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Sugar contents and oligosaccharide mass profiling of selected red seaweeds to assess the possible utilization of biomasses for third-generation biofuel production

机译:选定红海藻的糖含量和低聚糖质量分布图,以评估生物质用于第三代生物燃料生产的可能利用

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In the present study, we report the sugar contents and oligosaccharide mass profiles of Kappaphycus alvarezii (Doty) Doty ex Silva, Solieria robusta (Greville) Kylin, Gracilaria corticata (J. Agardh), and Gracilaria corticata v. cylindrica Borgesen. Sugar contents in the biomasses of the studied seaweeds indicated that they represent potential sources of raw material for biofuel conversion. Fractionation improved the sugar yield by loosening cell wall components. A Fourier-transform infrared spectroscopy (FTIR) analysis of different cell wall fractions revealed differences in their structural components. Fractionation exposed and released some of the functional groups, depending on the harshness of treatments. However, variable carbohydrate moieties were observed in each fraction. A MALDI TOF-TOF MS analysis of cell wall revealed a complex and dynamic network of polymers in cell walls. K. alvarezii produced the greatest number of oligosaccharide units, followed by S. robusta, G. corticata v. cylindrica and G. corticata. The cell wall of seaweeds was similar to the polymers in the cell wall of higher plants, which indicated the potential to utilize seaweed biomasses for biofuel production. To the best of our knowledge, the present study is the first to report the oligosaccharide mass profiling (OLIMPs) of red seaweeds. A further detailed analysis of the sugar composition of the cell wall and a linkage analysis of OLIMPs would provide detailed structural information. Present results confirmed the potential utilization of red seaweed biomass as an alternative for biofuel production and potential of red seaweed species to be developed as new industrial crops under blue revolution program.
机译:在本研究中,我们报告了Kappaphycus alvarezii(Doty)Doty ex Silva,Solieriarobasta(Greville)Kylin,Gracilaria corticata(J. Agardh)和Gracilaria corticata v。cylindrica Borgesen的糖含量和寡糖质量分布。所研究的海藻生物量中的糖含量表明,它们代表了生物燃料转化的潜在原料来源。分级分离通过放松细胞壁成分提高了糖产量。不同细胞壁级分的傅立叶变换红外光谱(FTIR)分析显示其结构成分不同。根据治疗的苛刻程度,分级分离暴露并释放了一些官能团。然而,在每个部分中观察到可变的碳水化合物部分。 MALDI TOF-TOF MS分析细胞壁揭示了细胞壁中聚合物的复杂动态网络。 K. alvarezii产生的寡糖单元数量最多,其次是S.robusta,G。corticata诉cylindrica和G. corticata。海藻的细胞壁与高等植物的细胞壁中的聚合物相似,这表明利用海藻生物量生产生物燃料的潜力。据我们所知,本研究是第一个报道红海藻的寡糖质量分布图(OLIMPs)的研究。细胞壁糖成分的进一步详细分析和OLIMP的连锁分析将提供详细的结构信息。目前的结果证实了潜在利用红海藻生物质作为生物燃料生产的替代品,以及红海藻物种在蓝色革命计划下作为新的工业作物被开发的潜力。

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