首页> 外文期刊>BMC Genomics >Aberrant phenotype and transcriptome expression during fiber cell wall thickening caused by the mutation of the Im gene in immature fiber (im) mutant in Gossypium hirsutum L
【24h】

Aberrant phenotype and transcriptome expression during fiber cell wall thickening caused by the mutation of the Im gene in immature fiber (im) mutant in Gossypium hirsutum L

机译:陆地棉不成熟纤维(im)突变体中Im基因突变引起的纤维细胞壁增厚过程中的异常表型和转录组表达

获取原文
获取外文期刊封面目录资料

摘要

Background The immature fiber (im) mutant of Gossypium hirsutum L. is a special cotton fiber mutant with non-fluffy fibers. It has low dry weight and fineness of fibers due to developmental defects in fiber secondary cell wall (SCW). Results We compared the cellulose content in fibers, thickness of fiber cell wall and fiber transcriptional profiling during SCW development in im mutant and its near-isogenic wild-type line (NIL) TM-1. The im mutant had lower cellulose content and thinner cell walls than TM-1 at same fiber developmental stage. During 25?~?35?day post-anthesis (DPA), sucrose content, an important carbon source for cellulose synthesis, was also significantly lower in im mutant than in TM-1. Comparative analysis of fiber transcriptional profiling from 13?~?25 DPA indicated that the largest transcriptional variations between the two lines occurred at the onset of SCW development. TM-1 began SCW biosynthesis approximately at 16 DPA, whereas the same fiber developmental program in im mutant was delayed until 19 DPA, suggesting an asynchronous fiber developmental program between TM-1 and im mutant. Functional classification and enrichment analysis of differentially expressed genes (DEGs) between the two NILs indicated that genes associated with biological processes related to cellulose synthesis, secondary cell wall biogenesis, cell wall thickening and sucrose metabolism, respectively, were significantly up-regulated in TM-1. Twelve genes related to carbohydrate metabolism were validated by quantitative reverse transcription PCR (qRT-PCR) and confirmed a temporal difference at the earlier transition and SCW biosynthesis stages of fiber development between TM-1 and im mutant. Conclusions We propose that Im is an important regulatory gene influencing temporal differences in expression of genes related to fiber SCW biosynthesis. This study lays a foundation for cloning the Im gene, elucidating molecular mechanism of fiber SCW development and further genetic manipulation for the improvement of fiber fineness and maturity.
机译:背景陆地棉的不成熟纤维(im)突变体是一种特殊的棉花纤维突变体,其纤维不蓬松。由于纤维二次细胞壁(SCW)的发育缺陷,它具有较低的干重和纤维细度。结果我们比较了im突变体及其近等基因野生型TM-1中SCW发育过程中纤维中的纤维素含量,纤维细胞壁厚度和纤维转录谱。在相同的纤维发育阶段,im突变体具有比TM-1更低的纤维素含量和更薄的细胞壁。在花后25?〜?35?d(DPA)期间,im突变体的蔗糖含量(纤维素合成的重要碳源)也显着低于TM-1。从13→25 DPA对纤维转录谱的比较分析表明,这两个系之间最大的转录变异发生在SCW发育开始时。 TM-1大约在16 DPA时开始SCW生物合成,而im突变体中相同的纤维发育程序被延迟到19 DPA,这表明TM-1和im突变体之间的异步纤维发育程序。两个NIL之间差异表达基因(DEG)的功能分类和富集分析表明,分别与纤维素合成,次生细胞壁生物发生,细胞壁增厚和蔗糖代谢相关的生物学过程相关的基因在TM-中显着上调。 1。通过定量逆转录PCR(qRT-PCR)验证了与碳水化合物代谢有关的十二个基因,并确认了在TM-1和im突变体之间纤维发育的早期过渡和SCW生物合成阶段的时间差异。结论我们认为Im是影响与纤维SCW生物合成相关的基因表达的时间差异的重要调控基因。该研究为克隆Im基因,阐明纤维SCW发育的分子机制以及进一步的基因操纵以改善纤维细度和成熟度奠定了基础。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号