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Development of distinct cell wall layers both in primary and secondary phloem fibers of hemp (Cannabis sativa L.)

机译:在大麻初级和继发性验验纤维中的不同细胞壁层的研制(Cannabis Sativa L.)

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Formation of thickened cell wall allows plant fibers to obtain the strength necessary to the realization of their function as mechanical tissue. It is due to such cell wall that fibers of textile crops, like flax, hemp, and ramie, acquire characteristics that make possible to use these fibers in textile and technical applications. In the hemp stem, primary and secondary phloem fibers originating from the different type of meristems are formed. Analysis of ultrastructure coupled with immunolabelling demonstrated distinct layers within thickened cell wall in the fiber of both types: the outer layer is built as typical secondary cell wall of xylan-type, while the major portion was identified as the layers of tertiary (gelatinous or G-layer) cell wall. A newly deposited layer of the tertiary cell wall (Gn) is transformed into mature G-layer by the post-synthetic modification. The general design of cell wall in primary and secondary phloem fibers is similar, but with xylan layer being considerably thicker in secondary fibers than in primary ones. The formation of the tertiary cell wall in primary and secondary hemp fibers was associated with the synthesis of pectin component - rhamnogalacturonan I together with beta-(1,4)-D-galactan, which has been detected and characterized both in the buffer-extractable fraction and among the strongly retained within cell wall polysaccharides. Comparison of the obtained results with data on the flax fiber cell wall development permitted to find similarities, as well as some differences of G-fiber cell wall organization in different plant species.
机译:增厚细胞壁的形成允许植物纤维获得使其作为机械组织的功能所需的强度。它是由于纺织品纤维的细胞壁,如亚麻,大麻和苎麻,获得可以在纺织和技术应用中使用这些纤维的特性。在大麻茎中,形成源自不同类型的分类的初级和继发性磷酸纤维。与免疫标注耦合的超微结构分析在两种类型的纤维中均匀的层壁上显示出明显的层:外层作为木聚糖型的典型次级细胞壁构建,同时将主要部分鉴定为第三级层(凝胶状或G. - 层)细胞壁。通过合成后修饰,将新沉积的三级细胞壁(GN)层转化为成熟的G层。初级和继发性磷纤维中细胞壁的一般设计相似,但Xylan层在二级纤维中比在原代中具有显着较厚。初级和次级HEMP纤维中的叔细胞壁与β-(1,4)-D-半乳糖的合成与β-(1,4)-D-二乳糖合成有关,其在缓冲剂中被检测和表征馏分和细胞壁多糖中的强烈保留。获得的结果与氟糊纤维细胞壁发育的数据的比较允许寻找相似性,以及不同植物物种中G-纤维细胞壁组织的一些差异。

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