期刊文献+

植物miRNA的生物功能与研究方法 被引量:1

Function and Research Methods of miRNA in Plants
下载PDF
导出
摘要 植物microRNA(miRNA)是近年来发现的一类在植物体内普遍存在的内源非编码小RNA,与植物基因表达调控相关。本文综述了植物miRNA的特点、miRNA与植物发育的关系及调控机制、植物miRNA研究方法等,对植物生长发育以及抗性的调控机制提供了研究方向,同时对于一些基因家族研究提供了理论基础。 MicroRNAs (miRNAs) are a kind of endogenous small non-coding RNAs commonly found in plants in recent years, and are involved in gene expression in plants. This paper reviews the characteristics of the plant miRNA, the relationship between miRNA and plant development, as well as regulatory mechanism, and research methods in plants, so as to make a direction to do research on regulatory mechanism of plant growth and development as well as plant resistance, at the same time to provide a theoretical basis for some gene family research.
出处 《生物技术进展》 2013年第3期166-170,共5页 Current Biotechnology
基金 国家自然科学基金项目(31060197)资助
关键词 MICRORNA 植物 基因调控 microRNA plant gene regulation
  • 相关文献

参考文献4

二级参考文献69

  • 1YangLI WeiLI You-XinJIN.Computational Identification of Novel Family Members of MicroRNA Genes in Arabidopsis thaliana and Oryza sativa[J].Acta Biochimica et Biophysica Sinica,2005,37(2):75-87. 被引量:24
  • 2BaoHongZHANG,XiaoPingPAN,QingLianWANG,GeorgeECOBB,ToddA.ANDERSON.Identification and characterization of new plant microRNAs using EST analysis[J].Cell Research,2005,15(5):336-360. 被引量:74
  • 3Sreelatha GUDDETI,De Chun ZHANG,Ai Li LI,Chuck H. LESEBERG,Hui KANG,Xiao Guang LI,Wen Xue ZHAI,Mitrick A. JOHNS,Long MAO.Molecular evolution of the rice miR395 gene family[J].Cell Research,2005,15(8):631-638. 被引量:7
  • 4Zhong R, Ye ZH. Regulation of HD-ZIP III genes by microRNA 165. Plant Signal Behav, 2007, 2(5): 351-3.
  • 5Wang JW, Wang LJ, Mao YB, et al. Control of root cap formation by rrdcroRNA-targeted auxin response factors in Arabidopsis. Plant Cell, 2005, 17(8): 2204-16.
  • 6Ori N, Cohen AR, Etzioni A, et al. Regulation of LAN- CEOLATE by miR319 is required for compound-leaf development in tomato. Nat Genet, 2007, 39(6): 787-91.
  • 7Wu G, Park MY, Conway SR, et al. The sequential action of miR156 and rniR172 regulates developmental timing in Arabidopsis. Cell, 2009, 138(4): 750-9.
  • 8Chuck G, Cigan AM, Saeteum K, et al. The heterochronic maize mutant Corngrassl results from overexpression of a tandem microRNA. Nat Genet, 2007, 39(4): 544-9.
  • 9Yamasaki H, Hayashi M, Fukazawa M, et al. SQUAMOSA promoter binding protein-Like7 is a central regulator for copper homeostasis in Arabidopsis. Plant Cell, 2009, 21(1): 347-61.
  • 10Sunkar R, Kapoor A, Zhu JK. Posttranscriptional induction of two Cu/Zn superoxide dismutase genes in Arabidopsis is mediated by downregulation of miR398 and important for oxidative stress tolerance. Plant Cell, 2006, 18(8): 2051-65.

共引文献30

同被引文献74

  • 1Allen E, Xie Z, Gustafson AM, Carrington JC (2005). MicroRNA-di- rected phasing during trans-acting siRNA biogenesis in plants. Cell, 121 (2): 207-221.
  • 2An J, Lai J, Sajjanhar A, Lehman ML, Nelson CC (2014). MiRPlant: an integrated tool for identification of plant miRNA from RNA sequencing data. BMC Bioinformatics, 15 (1): 275.
  • 3Aukerman MJ, Sakai H (2003). Regulation of flowering time and flo- ral organ identity by a microRNA and its APET.4LA2-1ike target genes. Plant Cell, 15 (11): 2730-2741.
  • 4Barozai MYK, Baloch IA, Din M (2011). Computational identifica- tion of microRNAs and their targets in two species of evergreen spruce tree (Picea). PWaset, 5 (3): 1227-1232.
  • 5Bartel DP (2004). MicroRNAs: genomics, biogenesis, mechanism, and function. Cell, 116 (2): 281-297.
  • 6Baxter A, Mittler R, Suzuki N (2014). ROS as key players in plant stress signalling. J Exp Bot, 65 (5): 1229-1240.
  • 7Bazzini AA, Hopp HE, Beachy RN, Asurmendi S (2007). Infection and coaccumulation of tobacco mosaic virus proteins alter microRNA levels, correlating with symptom and plant develop- ment. Proc Natl Acad Sci USA, 104 (29): 12157-12162.
  • 8Budak H, Akpinar BA (2015). Plant miRNAs: biogenesis, organiza- tion and origins. Funct Integr Genomics, 15 (5): 523-531.
  • 9Calvifio M, Bruggmann R, Messing J (2011). Characterization of the small RNA component of the transcriptome from grain and sweet sorghum stems. BMC Genomics, 12 (1): 356.
  • 10Chen X (2004). A microRNA as a translational repressor of APETA- LA2 in Arabidopsis flower development. Science, 303 (5666): 2022-2025.

引证文献1

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部