Gao Meiping, Zhang Shangwen, Luo Cong, He Xinhua, Wei Shaolong, Jiang Wen, He Fanglian, Lin Zhicheng, Yan Meixin, Dong Weiqong
Biotechnology Research Institute, Guangxi Academy of Agricultural Sciences, No. 174, Daxue Road, Nanning, Guangxi 530007, PR China.
Biotechnology Research Institute, Guangxi Academy of Agricultural Sciences, No. 174, Daxue Road, Nanning, Guangxi 530007, PR China.
Gene. 2018 Apr 5;649:99-112. doi: 10.1016/j.gene.2018.01.075. Epub 2018 Jan 31.
Sagittaria sagittifolia L is an important bulb vegetable that has high nutritional and medical value. Bulb formation and development are crucial to Sagittaria sagittifolia; however, its sucrose metabolism is poorly understood and there are a lack of sufficient transcriptomic and genomic data available to fully understand the molecular mechanisms underlying bulb formation and development as well as the bulb transcriptome. Five cDNA libraries were constructed at different developmental stages and sequenced using high-throughput Illumina RNA sequencing. From approximately 63.53 Gb clean reads, a total of 60,884 unigenes, with an average length of 897.34 bp and N50 of 1.368 kb, were obtained. A total of 36,590 unigenes were successfully annotated using five public databases. Across different developmental stages, 4195, 827, 832, 851, and 1494 were differentially expressed in T02, T03, T04, T05, and T06 libraries, respectively. Gene ontology (GO) analysis revealed several differentially-expressed genes (DEGs) associated with catalytic activity, binding, and transporter activity. The Kyoto encyclopedia of genes and genomes (KEGG) revealed that these DEGs are involved in physiological and biochemical processes. RT-qPCR was used to profile the expression of these unigenes and revealed that the expression patterns of the DEGs were consistent with the transcriptome data. In this study, we conducted a comparative gene expression analysis at the transcriptional level using RNA-seq across the different developmental stages of Sagittaria sagittifolia. We identified a set of genes that might contribute to starch and sucrose metabolism, and the genetic mechanisms related to bulblet development were also explored. This study provides important data for future studies of the genetic and molecular mechanisms underlying bulb formation and development in Sagittaria sagittifolia.
慈姑是一种重要的球茎类蔬菜,具有很高的营养和药用价值。球茎的形成和发育对慈姑至关重要;然而,其蔗糖代谢情况了解甚少,并且缺乏足够的转录组和基因组数据来全面理解球茎形成和发育以及球茎转录组背后的分子机制。在不同发育阶段构建了五个cDNA文库,并使用高通量Illumina RNA测序进行测序。从约63.53Gb的clean reads中,共获得60,884个单基因,平均长度为897.34bp,N50为1.368kb。使用五个公共数据库成功注释了36,590个单基因。在不同发育阶段,分别在T02、T03、T04、T05和T06文库中有4195、827、832、851和1494个基因差异表达。基因本体(GO)分析揭示了几个与催化活性、结合和转运活性相关的差异表达基因(DEG)。京都基因与基因组百科全书(KEGG)显示这些DEG参与生理和生化过程。RT-qPCR用于分析这些单基因的表达,结果表明DEG的表达模式与转录组数据一致。在本研究中,我们使用RNA-seq在慈姑不同发育阶段进行了转录水平的比较基因表达分析。我们鉴定出一组可能有助于淀粉和蔗糖代谢的基因,并探索了与球茎发育相关的遗传机制。本研究为慈姑球茎形成和发育的遗传和分子机制的未来研究提供了重要数据。