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首页> 外文期刊>Frontiers in Plant Science >QTL Mapping by Whole Genome Re-sequencing and Analysis of Candidate Genes for Nitrogen Use Efficiency in Rice
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QTL Mapping by Whole Genome Re-sequencing and Analysis of Candidate Genes for Nitrogen Use Efficiency in Rice

机译:全基因组重测序的QTL定位及候选基因的氮素利用效率分析

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Nitrogen is a major nutritional element in rice production. However, excessive application of nitrogen fertilizer has caused severe environmental pollution. Therefore, development of rice varieties with improved nitrogen use efficiency (NUE) is urgent for sustainable agriculture. In this study, bulked segregant analysis (BSA) combined with whole genome re-sequencing (WGS) technology was applied to finely map quantitative trait loci (QTL) for NUE. A key QTL, designated as qNUE6 was identified on chromosome 6 and further validated by Insertion/Deletion (InDel) marker-based substitutional mapping in recombinants from F_(2)population (NIL-13B4 × GH998). Forty-four genes were identified in this 266.5-kb region. According to detection and annotation analysis of variation sites, 39 genes with large-effect single-nucleotide polymorphisms (SNPs) and large-effect InDels were selected as candidates and their expression levels were analyzed by qRT-PCR. Significant differences in the expression levels of LOC_Os06g15370 (peptide transporter PTR2) and LOC_Os06g15420 (asparagine synthetase) were observed between two parents (Y11 and GH998). Phylogenetic analysis in Arabidopsis thaliana identified two closely related homologs, AT1G68570 ( AtNPF3.1 ) and AT5G65010 ( ASN2 ), which share 72.3 and 87.5% amino acid similarity with LOC_Os06g15370 and LOC_Os06g15420 , respectively. Taken together, our results suggested that qNUE6 is a possible candidate gene for NUE in rice. The fine mapping and candidate gene analysis of qNUE6 provide the basis of molecular breeding for genetic improvement of rice varieties with high NUE, and lay the foundation for further cloning and functional analysis.
机译:氮是稻米生产中的主要营养元素。但是,氮肥的过量施用造成了严重的环境污染。因此,开发具有提高的氮利用效率(NUE)的水稻品种对于可持续农业来说是迫切的。在这项研究中,结合全基因组重测序(WGS)技术的大量分离子分析(BSA)被用于精确定位NUE的数量性状基因座(QTL)。在6号染色体上鉴定了一个关键的QTL,命名为qNUE6,并通过来自F_(2)种群(NIL-13B4×GH998)的重组体中基于插入/删除(InDel)标记的置换映射进一步验证。在该266.5kb区域中鉴定出44个基因。根据变异位点的检测和注释分析,选择39个具有大单核苷酸多态性(SNPs)和大InDel的基因作为候选基因,并通过qRT-PCR分析其表达水平。在两个亲本(Y11和GH998)之间观察到LOC_Os06g15370(肽转运蛋白PTR2)和LOC_Os06g15420(天冬酰胺合成酶)的表达水平有显着差异。拟南芥的系统发育分析确定了两个密切相关的同源物,AT1G68570(AtNPF3.1)和AT5G65010(ASN2),它们分别与LOC_Os06g15370和LOC_Os06g15420具有72.3和87.5%的氨基酸相似性。综上所述,我们的结果表明qNUE6是水稻中NUE的可能候选基因。 qNUE6的精细定位和候选基因分析为高NUE水稻品种的遗传改良提供了分子育种基础,为进一步克隆和功能分析奠定了基础。

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