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High-throughput microarray mapping of cell wall polymers in roots and tubers during the viscosity-reducing process

机译:减粘过程中根和块茎中细胞壁聚合物的高通量微阵列作图

摘要

Viscosity reduction has a great impact on the efficiency of ethanol production when using roots and tubers as feedstock. Plant cell wall-degrading enzymes have been successfully applied to overcome the challenges posed by high viscosity. However, the changes in cell wall polymers during the viscosity-reducing process are poorly characterized. Comprehensive microarray polymer profiling, which is a high-throughput microarray, was used for the first time to map changes in the cell wall polymers of sweet potato (Ipomoea batatas), cassava (Manihot esculenta), and Canna edulis Ker. over the entire viscosity-reducing process. The results indicated that the composition of cell wall polymers among these three roots and tubers was markedly different. The gel-like matrix and glycoprotein network in the C. edulis Ker. cell wall caused difficulty in viscosity reduction. The obvious viscosity reduction of the sweet potato and the cassava was attributed to the degradation of homogalacturonan and the released 1,4-beta-D-galactan and 1,5-alpha-L-arabinan. (C) 2015 International Union of Biochemistry and Molecular Biology, Inc.
机译:当使用块根和块茎作原料时,降低粘度对乙醇生产效率有很大影响。植物细胞壁降解酶已成功应用于克服高粘度带来的挑战。然而,在降低粘度的过程中,细胞壁聚合物的变化表征不佳。全面的微阵列聚合物概况分析是一种高通量的微阵列,首次用于绘制甘薯(Ipomoea batatas),木薯(Manihot esculenta)和Canna edulis Ker细胞壁聚合物变化的图。在降低粘度的整个过程中。结果表明,这三个根和块茎中细胞壁聚合物的组成明显不同。蓝藻中的凝胶状基质和糖蛋白网络。细胞壁导致粘度降低困难。甘薯和木薯的明显粘度降低归因于高半乳糖醛酸聚糖的降解以及释放的1,4-β-D-半乳糖和1,5-α-L-阿拉伯糖。 (C)2015国际生物化学与分子生物学联合会

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