Figure 1.
Control (%) (A) and shoot dry mass (SDM) reduction (B) in generation 1 of putatively glyphosate-susceptible (CB-I) and -resistant (CB-II, CB-III, and CB-IV) Conyza bonariensis biotypes, evaluated 28 days after herbicide application. INIA-LE, Colonia-Uruguay, 2023.
Figure 1.
Control (%) (A) and shoot dry mass (SDM) reduction (B) in generation 1 of putatively glyphosate-susceptible (CB-I) and -resistant (CB-II, CB-III, and CB-IV) Conyza bonariensis biotypes, evaluated 28 days after herbicide application. INIA-LE, Colonia-Uruguay, 2023.
Figure 2.
Control (%) (A) and shoot dry mass (SDM) reduction (B) in generation 2 of putatively glyphosate-susceptible (CB-I) and -resistant (CB-II, CB-III, and CB-IV) Conyza bonariensis biotypes, evaluated 28 days after herbicide application. INIA-LE, Colonia-Uruguay, 2023.
Figure 2.
Control (%) (A) and shoot dry mass (SDM) reduction (B) in generation 2 of putatively glyphosate-susceptible (CB-I) and -resistant (CB-II, CB-III, and CB-IV) Conyza bonariensis biotypes, evaluated 28 days after herbicide application. INIA-LE, Colonia-Uruguay, 2023.
Figure 3.
Control (%) (A) and shoot dry mass (SDM) reduction (B) in generation 1 of putatively diclosulam-susceptible (CB-I) and -resistant (CB-II, CB-IV, and CB-V) C. bonariensis biotypes, evaluated 28 days after herbicide application. INIA-LE, Colonia, Uruguay, 2023.
Figure 3.
Control (%) (A) and shoot dry mass (SDM) reduction (B) in generation 1 of putatively diclosulam-susceptible (CB-I) and -resistant (CB-II, CB-IV, and CB-V) C. bonariensis biotypes, evaluated 28 days after herbicide application. INIA-LE, Colonia, Uruguay, 2023.
Figure 4.
Control (%) (A) and shoot dry mass (SDM) reduction (B) in generation 2 of putatively diclosulam-susceptible (CB-I) and -resistant (CB-II, CB-IV, and CB-V) C. bonariensis biotypes, evaluated 28 days after herbicide application. INIA-LE, Colonia, Uruguay, 2023.
Figure 4.
Control (%) (A) and shoot dry mass (SDM) reduction (B) in generation 2 of putatively diclosulam-susceptible (CB-I) and -resistant (CB-II, CB-IV, and CB-V) C. bonariensis biotypes, evaluated 28 days after herbicide application. INIA-LE, Colonia, Uruguay, 2023.
Figure 5.
Control (%) (A) and shoot dry mass (SDM) reduction (B) in generation 1 of putatively chlorimuron-susceptible (CB-I) and -resistant (CB-III, CB-IV, and CB-VI) C. bonariensis biotypes, evaluated 28 days after herbicide application. INIA-LE, Colonia, Uruguay, 2023.
Figure 5.
Control (%) (A) and shoot dry mass (SDM) reduction (B) in generation 1 of putatively chlorimuron-susceptible (CB-I) and -resistant (CB-III, CB-IV, and CB-VI) C. bonariensis biotypes, evaluated 28 days after herbicide application. INIA-LE, Colonia, Uruguay, 2023.
Figure 6.
Control (%) (A) and shoot dry mass (SDM) reduction (B) in generation 2 of putatively chlorimuron-susceptible (CB-I) and -resistant (CB-III, CB-IV, and CB-VI) C. bonariensis biotypes, evaluated 28 days after herbicide application. INIA-LE, Colonia, Uruguay, 2023.
Figure 6.
Control (%) (A) and shoot dry mass (SDM) reduction (B) in generation 2 of putatively chlorimuron-susceptible (CB-I) and -resistant (CB-III, CB-IV, and CB-VI) C. bonariensis biotypes, evaluated 28 days after herbicide application. INIA-LE, Colonia, Uruguay, 2023.
Table 1.
Origin of Conyza bonariensis biotypes and characterization after the screening with glyphosate (GLY), diclosulam (DIC), and chlorimuron (CHL). INIA-LE, Colonia-Uruguay, 2023.
Table 1.
Origin of Conyza bonariensis biotypes and characterization after the screening with glyphosate (GLY), diclosulam (DIC), and chlorimuron (CHL). INIA-LE, Colonia-Uruguay, 2023.
