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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >The relationship between cuticular lipids and associated gene expression in above ground organs of Thellungiella salsugineum (Pall.) Al-Shehbaz & Warwick
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The relationship between cuticular lipids and associated gene expression in above ground organs of Thellungiella salsugineum (Pall.) Al-Shehbaz & Warwick

机译:细胞脂质与麦芽糖菌(Pall.)Al-Shehbaz&amp的地下器官相关基因表达的关系。 沃里克

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摘要

The cuticle plays a critical role as barrier between plant and environment. Here, cuticular wax morphology, cuticular wax and cutin monomer composition, and expression of associated genes in five above ground organs were examined in model extremophyte Thellungiella salsugineum. Alkanes, ketones, and 2-alcohols were the predominant wax constitutes in rosette leaves, inflorescence stem leaves, stems, and siliques, whereas alkanes and acids were the predominant cuticular lipids in whole flowers. Unsubstituted acids were the most abundant cutin monomers in vegetative organs, especially C18:2 dioic acids, which reached the highest levels in stems. Hydroxy fatty acids were the predominant cutin monomers in flowers, especially 16 - OH C16:0 and diOH C16:0. High-throughput RNA-Seq analysis using the Hiseq4000 platform was performed on these five above organs of T. salsugineum, and the differentially expressed lipid-associated genes and their associated metabolic pathways were identified. Expression of genes associated in previous reports to cuticle production, including those having roles in cuticle lipid biosynthesis, transport, and regulation were examined. The association of cuticle lipid composition and gene expression within different organs of T. salsugineum, and potential relationships between T. salsugineum's extreme cuticle and its adaptation to extreme environments is discussed.
机译:该角质层在植物和环境之间的屏障中起着关键作用。这里,在exprootophyte thellungiella Salsugineum模型中检查了切口蜡形态,切口蜡和Cutin单体组合物,以及在地上的5次上外器官中的表达。烷烃,酮和2-醇是莲甜叶,花序茎,茎,茎和单片机中的主要蜡构成,而烷烃和酸是全鲜花中的主要内皮脂质。未取代的酸是营养器官中最丰富的Cutin单体,特别是C18:2 DIOC酸,其达到茎的最高水平。羟基脂肪酸是花的主要切割单体,尤其是16 - OH C16:0和DIOH C16:0。使用Hiseq4000平台的高通量RNA-SEQ分析在其上述T. Salsugineum的上述5上进行,鉴定了差异表达的脂质相关基因及其相关的代谢途径。检查在先前报告中对角质层产生的表达,包括具有角质层脂质生物合成,运输和调节中具有角色的那些。讨论了T. Salsugineum不同器官内的角质层脂质组合物和基因表达的关联,以及T.Salsugineum的极端角质层的潜在关系及其对极端环境的适应。

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