Bioinformatics Group, Wageningen University, 6708 PB Wageningen, The Netherlands.
Teknik Informatika, Universitas Lampung, Jln. Sumantri Brojonegoro No. 01, Lampung 35141, Indonesia.
Nucleic Acids Res. 2017 Jul 3;45(W1):W55-W63. doi: 10.1093/nar/gkx305.
Plant specialized metabolites are chemically highly diverse, play key roles in host-microbe interactions, have important nutritional value in crops and are frequently applied as medicines. It has recently become clear that plant biosynthetic pathway-encoding genes are sometimes densely clustered in specific genomic loci: biosynthetic gene clusters (BGCs). Here, we introduce plantiSMASH, a versatile online analysis platform that automates the identification of candidate plant BGCs. Moreover, it allows integration of transcriptomic data to prioritize candidate BGCs based on the coexpression patterns of predicted biosynthetic enzyme-coding genes, and facilitates comparative genomic analysis to study the evolutionary conservation of each cluster. Applied on 48 high-quality plant genomes, plantiSMASH identifies a rich diversity of candidate plant BGCs. These results will guide further experimental exploration of the nature and dynamics of gene clustering in plant metabolism. Moreover, spurred by the continuing decrease in costs of plant genome sequencing, they will allow genome mining technologies to be applied to plant natural product discovery. The plantiSMASH web server, precalculated results and source code are freely available from http://plantismash.secondarymetabolites.org.
植物次生代谢物在化学上具有高度的多样性,在宿主-微生物相互作用中发挥着关键作用,在作物中有重要的营养价值,并且经常被用作药物。最近人们清楚地认识到,植物生物合成途径编码基因有时在特定的基因组位点上密集聚集:生物合成基因簇(BGCs)。在这里,我们介绍了 plantiSMASH,这是一个通用的在线分析平台,可自动识别候选植物 BGCs。此外,它还允许整合转录组数据,根据预测生物合成酶编码基因的共表达模式对候选 BGCs 进行优先级排序,并促进比较基因组分析,以研究每个簇的进化保守性。在 48 个高质量的植物基因组上进行应用,plantiSMASH 识别出了丰富多样的候选植物 BGCs。这些结果将指导对植物代谢中基因聚类的性质和动态的进一步实验探索。此外,随着植物基因组测序成本的持续降低,它们将允许将基因组挖掘技术应用于植物天然产物的发现。plantiSMASH 网络服务器、预先计算的结果和源代码可从 http://plantismash.secondarymetabolites.org 免费获得。