|本期目录/Table of Contents|

[1]刘哲,许园园,娄丽娜,等.植物抗逆和开花相关miRNA研究进展及在丝瓜上的应用[J].江苏农业科学,2018,46(16):6-9.
 Liu Zhe,et al.Research progress of plant stress resistance-related and flowering-related miRNA and its application in luffa[J].Jiangsu Agricultural Sciences,2018,46(16):6-9.
点击复制

植物抗逆和开花相关miRNA研究进展
及在丝瓜上的应用
(PDF)
分享到:

《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第46卷
期数:
2018年第16期
页码:
6-9
栏目:
专论与综述
出版日期:
2018-08-30

文章信息/Info

Title:
Research progress of plant stress resistance-related and flowering-related miRNA and its application in luffa
作者:
刘哲 许园园 娄丽娜 苏小俊
江苏省农业科学院蔬菜研究所/江苏省高效园艺作物遗传改良重点实验室,江苏南京 210014
Author(s):
Liu Zheet al
关键词:
植物miRNA抗逆开花靶基因丝瓜
Keywords:
-
分类号:
Q78;S642.401
DOI:
-
文献标志码:
A
摘要:
miRNA是生物体内的一种非编码小RNA,长度为20~22个核苷酸,通过与靶mRNA互补配对,在转录后水平上对基因表达进行负调控,可导致mRNA降解或翻译抑制,主要对植物形态建成、生长发育及对外界环境胁迫因素的应答等产生影响。介绍miRNA的形成,重点阐述植物miRNA在响应低温、干旱、盐害等逆境胁迫和开花调控中的生物学功能,并介绍丝瓜及葫芦科miRNA的近期研究情况。
Abstract:
-

参考文献/References:

