Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), OT Gatersleben, Corrensstraße 3, Stadt Seeland, 06466, Germany.
Plant J. 2021 Jul;107(2):649-661. doi: 10.1111/tpj.15305. Epub 2021 Jun 23.
Breeding exploits novel allelic combinations assured by meiotic recombination. Barley (Hordeum vulgare) single pollen nucleus genotyping enables measurement of meiotic recombination rates in gametes before fertilization without the need for segregating populations. However, so far, established methods rely on whole-genome amplification of every single pollen nucleus due to their limited DNA content, thus restricting the number of analyzed samples. In this study, high-throughput measurements of meiotic recombination rates in barley pollen nuclei without whole-genome amplification were performed through a Crystal Digital PCR -based genotyping assay. Meiotic recombination rates within two centromeric and two distal chromosomal intervals were measured in hybrid plants by genotyping a total of >42 000 individual pollen nuclei (up to 4900 nuclei analyzed per plant). Determined recombination frequencies in pollen nuclei were similar to frequencies in segregating populations. We improved the efficiency of the genotyping by pretreating the pollen nuclei with a thermostable restriction enzyme. Additional opportunities for a higher sample throughput and a further increase of the genotyping efficiency are presented and discussed. Taken together, single barley pollen nucleus genotyping based on Crystal Digital PCR enables reliable, rapid and high-throughput meiotic recombination measurements within defined chromosomal intervals of intraspecific hybrid plants. The successful encapsulation of nuclei from a range of species with different nuclear and genome sizes suggests that the proposed method is broadly applicable to genotyping single nuclei.
通过减数分裂重组来利用新颖的等位基因组合进行繁殖。大麦(Hordeum vulgare)单花粉核基因型鉴定可在受精前测量配子中的减数分裂重组率,而无需分离群体。然而,到目前为止,由于其有限的 DNA 含量,已建立的方法依赖于每个单花粉核的全基因组扩增,从而限制了分析样本的数量。在这项研究中,通过基于 Crystal Digital PCR 的基因分型检测,在不进行全基因组扩增的情况下,对大麦花粉核中的减数分裂重组率进行了高通量测量。通过对总共 >42000 个单个花粉核(每个植物分析多达 4900 个核)进行基因分型,在杂种植物中测量了两个着丝粒和两个远端染色体间隔内的减数分裂重组率。花粉核中确定的重组频率与分离群体中的频率相似。通过用热稳定的限制性内切酶预处理花粉核,我们提高了基因分型的效率。提出并讨论了提高样本通量和进一步提高基因分型效率的其他机会。总之,基于 Crystal Digital PCR 的大麦单花粉核基因分型可在种内杂种植物的特定染色体间隔内进行可靠、快速和高通量的减数分裂重组测量。从具有不同核和基因组大小的一系列物种中成功包裹核表明,所提出的方法广泛适用于单核基因分型。