Zhong Sha, Yin Yan-Peng, He Ya-Nan, Li Man-Jia, Zhang Min, Li Si-Ning, Peng Cheng, Zhang Ding-Kun, Gao Ji-Hai
Key Laboratory of Distinctive Chinese Medicine Resources in Southwest China, Pharmacy College,Chengdu University of Traditional Chinese Medicine Chengdu 611137, China.
Zhongguo Zhong Yao Za Zhi. 2020 Apr;45(7):1633-1640. doi: 10.19540/j.cnki.cjcmm.20200205.101.
According to the major differences of agricultural characters among various Aconitum carmichaelii cultivars, the lateral roots of Ai-leaf and Dahua-leaf A.carmichaelii plants were selected as the research objects. And the Illumina Hiseq high-throughput platform was used for transcriptome sequencing, assembly and annotation. We mostly focused the activity differential transcripts, metabolism pathways and enrichment functions. The results showed that a total of 52.23 Gb nucleotide bases were obtained from 6 A.carmichaelii transcriptome databases, with 52 471 unigenes and 28 765 matched annotation. There were 1 052 transcripts of the two kinds of A.carmichaelii with a difference of more than 2 times, 808 of which were annotated. Through GO and COG analysis, they were found to mainly concentrate in metabolic processes, cell processes, catalytic processes and transport processes, connections and other functions. KEGG analysis showed that 262 DEGs were enriched in 78 metabolic pathways, such as starch and sucrose metabolism, plant hormone signaling, carbon compounded transport etc. It was implied that many genes in Dahua-leaf A.carmichaelii regulated the conversion of starch to small molecules such as sucrose, glucose and maltose, while some other genes regulated the accumulation of amino acids, which may be the important biological principles for the formation of the differences between the quality and disease resistance of two leaf types of A.carmichaelii. This study will provide reference datas for A.carmichaelii breeding research.
根据不同乌头品种农艺性状的主要差异,选取艾叶型和大花型乌头植株的侧根作为研究对象。采用Illumina Hiseq高通量平台进行转录组测序、组装和注释。主要聚焦于活性差异转录本、代谢途径和富集功能。结果表明,从6个乌头转录组数据库中共获得52.23 Gb核苷酸碱基,有52471个单基因,其中28765个得到匹配注释。两种乌头有1052个转录本差异在2倍以上,其中808个得到注释。通过GO和COG分析,发现它们主要集中在代谢过程、细胞过程、催化过程、运输过程、连接等功能。KEGG分析表明,262个差异表达基因富集在78条代谢途径中,如淀粉和蔗糖代谢、植物激素信号传导、碳化合物运输等。这意味着大花型乌头中的许多基因调控淀粉向蔗糖、葡萄糖和麦芽糖等小分子的转化,而其他一些基因调控氨基酸的积累,这可能是两种叶型乌头品质和抗病性差异形成的重要生物学原理。本研究将为乌头育种研究提供参考数据。