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根瘤菌属 spp 胞外多糖的生产和黄原胶裂解酶在其结构修饰上的应用。

Rhizobium spp exopolysaccharides production and xanthan lyase use on its structural modification.

机构信息

São Paulo State University (Unesp), School of Agricultural and Veterinarian Sciences, Department of Technology, Via de Acesso Prof. Paulo Donato Castellane s/n, Jaboticabal 14884-900, Brazil.

São Paulo State University (Unesp), School of Agricultural and Veterinarian Sciences, Department of Biology Applied to Agriculture, Via de Acesso Prof. Paulo Donato Castellane s/n, Jaboticabal 14884-900, Brazil.

出版信息

Int J Biol Macromol. 2019 Sep 1;136:424-435. doi: 10.1016/j.ijbiomac.2019.06.077. Epub 2019 Jun 13.

Abstract

Enzymes can be very useful on exopolysaccharides (EPS) research, can be used at elucidation and also to modify the polysaccharides' structure in order to alter their physical properties. Thus, the reduction of the molecular mass could increase applications of these biopolymers. Therefore, the EPS production of different rhizobia and the action of xanthan lyase on its structures were evaluated. The strains produced significant amounts of EPS, and it was noticed that are heteropolysaccharides, composed galactose and glucose. Both EPS and xanthan were modified on β-glycosidic bonds, the mannose was removed of xanthan had but the EPS was affected in the CO stretching vibration, where the glucuronic acid removed from of your structure. The ester/carboxylic acid portions affected functional groups of the acetate/succinate, methyl carbons of the O-acetyl and pyruvate methyl groups in addition to affect the carbons the main pyranoid. The Resistance to temperature increase of the EPS was observed, made possible by the activity of the lyase. EPS has the ability to form stable gels at higher temperatures and anionic feature can be used on solubilization and controlled release of substances. Modified EPS knowledge will presently facilitate future investigations relating the structure of the rhizobia polysaccharide against rheological properties.

摘要

酶在胞外多糖 (EPS) 的研究中非常有用,可以用于阐明和修饰多糖的结构,以改变它们的物理性质。因此,降低分子量可以增加这些生物聚合物的应用。因此,评估了不同根瘤菌的 EPS 生产和黄原胶裂解酶对其结构的作用。这些菌株产生了大量的 EPS,并且注意到它们是由半乳糖和葡萄糖组成的杂多糖。EPS 和黄原胶都在 β-糖苷键上发生了修饰,甘露糖从黄原胶中被去除,但 EPS 的 CO 伸缩振动受到影响,其结构中的葡萄糖醛酸被去除。酯/羧酸部分影响了乙酸盐/琥珀酸盐的功能基团、O-乙酰基的甲基碳和丙酮酸甲基碳,此外还影响了吡喃糖主要碳的。观察到 EPS 的耐高温能力,这是由裂解酶的活性所实现的。EPS 具有在较高温度下形成稳定凝胶的能力,并且阴离子特性可用于物质的增溶和控制释放。对修饰后的 EPS 的了解将有助于未来研究根瘤菌多糖的结构与流变性质之间的关系。

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