首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Identification of Quantitative Trait Loci Associated with Nutrient Use Efficiency Traits Using SNP Markers in an Early Backcross Population of Rice (Oryza sativa L.)
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Identification of Quantitative Trait Loci Associated with Nutrient Use Efficiency Traits Using SNP Markers in an Early Backcross Population of Rice (Oryza sativa L.)

机译:利用水稻早期回交群体中的SNP标记鉴定与养分利用效率性状相关的数量性状位点

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摘要

The development of rice cultivars with nutrient use efficiency (NuUE) is highly crucial for sustaining global rice production in Asia and Africa. However, this requires a better understanding of the genetics of NuUE-related traits and their relationship to grain yield. In this study, simultaneous efforts were made to develop nutrient use efficient rice cultivars and to map quantitative trait loci (QTLs) governing NuUE-related traits in rice. A total of 230 BC1F5 introgression lines (ILs) were developed from a single early backcross population involving Weed Tolerant Rice 1, as the recipient parent, and Hao-an-nong, as the donor parent. The ILs were cultivated in field conditions with a different combination of fertilizer schedule under six nutrient conditions: minus nitrogen (–N), minus phosphorus (–P), (–NP), minus nitrogen phosphorus and potassium (–NPK), 75% of recommended nitrogen (75N), and NPK. Analysis of variance revealed that significant differences (p < 0.01) were noted among ILs and treatments for all traits. A high-density linkage map was constructed by using 704 high-quality single nucleotide polymorphism (SNP) markers. A total of 49 main-effect QTLs were identified on all chromosomes, except on chromosome 7, 11 and 12, which are showing 20.25% to 34.68% of phenotypic variation. With further analysis of these QTLs, we refined them to four top hotspot QTLs (QTL harbor-I to IV) located on chromosomes 3, 5, 9, and 11. However, we identified four novel putative QTLs for agronomic efficiency (AE) and 22 QTLs for partial factor productivity (PFP) under –P and 75N conditions. These interval regions of QTLs, several transporters and genes are located that were involved in nutrient uptake from soil to plant organs and tolerance to biotic and abiotic stresses. Further, the validation of these potential QTLs, genes may provide remarkable value for marker-aided selection and pyramiding of multiple QTLs, which would provide supporting evidence for the enhancement of grain yield and cloning of NuUE tolerance-responsive genes in rice.
机译:开发具有养分利用效率(NuUE)的水稻品种对于维持亚洲和非洲的全球水稻生产至关重要。但是,这需要更好地了解与NuUE相关的性状的遗传及其与谷物产量的关系。在这项研究中,人们同时努力发展养分利用高效的水稻品种,并绘制出调控水稻NuUE相关性状的数量性状位点(QTL)的图谱。从单个早期回交种群中开发了总共230个BC1F5渗入系(IL),其中耐杂草水稻1为接受亲本,郝安农为供体亲本。在六个养分条件下,在田间条件下以不同的施肥方式组合种植IL,负氮(–N),负磷(–P),(– NP),负氮磷和钾(–NPK)为75%建议氮(75N)和NPK。方差分析表明,IL和所有性状的治疗之间均存在显着差异(p <0.01)。通过使用704个高质量单核苷酸多态性(SNP)标记构建了一个高密度连锁图谱。除了第7、11和12号染色体外,在所有染色体上共鉴定出49个主要效应QTL,它们表现出20.25%至34.68%的表型变异。通过对这些QTL的进一步分析,我们将它们精炼为位于染色体3、5、9和11上的四个热点QTL(从ITL到IV的QTL港口)。在–P和75N条件下,有22个QTL用于部分因子生产率(PFP)。 QTL的这些间隔区域,几个转运蛋白和基因的定位涉及从土壤到植物器官的养分吸收以及对生物和非生物胁迫的耐受性。此外,这些潜在QTL,基因的验证可能为标记辅助选择和多个QTL的金字塔化提供了非凡的价值,这将为提高水稻产量和克隆NuUE耐性响应基因提供支持证据。

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