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Identification of Callose Synthases in Stinging Nettle and Analysis of Their Expression in Different Tissues

机译:荨麻中愈伤组织合酶的鉴定及其在不同组织中的表达分析

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摘要

Callose is an important biopolymer of β-1,3-linked glucose units involved in different phases of plant development, reproduction and response to external stimuli. It is synthesized by glycosyltransferases (GTs) known as callose synthases (CalS) belonging to family 48 in the Carbohydrate-Active enZymes (CAZymes) database. These GTs are anchored to the plasma membrane via transmembrane domains. Several genes encoding CalS have been characterized in higher plants with 12 reported in the model organism . Recently, the transcriptome of a fibre-producing clone of stinging nettle ( L.) was published and here it is mined for genes with the aim of identifying members differentially expressed in the core and cortical tissues of the stem. The goal is to understand whether specific genes are associated with distinct developmental stages of the stem internodes (elongation, thickening). Nine genes, eight of which encoding full-length , are identified in stinging nettle. The phylogenetic analysis with CalS proteins from other fibre crops, namely textile hemp and flax, reveals grouping into 6 clades. The expression profiles in nettle tissues (roots, leaves, stem internodes sampled at different heights) reveal differences that are most noteworthy in roots vs. leaves. Two are differentially expressed in the internodes sampled at the top and middle of the stem. Implications of their role in nettle stem tissue development are discussed.
机译:愈伤组织是β-1,3-连接的葡萄糖单元的重要生物聚合物,参与植物发育,繁殖和对外部刺激的反应的不同阶段。它由糖活性酶(CAZymes)数据库中属于第48族的称为愈伤组织合酶(CalS)的糖基转移酶(GTs)合成。这些GT通过跨膜结构域锚定至质膜。在高等植物中已经鉴定了几种编码CalS的基因,在模式生物中报道了12种。最近,发表了荨麻产生纤维的克隆的转录组,并在此处进行基因挖掘,目的是鉴定在茎的核心和皮层组织中差异表达的成员。目的是了解特定基因是否与茎节间的不同发育阶段有关(延伸,增厚)。在荨麻中鉴定出9个基因,其中8个编码全长。用来自其他纤维作物的CalS蛋白(即纺织麻和亚麻)进行系统发育分析,结果发现该植物分为6个进化枝。荨麻组织(根,叶,茎节间以不同高度采样)中的表达谱显示出根与叶之间最值得注意的差异。在茎的顶部和中间采样的节间中,两个差异表达。讨论了它们在荨麻茎组织发育中的作用。

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