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Sugarcane cell wall structure and lignin distribution investigated by confocal and electron microscopy

机译:共聚焦和电子显微镜研究甘蔗细胞壁结构和木质素分布

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Lignocellulosic plant cell wall is considered a potential source for second generation biofuels. The plant cell wall is a highly complex structure mainly composed of cellulose, hemicelluloses, and lignin that form a network of crosslinked fibers. The structural organization of the sugarcane cell wall has not been previously analyzed in detail, and this analysis is a prerequisite for further studies on the recalcitrance and deconstruction of its biomass. In this work, cellulose and lignin localization were investigated by confocal laser scanning microscopy. In addition, the internode sugarcane cell wall structural organization was analyzed by electron microscopy. Internode stem anatomy showed a typical monocot structure consisting of epidermis, hypoderm, and vascular bundles scattered throughout ground parenchyma tissue and surrounded by sclerenchyma fibers. Confocal images of safranin labeled sugarcane showed that lignin distribution was predominant in the vessel elements, cell wall corners (CC), and middle lamella (ML), while cellulose-rich cell walls were randomly distributed in the ML and organized in the other cell wall layers. KMnO_4 cytochemistry revealed that lignin was predominantly distributed in secondary cell walls, ML and CC. Cell wall sublayers (S1, S2, and S3) were identified and measured by transmission electron microscopy. Our results provide insights that may help further understanding of sugarcane cell wall organization, which is crucial for the research and technology of plant-based biofuel production.
机译:木质纤维素植物细胞壁被认为是第二代生物燃料的潜在来源。植物细胞壁是高度复杂的结构,主要由纤维素,半纤维素和木质素组成,形成交联纤维的网络。以前没有对甘蔗细胞壁的结构组织进行过详细的分析,这种分析是进一步研究其生物量的顽固性和解构性的前提。在这项工作中,通过共聚焦激光扫描显微镜研究了纤维素和木质素的定位。此外,通过电子显微镜分析了节间甘蔗细胞壁的结构组织。节间茎解剖显示典型的单子叶植物结构,由表皮,皮下组织和维管束组成,散布在整个地面薄壁组织中,并被巩膜纤维包围。番红花标记的甘蔗的共聚焦图像显示,木质素分布主要存在于血管元件,细胞壁角(CC)和中间层(ML)中,而富含纤维素的细胞壁随机分布在ML中并组织在另一细胞壁中层。 KMnO_4细胞化学分析表明,木质素主要分布在次级细胞壁ML和CC中。通过透射电子显微镜鉴定并测量细胞壁亚层(S1,S2和S3)。我们的结果提供了有助于进一步了解甘蔗细胞壁组织的见识,这对于基于植物的生物燃料生产的研究和技术至关重要。

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