Lautenschlager Ulrich, Scheunert Agnes
Evolutionary and Systematic Botany Group, Institute of Plant Sciences University of Regensburg Universitätsstraße 31 Regensburg D-93053 Germany.
Genomics Core Facility of the SNSB Menzinger Straße 67 D-80638 Munich Germany.
Appl Plant Sci. 2023 Jul 28;11(6):e11535. doi: 10.1002/aps3.11535. eCollection 2023 Nov-Dec.
Universal target enrichment probe kits are used to circumvent the individual identification of loci suitable for phylogenetic studies in a given taxon. Under certain circumstances, however, target capture can be inefficient and costly, and lower numbers of marker loci may be sufficient. We therefore propose a computational pipeline that enables the easy identification of a subset of promising candidate loci for a taxon of interest.
Target sequences used for probe design are filtered based on an assembled reference genome, resulting in presumably intron-containing single-copy loci as present in the reference taxon. The applicability of the proposed approach is demonstrated based on two probe kits (universal and family-specific) in combination with several publicly available reference genomes.
Guided by commercial probe kits, LoCoLotive enables fast and cost-efficient marker mining. Its accuracy mainly depends on the quality of the reference genome and its relatedness to the taxa under study.
通用目标富集探针试剂盒用于避免在给定分类群中逐个鉴定适合系统发育研究的基因座。然而,在某些情况下,目标捕获可能效率低下且成本高昂,较少数量的标记基因座可能就足够了。因此,我们提出了一种计算流程,能够轻松识别感兴趣分类群中有前景的候选基因座子集。
基于组装的参考基因组对用于探针设计的目标序列进行筛选,从而得到参考分类群中可能包含内含子的单拷贝基因座。结合两种探针试剂盒(通用型和家族特异性)以及几个公开可用的参考基因组,证明了所提出方法的适用性。
在商业探针试剂盒的指导下,LoCoLotive能够实现快速且经济高效的标记挖掘。其准确性主要取决于参考基因组的质量及其与所研究分类群的相关性。