Biotype | Municipality | Department | Crop | Characterization after Screening |
---|
CB-I | - | - | - | Susceptible to all herbicides |
CB-II | Chamizo | Florida | Soybean/Corn | Moderately resistant to GLY and DIC |
CB-III | La Estazuela | Colonia | Soybean/Corn | Moderately resistant to GLY and CHL |
CB-IV | Riachuelo | Colonia | Soybean/Corn | Resistant to all herbicides |
CB-V | Cuchilla | Soriano | Soybean/Corn | Moderately resistant to DIC |
CB-VI | Perseveriano | Soriano | Soybean/Corn | Moderately resistant to CHL |
Table 2.
Herbicide alternatives tested for managing glyphosate-, diclosulam-, and chlorimuron-resistant C. bonariensis biotypes. INIA-LE, Colonia-Uruguay, 2023.
Table 2.
Herbicide alternatives tested for managing glyphosate-, diclosulam-, and chlorimuron-resistant C. bonariensis biotypes. INIA-LE, Colonia-Uruguay, 2023.
Treatment | Dose (g ai or g ae ha−1) | Group |
---|
Control (unsprayed) | - | - |
Imazethapyr | 98 | B—ALS inhibitors |
Ammonium-glufosinate | 400 | H—GS inhibitors |
Paraquat | 400 | D—photosystem I inhibitors |
Diquat | 400 | D—photosystem I inhibitors |
2,4-D | 727.5 | O—synthetic auxins |
Dicamba | 144 | O—synthetic auxins |
Saflufenacil | 24.5 | E—PPO inhibitors |
Table 3.
Resistance factor (RF) and parameters of the log-logistic equation used to calculate glyphosate doses required for 50% control (C50) and 50% growth reduction (GR50) in generations 1 and 2 of putatively glyphosate-susceptible (CB-I) and -resistant (CB-II, CB-III, and CB-IV) C. bonariensis biotypes, evaluated 28 days after herbicide application (DAA). INIA-LE, Colonia, Uruguay, 2023.
Table 3.
Resistance factor (RF) and parameters of the log-logistic equation used to calculate glyphosate doses required for 50% control (C50) and 50% growth reduction (GR50) in generations 1 and 2 of putatively glyphosate-susceptible (CB-I) and -resistant (CB-II, CB-III, and CB-IV) C. bonariensis biotypes, evaluated 28 days after herbicide application (DAA). INIA-LE, Colonia, Uruguay, 2023.
| Biotype | a | b | C50 or GR50 (g ae ha−1) | R2 | RF |
---|
Generation 1—G1 | Control 28 DAA |
CB-I | 98.13 | 5.53 | 35.30 | 0.99 | - |
CB-II | 93.91 | 402.25 | 598.77 | 0.94 | 16.96 |
CB-III | 92.42 | 299.18 | 407.90 | 0.92 | 11.55 |
CB-IV | 93.45 | 1960.83 | 3872.78 | 0.94 | 109.71 |
SDM Reduction-28 DAA |
CB-I | 94.66 | 1.18 | 33.95 | 0.99 | - |
CB-II | 91.48 | 295.28 | 529.48 | 0.97 | 15.60 |
CB-III | 84.23 | 260.56 | 423.51 | 0.95 | 12.47 |
CB-IV | 88.64 | 1727.84 | 3742.15 | 0.97 | 110.22 |
Generation 2—G2 | Control 28 DAA |
CB-I | 97.65 | 5.77 | 34.84 | 0.99 | - |
CB-II | 86.24 | 432.81 | 645.86 | 0.94 | 18.54 |
CB-III | 91.23 | 299.36 | 445.92 | 0.92 | 12.80 |
CB-IV | 95.31 | 1902.57 | 4011.44 | 0.96 | 115.14 |
SDM Reduction-28 DAA |
CB-I | 94.11 | 5.29 | 34.58 | 0.99 | - |
CB-II | 88.54 | 414.06 | 656.99 | 0.90 | 19.00 |
CB-III | 86.81 | 364.40 | 470.16 | 0.91 | 13.60 |
CB-IV | 92.42 | 2069.18 | 4179.80 | 0.94 | 120.87 |
Table 4.