[1]Bartel D P. MicroRNAs:genomics,biogenesis,mechanism,and function[J]. Cell,2004,116(2):281-297.
[2]Jones-Rhoades M W,Bartel D P,bartel B. MicroRNAs and their regulatory roles in plants[J]. Annual Review of Plant Biology,2006,57:19-53.
[3]Llave C,Kasschau K D,Rector M A,et al. Endogenous and silencing-associated small RNAs in plants[J]. Plant Cell,2002,14(7):1605-1619.
[4]Reinhart B J,Weinstein E G,Rhoades M W,et al. MicroRNAs in plants[J]. Genes Dev,2002:16(13):1616-1626.
[5]Sunkar R,Zhu J. K. Novel and stress-regulated microRNAs and other small RNAs from Arabidopsis[J]. The Plant Cell,2004,16(8):2001-2019.
[6]Sunkar R,Girke T,Jain P K,et al. Cloning and characterization of microRNAs from rice[J]. The Plant Cell,2005,17(5):1397-1411.
[7]Mica E,Gianfranceschi L,Pe M E. Characterization of five microRNA families in maize[J]. Journal of Experimental Botany,2006,57(11):2601-2612.
[8]Kurtoglu K Y,Kantar M,Budak H. New wheat microRNA using whole-genome sequence[J]. Functional & Integrative Genomics,2014,14(2):363-379.
[9]Chen X,Tan T M,Xu C C,et al. Genome-wide transcriptome profiling reveals novel insights into Luffa cylindrica browning[J]. Biochemical and Biophysical Research Communications,2015,463:1243-1249.
[10]Billoud B,de Paepe R,Baulcombe D,et al. Identification of new small non-coding RNAs from tobacco and Arabidopsis[J]. Biochimie,2005,87(9/10):905-910.
[11]Floyd S K,Bowman J L. Gene regulation:ancient microRNA target sequences in plants[J]. Nature,2004,428(6982):485-486.
[12]Axtell M J,Bartel D P. Antiquity of microRNAs and their targets in land plants[J]. The Plant Cell,2005,17(6):1658-1673.
[13]Liu Q,Shi L L,Fang Y D. Dicing bodies[J]. Plant Physiology,2012,158(1):61-66.
[14]Naqvi A R,Sarwat M,Hasan S,et al. Biogenesis,functions and fate of plant microRNAs[J]. Journal of Cellular Physiology,2012,227(9):3163-3168.
[15]Guleria P,Mahajan M,Bhardwaj J,et al. Plant small RNAs:biogenesis,mode of action and their roles in abiotic stresses[J]. Genomics,Proteomics & Bioinformatics,2011,9(6):183-199.
[16]Vaucheret H. Post-transcriptional small RNA pathways in plants:mechanisms and regulations[J]. Genes & Development,2006,20(7):759-771.
[17]Brodersen P,Voinnet O. Revisiting the principles of microRNA target recognition and mode of action[J]. Nature Reviews Molecular Cell Biology,2009,10(2):141-148.
[18]Shao C,Ma X,Xu X,et al. Identification of the highly accumulated microRNAs in Arabidopsis(Arabidopsis thaliana)and rice(Oryza sativa)[J]. Gene,2013,515(1):123-127.
[19]Fujii H,Chiou T J,Lin S I,et al. A miRNA involved in phosphate-starvation response in Arabidopsis[J]. Current Biology,2005,15(22):2038-2043.
[20]Bari R,Datt Pant B,Stitt M,et al. PHO2,microRNA399,and PHR1 define a phosphate-signaling pathway in plants[J]. Plant Physiology,2006,141(3):988-999.
[21]冯浩. 寄主miRNAs调控小麦与条锈菌互作的分子机理[D]. 杨凌:西北农林科技大学,2014.
[22]Zhao B T,Liang R Q,Ge L F,et al. Identification of drought-induced microRNAs in rice[J]. Biochemical and Biophysical Research Communications,2007,354(2):585-590.
[23]Kantar M,Unver T,Budak H. Regulation of barley miRNAs upon dehydration stress correlated with target gene expression[J]. Functional & Integrative Genomics,2010,10(4):493-507.
[24]Kantar M,Lucas S J,Budak H. miRNA expression patterns of Triticum dicoccoides in response to shock drought stress[J]. Planta,2011,233(3):471-484.
[25]Trindade I,Capitao C,Dalmay T,et al. miR398 and miR408 are up-regulated in response to water deficit in Medicago truncatula[J]. Planta,2010,231(3):705-716.
[26]Lu S F,Sun Y H,Chiang V L. Stress-responsive microRNAs in Populus[J]. The Plant Journal,2008,55(1):131-151.
[27]Jung H J,Kang H. Expression and functional analyses of microRNA417 in Arabidopsis thaliana under stress conditions[J]. Plant Physiology and Biochemistry,2007,45(10/11):805-811.
[28]Doerner P. Phwsphate starvation signaling:a threesome controls systemic Pi homeostasis[J]. Current Opinion in Plant Biology,2008,11:536-540.
[29]Frazier T P,Sun G,Burklew C E,et al. Salt and drought stresses induce the aberrant expression of microRNA genes in tobacco[J]. Molecular Biotechnology,2011,49(2):159-65.
[30]Ding Y F,Chen Z,Zhu C. Microarray-based analysis of cadmium-responsive microRNAs in rice (Oryza sativa)[J]. Journal of Experimental Botany,2011,62(10):3563-3573.
[31]Chiou T J,Aung K,Liu S I,et al. Regulation of phosphate homeostasis by micoRNA in Arabidopsis[J]. The Plant Cell,2006,18(2):412-421.
[32]Yamaguchi A,Abe M. Regulation of reproductive development by non-coding RNA in Arabidopsis:to flower or not to flower[J]. Journal of Plant Research,2012,125(6):693-704.
[33]Huijser P,Schmid M. The control of developmental phase transitions in plants[J]. Development,2011,138(19):4117-4129.
[34]Nodine M D,Bartel D P. Maternal and paternal genomes contribute equally to the transcriptome of early plant embryos[J]. Nature,2012,482(7383):94-97.
[35]Zhang X H,Zou Z,Zhang J H,et al. Over-expression of sly-miR156a in tomato results in multiple vegetative and reproductive trait alterations and partial phenocopy of the sft mutant[J]. FEBS Letters,2011,585(2):435-439.
[36]Chuck G,Cigan A M,Saeteurn K,et al. The heterochronic maize mutant Corngrass1 results from overexpression of a tandem microRNA[J]. Nature Genetics,2007,39(4):544-549.
[37]Xie K B,Wu C Q,Xiong L Z. Genomic organization,differential expression,and interaction of SQUAMOSA promoter-binding-like transcription factors and microRNA156 in rice[J]. Plant Physiology,2006,142(1):280-293.
[38]Zhu Q H,Helliwell C A. Regulation of flowering time and floral patterning by miR172[J]. Journal of Experimental Botany,2011,62(2):487-495.
[39]Wu G,Park M Y,Conway S R,et al. The sequential action of miR156 and miR172 regulates developmental timing in Arabidopsis[J]. Cell,2009,138(4):750-759.
[40]Fang Y,Spector D L. Identification of nuclear dicing bodies containing proteins for microRNA biogenesis in living Arabidopsis plants[J]. Current Biology,2007,17(9):818-823.
[41]Schwab R,Ossowski S,Riester M,et al. Highly specific gene silencing by artificial microRNAs in Arabidopsis[J]. The Plant Cell,2006,18(5):1121-1133.
[42]Rubio-Somoza I,Weigel D. MicroRNA networks and developmental plasticity in plants[J]. Trends in Plant Science,2011,16(5):258-264.
[43]Allen R S,Li J Y,Stahle M I,et al. Genetic analysis reveals functional redundancy and the major target genes of the Arabidopsis miR159 family[J]. Proceedings of the National Academy of Sciences of the United States of America,2007,104(41):16371-16376.
[44]Schommer C,Bresso E G,Spinelli S V,et al. Role of microRNA miR319 in plant development[M]//MicroRNAs in plant development and stress responses. Berlin Heidelberg:Springer,2012:29-47.
[45]Terzi L C,Simpson G G. Regulation of flowering time by RNA processing[J]. Current Topics in Microbiology and Immunology,2008,326:201-218.
[46]Sarvepalli K,Nath U. Hyper-activation of the TCP4 transcription factor in Arabidopsis thaliana accelerates multiple aspects of plant maturation[J]. The Plant Journal,2011,67(4):595-607.
[47]Kruszka K,Pieczynski M,Windels D,et al. Role of microRNAs and other sRNAs of plants in their changing environments[J]. Journal of Plant Physiology,2012,169(16):1664-1672.
[48]凌键. 黄瓜WRKY基因家族及microRNA的鉴定与分析[D]. 北京:中国农业科学院,2012.
[49]李超汉. 黄瓜嫁接苗microRNA鉴定及对非生物胁迫的应答[D]. 北京:中国农业科学院,2014.
[50]梁超琼,刘华威,罗来鑫,等. 黄瓜中与黄瓜绿斑驳花叶病毒侵染相关的miRNA表达特征分析[J]. 植物病理学报,2016,46(1):56-62.
[51]郭清利. 基于高通量测序数据的黄瓜Small RNA识别和PhaseTank软件开发[D]. 杨凌:西北农林科技大学,2014.
[52]刘娜,杨景华,张明方. 嫁接西瓜microRNA的鉴定以及表达差异研究[C]. 中国园艺学会2011年学术年会.合肥,2011.

