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沙棘雌雄株从头转录组比较分析

Comparative de novo transcriptome analysis of male and female Sea buckthorn.

作者信息

Bansal Ankush, Salaria Mehul, Sharma Tashil, Stobdan Tsering, Kant Anil

机构信息

1Department of Biotechnology and Bioinformatics, Jaypee University of Information Technology, Waknaghat, Solan, Himachal Pradesh 173234 India.

Defence Institute of High Altitude Research, Defence R&D Organisation, Leh, Jammu and Kashmir India.

出版信息

3 Biotech. 2018 Feb;8(2):96. doi: 10.1007/s13205-018-1122-5. Epub 2018 Jan 25.

Abstract

Sea buckthorn is a dioecious medicinal plant found at high altitude. The plant has both male and female reproductive organs in separate individuals. In this article, whole transcriptome de novo assemblies of male and female flower bud samples were carried out using Illumina NextSeq 500 platform to determine the role of the genes involved in sex determination. Moreover, genes with differential expression in male and female transcriptomes were identified to understand the underlying sex determination mechanism. The current study showed 63,904 and 62,272 coding sequences (CDS) in female and male transcriptome data sets, respectively. 16,831 common CDS were screened out from both transcriptomes, out of which 625 were upregulated and 491 were found to be downregulated. To understand the potential regulatory roles of differentially expressed genes in metabolic networks and biosynthetic pathways: KEGG mapping, gene ontology, and co-expression network analysis were performed. Comparison with Flowering Interactive Database (FLOR-ID) resulted in eight differentially expressed genes viz. CHD3-type chromatin-remodeling factor PICKLE (), phytochrome-associated serine/threonine-protein phosphatase (), protein TOPLESS (), sensitive to freezing 6 (), lysine-specific histone demethylase 1 homolog 1 (), pre-mRNA-processing-splicing factor 8A (), sucrose synthase 4 (), ubiquitin carboxyl-terminal hydrolase 12 (), known to be broadly involved in flowering, photoperiodism, embryo development, and cold response pathways. Male and female flower bud transcriptome data of Sea buckthorn may provide comprehensive information at genomic level for the identification of genetic regulation involved in sex determination.

摘要

沙棘是一种生长在高海拔地区的雌雄异株药用植物。该植物的雄性和雌性生殖器官分别存在于不同的个体中。在本文中,使用Illumina NextSeq 500平台对雄性和雌性花芽样本进行了全转录组从头组装,以确定参与性别决定的基因的作用。此外,还鉴定了雄性和雌性转录组中差异表达的基因,以了解潜在的性别决定机制。当前研究表明,雌性和雄性转录组数据集中分别有63,904和62,272个编码序列(CDS)。从两个转录组中筛选出16,831个共同的CDS,其中625个上调,491个下调。为了了解差异表达基因在代谢网络和生物合成途径中的潜在调控作用:进行了KEGG映射、基因本体和共表达网络分析。与开花相互作用数据库(FLOR-ID)比较,发现了8个差异表达基因,即CHD3型染色质重塑因子PICKLE()、光敏色素相关丝氨酸/苏氨酸蛋白磷酸酶()、蛋白TOPLESS()、冻敏6()、赖氨酸特异性组蛋白去甲基化酶1同源物1()、前体mRNA加工剪接因子8A()、蔗糖合酶4()、泛素羧基末端水解酶12(),这些基因广泛参与开花、光周期、胚胎发育和冷响应途径。沙棘的雄性和雌性花芽转录组数据可能在基因组水平上提供全面信息,用于鉴定参与性别决定的遗传调控。

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