Upland cotton,
Cotton (
Cultivar | Company | ||
---|---|---|---|
Fibermax 1621 GL | PRa | BASF; Ludwigshafen, Germany | |
Fibermax 1911 GLT | PR | BASF; Ludwigshafen, Germany | |
Fibermax 2011 GT | PR | BASF; Ludwigshafen, Germany | |
Fibermax 1730 GLTP | PR | BASF; Ludwigshafen, Germany | |
Stoneville 4946 GLB2 | PR | BASF; Ludwigshafen, Germany | |
Stoneville 5600 B2XF | PR | BASF; Ludwigshafen, Germany | |
Deltapine 2141 NR B3XF | PR | PR | Bayer; Leverkusen, Germany |
Deltapine 2143 NR B3XF | PR | PR | Bayer; Leverkusen, Germany |
Deltapine 1454NR B2RF | NRb | Bayer; Leverkusen, Germany | |
Deltapine 1558NR B2RF | NR | Bayer; Leverkusen, Germany | |
Deltapine 1747NR B2RF | NR | Bayer; Leverkusen, Germany | |
Deltapine 1823NR B2XF | NR | Bayer; Leverkusen, Germany | |
PhytoGen 250 W3FE | PR | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 332 W3FE | Rc | R | Corteva AgriScience; Indianapolis, IN |
PhytoGen 350 W3FE | PR | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 390 W3FE | R | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 400 W3FE | PR | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 430 W3FE | PR | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 440 W3FE | PR | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 443 W3FE | R | R | Corteva AgriScience; Indianapolis, IN |
PhytoGen 545 W3FE | R | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 320 W3FE | PR | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 360 W3FE | R | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 417 WRF | HRd | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 427 W3FE | R | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 480 W3FE | HR | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 530 W3FE | R | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 580 W3FE | HR | Corteva AgriScience; Indianapolis, IN |
a PR are cultivars reported with partial resistant to
b NR are cultivars reported to be resistant to
c R are cultivars reported to have some form of resistance, but not fully evaluated yet.
d HR are cultivars reported to have high resistance with two homologous resistant genes.
New nematicides and nematicide combinations provide additional management tools. The seed treatment BIOST Nematicide 100 (Albaugh, Ankeny, IA) is labeled to protect cotton against nematodes. BIOST Nematicide 100 is a biological nematicide derived from heat-killed
We hypothesized that combining the use of nematode resistant cotton cultivars with additional seed treatment and in-furrow nematicides would provide for an integrated nematode management system for
Greenhouse experiments were established to evaluate the population density of
Cotton cultivar PHY 340 W3FE [susceptible(S)], PHY 360 W3FE [
Number | Cotton cultivar | Nematicides | 2020 rates | 2021 rates | Application |
---|---|---|---|---|---|
1 | PHY 340 W3FE (S) | No nematicide | |||
2 | PHY 340 W3FE (S) | Reklemela + Vydate C-LVb | 0.28 + 1.24 L/ha | 0.21 + 0.88 L/ ha | In-furrow spray |
3 | PHY 340 W3FE (S) | Reklemel + Vydate C-LV | 0.56 + 2.5 L/ha | 0.28 + 1.24 L/ ha | In-furrow spray |
4 | PHY 340 W3FE (S) | Reklemel + Vydate C-LV | 1.13 + 5.0 L/ha | 0.56 + 2.50 L/ ha | In-furrow spray |
5 | PHY 340 W3FE (S) | BIOST Nematicide 100c | 0.026 mg ai/seed | 0.026 mg ai/ seed | Seed treatment |
6 | PHY 340 W3FE (S) | BIOST Nematicide 100 + Reklemel + Vydate C-LV | 0.026 mg ai/seed + 0.28 + 1.24 L/ ha | 0.026 mg ai/ seed + 0.21 + 0.884 L/ha | Seed treatment + In-furrow spray |
7 | PHY 340 W3FE (S) | BIOST Nematicide 100 + Reklemel + Vydate C-LV | 0.026 mg ai/seed + 0.56 + 2.50 L/ ha | 0.026 mg ai/ seed + 0.28 + 1.24 L/ha | Seed treatment + In-furrow spray |
8 | PHY 340 W3FE (S) | BIOST Nematicide 100 + Reklemel + Vydate C-LV | 0.026 mg ai/seed + 1.13 + 5.0 L/ha | 0.026 mg ai/ seed + 1.13 + 5.0 L/ha | Seed treatment + In-furrow spray |
9 | PHY 360 W3FE (R) or PHY 332 W3FE (R)c | No nematicide | |||
10 | PHY 360 W3FE (R) or PHY 332 W3FE (R) | Reklemel + Vydate C-LV | 0.28 + 1.24 L/ha | 0.21 + 0.88 L/ ha | In-furrow spray |
11 | PHY 360 W3FE (R) or PHY 332 W3FE (R) | Reklemel + Vydate C-LV | 0.56 + 2.5 L/ha | 0.28 + 1.24 L/ ha | In-furrow spray |
12 | PHY 360 W3FE (R) or PHY 332 W3FE (R) | Reklemel + Vydate C-LV | 1.13 + 5.0 L/ha | 0.56 + 2.50 L/ ha | In-furrow spray |
13 | PHY 360 W3FE (R) or PHY 332 W3FE (R) | BIOST Nematicide 100e | 0.026 mg ai/seed | 0.026 mg ai/ seed | Seed treatment |
14 | PHY 360 W3FE (R) or PHY 332 W3FE (R) | BIOST Nematicide 100 + Reklemel + Vydate C-LV | 0.026 mg ai/seed + 0.28 + 1.24 L/ ha | 0.026 mg ai/ seed + 0.21 + 0.88 L/ha | Seed treatment + In-furrow spray |
15 | PHY 360 W3FE (R) or PHY 332 W3FE (R) | BIOST Nematicide 100 + Reklemel + Vydate C-LV | 0.026 mg ai/seed + 0.56 + 2.50 L/ ha | 0.026 mg ai/ seed + 0.28 + 1.24 L/ha | Seed treatment + In-furrow spray |
16 | PHY 360 W3FE (R) or PHY 332 W3FE (R) | BIOST Nematicide 100 + Reklemel + Vydate C-LV | 0.026 mg ai/seed + 1.13 + 5.0 L/ha | 0.026 mg ai/ seed + 0.56 + 5.0 L/ha | Seed treatment + In-furrow spray |
a Reklemel active nematicide is 500g/L Fluazaindolizine.
