School of Agriculture, Food and Wine, University of Adelaide, Plant Genomics Centre, Hartley Grove, Urrbrae, SA 5064, Australia; and Present address: The Robinson Research Institute, Adelaide Medical School, University of Adelaide, Adelaide Health and Medical Science Building, North Terrace, Adelaide, SA 5000, Australia; and Corresponding author. Email:
School of Agriculture, Food and Wine, University of Adelaide, Plant Genomics Centre, Hartley Grove, Urrbrae, SA 5064, Australia.
Funct Plant Biol. 2021 Mar;48(4):434-447. doi: 10.1071/FP20181.
Hybrid breeding in wheat has the potential to boost yields. An efficient hybrid seed production system requires elite pollinators; however, such germplasm is limited among modern cultivars. Piko, a winter wheat (Triticum aestivum L.) cultivar, has been identified as a superior pollinator and has been used in Europe. Piko has favourable pollinator traits for anther extrusion, anther length, pollen mass and hybrid seed set. However, the genetic factors responsible for Piko's favourable traits are largely unknown. Here, we report on the genetic analysis of a Piko-derived F2 mapping population. We confirmed that Piko's Rht-D1a allele for tall stature is associated with large anthers and high anther extrusion. However, Rht-D1 was not found to be associated with anther filament length, confirmed by near isogenic lines. Piko's photoperiod sensitive Ppd-B1b allele shows an association with increased spike length, more spikelets and spike architecture traits, while the insensitive Ppd-B1a allele is linked with high anther extrusion and larger anthers. We identified an anther extrusion quantitative trait locus (QTL) on chromosome 6A that showed significantly biased transmission of the favourable Piko allele amongst F2 progenies. The Piko allele is completely absent in the distal 6AS region and the central 6A region revealed a significantly lower ratio (<8%) of F2 with homozygous Piko alleles. Our study provided further evidence for the effects of Rht-D1 and Ppd-B1 loci on multiple pollinator traits and a novel anther extrusion QTL that exhibits segregation distortion.
小麦杂种优势育种具有提高产量的潜力。高效的杂种种子生产系统需要优秀的授粉者;然而,现代品种中的此类种质资源有限。Piko 是一种冬小麦(Triticum aestivum L.)品种,已被鉴定为优良的授粉者,并在欧洲得到应用。Piko 具有优良的花粉体挤出、花粉体长度、花粉质量和杂种种子结实率的授粉者特性。然而,导致 Piko 有利性状的遗传因素在很大程度上尚不清楚。在这里,我们报告了源自 Piko 的 F2 作图群体的遗传分析。我们证实,Piko 长穗高体的 Rht-D1a 等位基因与大花粉体和高花粉体挤出有关。然而,通过近等基因系证实,Rht-D1 与花粉体花丝长度无关。Piko 的光周期敏感 Ppd-B1b 等位基因与增加的穗长、更多的小穗和穗结构特性有关,而不敏感的 Ppd-B1a 等位基因与高花粉体挤出和更大的花粉体有关。我们在 6A 染色体上鉴定到一个花粉体挤出数量性状位点(QTL),该 QTL 在 F2 后代中对有利的 Piko 等位基因的传递表现出显著的偏向性。Piko 等位基因在远 6AS 区域完全缺失,而中央 6A 区域的 Piko 等位基因的纯合子比例显著降低(<8%)。我们的研究进一步证明了 Rht-D1 和 Ppd-B1 基因座对多个花粉体性状的影响,以及一个表现出分离失真的新花粉体挤出 QTL。