Fast-Forward Identification of Highly Effective Artificial Small RNAs Against Different Tomato spotted wilt virus Isolates

被引:28
作者
Carbonell, Alberto [1 ]
Lopez, Carmelo [2 ]
Daros, Jose-Antonio [1 ]
机构
[1] Univ Politecn Valencia, Inst Biol Mol & Celular Plantas, CSIC, E-46022 Valencia, Spain
[2] Univ Politecn Valencia, Inst Conservac & Mejora Agrodiversidad Valenciana, E-46022 Valencia, Spain
基金
欧盟地平线“2020”;
关键词
MEDIATED RESISTANCE; NICOTIANA-BENTHAMIANA; MOSAIC-VIRUS; MICRORNAS; EXPRESSION; SEQUENCE; FUNCTIONALITY; EFFICIENT; PLANTS; WHEAT;
D O I
10.1094/MPMI-05-18-0117-TA
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
Artificial small RNAs (sRNAs), including artificial microRNAs (amiRNAs) and synthetic trans-acting small interfering RNAs (syn-tasiRNAs), are used to silence viral RNAs and confer antiviral resistance in plants. Here, the combined use of recent high-throughput methods for generating artificial sRNA constructs and the Tomato spotted wilt virus (TSWV)-Nicotiana benthamiana pathosystem allowed for the simple and rapid identification of amiRNAs with high anti-TSWV activity. A comparative analysis between the most effective amiRNA construct and a syn-tasiRNA construct including the four most effective amiRNA sequences showed that both were highly effective against two different TSWV isolates. These results highlight the usefulness of this high-throughput methodology for the fast-forward identification of artificial sRNAs with high antiviral activity prior to time-consuming generation of stably transformed plants.
引用
收藏
页码:142 / 156
页数:15
相关论文
共 49 条
[1]   A non-canonical plant microRNA target site [J].
Brousse, Cecile ;
Liu, Qikun ;
Beauclair, Linda ;
Deremetz, Aurelie ;
Axtell, Michael J. ;
Bouche, Nicolas .
NUCLEIC ACIDS RESEARCH, 2014, 42 (08) :5270-5279
[2]   Multiple virus resistance at a high frequency using a single transgene construct [J].
Bucher, Etienne ;
Lohuis, Dick ;
van Poppel, Pieter M. J. A. ;
Geerts-Dimitriadou, Christina ;
Goldbach, Rob ;
Prins, Marcel .
JOURNAL OF GENERAL VIROLOGY, 2006, 87 :3697-3701
[3]  
Carbonell A., METHODS MOL BIOL
[4]  
Carbonell A, 2017, METHODS MOL BIOL, V1640, P1, DOI 10.1007/978-1-4939-7165-7_1
[5]  
Carbonell A, 2017, CABI BIOTECH SER, P110, DOI 10.1079/9781780647678.0110
[6]   Artificial microRNAs and synthetic trans-acting small interfering RNAs interfere with viroid infection [J].
Carbonell, Alberto ;
Daros, Jose-Antonio .
MOLECULAR PLANT PATHOLOGY, 2017, 18 (05) :746-753
[7]  
Carbonell Alberto, 2016, RNA Dis, V3
[8]   Highly specific gene silencing in a monocot species by artificial microRNAs derived from chimeric miRNA precursors [J].
Carbonell, Alberto ;
Fahlgren, Noah ;
Mitchell, Skyler ;
Cox, Kevin L., Jr. ;
Reilly, Kevin C. ;
Mockler, Todd C. ;
Carrington, James C. .
PLANT JOURNAL, 2015, 82 (06) :1061-1075
[9]   New Generation of Artificial MicroRNA and Synthetic Trans-Acting Small Interfering RNA Vectors for Efficient Gene Silencing in Arabidopsis [J].
Carbonell, Alberto ;
Takeda, Atsushi ;
Fahlgren, Noah ;
Johnson, Simon C. ;
Cuperus, Josh T. ;
Carrington, James C. .
PLANT PHYSIOLOGY, 2014, 165 (01) :15-29
[10]   Functional Analysis of Three Arabidopsis ARGONAUTES Using Slicer-Defective Mutants [J].
Carbonell, Alberto ;
Fahlgren, Noah ;
Garcia-Ruiz, Hernan ;
Gilbert, Kerrigan B. ;
Montgomery, Taiowa A. ;
Nguyen, Tammy ;
Cuperus, Josh T. ;
Carrington, James C. .
PLANT CELL, 2012, 24 (09) :3613-3629