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Transcriptome dynamics during fibre development in contrasting genotypes of Gossypium hirsutum L.

机译:棉花发育过程中不同基因型的纤维发育过程中的转录组动力学

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Understanding the contribution of genetic background in fibre quality traits is important for the development of future cotton varieties with superior fibre quality. We used Affymetrix microarray (Santa Clara, CA) and Roche 454 GSFLX (Branford, CT) for comparative transcriptome analysis between two superior and three inferior genotypes at six fibre developmental stages. Microarray?¢????based analysis of variance (ANOVA) for 89 microarrays encompassing five contrasting genotypes and six developmental stages suggests that the stages of the fibre development have a more pronounced effect on the differentially expressed genes (DEGs) than the genetic background of genotypes. Superior genotypes showed enriched activity of cell wall enzymes, such as pectin methyl esterase, at early elongation stage, enriched metabolic activities such as lipid, amino acid and ribosomal protein subunits at peak elongation, and prolonged combinatorial regulation of brassinosteroid and auxin at later stages. Our efforts on transcriptome sequencing were focused on changes in gene expression at 25 DPA. Transcriptome sequencing resulted in the generation of 475????658 and 429????408 high?¢????quality reads from superior and inferior genotypes, respectively. A total of 24????609 novel transcripts were identified manually for Gossypium hirsutum with no hits in NCBI ?¢????nr?¢???? database. Gene ontology analyses showed that the genes for ribosome biogenesis, protein transport and fatty acid biosynthesis were over?¢????represented in superior genotype, whereas salt stress, abscisic acid stimuli and water deprivation leading to the increased proteolytic activity were more pronounced in inferior genotype.
机译:了解遗传背景对纤维品质性状的贡献对于开发未来具有更高纤维品质的棉花品种非常重要。我们使用Affymetrix芯片(加利福尼亚州圣塔克拉拉)和Roche 454 GSFLX(加利福尼亚州布兰福德)对六个纤维发育阶段的两个上,下三个基因型进行转录组分析。基于微阵列的方差分析(ANOVA)对涵盖五个相反基因型和六个发育阶段的89个微阵列进行了分析,表明纤维发育阶段对差异表达基因(DEG)的影响比遗传背景更为明显。基因型。优良的基因型显示出在伸长初期细胞壁酶(如果胶甲基酯酶)的活性增强,在峰值伸长时脂质,氨基酸和核糖体蛋白亚基等代谢活性的增强,油菜素和生长素的后期组合调控延长。我们在转录组测序上的努力集中在25 DPA时基因表达的变化。转录组测序分别产生了来自优和劣基因型的475→658和429→408高质量读码的产生。总共鉴定出24份609份新颖的转录本,用于陆地棉,无NCBI命中率。数据库。基因本体分析表明,核糖体的生物发生,蛋白质转运和脂肪酸生物合成的基因以优势基因型为代表,而盐胁迫,脱落酸刺激和缺水导致蛋白水解活性的增加更为显着。亚型。

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