Biosciences Research Division, Department of Environment and Primary Industries, Knoxfield Centre, Knoxfield, VIC, 3180, Australia,
Theor Appl Genet. 2014 Apr;127(4):809-20. doi: 10.1007/s00122-013-2258-7. Epub 2013 Dec 29.
Best linear unbiased prediction (BLUP), which uses pedigree to estimate breeding values, can result in increased genetic gains for low heritability traits in autotetraploid potato. Conventional potato breeding strategies, based on outcrossing followed by phenotypic recurrent selection over a number of generations, can result in slow but steady improvements of traits with moderate to high heritability. However, faster gains, particularly for low heritability traits, could be made by selection on estimated breeding values (EBVs) calculated using more complete pedigree information in best linear unbiased prediction (BLUP) analysis. One complication in applying BLUP predictions of breeding value to potato breeding programs is the autotetraploid inheritance pattern of this species. Here we have used a large pedigree, dating back to 1908, to estimate heritability for nine key traits for potato breeding, modelling autotetraploid inheritance. We estimate the proportion of double reduction in potatoes from our data, and across traits, to be in the order of 10 %. Estimates of heritability ranged from 0.21 for breeder's visual preference, 0.58 for tuber yield, to 0.83 for plant maturity. Using the accuracies of the EBVs determined by cross generational validation, we model the genetic gain that could be achieved by selection of genotypes for breeding on BLUP EBVs and demonstrate that gains can be greater than in conventional schemes.
最佳线性无偏预测(BLUP)利用系谱估计育种值,可增加同源四倍体马铃薯低遗传力性状的遗传增益。基于杂交并通过多代表型反复选择的传统马铃薯育种策略可以对中高遗传力性状进行缓慢但稳定的改良。然而,通过使用更完整的系谱信息在最佳线性无偏预测(BLUP)分析中计算估计育种值(EBV)进行选择,可以更快地获得增益,特别是对于低遗传力性状。将 BLUP 预测的育种值应用于马铃薯育种计划的一个复杂问题是该物种的同源四倍体遗传模式。在这里,我们使用一个可以追溯到 1908 年的大型系谱来估计马铃薯育种的九个关键性状的遗传力,模拟同源四倍体遗传。我们根据数据推断出马铃薯中双还原的比例,各个性状的比例约为 10%。遗传力的估计值从种植者视觉偏好的 0.21 到块茎产量的 0.58 到植物成熟度的 0.83。使用跨代验证确定的 EBV 准确性,我们模拟了通过对 BLUP EBV 进行基因型选择进行选育可以实现的遗传增益,并证明增益可以大于传统方案。