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首页> 外文期刊>BMC Plant Biology >Genome-wide association analysis of seedling traits in diverse Sorghum germplasm under thermal stress
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Genome-wide association analysis of seedling traits in diverse Sorghum germplasm under thermal stress

机译:热胁迫下不同高粱种质性状的全基因组关联分析

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Background Climate variability due to fluctuation in temperature is a worldwide concern that imperils crop production. The need to understand how the germplasm variation in major crops can be utilized to aid in discovering and developing breeding lines that can withstand and adapt to temperature fluctuations is more necessary than ever. Here, we analyzed the genetic variation associated with responses to thermal stresses in a sorghum association panel (SAP) representing major races and working groups to identify single nucleotide polymorphisms (SNPs) that are associated with resilience to temperature stress in a major cereal crop. Results The SAP exhibited extensive variation for seedling traits under cold and heat stress. Genome-wide analyses identified 30 SNPs that were strongly associated with traits measured at seedling stage under cold stress and tagged genes that act as regulators of anthocyanin expression and soluble carbohydrate metabolism. Meanwhile, 12 SNPs were significantly associated with seedling traits under heat stress and these SNPs tagged genes that function in sugar metabolism, and ion transport pathways. Evaluation of co-expression networks for genes near the significantly associated SNPs indicated complex gene interactions for cold and heat stresses in sorghum. We focused and validated the expression of four genes in the network of Sb06g025040 , a basic-helix-loop-helix ( bHLH ) transcription factor that was proposed to be involved in purple color pigmentation of leaf, and observed that genes in this network were upregulated during cold stress in a moderately tolerant line as compared to the more sensitive line. Conclusion This study facilitated the tagging of genome regions associated with variation in seedling traits of sorghum under cold and heat stress. These findings show the potential of genotype information for development of temperature resilient sorghum cultivars and further characterization of genes and their networks responsible for adaptation to thermal stresses. Knowledge on the gene networks from this research can be extended to the other cereal crops to better understand the genetic basis of resilience to temperature fluctuations during plant developmental stages.
机译:背景技术由于温度波动引起的气候变化是困扰作物生产的全世界关注的问题。如今比以往任何时候都更需要了解如何利用主要农作物的种质变异来帮助发现和开发能够承受和适应温度波动的育种系。在这里,我们在代表主要种族和工作组的高粱协会专家组(SAP)中分析了与热胁迫响应相关的遗传变异,以鉴定与主要谷物作物的耐温度胁迫能力相关的单核苷酸多态性(SNP)。结果SAP在冷热胁迫下表现出较大的变异性状。全基因组分析确定了30个SNP,这些SNP与幼苗在冷胁迫下测得的性状密切相关,并标记了充当花色素苷表达和可溶性碳水化合物代谢调节剂的基因。同时,在热胁迫下,有12个SNP与幼苗性状显着相关,这些SNP标记了在糖代谢和离子转运途径中起作用的基因。对与显着相关的SNPs附近的基因进行共表达网络的评估表明,高粱的冷热应激具有复杂的基因相互作用。我们聚焦并验证了四个基因在Sb06g025040网络中的表达,Sb06g025040是一个被提议与叶片紫色着色有关的基本螺旋-环-螺旋(bHLH)转录因子,并观察到该网络中的基因上调与较敏感的品系相比,在适度耐性品系中出现冷胁迫时。结论本研究促进了冷热胁迫下高粱幼苗性状变异相关基因组区域的标记。这些发现表明,基因型信息具有开发耐温高粱品种的潜力,并进一步表征了基因及其负责热胁迫适应性的网络。这项研究中有关基因网络的知识可以扩展到其他谷物作物,以更好地理解植物发育阶段对温度波动的适应力的遗传基础。

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