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基因型、环境以及基因与环境的相互作用影响大麦(Hordeum vulgare L.)中(1,3;1,4)-β-D-葡聚糖的精细结构。

Genotype, environment and G × E interaction influence (1,3;1,4)-β-d-glucan fine structure in barley (Hordeum vulgare L.).

作者信息

Cory Aron T, Gangola Manu P, Anyia Anthony, Båga Monica, Chibbar Ravindra N

机构信息

Department of Plant Sciences, College of Agriculture and Bioresources, University of Saskatchewan, Saskatoon, SK S7N 5A8, Canada.

Alberta Innovates - Technology Futures, Vegreville, Alberta, Canada.

出版信息

J Sci Food Agric. 2017 Feb;97(3):743-752. doi: 10.1002/jsfa.7789. Epub 2016 Jun 8.

Abstract

BACKGROUND

The structure of β-glucan influences its use in cereal-based foods and feed. The objective of this study was to determine the effect of environment (E) and genotype (G) on β-glucan fine structure and its genetic control in two-row spring barley with normal starch characteristics.

RESULTS

A population of 89 recombinant inbred lines, derived from the cross of two-row spring barley genotypes Merit × H93174006 (H92076F1 × TR238), was characterized for concentration and structure of grain β-glucan in two environments. Results showed that concentrations of β-glucan, DP3, DP4 and DP3 + DP4 were positively correlated with each other, suggesting no preference for DP3 or DP4 subunit production in high- or low-β-glucan lines. The concentrations of β-glucan, DP3, DP4 and DP3:DP4 ratios were significantly influenced by genotype and environment. However, only DP3:DP4 ratio showed a significant effect of G × E interaction. Association mapping of candidate markers in 119 barley genotypes showed that marker CSLF6_4105 was associated with β-glucan concentration, whereas Bmac504 and Bmac211 were associated with DP3:DP4 ratio. Bmac273e was associated with both β-glucan concentration and DP3:DP4 ratio.

CONCLUSION

The grain β-glucan concentration and DP3:DP4 ratio are strongly affected by genotype and environment. Single-marker analyses suggested that the genetic control of β-glucan concentration and DP3:DP4 ratio was linked to separate chromosomal regions on barley genome. © 2016 Society of Chemical Industry.

摘要

背景

β-葡聚糖的结构影响其在谷物类食品和饲料中的应用。本研究的目的是确定环境(E)和基因型(G)对具有正常淀粉特性的二棱春大麦中β-葡聚糖精细结构及其遗传控制的影响。

结果

由二棱春大麦基因型Merit×H93174006(H92076F1×TR238)杂交产生的89个重组自交系群体,在两种环境下对籽粒β-葡聚糖的浓度和结构进行了表征。结果表明,β-葡聚糖、DP3、DP4和DP3 + DP4的浓度彼此呈正相关,这表明在高β-葡聚糖或低β-葡聚糖品系中,对DP3或DP4亚基的产生没有偏好。β-葡聚糖、DP3、DP4的浓度和DP3:DP4比值受基因型和环境的显著影响。然而,只有DP3:DP4比值显示出G×E互作的显著效应。对119个大麦基因型中候选标记的关联分析表明,标记CSLF6_4105与β-葡聚糖浓度相关,而Bmac504和Bmac211与DP3:DP4比值相关。Bmac273e与β-葡聚糖浓度和DP3:DP4比值均相关。

结论

籽粒β-葡聚糖浓度和DP3:DP4比值受基因型和环境的强烈影响。单标记分析表明,β-葡聚糖浓度和DP3:DP4比值的遗传控制与大麦基因组上不同的染色体区域相关。©2016化学工业协会。

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