ALOMYbase, a resource to investigate non-target-site-based resistance to herbicides inhibiting acetolactate-synthase (ALS) in the major grass weed Alopecurus myosuroides (black-grass)

被引:65
作者
Gardin, Jeanne Aude Christiane [1 ]
Gouzy, Jerome [2 ]
Carrere, Sebastien [2 ]
Delye, Christophe [1 ]
机构
[1] INRA, Agroecol UMR1347, F-21000 Dijon, France
[2] INRA, LIPM UMR441, F-31326 Castanet Tolosan, France
关键词
RNA sequencing; Transcriptomics; Herbicide response; Non-target-site resistance; Alopecurus myosuroides (black-grass); Weed; Acetolactate synthase; Acetohydroxyacid synthase; AMINO-ACID BIOSYNTHESIS; SEQ TRANSCRIPTOME ANALYSIS; ARABIDOPSIS-THALIANA; OXIDATIVE STRESS; ACETYL-COENZYME; GENETIC-CONTROL; EXPRESSION; METABOLISM; TOLERANCE; EVOLUTION;
D O I
10.1186/s12864-015-1804-x
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background: Herbicide resistance in agrestal weeds is a global problem threatening food security. Non-target-site resistance (NTSR) endowed by mechanisms neutralising the herbicide or compensating for its action is considered the most agronomically noxious type of resistance. Contrary to target-site resistance, NTSR mechanisms are far from being fully elucidated. A part of weed response to herbicide stress, NTSR is considered to be largely driven by gene regulation. Our purpose was to establish a transcriptome resource allowing investigation of the transcriptomic bases of NTSR in the major grass weed Alopecurus myosuroides L. (Poaceae) for which almost no genomic or transcriptomic data was available. Results: RNA-Seq was performed from plants in one F2 population that were sensitive or expressing NTSR to herbicides inhibiting acetolactate-synthase. Cloned plants were sampled over seven time-points ranging from before until 73 h after herbicide application. Assembly of over 159M high-quality Illumina reads generated a transcriptomic resource (ALOMYbase) containing 65,558 potentially active contigs (N50 = 1240 nucleotides) predicted to encode 32,138 peptides with 74 % GO annotation, of which 2017 were assigned to protein families presumably involved in NTSR. Comparison with the fully sequenced grass genomes indicated good coverage and correct representation of A. myosuroides transcriptome in ALOMYbase. The part of the herbicide transcriptomic response common to the resistant and the sensitive plants was consistent with the expected effects of acetolactate-synthase inhibition, with striking similarities observed with published Arabidopsis thaliana data. A. myosuroides plants with NTSR were first affected by herbicide action like sensitive plants, but ultimately overcame it. Analysis of differences in transcriptomic herbicide response between resistant and sensitive plants did not allow identification of processes directly explaining NTSR. Five contigs associated to NTSR in the F2 population studied were tentatively identified. They were predicted to encode three cytochromes P450 (CYP71A, CYP71B and CYP81D), one peroxidase and one disease resistance protein. Conclusions: Our data confirmed that gene regulation is at the root of herbicide response and of NTSR. ALOMYbase proved to be a relevant resource to support NTSR transcriptomic studies, and constitutes a valuable tool for future research aiming at elucidating gene regulations involved in NTSR in A. myosuroides.
引用
收藏
页数:22
相关论文
共 84 条
[1]   Improved scoring of functional groups from gene expression data by decorrelating GO graph structure [J].
Alexa, Adrian ;
Rahnenfuehrer, Joerg ;
Lengauer, Thomas .
BIOINFORMATICS, 2006, 22 (13) :1600-1607
[2]   Differential expression analysis for sequence count data [J].
Anders, Simon ;
Huber, Wolfgang .
GENOME BIOLOGY, 2010, 11 (10)
[3]  
Ashburner M, 2001, GENOME RES, V11, P1425, DOI 10.1101/gr.180801
[4]  
Baker H. G., 1975, Annual Review of Ecology and Systematics, V5, P1, DOI 10.1146/annurev.es.05.110174.000245
[5]   Herbicide cross resistance in weeds [J].
Beckie, Hugh J. ;
Tardif, Francois J. .
CROP PROTECTION, 2012, 35 :15-28
[6]   The 'inner circle' of the cereal genomes [J].
Bolot, Stephanie ;
Abrouk, Michael ;
Masood-Quraishi, Umar ;
Stein, Nils ;
Messing, Joachim ;
Feuillet, Catherine ;
Salse, Jerome .
CURRENT OPINION IN PLANT BIOLOGY, 2009, 12 (02) :119-125
[7]  
BOWEN H. J. M., 1962, RADIATION BOT, V1, P223
[8]   Deep Sequencing Identifies Viral and Wasp Genes with Potential Roles in Replication of Microplitis demolitor Bracovirus [J].
Burke, Gaelen R. ;
Strand, Michael R. .
JOURNAL OF VIROLOGY, 2012, 86 (06) :3293-3306
[9]   Inheritance of evolved resistance to a novel herbicide (pyroxasulfone) [J].
Busi, Roberto ;
Gaines, Todd A. ;
Vila-Aiub, Martin M. ;
Powles, Stephen B. .
PLANT SCIENCE, 2014, 217 :127-134
[10]  
Carels N, 2000, GENETICS, V154, P1819