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联合小RNA和降解组测序揭示了高产突变小麦品种豫农3114中的新型miRNA及其靶标。

Combined Small RNA and Degradome Sequencing Reveals Novel MiRNAs and Their Targets in the High-Yield Mutant Wheat Strain Yunong 3114.

作者信息

Chen Feng, Zhang Xiangfen, Zhang Ning, Wang Shasha, Yin Guihong, Dong Zhongdong, Cui Dangqun

机构信息

Agronomy College/Collaborative Innovation Center of Henan Grain Crops/National Key Laboratory of Wheat and Maize Crop Science, Henan Agricultural University, Zhengzhou, China.

Zhoukou Academy of Agricultural Sciences, Zhoukou, China.

出版信息

PLoS One. 2015 Sep 15;10(9):e0137773. doi: 10.1371/journal.pone.0137773. eCollection 2015.

Abstract

Wheat is one of the main food sources worldwide; large amount studies have been conducted to improve wheat production. MicroRNAs (miRNAs) with about 20-30 nucleotide are a class of regulatory small RNAs (sRNAs), which could regulate gene expression through sequence-specific base pairing with target mRNAs, playing important roles in plant growth. An ideal plant architecture (IPA) is crucial to enhance yield in bread wheat. In this study, the high-yield wheat strain Yunong 3114 was EMS-mutagenesis from the wild-type strain Yunong 201, exhibiting a preferable plant structure compared with the wild-type strain. We constructed small RNA and degradome libraries from Yunong 201 and Yunong 3114, and performed small RNA sequencing of these libraries in order identify miRNAs and their targets related to IPA in wheat. Totally, we identified 488 known and 837 novel miRNAs from Yunong 3114 and 391 known and 533 novel miRNAs from Yunong 201. The number of miRNAs in the mutant increased. A total of 37 known and 432 putative novel miRNAs were specifically expressed in the mutant strain; furthermore, 23 known and 159 putative novel miRNAs were specifically expressed in the wild-type strain. A total of 150 known and 100 novel miRNAs were differentially expressed between mutant and wild-type strains. Among these differentially expressed novel miRNAs, 4 and 8 predict novel miRNAs were evidenced by degradome sequencing and showed up-regulated and down-regulated expressions in the mutant strain Yunong 3114, respectively. Targeted gene annotation and previous results indicated that this set of miRNAs is related to plant structure. Our results further suggested that miRNAs may be necessary to obtain an optimal wheat structure.

摘要

小麦是全球主要的食物来源之一;人们已经开展了大量研究以提高小麦产量。微小RNA(miRNA)是一类具有约20 - 30个核苷酸的调控性小RNA(sRNA),其可通过与靶标mRNA进行序列特异性碱基配对来调控基因表达,在植物生长中发挥重要作用。理想的株型(IPA)对于提高面包小麦的产量至关重要。在本研究中,高产小麦品系豫农3114是由野生型品系豫农201经甲基磺酸乙酯(EMS)诱变而来,与野生型品系相比,其具有更优的植株结构。我们构建了豫农201和豫农3114的小RNA文库和降解组文库,并对这些文库进行小RNA测序,以鉴定与小麦理想株型相关的miRNA及其靶标。我们总共从豫农3114中鉴定出488个已知miRNA和837个新miRNA,从豫农201中鉴定出391个已知miRNA和533个新miRNA。突变体中的miRNA数量增加。共有37个已知miRNA和432个推定新miRNA在突变体菌株中特异性表达;此外,23个已知miRNA和159个推定新miRNA在野生型菌株中特异性表达。突变体和野生型菌株之间共有150个已知miRNA和100个新miRNA差异表达。在这些差异表达的新miRNA中,有4个预测新miRNA经降解组测序证实,且在突变体菌株豫农3114中分别呈现上调和下调表达。靶基因注释及先前结果表明,这组miRNA与植株结构有关。我们的结果进一步表明,miRNA可能是获得最佳小麦株型所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4571/4570824/ab2e2788011d/pone.0137773.g001.jpg

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