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多糖水解酶在亚麻籽水合后会与黏液一起释放。

Polysaccharide hydrolases are released with mucilages after water hydration of flax seeds.

机构信息

University of Rouen, Chemistry Laboratory PBS, UMR 6270, CNRS, FR 3038, 76821 Mont-Saint-Aignan, France.

出版信息

Plant Physiol Biochem. 2013 Jan;62:54-62. doi: 10.1016/j.plaphy.2012.10.009. Epub 2012 Nov 7.

Abstract

Water imbibition of flax seed induces secretion of mucilages whose physico-chemical properties vary according to genotype and environment. The viscosity and composition of mucilage have ecological implications and also affect the utility of the crop. Several types of enzymes are secreted along with the mucilage. Our objective was to study these enzymes in the context of the composition and physical properties of the mucilage. The kinetics of production by flax seeds (variety Eden) of i) mucilages, ii) glycosidases and iii) endo-hydrolases were followed over 48 h under sterile conditions. The impact of enzymatic activities on mucilage was investigated by SEC-MALLS, viscosimetry and sugar composition. The mucilages consisted mainly of rhamnogalacturonan-I (RG-I, 52-62%) and arabinoxylan (AX, 27-36%). RG-I related enzyme activities (rhamnogalacturonase and β,d-galactosidase) were quantified, together with AX related activity of α,l-arabinofuranosidase, β,d-xylosidase and β-xylanase. Maximal xylanase activity was reached after 4 h seed-hydration, when the minimal viscosity of the polysaccharides was observed, and the AX/RG-I ratio was the lowest. At that time, poly and oligosaccharides mainly contained pectic sugars. From 24 to 48 h water-hydration, when mucilages more tightly associated with cell walls were released, the glycosidase activities per g mucilage became maximal; the percentage, average molar-mass and viscosity of the polysaccharides decreased. Glucose, xylose and arabinose were the main sugars in the oligomer fraction. Our data confirmed the presence of β-d xylosidase and α-l-arabinofuranosidase activities and provided evidence for significant pectinase activities in flax mucilages. They also indicate an impact of enzymatic activities on the physicochemical properties of mucilages.

摘要

亚麻籽吸水会引发黏液分泌,其理化性质因基因型和环境而异。黏液的黏度和组成具有生态意义,也会影响作物的用途。几种类型的酶会与黏液一起分泌。我们的目的是研究这些酶与黏液的组成和物理性质的关系。在无菌条件下,我们跟踪了 48 小时内亚麻种子(品种 Eden)产生的 i)黏液、ii)糖苷酶和 iii)内切水解酶的产生动力学。通过 SEC-MALLS、黏度和糖组成研究了酶活性对黏液的影响。黏液主要由鼠李半乳糖醛酸聚糖 I(RG-I,52-62%)和阿拉伯木聚糖(AX,27-36%)组成。定量了 RG-I 相关酶活性(鼠李半乳糖醛酸酶和β,d-半乳糖苷酶),以及 AX 相关的α,l-阿拉伯呋喃糖苷酶、β,d-木糖苷酶和β-木聚糖酶活性。种子吸水 4 小时后,木聚糖酶活性达到最大值,此时多糖的最小黏度观察到,AX/RG-I 比值最低。此时,多聚糖和寡聚糖主要含有果胶糖。从 24 到 48 小时的水合作用期间,当与细胞壁更紧密结合的黏液被释放出来时,每克黏液的糖苷酶活性达到最大值;多糖的百分比、平均摩尔质量和黏度降低。寡糖中的主要糖为葡萄糖、木糖和阿拉伯糖。我们的数据证实了β-d-木糖苷酶和α-l-阿拉伯呋喃糖苷酶活性的存在,并为亚麻黏液中存在显著的果胶酶活性提供了证据。它们还表明酶活性对黏液理化性质的影响。

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