The Triple Amino Acid Substitution TAP-IVS in the EPSPS Gene Confers High Glyphosate Resistance to the Superweed Amaranthus hybridus

被引:41
作者
Garcia, Maria J. [1 ]
Palma-Bautista, Candelario [1 ]
Rojano-Delgado, Antonia M. [2 ]
Bracamonte, Enzo [3 ]
Portugal, Joao [4 ]
Alcantara-de la Cruz, Ricardo [5 ]
De Prado, Rafael [2 ]
机构
[1] Univ Cordoba, Dept Bot Ecol & Plant Physiol, E-14071 Cordoba, Spain
[2] Univ Cordoba, Dept Agr Chem & Edaphol, Cordoba 14071, Spain
[3] Natl Univ Cordoba UNC, Fac Agr Sci, RA-5001 Cordoba, Argentina
[4] Polytech Inst Beja, Dept Biosci, Res Ctr Endogenous Resource Valorizat, P-7800295 Beja, Portugal
[5] Univ Fed Sao Carlos, Dept Quim, BR-13565905 Sao Carlos, SP, Brazil
关键词
5-enolpyruvylshikimate-3-phosphate synthase; EPSPS gene mutation; glyphosate-resistant crops; nontarget site; smooth pigweed; target site resistance; NONTARGET SITE MECHANISMS; HERBICIDE-TOLERANT CROPS; 5-ENOLPYRUVYLSHIKIMATE-3-PHOSPHATE SYNTHASE; VACUOLAR SEQUESTRATION; STRUCTURAL BASIS; TARGET-SITE; TUBERCULATUS; TRANSLOCATION; AMPLIFICATION; QUITENSIS;
D O I
10.3390/ijms20102396
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
The introduction of glyphosate-resistant (GR) crops revolutionized weed management; however, the improper use of this technology has selected for a wide range of weeds resistant to glyphosate, referred to as superweeds. We characterized the high glyphosate resistance level of an Amaranthus hybridus population (GRH)a superweed collected in a GR-soybean field from Cordoba, Argentinaas well as the resistance mechanisms that govern it in comparison to a susceptible population (GSH). The GRH population was 100.6 times more resistant than the GSH population. Reduced absorption and metabolism of glyphosate, as well as gene duplication of 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS) or its overexpression did not contribute to this resistance. However, GSH plants translocated at least 10% more C-14-glyphosate to the rest of the plant and roots than GRH plants at 9 h after treatment. In addition, a novel triple amino acid substitution from TAP (wild type, GSH) to IVS (triple mutant, GRH) was identified in the EPSPS gene of the GRH. The nucleotide substitutions consisted of ATA(102), GTC(103) and TCA(106) instead of ACA(102), GCG(103), and CCA(106), respectively. The hydrogen bond distances between Gly-101 and Arg-105 positions increased from 2.89 angstrom (wild type) to 2.93 angstrom (triple-mutant) according to the EPSPS structural modeling. These results support that the high level of glyphosate resistance of the GRH A. hybridus population was mainly governed by the triple mutation TAP-IVS found of the EPSPS target site, but the impaired translocation of herbicide also contributed in this resistance.
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页数:15
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