Multiple resistance to glyphosate, paraquat and ACCase‐inhibiting herbicides in Italian ryegrass populations from California: confirmation and mechanisms of resistance. Issue 4 (8th December 2017)
- Record Type:
- Journal Article
- Title:
- Multiple resistance to glyphosate, paraquat and ACCase‐inhibiting herbicides in Italian ryegrass populations from California: confirmation and mechanisms of resistance. Issue 4 (8th December 2017)
- Main Title:
- Multiple resistance to glyphosate, paraquat and ACCase‐inhibiting herbicides in Italian ryegrass populations from California: confirmation and mechanisms of resistance
- Authors:
- Tehranchian, Parsa
Nandula, Vijay
Jugulam, Mithila
Putta, Karthik
Jasieniuk, Marie - Abstract:
- Abstract: BACKGROUND: Glyphosate, paraquat and acetyl CoA carboxylase (ACCase)‐inhibiting herbicides are widely used in California annual and perennial cropping systems. Recently, glyphosate, paraquat, and ACCase‐ and acetolactate synthase (ALS)‐inhibitor resistance was confirmed in several Italian ryegrass populations from the Central Valley of California. This research characterized the possible mechanisms of resistance. RESULTS: Multiple‐resistant populations ( MR1, MR2 ) are resistant to several herbicides from at least three modes of action. Dose–response experiments revealed that the MR1 population was 45.9‐, 122.7‐ and 20.5‐fold, and the MR2 population was 24.8‐, 93.9‐ and 4.0‐fold less susceptible to glyphosate, sethoxydim and paraquat, respectively, than the susceptible ( Sus ) population. Accumulation of shikimate in Sus plants was significantly greater than in MR plants 32 h after light pretreatments. Glyphosate resistance in MR plants was at least partially due to Pro106‐to‐Ala and Pro106‐to‐Thr substitutions at site 106 of 5‐enolpyruvylshikimate‐3‐phosphate synthase (EPSPS). EPSPS gene copy number and expression level were similar in plants from the Sus and MR populations. An Ile1781‐to‐Leu substitution in ACCase gene of MR plants conferred a high level of resistance to sethoxydim and cross‐resistance to other ACCase‐inhibitors. Radiolabeled herbicide studies and phosphorimaging indicated that MR plants had restricted translocation of 14 C‐paraquat to untreatedAbstract: BACKGROUND: Glyphosate, paraquat and acetyl CoA carboxylase (ACCase)‐inhibiting herbicides are widely used in California annual and perennial cropping systems. Recently, glyphosate, paraquat, and ACCase‐ and acetolactate synthase (ALS)‐inhibitor resistance was confirmed in several Italian ryegrass populations from the Central Valley of California. This research characterized the possible mechanisms of resistance. RESULTS: Multiple‐resistant populations ( MR1, MR2 ) are resistant to several herbicides from at least three modes of action. Dose–response experiments revealed that the MR1 population was 45.9‐, 122.7‐ and 20.5‐fold, and the MR2 population was 24.8‐, 93.9‐ and 4.0‐fold less susceptible to glyphosate, sethoxydim and paraquat, respectively, than the susceptible ( Sus ) population. Accumulation of shikimate in Sus plants was significantly greater than in MR plants 32 h after light pretreatments. Glyphosate resistance in MR plants was at least partially due to Pro106‐to‐Ala and Pro106‐to‐Thr substitutions at site 106 of 5‐enolpyruvylshikimate‐3‐phosphate synthase (EPSPS). EPSPS gene copy number and expression level were similar in plants from the Sus and MR populations. An Ile1781‐to‐Leu substitution in ACCase gene of MR plants conferred a high level of resistance to sethoxydim and cross‐resistance to other ACCase‐inhibitors. Radiolabeled herbicide studies and phosphorimaging indicated that MR plants had restricted translocation of 14 C‐paraquat to untreated leaves compared to Sus plants. CONCLUSION: This study shows that multiple herbicide resistance in Italian ryegrass populations in California, USA, is due to both target‐site and non‐target‐site resistance mechanisms. © 2017 Society of Chemical Industry Abstract : Sustainable use of global herbicides depends on long‐term integrated weed management practices. This article reports that evolution of multiple herbicide resistance in agriculture of western United States is due to both target‐site and non‐target‐site resistance mechanisms. … (more)
- Is Part Of:
- Pest management science. Volume 74:Issue 4(2018)
- Journal:
- Pest management science
- Issue:
- Volume 74:Issue 4(2018)
- Issue Display:
- Volume 74, Issue 4 (2018)
- Year:
- 2018
- Volume:
- 74
- Issue:
- 4
- Issue Sort Value:
- 2018-0074-0004-0000
- Page Start:
- 868
- Page End:
- 877
- Publication Date:
- 2017-12-08
- Subjects:
- herbicide resistance -- resistance mechanism -- glyphosate -- shikimate accumulation -- EPSPS copy number -- ACCase -- cross‐resistance -- paraquat -- translocation -- Lolium perenne ssp. multiflorum -- Lolium multiflorum
Pests -- Control -- Periodicals
Pesticides -- Periodicals
632.9 - Journal URLs:
- http://onlinelibrary.wiley.com/ ↗
- DOI:
- 10.1002/ps.4774 ↗
- Languages:
- English
- ISSNs:
- 1526-498X
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 6428.332000
British Library DSC - BLDSS-3PM
British Library STI - ELD Digital store - Ingest File:
- 8982.xml