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Genotype by environment interactions affecting grain sorghum. I. Characteristics that confound interpretation of hybrid yield

机译:受环境影响的基因型影响谷物高粱。一,混淆杂交产量解释的特征

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摘要

Past sorghum hybrid trials in north-eastern Australia have detected substantial genotype by environment (G×E) interactions for yield in sampling a variable target population of environments (TPE) that is affected by spatial and seasonal differences in crop water supply. Three datasets, comprising yields of commercial and final stage experimental hybrids and covering 9–17 years (Y) and up to 30 locations (L), were analysed to quantify variance components for trial error, genotypic (σ2g), and G×E (σ2gl, σ;2gy, and σ2gly) interaction effects.nnWhereas trial means varied 2–3-fold across seasons, a greater range was estimated for variance components of trial error (range of 0.05–0.5), G (0–>0.3), and G×L interaction (0.05–>1.0). There was substantial seasonal variation in the ratio of σ2g to (σ2g +σ2gl), and in two datasets, 73% of the seasonal σ2gl was due to poor genetic correlations among locations. This implies that any given set of hybrids in a random set of locations would be ranked differently from season to season. Analysis of locations over years detected 90% of the total G×E interaction as G×L×Y, rather than G×L or G×Y, although this was reduced by accounting for genotype maturity. To achieve repeatabilities of >80%, trials would need to be conducted over at least 5 years and 20 locations per year.nnThe variable and unpredictable nature of much of the G×E interaction in the region implies that broad adaptation to different water regimes is required, unless prior knowledge of the seasonal weather can be used to choose ‘narrowly adapted’ cultivars. With current approaches, a large sample of environments is needed to identify such hybrids, and testing across locations and years is equally important. Alternative breeding strategies based on classifying environment types are discussed.
机译:在澳大利亚东北部过去的高粱杂交试验中,在对受作物供水空间和季节差异影响的可变目标环境种群(TPE)进行采样时,发现了由环境(G×E)相互作用产生的大量基因型,从而影响了产量。分析了三个数据集,包括商业和最后阶段的实验杂交种的产量,涵盖了9-17年(Y)和最多30个位置(L),以量化试验误差,基因型(σ2g)和G×E( σ2gl,σ; 2gy和σ2gly)相互作用的影响。nn试验平均值随季节变化2-3倍,而试验误差的方差分量估计较大范围(范围0.05-0.5),G(0-> 0.3) ,以及G×L交互作用(0.05–> 1.0)。 σ2g与(σ2g+σ2gl)的比率存在很大的季节性变化,在两个数据集中,季节性σ2gl的73%是由于位置之间的遗传相关性较差。这意味着在随机位置上任何给定的杂种集在每个季节的排名将有所不同。多年来的位置分析检测到90%的G×E交互作用为G×L×Y,而不是G×L或G×Y,尽管考虑到基因型成熟度会降低交互作用。为了实现> 80%的可重复性,每年至少需要在5年内和20个地点进行试验。nn该地区大部分G×E相互作用的可变性和不可预测性意味着对不同水情的广泛适应是是必需的,除非可以使用季节性天气的先验知识来选择“适应性差”的品种。使用当前的方法,需要大量的环境样本来识别这种混合动力,并且跨位置和多年的测试同样重要。讨论了基于分类环境类型的替代育种策略。

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  • 来源
    《Crop and Pasture Science》 |2000年第2期|p.197-208|共12页
  • 作者单位

    A CSIRO Tropical Agriculture, Long Pocket Laboratories, 120 Meiers Rd, Indooroopilly, Qld 4068, Australia.B School of Land and Food, The University of Queensland, Brisbane, Qld 4072, Australia.C Queensland Department of Primary Industries, PO Box 102, Toowoomba, Qld, 4350, Australia.D Queensland Department of Primary Industries, Hermitage Research Station, Warwick, Qld 4370, Australia.E Corresponding author;

    email: scott.chapman@tag.csiro.au;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    drought, Sorghum bicolor, cultivar, tropical, breeding.;

    机译:干旱;双色高粱;品种;热带;繁殖。;

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