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基于高通量测序的两种大豆基因型低磷响应 microRNA 的全基因组鉴定。

Genome-wide identification of low phosphorus responsive microRNAs in two soybean genotypes by high-throughput sequencing.

机构信息

Collaborative Innovation Center of Henan Grain Crops, College of Agronomy, Henan Agricultural University, Zhengzhou, 450002, China.

Henan Institute of Science and Technology, Henan Collaborative Innovation Center of Modern Biological Breeding, Xinxiang, 453003, China.

出版信息

Funct Integr Genomics. 2020 Nov;20(6):825-838. doi: 10.1007/s10142-020-00754-9. Epub 2020 Oct 2.

Abstract

MicroRNAs (miRNAs) have been reported to be correlated with various stress responses in soybean, but only a few miRNAs have been demonstrated to respond to low phosphorus (LP) stress. To unravel the response mechanisms of miRNAs to low-P stress, the roots of two representative soybean genotypes with different P efficiency, Nannong94-156 (a LP-tolerant genotype) and Bogao (a LP-sensitive genotype), were used for the construction of RNA sequencing (RNA-seq) libraries under low/normal-P treatment by high-throughput sequencing. In total, 603 existing miRNAs and 1699 novel miRNAs belonging to 248 and 1582 families in all samples were identified, respectively. Among these miRNAs, 777 miRNAs were differentially expressed (DE) across different P levels and genotypes. Furthermore, putative targets of DE miRNAs were predicted, and these miRNAs mainly targeted ERF (ethylene responsive factor), auxin response factors (ARF), zinc finger protein, MYB, and NAC domain transcription factors. Gene ontology (GO) analysis showed that targets of DE miRNAs were significantly enriched in binding, metabolic processes, biological regulation, response to stress, and phosphorus metabolic processes. In addition, the expression profiles of chosen P-responsive miRNAs and target genes were validated by quantitative real-time PCR (qRT-PCR). Our study focused on genome-wide miRNA identification in two representative soybean genotypes under low-P stress. Overall, the DE miRNAs across different P levels and genotypes and their putative target genes will provide useful information for further study of miRNAs mediating low-P response and facilitate improvements in soybean breeding.

摘要

microRNAs (miRNAs) 已被报道与大豆的各种应激反应有关,但只有少数 miRNAs 被证明对低磷 (LP) 胁迫有响应。为了揭示 miRNAs 对低磷胁迫响应的机制,利用两个具有不同磷效率的代表性大豆基因型(耐低磷基因型 Nannong94-156 和低磷敏感基因型 Bogao)的根,通过高通量测序构建了低/正常磷处理下的 RNA 测序 (RNA-seq) 文库。总共鉴定了所有样品中 248 个家族的 603 个现有 miRNA 和 1582 个家族的 1699 个新 miRNA。在这些 miRNAs 中,777 个 miRNAs 在不同磷水平和基因型之间差异表达 (DE)。此外,预测了 DE miRNAs 的潜在靶标,这些 miRNAs 主要靶向 ERF(乙烯响应因子)、生长素响应因子 (ARF)、锌指蛋白、MYB 和 NAC 结构域转录因子。基因本体 (GO) 分析表明,DE miRNAs 靶标的显著富集在结合、代谢过程、生物调节、应激响应和磷代谢过程。此外,通过定量实时 PCR (qRT-PCR) 验证了所选磷响应 miRNAs 和靶基因的表达谱。我们的研究重点是在低磷胁迫下两个代表性大豆基因型的全基因组 miRNA 鉴定。总的来说,不同磷水平和基因型之间的 DE miRNAs 及其潜在靶基因将为进一步研究 miRNA 介导的低磷响应提供有用信息,并有助于大豆的改良。

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