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杨树磷饥饿响应microRNAs 的全转录组鉴定与特征分析。

Transcriptome-wide identification and characterization of microRNAs responsive to phosphate starvation in Populus tomentosa.

机构信息

Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, National Engineering Laboratory for Tree Breeding, College of Biological Sciences and Biotechnology, Beijing Forestry University, Beijing, 100083, People's Republic of China.

College of Life Sciences, Peking University, Beijing, 100871, People's Republic of China.

出版信息

Funct Integr Genomics. 2019 Nov;19(6):953-972. doi: 10.1007/s10142-019-00692-1. Epub 2019 Jun 8.

Abstract

miRNAs (microRNAs) are ~ 21-nt non-coding small RNAs (sRNAs) that play crucial regulatory roles in plant biotic and abiotic stress responses. Phosphorus (Pi) deficiency constrains plant growth and reduces yields worldwide. To identify tree miRNAs and evaluate their functions in the response to low Pi, we identified 261 known and 31 candidate novel miRNA families from three sRNA libraries constructed from Populus tomentosa subjected to sufficient or Pi deficiency condition or to restoration of a sufficient Pi level after Pi deficiency. Pi deficiency resulted in significant changes in the abundance of TPM (transcript per million) of 65 known and 3 novel miRNAs. Interestingly, four miRNAs responsive to low N-miR167, miR394, miR171, and miR857-were found to be involved in the response to low Pi. Thirty-five known and one novel miRNAs responded dynamically to Pi fluctuations, suggesting their involvement in the response to Pi deficiency. miRNA clusters comprising 36 miRNAs were identified in 10 chromosomes. Intriguingly, nine pairs of sense and antisense miRNAs transcribed from the same loci were detected in P. tomentosa, which is the first such report in woody plants. Moreover, target genes of the known miRNAs and novel miRNA candidates with significantly changed abundance were predicted, and their functions were annotated. Degradome sequencing supported the identified targets of miRNAs in P. tomentosa. These findings will enhance our understanding of universal and specific molecular regulatory mechanisms of trees under nutrition stress and may facilitate improvement of the Pi utilization efficiency of woody plants.

摘要

miRNAs(microRNAs)是约 21 个核苷酸的非编码小 RNA(sRNAs),在植物生物和非生物胁迫反应中发挥关键的调节作用。磷(Pi)缺乏限制了植物的生长并降低了全球的产量。为了鉴定树木 miRNAs 并评估它们在低 Pi 响应中的功能,我们从受充足或 Pi 缺乏条件或 Pi 缺乏后恢复充足 Pi 水平处理的毛白杨三个 sRNA 文库中鉴定了 261 个已知和 31 个候选新 miRNA 家族。Pi 缺乏导致 65 个已知和 3 个新 miRNA 的 TPM(每百万转录本)丰度发生显著变化。有趣的是,发现四个响应低 N-miR167、miR394、miR171 和 miR857 的 miRNA 参与了低 Pi 响应。35 个已知和 1 个新的 miRNAs 对 Pi 波动做出动态响应,表明它们参与了 Pi 缺乏的响应。在 10 条染色体中鉴定出包含 36 个 miRNAs 的 miRNA 簇。有趣的是,在毛白杨中检测到 9 对来自同一基因座的有义和反义 miRNAs,这是木本植物中的首次报道。此外,预测了具有显著变化丰度的已知 miRNAs 和新 miRNA 候选物的靶基因,并对其功能进行了注释。降解组测序支持了在毛白杨中鉴定出的 miRNA 的靶基因。这些发现将增强我们对树木在营养胁迫下的普遍和特定分子调控机制的理解,并可能有助于提高木本植物的 Pi 利用效率。

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