Institute for Breeding Research on Horticultural Crops, Institute of Federal Research Centre for Cultivated Plants, Julius Kuehn-Institute, Quedlinburg, Germany.
Institute for Biosafety in Plant Biotechnology, Institute of Federal Research Centre for Cultivated Plants, Julius Kuehn-Institute, Quedlinburg, Germany.
PLoS One. 2020 Dec 29;15(12):e0244666. doi: 10.1371/journal.pone.0244666. eCollection 2020.
Caraway (Carum carvi) is a widespread and frequently used spice and medicinal plant with a long history of cultivation. However, due to ongoing climatic changes, the cultivation is becoming increasingly risky. To secure caraway cultivation in future, timely breeding efforts to develop adapted material are necessary. Analysis of genetic diversity can accompany this process, for instance, by revealing untapped gene pools. Here, we analyzed 137 accessions using genotyping by sequencing (GBS). Hence, we can report a broad overview of population structure and genetic diversity of caraway. Population structure was determined using a principal coordinate analysis, a Bayesian clustering analysis, phylogenetic trees and a neighbor network based on 13,155 SNPs. Genotypic data indicate a clear separation of accessions into two subpopulations, which correlates with the flowering type (annual vs. biennial). Four winter-annual accessions were closer related to biennial accessions. In an analysis of molecular variance, genetic variation between the two subpopulations was 7.84%. In addition, we estimated the genome size for 35 accessions by flow cytometry. An average genome size of 4.282 pg/2C (± 0.0096 S.E.) was estimated. Therefore, we suggest a significantly smaller genome size than stated in literature.
芫荽(芫荽)是一种广泛应用的香料和药用植物,具有悠久的栽培历史。然而,由于持续的气候变化,栽培的风险越来越大。为了确保芫荽在未来的种植,及时进行培育工作以开发适应的材料是必要的。遗传多样性的分析可以伴随这个过程,例如,揭示未开发的基因库。在这里,我们使用测序(GBS)的基因分型对 137 个样本进行了分析。因此,我们可以报告芫荽种群结构和遗传多样性的广泛概述。使用主坐标分析、贝叶斯聚类分析、系统发育树和基于 13155 个 SNP 的邻接网络来确定种群结构。基因型数据表明,样本明显分为两个亚群,这与开花类型(一年生与二年生)相关。四个冬季一年生样本与二年生样本更接近。在两个亚群之间的分子方差分析中,遗传变异为 7.84%。此外,我们通过流式细胞术对 35 个样本进行了基因组大小估计。估计的平均基因组大小为 4.282pg/2C(±0.0096 SE)。因此,我们建议的基因组大小明显小于文献中报道的大小。