Resistance factor (RF) and parameters of the log-logistic equation used to calculate diclosulam doses required for 50% control (C50) and 50% growth reduction (GR50) in generations 1 and 2 of putatively diclosulam-susceptible (CB-I) and -resistant (CB-II, CB-IV and CB-V) C. bonariensis biotypes, evaluated 28 days after herbicide application (DAA). INIA-LE, Colonia, Uruguay, 2023.
Table 4.
Resistance factor (RF) and parameters of the log-logistic equation used to calculate diclosulam doses required for 50% control (C50) and 50% growth reduction (GR50) in generations 1 and 2 of putatively diclosulam-susceptible (CB-I) and -resistant (CB-II, CB-IV and CB-V) C. bonariensis biotypes, evaluated 28 days after herbicide application (DAA). INIA-LE, Colonia, Uruguay, 2023.
| Biotype | a | b | C50 or GR50 (g ai ha−1) | R2 | RF |
---|
Generation 1—G1 | Control 28 DAA |
CB-I | 95.87 | 0.44 | 1.34 | 0.97 | - |
CB-II | 95.75 | 2.07 | 4.33 | 0.98 | 3.23 |
CB-IV | 86.62 | 56.91 | 72.44 | 0.92 | 54.06 |
CB-V | 88.02 | 12.11 | 17.75 | 0.93 | 13.25 |
SDM Reduction-28 DAA |
CB-I | 84.79 | 0.22 | 1.32 | 0.99 | - |
CB-II | 78.62 | 1.83 | 3.82 | 0.97 | 2.89 |
CB-IV | 84.27 | 46.00 | 76.33 | 0.95 | 57.82 |
CB-V | 81.66 | 9.67 | 12.23 | 0.92 | 9.26 |
Generation 2—G2 | Control 28 DAA |
CB-I | 96.81 | 0.53 | 1.38 | 0.97 | - |
CB-II | 94.76 | 2.59 | 4.40 | 0.96 | 3.19 |
CB-IV | 85.18 | 66.40 | 81.86 | 0.92 | 59.32 |
CB-V | 95.46 | 12.28 | 19.97 | 0.94 | 14.47 |
SDM Reduction-28 DAA |
CB-I | 86.97 | 0.24 | 1.29 | 0.99 | - |
CB-II | 78.05 | 1.78 | 3.19 | 0.95 | 2.47 |
CB-IV | 87.59 | 37.90 | 70.85 | 0.98 | 54.92 |
CB-V | 79.56 | 9.70 | 16.59 | 0.95 | 12.86 |
Table 5.
Resistance factor (RF) and parameters of the log-logistic equation used to calculate chlorimuron doses required for 50% control (C50) and 50% growth reduction (GR50) in generations 1 and 2 of putatively chlorimuron-susceptible (CB-I) and -resistant (CB-III, CB-IV, and CB-VI) C. bonariensis biotypes, evaluated 28 days after herbicide application (DAA). INIA-LE, Colonia, Uruguay, 2023.
Table 5.
Resistance factor (RF) and parameters of the log-logistic equation used to calculate chlorimuron doses required for 50% control (C50) and 50% growth reduction (GR50) in generations 1 and 2 of putatively chlorimuron-susceptible (CB-I) and -resistant (CB-III, CB-IV, and CB-VI) C. bonariensis biotypes, evaluated 28 days after herbicide application (DAA). INIA-LE, Colonia, Uruguay, 2023.
| Biotype | a | b | C50 or GR50 (g ai ha−1) | R2 | RF |
---|
Generation 1—G1 | Control 28 DAA |
CB-I | 96.88 | 0.99 | 2.81 | 0.97 | - |
CB-III | 89.74 | 34.34 | 57.16 | 0.93 | 20.34 |
CB-IV | 93.66 | 129.44 | 217.32 | 0.94 | 77.34 |
CB-VI | 88.64 | 15.46 | 22.64 | 0.95 | 8.06 |
SDM Reduction-28 DAA |
CB-I | 84.72 | 0.56 | 2.57 | 0.96 | - |
CB-III | 84.38 | 24.46 | 53.23 | 0.93 | 20.71 |
CB-IV | 86.60 | 102.14 | 204.14 | 0.95 | 79.43 |
CB-VI | 79.06 | 11.99 | 19.40 | 0.96 | 7.54 |
Generation 2—G2 | Control 28 DAA |
CB-I | 97.90 | 0.80 | 2.78 | 0.98 | - |
CB-III | 88.48 | 31.19 | 60.88 | 0.96 | 21.90 |
CB-IV | 81.92 | 148.07 | 232.87 | 0.93 | 83.77 |
CB-VI | 100.08 | 6.95 | 15.16 | 0.99 | 5.45 |
SDM Reduction-28 DAA |
CB-I | 87.55 | 0.49 | 2.63 | 0.98 | - |
CB-III | 86.93 | 27.83 | 56.58 | 0.96 | 21.52 |
CB-IV | 80.28 | 138.75 | 234.26 | 0.93 | 89.07 |
CB-VI | 92.93 | 8.89 | 16.61 | 0.97 | 6.32 |
Table 6.
