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首页> 外文期刊>Frontiers in Plant Science >Genome-Wide Association Study Identifies Loci for Salt Tolerance during Germination in Autotetraploid Alfalfa ( Medicago sativa L.) Using Genotyping-by-Sequencing
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Genome-Wide Association Study Identifies Loci for Salt Tolerance during Germination in Autotetraploid Alfalfa ( Medicago sativa L.) Using Genotyping-by-Sequencing

机译:全基因组关联研究使用测序基因分型方法鉴定了同源四倍体苜蓿( Medicago sativa L.)发芽过程中耐盐性的位点

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摘要

Salinity is one of major abiotic stresses limiting alfalfa ( Medicago sativa L.) production in the arid and semi-arid regions in US and other counties. In this study, we used a diverse panel of alfalfa accessions previously described by Zhang et al. ( 2015 ) to identify molecular markers associated with salt tolerance during germination using genome-wide association study (GWAS) and genotyping-by-sequencing (GBS). Phenotyping was done by germinating alfalfa seeds under different levels of salt stress. Phenotypic data of adjusted germination rates and SNP markers generated by GBS were used for marker-trait association. Thirty six markers were significantly associated with salt tolerance in at least one level of salt treatments. Alignment of sequence tags to the Medicago truncatula genome revealed genetic locations of the markers on all chromosomes except chromosome 3. Most significant markers were found on chromosomes 1, 2, and 4. BLAST search using the flanking sequences of significant markers identified 14 putative candidate genes linked to 23 significant markers. Most of them were repeatedly identified in two or three salt treatments. Several loci identified in the present study had similar genetic locations to the reported QTL associated with salt tolerance in M. truncatula . A locus identified on chromosome 6 by this study overlapped with that by drought in our previous study. To our knowledge, this is the first report on mapping loci associated with salt tolerance during germination in autotetraploid alfalfa. Further investigation on these loci and their linked genes would provide insight into understanding molecular mechanisms by which salt and drought stresses affect alfalfa growth. Functional markers closely linked to the resistance loci would be useful for MAS to improve alfalfa cultivars with enhanced resistance to drought and salt stresses.
机译:盐度是限制美国和其他县市的干旱和半干旱地区苜蓿(苜蓿苜蓿(Medicago sativa L.))产量的主要非生物胁迫之一。在这项研究中,我们使用了先前由Zhang等人描述的各种苜蓿种。 (2015)使用全基因组关联研究(GWAS)和测序基因分型(GBS)来鉴定与发芽过程中耐盐性相关的分子标记。通过在不同水平的盐胁迫下使苜蓿种子发芽来进行表型分型。通过GBS产生的调节的发芽率和SNP标记的表型数据用于标记-性状关联。在至少一种盐处理水平中,三十六种标记物与耐盐性显着相关。序列标签与苜蓿苜蓿基因组的比对揭示了标记在除3号染色体外的所有染色体上的遗传位置。在1、2和4号染色体上发现了最重要的标记。使用重要标记的侧翼序列进行BLAST搜索,鉴定出14个推定的候选基因。与23个重要标记相关。他们中的大多数人在两次或三次盐处理中被反复鉴定。在本研究中确定的几个基因位点具有与报道的M. truncatula耐盐性相关的QTL相似的遗传位置。该研究在6号染色体上鉴定出的基因座与干旱在我们先前的研究中重叠。就我们所知,这是首次报道了与四倍体苜蓿发芽过程中耐盐性相关的基因座的图谱。对这些基因座及其相关基因的进一步研究将为深入了解盐和干旱胁迫影响苜蓿生长的分子机制提供深刻见解。与抗性基因座紧密联系的功能性标记将对MAS有用,以提高苜蓿品种对干旱和盐胁迫的抵抗力。

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