Luxembourg Institute of Science and Technology (LIST), Environmental Research and Innovation (ERIN) Department, Esch/Alzette, L-4362, Luxembourg.
Université catholique de Louvain, Groupe de Recherche en Physiologie Végétale, Earth and Life Institute-Agronomy, Louvain-la-Neuve, B-1348, Belgium.
Sci Rep. 2017 Jul 10;7(1):4961. doi: 10.1038/s41598-017-05200-8.
Bast fibres are long extraxylary cells which mechanically support the phloem and they are divided into xylan- and gelatinous-type, depending on the composition of their secondary cell walls. The former, typical of jute/kenaf bast fibres, are characterized by the presence of xylan and a high degree of lignification, while the latter, found in tension wood, as well as flax, ramie and hemp bast fibres, have a high abundance of crystalline cellulose. During their differentiation, bast fibres undergo specific developmental stages: the cells initially elongate rapidly by intrusive growth, subsequently they cease elongation and start to thicken. The goal of the present study is to provide a transcriptomic close-up of the key events accompanying bast fibre development in textile hemp (Cannabis sativa L.), a fibre crop of great importance. Bast fibres have been sampled from different stem regions. The developmental stages corresponding to active elongation and cell wall thickening have been studied using RNA-Seq. The results show that the fibres sampled at each stem region are characterized by a specific transcriptomic signature and that the major changes in cell wall-related processes take place at the internode containing the snap point. The data generated also identify several interesting candidates for future functional analysis.
韧皮纤维是长的细胞外组织,机械支撑韧皮部,根据次生细胞壁的组成,可分为木聚糖型和凝胶型。前者是黄麻/红麻韧皮纤维的典型特征,其特征是存在木聚糖和高度木质化,而后者存在于张力木以及亚麻、苎麻和大麻韧皮纤维中,具有丰富的结晶纤维素。在分化过程中,韧皮纤维经历特定的发育阶段:细胞最初通过侵入性生长快速伸长,随后停止伸长并开始增厚。本研究的目的是提供纺织大麻(Cannabis sativa L.)韧皮纤维发育过程中关键事件的转录组特写,这是一种非常重要的纤维作物。从不同的茎区采集韧皮纤维。使用 RNA-Seq 研究了与活跃伸长和细胞壁增厚相对应的发育阶段。结果表明,每个茎区采集的纤维都具有特定的转录组特征,并且与细胞壁相关过程的主要变化发生在含有折断点的节间。生成的数据还鉴定了几个用于未来功能分析的有趣候选基因。