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首页> 外文期刊>PLoS One >Additive and heterozygous (dis)advantage GWAS models reveal candidate genes involved in the genotypic variation of maize hybrids to Azospirillum brasilense
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Additive and heterozygous (dis)advantage GWAS models reveal candidate genes involved in the genotypic variation of maize hybrids to Azospirillum brasilense

机译:添加剂和杂合(DIS)优势GWAS模型揭示候选基因涉及玉米杂交种的基因型变异到Azospirillum BrasiLense

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Maize genotypes can show different responsiveness to inoculation with Azospirillum brasilense and an intriguing issue is which genes of the plant are involved in the recognition and growth promotion by these Plant Growth-Promoting Bacteria (PGPB). We conducted Genome-Wide Association Studies (GWAS) using additive and heterozygous (dis)advantage models to find candidate genes for root and shoot traits under nitrogen (N) stress and N stress plus A . brasilense . A total of 52,215 Single Nucleotide Polymorphism (SNP) markers were used for GWAS analyses. For the six root traits with significant inoculation effect, the GWAS analyses revealed 25 significant SNPs for the N stress plus A . brasilense treatment, in which only two were overlapped with the 22 found for N stress only. Most were found by the heterozygous (dis)advantage model and were more related to exclusive gene ontology terms. Interestingly, the candidate genes around the significant SNPs found for the maize– A . brasilense association were involved in different functions previously described for PGPB in plants (e.g. signaling pathways of the plant's defense system and phytohormone biosynthesis). Our findings are a benchmark in the understanding of the genetic variation among maize hybrids for the association with A . brasilense and reveal the potential for further enhancement of maize through this association.
机译:玉米基因型可以显示出与氮孢菌的接种的不同反应性,并且有趣的问题是该植物的植物基因参与这些植物生长促进细菌(PGPB)的识别和生长促进。我们使用添加剂和杂合(DIS)优势模型进行全基因组关联研究(GWAs),用于在氮气(n)应激和n应激加上的根和枝条的候选基因。巴西州。总共52,215个单核苷酸多态性(SNP)标记用于GWAS分析。对于具有显着接种效果的六个根特征,GWAS分析显示了N压力加a的25个重要的SNP。糖浓治疗,其中只有两个只能用22个强调重叠。大多数由杂合(DIS)的优势模型发现,与独家基因本体论术语更相关。有趣的是,候选基因周围发现了玉米的重要SNP。在植物中对PGPB进行了另外的功能,参与了糖塞协会的不同功能(例如,植物防御系统和植物激素生物合成的信号传导途径)。我们的研究结果是了解与A相关联的玉米杂交种遗传变异的基准。 Brasilense并揭示了通过这种协会进一步提高玉米的潜力。

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