Wan Qun, Zhang Hua, Ye Wenxue, Wu Huaitong, Zhang Tianzhen
National Key Laboratory of Crop Genetics and Germplasm Enhancement, Cotton Research Institute, Nanjing Agricultural University, Nanjing, China.
PLoS One. 2014 May 13;9(5):e97313. doi: 10.1371/journal.pone.0097313. eCollection 2014.
The cotton fiber, as a single-celled trichome, is a biological model system for studying cell differentiation and elongation. However, the complexity of gene expression and regulation in the fiber complicates genetic research. In this study, we investigated the genome-wide transcriptome profiling in Texas Marker-1 (TM-1) and five naked seed or fuzzless mutants (three dominant and two recessive) during the fuzz initial development stage. More than three million clean tags were generated from each sample representing the expression data for 27,325 genes, which account for 72.8% of the annotated Gossypium raimondii primary transcript genes. Thousands of differentially expressed genes (DEGs) were identified between TM-1 and the mutants. Based on functional enrichment analysis, the DEGs downregulated in the mutants were enriched in protein synthesis-related genes and transcription factors, while DEGs upregulated in the mutants were enriched in DNA/chromatin structure-related genes and transcription factors. Pathway analysis showed that ATP synthesis, and sugar and lipid metabolism-related pathways play important roles in fuzz initial development. Also, we identified a large number of transcription factors such as MYB, bHLH, HB, WRKY, AP2/EREBP, bZIP and C2H2 zinc finger families that were differently expressed between TM-1 and the mutants, and were also related to trichome development in Arabidopsis.
棉纤维作为一种单细胞毛状体,是研究细胞分化和伸长的生物学模型系统。然而,纤维中基因表达和调控的复杂性使遗传研究变得复杂。在本研究中,我们调查了德州标记1(TM-1)和五个裸籽或无毛突变体(三个显性和两个隐性)在绒毛初始发育阶段的全基因组转录组图谱。每个样本产生了超过三百万个干净标签,代表27325个基因的表达数据,这些基因占注释的雷蒙德氏棉初级转录本基因的72.8%。在TM-1和突变体之间鉴定出数千个差异表达基因(DEG)。基于功能富集分析,突变体中下调的DEG富集在蛋白质合成相关基因和转录因子中,而突变体中上调的DEG富集在DNA/染色质结构相关基因和转录因子中。通路分析表明,ATP合成以及糖和脂质代谢相关通路在绒毛初始发育中起重要作用。此外,我们鉴定了大量转录因子,如MYB、bHLH、HB、WRKY、AP2/EREBP、bZIP和C2H2锌指家族,它们在TM-1和突变体之间差异表达,并且也与拟南芥中的毛状体发育有关。