首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Near-isogenic cotton germplasm lines that differ in fiber-bundle strength have temporal differences in fiber gene expression patterns as revealed by comparative high-throughput profiling
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Near-isogenic cotton germplasm lines that differ in fiber-bundle strength have temporal differences in fiber gene expression patterns as revealed by comparative high-throughput profiling

机译:纤维束强度不同的近等基因棉花种系在纤维基因表达模式上存在时间差异,这通过比较高通量分析发现

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Gene expression profiles of developing cotton (Gossypium hirsutum L.) fibers from two near-isogenic lines (NILs) that differ in fiber-bundle strength, short-fiber content, and in fewer than two genetic loci were compared using an oligonucleotide microarray. Fiber gene expression was compared at five time points spanning fiber elongation and secondary cell wall (SCW) biosynthesis. Fiber samples were collected from field plots in a randomized, complete block design, with three spatially distinct biological replications for each NIL at each time point. Microarray hybridizations were performed in a loop experimental design that allowed comparisons of fiber gene expression profiles as a function of time between the two NILs. Overall, developmental expression patterns revealed by the microarray experiment agreed with previously reported cotton fiber gene expression patterns for specific genes. Additionally, genes expressed coordinately with the onset of SCW biosynthesis in cotton fiber correlated with gene expression patterns of other SCW-producing plant tissues. Functional classification and enrichment analysis of differentially expressed genes between the two NILs revealed that genes associated with SCW biosynthesis were significantly up-regulated in fibers of the high-fiber quality line at the transition stage of cotton fiber development. For independent corroboration of the microarray results, 15 genes were selected for quantitative reverse transcription PCR analysis of fiber gene expression. These analyses, conducted over multiple field years, confirmed the temporal difference in fiber gene expression between the two NILs. We hypothesize that the loci conferring temporal differences in fiber gene expression between the NILs are important regulatory sequences that offer the potential for more targeted manipulation of cotton fiber quality.
机译:使用寡核苷酸微阵列比较了来自两个近等基因系(NIL)的发育中的棉(Gossypium hirsutum L.)纤维在纤维束强度,短纤维含量和少于两个遗传位点方面不同的基因表达谱。在跨越纤维伸长和二次细胞壁(SCW)生物合成的五个时间点比较了纤维基因表达。以随机,完整的块设计从野外地块收集纤维样品,每个时间点每个NIL具有三个空间上不同的生物学复制。微阵列杂交是在环实验设计中进行的,该设计允许根据两个NIL之间时间的函数比较纤维基因表达谱。总体而言,微阵列实验揭示的发育表达模式与先前报道的特定基因的棉纤维基因表达模式一致。另外,棉纤维中与SCW生物合成开始协调表达的基因与其他产生SCW的植物组织的基因表达模式相关。功能分类和两个NIL之间差异表达基因的富集分析表明,与SCW生物合成相关的基因在棉花纤维发育过渡期的高纤维品质品系的纤维中显着上调。为了独立证实微阵列结果,选择了15个基因用于纤维基因表达的定量逆转录PCR分析。在多个田间年进行的这些分析证实了两个NIL之间纤维基因表达的时间差异。我们假设在NIL之间的纤维基因表达中赋予时间差异的基因座是重要的调控序列,可提供更有针对性的操作棉纤维质量的潜力。

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