Department of Plant Biotechnology and Bioinformatics, Ghent University, (Technologiepark-Zwijnaarde 71) 9052, Ghent, Belgium.
VIB Center for Plant Systems Biology, (Technologiepark-Zwijnaarde 71), 9052, Ghent, Belgium.
Nucleic Acids Res. 2023 Apr 24;51(7):e37. doi: 10.1093/nar/gkad036.
Multiplex amplicon sequencing is a versatile method to identify genetic variation in natural or mutagenized populations through eco-tilling or multiplex CRISPR screens. Such genotyping screens require reliable and specific primer designs, combined with simultaneous gRNA design for CRISPR screens. Unfortunately, current tools are unable to combine multiplex gRNA and primer design in a high-throughput and easy-to-use manner with high design flexibility. Here, we report the development of a bioinformatics tool called SMAP design to overcome these limitations. We tested SMAP design on several plant and non-plant genomes and obtained designs for more than 80-90% of the target genes, depending on the genome and gene family. We validated the designs with Illumina multiplex amplicon sequencing and Sanger sequencing in Arabidopsis, soybean, and maize. We also used SMAP design to perform eco-tilling by tilling PCR amplicons across nine candidate genes putatively associated with haploid induction in Cichorium intybus. We screened 60 accessions of chicory and witloof and identified thirteen knockout haplotypes and their carriers. SMAP design is an easy-to-use command-line tool that generates highly specific gRNA and/or primer designs for any number of loci for CRISPR or natural variation screens and is compatible with other SMAP modules for seamless downstream analysis.
多重扩增子测序是一种通用的方法,可以通过生态位试探或多重 CRISPR 筛选来鉴定自然或诱变群体中的遗传变异。这种基因分型筛选需要可靠和特异性的引物设计,结合 CRISPR 筛选的同时 gRNA 设计。不幸的是,目前的工具无法以高通量、易于使用的方式,结合高设计灵活性,同时进行多重 gRNA 和引物设计。在这里,我们报告了一种名为 SMAP design 的生物信息学工具的开发,以克服这些限制。我们在几个植物和非植物基因组上测试了 SMAP design,并获得了 80-90%以上目标基因的设计,具体取决于基因组和基因家族。我们在拟南芥、大豆和玉米中使用 Illumina 多重扩增子测序和 Sanger 测序对设计进行了验证。我们还使用 SMAP design 通过在九个候选基因上进行 PCR 扩增的生态位试探来进行生态位试探,这些候选基因被认为与菊苣中单倍体诱导有关。我们筛选了 60 个菊苣和菊苣亚种的品系,并鉴定了 13 个缺失突变体及其携带者。SMAP design 是一种易于使用的命令行工具,可针对任何数量的 CRISPR 或自然变异筛选的基因座生成高度特异性的 gRNA 和/或引物设计,并且与其他 SMAP 模块兼容,可实现无缝的下游分析。