells, xylem and phloem fibres and a layer of sclerenchyma cells surrounding the vascular cylinder (perivascular fibres). These results could suggest a function for the βI-Gal in modification of cell wall polymers, leading to thicker walls than the primary cell walls.

摘要

我们报告了鹰嘴豆βI-Gal 的定位,βI-Gal 是鹰嘴豆β-半乳糖苷酶家族的成员,该家族至少包含四个成员。生成特异性抗体后,研究了该蛋白在植物不同器官和发育阶段的分布和细胞免疫定位。βI-Gal 蛋白比其他鹰嘴豆β-半乳糖苷酶长得多,因为在蛋白的羧基末端存在凝集素样结构域。Western blot 实验表明,活性βI-Gal 保留了该凝集素样结构域,以发挥其在植物中的功能。βI-Gal 蛋白主要在伸长器官的细胞壁中检测到,如幼苗上胚轴和茎节间。免疫定位研究表明,这种βΙ-半乳糖苷酶的存在与细胞壁正在增厚的细胞之间存在很好的相关性,不仅在上胚轴的老年部分和伸长末期的成熟节间中如此,而且主要存在于具有支持功能的细胞中,如厚角组织细胞、木质部和韧皮部纤维以及围绕维管束的一层厚壁组织细胞(周皮纤维)。这些结果表明,βI-Gal 可能在细胞壁聚合物的修饰中发挥作用,导致细胞壁比初生细胞壁更厚。

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