首页> 美国卫生研究院文献>Genes >Dynamic Transcriptome Analysis Reveals Uncharacterized Complex Regulatory Pathway Underlying Genotype-Recalcitrant Somatic Embryogenesis Transdifferentiation in Cotton
【2h】

Dynamic Transcriptome Analysis Reveals Uncharacterized Complex Regulatory Pathway Underlying Genotype-Recalcitrant Somatic Embryogenesis Transdifferentiation in Cotton

机译:动态转录组分析揭示了基因型顽固的体细胞胚发生转分化背后的特征性复杂调控途径。

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

As a notable illustration of totipotency and plant regeneration, somatic embryogenesis (SE) is the developmental reprogramming of somatic cells toward the embryogenesis pathway, the key step for genetic engineering. Investigations examining the totipotency process are of great fundamental and practical importance in crop biotechnology. However, high-frequency regeneration of cotton via SE has been limited due to genotype-dependent response. The molecular basis deciphering SE genotype recalcitrance remains largely unexplored in cotton. In the current study, to comprehensively investigate the dynamic transcriptional profiling and gene regulatory patterns involved in SE process, a genome-wide RNA sequencing analysis was performed in two cotton genotypes with distinct embryogenic abilities, the highly embryogenic genotype Yuzao 1 (YZ) and the recalcitrant genotype Lumian 1 (LM). Three typical developmental staged cultures of early SE—hypocotyls (HY), nonembryogenic calli (NEC) and primary embryogenic calli (PEC)—were selected to establish the transcriptional profiles. Our data revealed that a total of 62,562 transcripts were present amongst different developmental stages in the two genotypes. Of these, 18,394 and 26,514 differentially expressed genes (DEGs) were identified during callus dedifferentiation (NEC-VS-HY) and embryogenic transdifferentiation (PEC-VS-NEC), respectively in the recalcitrant genotype, 21,842 and 22,343 DEGs in the highly embryogenic genotype. Furthermore, DEGs were clustered into six expression patterns during cotton SE process in the two genotypes. Moreover, functional enrichment analysis revealed that DEGs were significantly enriched in fatty acid, tryptophan and pyruvate metabolism in the highly embryogenic genotype and in DNA conformation change otherwise in the recalcitrant genotype. In addition, critical SE-associated expressed transcription factors, as well as alternative splicing events, were notably and preferentially activated during embryogenic transdifferentiation in the highly embryogenic genotype compared with the recalcitrant genotype. Taken together, by systematically comparing two genotypes with distinct embryogenic abilities, the findings in our study revealed a comprehensive overview of the dynamic gene regulatory patterns and uncharacterized complex regulatory pathways during cotton SE genotype-dependent response. Our work provides insights into the molecular basis and important gene resources for understanding the underlying genotype recalcitrance during SE process and plant regeneration, thereby holding great promise for accelerating the application of biotechnology to cotton for improving its breeding efficiency.
机译:作为全能性和植物再生的显着例证,体细胞胚发生(SE)是体细胞向胚发生途径的发育重编程,这是基因工程的关键步骤。检验全能过程的调查在作物生物技术中具有重要的基础和实践意义。但是,由于基因型依赖性反应,通过SE进行棉花的高频再生受到了限制。解释SE基因型顽固性的分子基础在棉花中仍未开发。在当前的研究中,为了全面研究SE过程中涉及的动态转录图谱和基因调控模式,我们对两种具有不同胚发生能力的棉花基因型,高度胚发生基因型Yuzao 1(YZ)和CYP2基因型进行了全基因组RNA测序分析。顽固型Lumian 1(LM)。选择了早期SE的三种典型的发育阶段培养物-胚轴(HY),非胚性愈伤组织(NEC)和原代胚性愈伤组织(PEC)-建立转录谱。我们的数据显示,在两种基因型的不同发育阶段中共有62,562个转录本。其中,顽固性基因型的顽固性去分化(NEC-VS-HY)和胚发生性转分化(PEC-VS-NEC)期间分别鉴定出18,394和26514个差异表达基因(DEG),高胚性基因型中分别鉴定出21,842和22,343个DEG。 。此外,在两个基因型的棉花SE过程中,DEGs聚集成六个表达模式。此外,功能富集分析表明,DEG在高度胚胎发生的基因型中显着富集了脂肪酸,色氨酸和丙酮酸的代谢,而在顽强的基因型中则显着富集了DNA构象。此外,与顽固基因型相比,在高度胚胎基因型的胚胎发生转分化过程中,与SE相关的关键表达转录因子以及其他剪接事件均得到了显着且优先的激活。综上所述,通过系统地比较具有独特胚胎发生能力的两种基因型,我们的研究结果揭示了棉花SE基因型依赖性反应期间动态基因调控模式和未表征的复杂调控途径的全面概述。我们的工作提供了分子基础和重要的基因资源的见解,以了解SE过程和植物再生过程中潜在的基因型顽固性,从而为加速将生物技术应用于棉花以提高育种效率提供了广阔的前景。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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