...
首页> 外文期刊>BMC Genomics >Comparative transcriptomics of stem bark reveals genes associated with bast fiber development in Boehmeria nivea L. gaud (ramie)
【24h】

Comparative transcriptomics of stem bark reveals genes associated with bast fiber development in Boehmeria nivea L. gaud (ramie)

机译:茎树皮的比较转录组织揭示了Basmeria Nivea L. Gaud(苎麻)的韧皮纤维发育相关的基因

获取原文

摘要

BACKGROUND:Boehmeria nivea L. Gaud (Ramie) produces one of the longest natural fibers in nature. The bark of ramie mainly comprises of the phloem tissue of stem and is the raw material for fiber. Therefore, identifying the molecular regulation of phloem development is important for understanding of bast fiber biosynthesis and improvement of fiber quality in ramie.RESULTS:In this study, we collected top bud (TB), bark from internode elongating region (ER) and bark from internode fully elongated region (FER) from the ramie variety Zhongzhu No. 1. Histological study indicated that these samples contain phloem tissues at different developmental and maturation stages, with a higher degree of maturation of phloem tissue in FER. RNA sequencing (RNA-seq) was performed and de novo transcriptome was assembled. Unigenes and differentially expressed genes (DEGs) in these three samples were identified. The analysis of DEGs by using Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) revealed clear differences in gene expression between ER and FER. Some unigenes involved in secondary cell wall biosynthesis were up-regulated in both ER and FER, while unigenes for some cell wall components or cell wall modifications showed differential expression between ER and FER. In addition, the ethylene respond factors (ERFs) in the ethylene signaling pathway were up-regulated in FER, and ent-kaurenoic acid oxidase (KAO) and GA 20-oxidase (GA20ox) for gibberellins biosynthesis were up-regulated while GA 2-oxidase (GA2ox) for gibberellin inactivation was down-regulated in FER.CONCLUSIONS:Both morphological study and gene expression analysis supported a burst of phloem and vascular developmental processes during the fiber maturation in the ramie stem, and ethylene and gibberellin are likely to be involved in this process. Our findings provide novel insights into the phloem development and fiber maturation in ramie, which could be useful for fiber improvement in ramie and other fiber crops.
机译:背景:Boehmeria Nivea L. Gaud(苎麻)在自然界中产生最长的天然纤维。苎麻的树皮主要包括茎的韧皮组织,是纤维的原料。因此,鉴定Phloem发育的分子调控对于了解韧皮纤维生物合成和改善苎麻的纤维质量的重要性是重要的:在这项研究中,我们收集了顶级芽(TB),从节间伸长区域(ER)和树皮来自苎麻品种中柱的节间完全细长的区域(FER)。组织学研究表明,这些样品含有不同发育和成熟阶段的韧皮肌组织,在FER中具有更高程度的韧皮组织成熟程度。进行RNA测序(RNA-SEQ),组装DE Novo转录组。鉴定了这三个样品中的未成熟和差异表达的基因(DEGS)。使用基因本体(GO)和基因组(KEGG)的基因本体(GO)和Kyoto百科全书进行分析揭示了ER和FER之间的基因表达的明显差异。参与二次细胞壁生物合成中的一些未成年人在ER和FER中升高,而一些细胞壁组分或细胞壁修饰的unigenes在ER和FER之间显示出差异表达。此外,乙烯信号传导途径中的乙烯响应因子(ERF)在FER中调节,胃纤维素生物合成的Ent-Kaureno酸氧化酶(KaO)和Ga 20-氧化酶(Ga Olmox)在Ga 2-用于嗜酸甘油蛋白灭活的氧化酶(Ga2ox)在FER.CONCLUSION中下调:两种形态学研究和基因表达分析都支持苎麻茎中纤维成熟期间的韧皮肌和血管发育过程的爆发,并且可能涉及乙烯和赤霉素在这个过程中。我们的研究结果提供了对苎麻的韧皮肌开发和纤维成熟的新颖见解,这可能对苎麻和其他纤维作物的纤维改善有用。

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