相似文献/References:

[1]主楚杰,王爱云.基因工程技术在杨树抗逆境方面的研究进展[J].江苏农业科学,2015,43(02):10.
 Zhu Chujie,et al.Research progress of anti-adversity of poplar by gene engineering[J].Jiangsu Agricultural Sciences,2015,43(16):10.
[2]王丹,张亚玲,徐春莹,等.干旱胁迫对不同水稻品种抗逆性和抗瘟性相关酶的影响[J].江苏农业科学,2017,45(04):49.
 Wang Dan,et al.Effects of drought stress on stress tolerance and blast resistance related enzymes of different rice varieties[J].Jiangsu Agricultural Sciences,2017,45(16):49.
[3]靳开川,何金环.油菜素内酯在植物抗逆中的作用及信号传导机制综述[J].江苏农业科学,2017,45(14):4.
 Jin Kaichuan,et al.Role of brassinolide in plant stress resistance and its signal transduction mechanism:a review[J].Jiangsu Agricultural Sciences,2017,45(16):4.
[4]郭正兵,韩柏明,郭强.茉莉酸甲酯对高温胁迫、生物蚕食无花果幼苗的影响[J].江苏农业科学,2017,45(20):138.
 Guo Zhengbing,et al.Effects of methyl jasmonate on fig seedlings under high temperature and biological encroachment stress[J].Jiangsu Agricultural Sciences,2017,45(16):138.
[5]付璐璐,王峥,王磊,等.近10年水产动物抗逆育种研究进展[J].江苏农业科学,2020,48(16):52.
 Fu Lulu,et al.Research progress of resistance breeding of aquatic animals in recent ten years[J].Jiangsu Agricultural Sciences,2020,48(16):52.
[6]朱毅萱,张雨婷,段瑞华,等.江苏高产高效抗逆绿色小麦品种筛选与评价[J].江苏农业科学,2023,51(15):56.
 Zhu Yixuan,et al.Screening and evaluation of green wheat cultivars with high yield, high efficiency and stress resistance in Jiangsu Province[J].Jiangsu Agricultural Sciences,2023,51(16):56.
[7]李岚岚,戴利铭,施玉萍,等.生防链霉菌17-7生理生化功能研究[J].江苏农业科学,2025,53(1):169.
 Li Lanlan,et al.Study on physiological and biochemical functions of biocontrol Streptomyces 17-7[J].Jiangsu Agricultural Sciences,2025,53(16):169.

备注/Memo

备注/Memo:
收稿日期:2017-03-17
基金项目:江苏省农业科技自主创新资金[编号:CX(15)1019]。
作者简介:刘哲(1987—),男,山东菏泽人,硕士,主要从事瓜类和十字花科植物遗传育种与分子生物学研究。E-mail:zhe696@126.com。
通信作者:苏小俊,博士,研究员,主要从事蔬菜作物遗传育种研究。Tel:(025)84391259;E-mail:xiaojunsu@yahoo.com。
更新日期/Last Update: 2018-08-20