NIAB, Huntingdon Road, Cambridge, CB1 0LE, UK.
Theor Appl Genet. 2013 Jul;126(7):1793-808. doi: 10.1007/s00122-013-2093-x. Epub 2013 Apr 5.
Hexaploid bread wheat evolved from a rare hybridisation, which resulted in a loss of genetic diversity in the wheat D-genome with respect to the ancestral donor, Aegilops tauschii. Novel genetic variation can be introduced into modern wheat by recreating the above hybridisation; however, the information associated with the Ae. tauschii accessions in germplasm collections is limited, making rational selection of accessions into a re-synthesis programme difficult. We describe methodologies to identify novel diversity from Ae. tauschii accessions that combines Bayesian analysis of genotypic data, sub-species diversity and geographic information that summarises variation in climate and habitat at the collection point for each accession. Comparisons were made between diversity discovered amongst a panel of Ae. tauschii accessions, bread wheat varieties and lines from the CIMMYT synthetic hexaploid wheat programme. The selection of Ae. tauschii accessions based on differing approaches had significant effect on diversity within each set. Our results suggest that a strategy that combines several criteria will be most effective in maximising the sampled variation across multiple parameters. The analysis of multiple layers of variation in ex situ Ae. tauschii collections allows for an informed and rational approach to the inclusion of wild relatives into crop breeding programmes.
六倍体普通小麦是由罕见的杂交事件进化而来的,这导致小麦 D 基因组相对于其祖先供体节节麦失去了遗传多样性。通过重现上述杂交事件,可以将新的遗传变异引入现代小麦中;然而,种质资源中关于节节麦系的信息是有限的,这使得在重新合成计划中合理选择系变得困难。我们描述了一种从节节麦系中识别新的多样性的方法,该方法结合了基因型数据的贝叶斯分析、亚种多样性以及每个系收集点的气候和生境变化的地理信息。我们比较了一组节节麦系、面包小麦品种和 CIMMYT 合成六倍体小麦计划中的品系之间发现的多样性。基于不同方法选择的节节麦系对每个集合内的多样性有显著影响。我们的结果表明,结合多种标准的策略将最有效地最大化跨多个参数的抽样变异。对离体节节麦系收集物中多个层次变异的分析,可以为将野生亲缘种纳入作物育种计划提供明智和合理的方法。