State Key Laboratory of Crop Genetics and Germplasm Enhancement, College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China.
Acta Biochim Biophys Sin (Shanghai). 2018 May 1;50(5):481-490. doi: 10.1093/abbs/gmy027.
Carrot provides abundant carotenoid for human diet and is one of the most widely cultivated root vegetables in the world. However, the absence of the tissue-specific transcriptome of carrots hampers the investigation of the association of secondary metabolic mechanism with the different tissue types. In this study, we obtained 46,119,008/48,414,508 raw reads and 45,394,846/47,887,648 clean reads from the carrot leaf and root, respectively. Moreover, α- and β-carotene were found to accumulate in both tissues. Then, using Trinity assembly into contigs and mapped back to contigs, these reads were assembled to 56,267 and 62,427 leaf and root unigenes, respectively, after Ns removal and paired-end extension. In addition, a total of 18,354 DEGs were found between the carrot leaf and root unigenes, and 99 of these DEGs were found to be involved in carotenoid biosynthesis as revealed by integrated function annotation. In the carotenoid pathway DEGs, DcPSY1, DcZ-ISO, DcCISO2, DcLBCY, DcLECY, DcZEP1, DcZEP2, DcVDE1, DcVDE2, DcNSY1, DcNSY2, DcA8H-CYP707A1.2, DcAAO3a, DcCCD4, and DcMAX1 were expressed dramatically in the carrot leaf compared with in the root. This result was consistent with the results from the quantitative real-time PCR analysis of DEG expression profiles. Moreover, 67 more carotenoid biosynthesis-related genes were found in this transcriptome database. Most of these DEGs were up-regulated in the carrot leaf compared with those in the root. The expression of DEGs may be related to the higher carotenoid pathway flux in the carrot leaf than in the root. These results will help to further understand the carotenoid biosynthesis in carrot.
胡萝卜为人类饮食提供了丰富的类胡萝卜素,是世界上种植最广泛的根茎类蔬菜之一。然而,由于缺乏胡萝卜组织特异性转录组,阻碍了对次生代谢机制与不同组织类型之间关系的研究。在这项研究中,我们分别从胡萝卜叶片和根部获得了 46119008/48414508 条原始reads 和 45394846/47887648 条 clean reads。此外,α-和β-胡萝卜素在这两种组织中均有积累。然后,使用 Trinity 将 reads 组装成 contigs,并将其映射回 contigs,经过 Ns 去除和 paired-end 延伸,这些 reads 分别组装成 56267 和 62427 个叶片和根部的 unigenes。此外,在胡萝卜叶片和根部的 unigenes 之间共发现了 18354 个 DEGs,其中 99 个 DEGs 被发现参与了类胡萝卜素的生物合成,这是通过综合功能注释揭示的。在类胡萝卜素途径的 DEGs 中,DcPSY1、DcZ-ISO、DcCISO2、DcLBCY、DcLECY、DcZEP1、DcZEP2、DcVDE1、DcVDE2、DcNSY1、DcNSY2、DcA8H-CYP707A1.2、DcAAO3a、DcCCD4 和 DcMAX1 在胡萝卜叶片中的表达显著高于根部。这一结果与 DEG 表达谱的定量实时 PCR 分析结果一致。此外,在这个转录组数据库中还发现了 67 个与类胡萝卜素生物合成相关的基因。这些 DEGs 在胡萝卜叶片中的表达大部分高于根部。DEGs 的表达可能与胡萝卜叶片中类胡萝卜素途径通量高于根部有关。这些结果将有助于进一步了解胡萝卜中的类胡萝卜素生物合成。