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普通菜豆(Phaseolus vulgaris L.)种子铁和锌浓度和含量的元数量性状位点分析。

Meta-QTL analysis of seed iron and zinc concentration and content in common bean (Phaseolus vulgaris L.).

机构信息

Department of Plant Soil and Microbial Sciences, Michigan State University, East Lansing, MI, USA.

Department of Agricultural and Environmental Sciences, Tennessee State University, Nashville, TN, USA.

出版信息

Theor Appl Genet. 2018 Aug;131(8):1645-1658. doi: 10.1007/s00122-018-3104-8. Epub 2018 May 11.

Abstract

Twelve meta-QTL for seed Fe and Zn concentration and/or content were identified from 87 QTL originating from seven population grown in sixteen field trials. These meta-QTL include 2 specific to iron, 2 specific to zinc and 8 that co-localize for iron and zinc concentrations and/or content. Common bean (Phaseolus vulgaris L.) is the most important legume for human consumption worldwide and it is an important source of microelements, especially iron and zinc. Bean biofortification breeding programs develop new varieties with high levels of Fe and Zn targeted for countries with human micronutrient deficiencies. Biofortification efforts thus far have relied on phenotypic selection of raw seed mineral concentrations in advanced generations. While numerous quantitative trait loci (QTL) studies have been conducted to identify genomic regions associated with increased Fe and Zn concentration in seeds, these results have yet to be employed for marker-assisted breeding. The objective of this study was to conduct a meta-analysis from seven QTL studies in Andean and Middle American intra- and inter-gene pool populations to identify the regions in the genome that control the Fe and Zn levels in seeds. Two meta-QTL specific to Fe and two meta-QTL specific to Zn were identified. Additionally, eight Meta QTL that co-localized for Fe and Zn concentration and/or content were identified across seven chromosomes. The Fe and Zn shared meta-QTL could be useful candidates for marker-assisted breeding to simultaneously increase seed Fe and Zn. The physical positions for 12 individual meta-QTL were identified and within five of the meta-QTL, candidate genes were identified from six gene families that have been associated with transport of iron and zinc in plants.

摘要

从在 16 个田间试验中生长的七个群体中产生的 87 个 QTL 中,鉴定出了 12 个种子 Fe 和 Zn 浓度和/或含量的元 QTL。这些元 QTL 包括 2 个特定于铁,2 个特定于锌和 8 个共同定位铁和锌浓度和/或含量。普通菜豆(Phaseolus vulgaris L.)是全世界最重要的人类消费豆类,也是微量元素的重要来源,特别是铁和锌。菜豆生物强化育种计划开发针对人类微量营养素缺乏国家的高 Fe 和 Zn 水平的新品种。迄今为止,生物强化工作依赖于在高级世代中对原始种子矿物质浓度进行表型选择。虽然已经进行了许多数量性状位点(QTL)研究,以鉴定与种子中 Fe 和 Zn 浓度增加相关的基因组区域,但这些结果尚未用于标记辅助育种。本研究的目的是对安第斯和中美洲内部和基因库群体中的七个 QTL 研究进行元分析,以鉴定控制种子中 Fe 和 Zn 水平的基因组区域。鉴定出了 2 个特定于 Fe 的元 QTL 和 2 个特定于 Zn 的元 QTL。此外,还在七个染色体上鉴定出了 8 个共同定位 Fe 和 Zn 浓度和/或含量的 Meta QTL。Fe 和 Zn 共享的元 QTL 可作为标记辅助育种的有用候选者,以同时提高种子 Fe 和 Zn。鉴定了 12 个个体元 QTL 的物理位置,并且在五个元 QTL 中,从与植物中铁和锌转运相关的六个基因家族中鉴定出了候选基因。

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