Construction and significance analysis of the MicroRNA expression profile of Hemerocallis fulva at low temperature

被引:12
作者
An, Fengxia [1 ,2 ]
Liang, Yan [3 ]
Li, Jingfu [4 ]
Chen, Xiuling [4 ]
Han, Hui [2 ]
Li, Fuheng [1 ]
机构
[1] Northeast Agr Univ, Coll Life Sci, Harbin, Peoples R China
[2] Heilongjiang Acad Sci, Inst Nat Resources, Harbin, Peoples R China
[3] Qiqihar Univ, Coll Life Sci & Forestry, Qiqihar, Peoples R China
[4] Northeast Agr Univ, Coll Hort, Harbin, Peoples R China
关键词
Hemerocallis fulva; miRNA; environmental stress; high-throughput sequencing; gene expression profile; SMALL RNAS; STRESS; IDENTIFICATION; ARABIDOPSIS;
D O I
10.1080/09168451.2014.878214
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
MicroRNA (miRNA) identification was performed in Hemerocallis fulva by high-throughput sequencing in combination with bioinformatics prediction. A total of 14,843,184 and 16,072,575 RNA sequences were explored under normal and low temperature conditions, respectively. There was a significant difference in RNAs species and quantity between the two samples. Of all the miRNAs, 26 were significantly upregulated and 30 were significantly downregulated, while nine were either significantly upregulated or downregulated under low-temperature stress. Twenty-one highly expressed miRNA families were screened in at least six species. The number of miRNA families was very similar between monocotyledons and dicotyledons, and only a few were more frequently found in monocotyledons.
引用
收藏
页码:378 / 383
页数:6
相关论文
共 24 条
  • [1] Genome-wide identification of cold-responsive and new microRNAs in Populus tomentosa by high-throughput sequencing
    Chen, Lei
    Zhang, Yiyun
    Ren, Yuanyuan
    Xu, Jichen
    Zhang, Zhiyi
    Wang, Yanwei
    [J]. BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2012, 417 (02) : 892 - 896
  • [2] MicroRNA directs mRNA cleavage of the transcription factor NAC1 to downregulate auxin signals for Arabidopsis lateral root development
    Guo, HS
    Xie, Q
    Fei, JF
    Chua, NH
    [J]. PLANT CELL, 2005, 17 (05) : 1376 - 1386
  • [3] Using small RNA sequences to diagnose, sequence, and investigate the infectivity characteristics of vegetable-infecting viruses
    Hagen, Charles
    Frizzi, Alessandra
    Kao, John
    Jia, Lijie
    Huang, Mingya
    Zhang, Yuanji
    Huang, Shihshieh
    [J]. ARCHIVES OF VIROLOGY, 2011, 156 (07) : 1209 - 1216
  • [4] He L., 2004, NAT REV GENET, V5, P522
  • [5] How Many Ways Are There to Generate Small RNAs?
    Jin, Hailing
    Zhu, Jian-Kang
    [J]. MOLECULAR CELL, 2010, 38 (06) : 775 - 777
  • [6] Computational identification of plant MicroRNAs and their targets, including a stress-induced miRNA
    Jones-Rhoades, MW
    Bartel, DP
    [J]. MOLECULAR CELL, 2004, 14 (06) : 787 - 799
  • [7] THE C-ELEGANS HETEROCHRONIC GENE LIN-4 ENCODES SMALL RNAS WITH ANTISENSE COMPLEMENTARITY TO LIN-14
    LEE, RC
    FEINBAUM, RL
    AMBROS, V
    [J]. CELL, 1993, 75 (05) : 843 - 854
  • [8] Repression of AUXIN RESPONSE FACTOR10 by microRNA160 is critical for seed germination and post-germination stages
    Liu, Po-Pu
    Montgomery, Taiowa A.
    Fahlgren, Noah
    Kasschau, Kristin D.
    Nonogaki, Hiroyuki
    Carrington, James C.
    [J]. PLANT JOURNAL, 2007, 52 (01) : 133 - 146
  • [9] Endogenous and silencing-associated small RNAs in plants
    Llave, C
    Kasschau, KD
    Rector, MA
    Carrington, JC
    [J]. PLANT CELL, 2002, 14 (07) : 1605 - 1619
  • [10] Novel and mechanical stress-responsive microRNAs in Populus trichocarpa that are absent from Arabidopsis
    Lu, SF
    Sun, YH
    Shi, R
    Clark, C
    Li, LG
    Chiang, VL
    [J]. PLANT CELL, 2005, 17 (08) : 2186 - 2203