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Photoperiod and vernalization gene effects in southern Australian wheat

机译:澳大利亚南部小麦的光周期和春化基因效应

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摘要

Photoperiod and vernalization genes are important for the optimal adaptation of wheat to different environments. Diagnostic markers are now available for Vrn-A1, Vrn-B1, Vrn-D1 and Ppd-D1, with all four genes variable in southern Australian wheat-breeding programs. To estimate the effects of these genes on days to heading we used data from 128 field experiments spanning 24 years.nnFrom an analysis of 1085 homozygous cultivars and breeding lines, allelic variation for these four genes accounted for ~45% of the genotypic variance for days to heading. In the presence of the photoperiod-insensitive allele of Ppd-D1, differences between the winter genotype and genotypes with a spring allele at one of the genes ranged from 3.5 days for Vrn-B1 to 4.9 days for Vrn-D1. Smaller differences occurred between genotypes with a spring allele at one of the Vrn genes and those with spring alleles at two of the three genes. The shortest time to heading occurred for genotypes with spring alleles at both Vrn-A1 and Vrn-D1. Differences between the photoperiod-sensitive and insensitive alleles of Ppd-D1 depended on the genotype of the vernalization genes, being greatest when three spring alleles were present (11.8 days) and least when the only spring allele was at Vrn-B1 (3.7 days). Because of these epistatic interactions, for the practical purposes of using these genes for cross prediction and marker-assisted selection we concluded that using combinations of alleles of genes simultaneously would be preferable to summing effects of individual genes.
机译:光周期和春化基因对于小麦适应不同环境的最佳适应性很重要。现在可以为Vrn-A1,Vrn-B1,Vrn-D1和Ppd-D1提供诊断标记,而这四个基因在澳大利亚南部小麦育种计划中都是可变的。为了估计这些基因在抽穗前几天的影响,我们使用了24年中128个田间试验的数据。nn从对1085个纯合品种和育种系的分析来看,这四个基因的等位基因变异约占基因型天数变异的45%。前往标题。在Ppd-D1对光周期不敏感的等位基因存在下,冬季基因型和其中一个基因的春季等位基因的基因型之间的差异范围从Vrn-B1的3.5天到Vrn-D1的4.9天。在具有Vrn基因之一的春季等位基因的基因型与在三个基因中的两个基因具有春季等位基因的基因型之间,差异较小。在Vrn-A1和Vrn-D1处具有春季等位基因的基因型发生航迹的时间最短。 Ppd-D1的光周期敏感和不敏感等位基因之间的差异取决于春化基因的基因型,当存在三个春季等位基因(11.8天)时最大,而当唯一的春季等位基因在Vrn-B1时(3.7天)最大。 。由于这些上位性的相互作用,出于使用这些基因进行交叉预测和标记辅助选择的实际目的,我们得出结论,同时使用基因等位基因的组合比汇总单个基因的效果更可取。

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  • 来源
    《Crop and Pasture Science》 |2010年第9期|p.721-730|共10页
  • 作者单位

    A Molecular Plant Breeding CRC, and School of Agriculture, Food and Wine, Waite Campus, University of Adelaide, PMB1, Glen Osmond, SA 5064, Australia. B Molecular Plant Breeding CRC, and Department of Primary Industries, PB260, Horsham, Vic. 3401, Australia. C Australian Grain Technologies, Roseworthy Campus, University of Adelaide, Roseworthy, SA 5371, Australia. D Department of Primary Industries, Mallee Research Station, Walpeup, Vic. 3507, Australia. E Present address: Dodgshun Medlin, Ouyen Shire Office, Oke Street, Ouyen, Vic. 3490, Australia. F Australian Grain Technologies, PB260, Horsham, Vic. 3401, Australia. G Nuseed Pty Ltd, PB377, Horsham, Vic. 3401, Australia. H Industry & Investment NSW, Wagga Wagga Agricultural Institute, Wagga Wagga, NSW 2650, Australia. I Corresponding author. Email: Howard.Eagles@adelaide.edu.au;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    adaptation, association genetics, breeding, epistasis, heading, relationship matrix;

    机译:适应;关联遗传学;育种;上位性;标题;关系矩阵;

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