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Autohydrolysis of plant xylans by apoplastic expression of thermophilic bacterial endo?¢????xylanases

机译:通过嗜热细菌内切木聚糖酶的质外体表达自动水解植物木聚糖。

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The genes encoding the two endo?¢????xylanases XynA and XynB from the thermophilic bacterium Dictyoglomus thermophilum were codon optimized for expression in plants. Both xylanases were designed to be constitutively expressed under the control of the CaMV 35S promoter and targeted to the apoplast. Transient expression in tobacco and stable expression in transgenic Arabidopsis showed that both enzymes were expressed in an active form with temperature optima at 85?¢???????°C. Transgenic Arabidopsis accumulating heterologous endo?¢????xylanases appeared phenotypically normal and were fully fertile. The highest xylanase activity in Arabidopsis was found in dry stems indicating that the enzymes were not degraded during stem senescence. High levels of enzyme activity were maintained in cell?¢????free extracts from dry transgenic stems during incubation at 85?¢???????°C for 24?¢????h. Analysis of cell wall polysaccharides after heat treatment of wildtype and transgenic extracts from dry stems showed a decrease in the molecular weight of xylans from transgenic stems.
机译:对来自嗜热嗜热双歧杆菌的两个内切葡聚糖酶XynA和XynB的编码基因进行密码子优化以在植物中表达。两种木聚糖酶均设计为在CaMV 35S启动子的控制下组成性表达,并靶向质外体。在烟草中的瞬时表达和在转基因拟南芥中的稳定表达表明,两种酶均以活性形式表达,温度最适为85℃。积累异源内切木聚糖酶的转基因拟南芥在表型上看似正常,并且完全可育。在干茎中发现了拟南芥中最高的木聚糖酶活性,表明该酶在茎衰老过程中未降解。在85℃培养24小时后,在干燥的转基因茎的无细胞提取物中保持了高水平的酶活性。对野生型和干燥茎中的转基因提取物进行热处理后对细胞壁多糖的分析表明,转基因茎中的木聚糖分子量降低。

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