Evaluation of control (%) in Conyza bonariensis biotypes susceptible and resistant to glyphosate, diclosulam, and chlorimuron, treated with alternative herbicides. Assessment conducted 28 days after application. INIA-LE, Colonia, Uruguay, 2023.
Table 6.
Evaluation of control (%) in Conyza bonariensis biotypes susceptible and resistant to glyphosate, diclosulam, and chlorimuron, treated with alternative herbicides. Assessment conducted 28 days after application. INIA-LE, Colonia, Uruguay, 2023.
Treatment | Biotype |
---|
CB-I | CB-II | CB-III | CB-IV | CB-V | CB-VI |
---|
| % |
Untreated | 0.00 Ba * | 0.00 Ba | 0.00 Ca | 0.00 Ca | 0.00 Ca | 0.00 Ca |
Imazethapyer | 98.00 Aa | 96.50 Aa | 78.50 Bb | 22.75 Bc | 82.25 Bb | 73.50 Bbc |
Ammonium-glufosinate | 100.00 Aa | 100.00 Aa | 100.00 Aa | 100.00 Aa | 100.00 Aa | 100.00 Aa |
Paraquat | 100.00 Aa | 100.00 Aa | 100.00 Aa | 100.00 Aa | 100.00 Aa | 100.00 Aa |
Diquat | 100.00 Aa | 97.00 Aa | 100.00 Aa | 98.50 Aa | 98.25 Aa | 96.75 Aa |
2,4-D | 100.00 Aa | 100.00 Aa | 100.00 Aa | 70.25 Bc | 96.50 Aab | 90.50 Bb |
Dicamba | 100.00 Aa | 100.00 Aa | 98.75 Aa | 95.75 Aa | 100.00 Aa | 97.25 Aa |
Saflufenacil | 100.00 Aa | 98.25 Aa | 100.00 Aa | 97.50 Aa | 100.00 Aa | 100.00 Aa |
CV (%) ** | 12.27 |
Table 7.
Shoot dry mass (SDM) accumulation of Conyza bonariensis biotypes susceptible and resistant to glyphosate, diclosulam, and chlorimuron, treated with alternative herbicides. Assessment conducted 28 days after application. INIA-LE, Colonia, Uruguay, 2023.
Table 7.
Shoot dry mass (SDM) accumulation of Conyza bonariensis biotypes susceptible and resistant to glyphosate, diclosulam, and chlorimuron, treated with alternative herbicides. Assessment conducted 28 days after application. INIA-LE, Colonia, Uruguay, 2023.
Treatment | Biotype |
---|
CB-I | CB-II | CB-III | CB-IV | CB-V | CB-VI |
---|
| g |
Control | 2.156 Aa * | 1.305 Ab | 1.593 Ab | 2.147 Aa | 2.337 Aa | 1.315 Ab |
Imazethapyr | 0.376 Bc | 0.365 Bc | 0.455 Bc | 1.985 Aa | 1.071 Bb | 0.504 Bc |
Amonium- glufosinate | 0.072 Ca | 0.101 Ca | 0.120 Ca | 0.105 Ca | 0.095 Da | 0.089 Ca |
Paraquat | 0.068 Ca | 0.114 Ca | 0.093 Ca | 0.127 Ca | 0.143 Da | 0.108 Ca |
Diquat | 0.095 Ca | 0.148 Ca | 0.135 Ca | 0.182 Ca | 0.139 Da | 0.200 Ca |
2,4-D | 0.238 BCc | 0.312 Bc | 0.286 BCc | 1.356 Ba | 0.527 Cbc | 0.708 Bb |
Dicamba | 0.211 BCa | 0.182 BCa | 0.231 BCa | 0.248 Ca | 0.237 Da | 0.165 Ca |
Saflufenacil | 0.128 BCa | 0.194 BCa | 0.187 BCa | 0.204 Ca | 0.192 Da | 0.174 Ca |
CV (%) ** | 14.72 |