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Gene expression and metabolite profiles of cotton fiber during cell elongation and secondary cell wall synthesis.

机译:棉纤维在细胞伸长和次生细胞壁合成过程中的基因表达和代谢产物概况。

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摘要

Cotton fibers elongate rapidly after initiation of elongation, eventually leading to the deposit of a large amount of cellulose. To reveal features of cotton fiber cells at the fast elongation and the secondary cell wall synthesis stages, we compared the respective transcriptomes and metabolite profiles. Comparative analysis of transcriptomes by cDNA array identified 633 genes that were differentially regulated during fiber development. Principal component analysis (PCA) using expressed genes as variables divided fiber samples into four groups, which are diagnostic of developmental stages. Similar grouping results are also found if we use non-polar or polar metabolites as variables for PCA of developing fibers. Auxin signaling, wall-loosening and lipid metabolism are highly active during fiber elongation, whereas cellulose biosynthesis is predominant and many other metabolic pathways are downregulated at the secondary cell wall synthesis stage. Transcript and metabolite profiles and enzyme activities are consistent in demonstrating a specialization process of cotton fiber development toward cellulose synthesis. These data demonstrate that cotton fiber cell at a certain stage has its own unique feature, and developmental stages of cotton fiber cells can be distinguished by their transcript and metabolite profiles. During the secondary cell wall synthesis stage, metabolic pathways are streamed into cellulose synthesis.
机译:棉纤维在开始伸长后迅速伸长,最终导致大量纤维素的沉积。为了揭示棉纤维细胞在快速伸长和次生细胞壁合成阶段的特征,我们比较了各自的转录组和代谢产物谱。通过cDNA阵列对转录组进行比较分析,确定了633个在纤维发育过程中受到不同调控的基因。使用表达的基因作为变量的主成分分析(PCA)将纤维样品分为四组,这是对发育阶段的诊断。如果我们使用非极性或极性代谢物作为发育中纤维的PCA变量,也会发现相似的分组结果。生长素信号传导,壁松弛和脂质代谢在纤维伸长过程中非常活跃,而纤维素的生物合成占主导,而许多其他代谢途径在次级细胞壁合成阶段被下调。转录和代谢产物谱以及酶活性在证明棉纤维向纤维素合成发展的专业化过程中是一致的。这些数据表明棉纤维细胞在某个阶段具有其独特的特征,并且棉纤维细胞的发育阶段可以通过其转录本和代谢产物谱来区分。在次级细胞壁合成阶段,代谢途径流向纤维素合成。

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