b Vydate C-LV active nematicide is 452 g/L Oxamyl.
c Heat-killed
Data were collected at 30 d after planting (DAP) for all greenhouse experiments. Plant parameters included plant stand, (PS), plant height (PH), shoot fresh weight (SFW), root fresh weight (RFW), and biomass (SFW + RFW). Nematode parameters of
Nematicides included a seed treatment and in-furrow spray applications. BIOST Nematicide 100 seed treatment was applied by Corteva at 0.026 mg ai/seed. At planting, an in-furrow spray application of Reklemel and Vydate C-LV (Table 2) were applied in the furrow directly behind the seed at 30 PSI using 8,002 flat fan nozzles at PBU and a 30-PSI orifice at TVREC. In-furrow nematicide applications were made at rates of Reklemel 0.28 L/ha (140 g/ ha), 0.56 L/ha (280 g/ha), and 1.13 L/ha (560 g/ ha), combined with Vydate C-LV at 1.24 L/ha (560 g/ha), 2.5 L/ha (1120 g/ha), and 5.0 L/ha (2240 g/ ha) in 2020. In 2021, in-furrow spray applications were reduced and applied at 0.21 L/ha (110 g/ha), 0.28 L/ha (140 g/ha), and 0.56 L/ha (280 g/ha) for Reklemel, and 0.88 L/ha (392 g/ha), 1.24 L/ha (560 g/ha), and 2.5 L/ha (1120 g/ha) for Vydate C-LV. Field plots were irrigated with a center pivot sprinkler system at PBU and a lateral irrigation system at TVREC as needed throughout the growing season. Planting and harvest dates in 2020 were May 7 and October 7 at PBU, and May 5 and October 21 at TVREC. PBU and TVREC sites in 2021 were planted April 27 and May 7 and harvested October 20 and November 8, respectively.
Data collected from field experiments were analyzed in SAS 9.4 (SAS Institute, Cary, NC) using the PROC GLIMMIX. A two-way factorial ANOVA analysis was conducted with cultivar, nematicides, and cultivar x nematicides for each year of the experiments. Dependent variables were PS, PH, SFW, RFW, biomass, gall ratings,
Greenhouse trial LS means for PHY 360 W3FE,
Cotton cultivar | Plant height (cm) | Shoot fresh weight (g) | Root fresh weight (g) | Biomass (g) | Total | |
---|---|---|---|---|---|---|
PHY 360 W3FE | 12.63 A | 6.55 a | 4.31 b | 10.85 a | 194 b | 42 B |
PHY 340 W3FEb | 11.95 ac | 6.21 a | 6.68 a | 12.89 a | 1922 a | 353 A |
0.4848 | 0.6348 | 0.0024 | 0.0749 | 0.0001 | 0.0009 | |
PHY 332 W3FE | 11.02 A | 5.5 a | 4.57 a | 10.06 a | 447 b | 146 A |
PHY 340 W3FE | 11.97 A | 6.24 a | 6.55 a | 12.79 a | 1935 a | 358 A |
0.3803 | 0.3223 | 0.0797 | 0.0871 | 0.0003 | 0.0810 |
aData for
bAll seeds were treated with Metalaxyl 4.0 ST, Fludioxonil 4L ST, Myclobutanil 240 ST, Resonate 600.
cValues present are LS-means separated using the Tukey-Kramer method at
In the greenhouse setting with
Figure 1

Field trial LS means for PHY 360 W3FE [
Source of variation (F-value) | Plant stand (13 m row) | Plant height (cm) | Root fresh weight (g) | Biomass (g) | Lint cotton yield (kg/ha) |
---|---|---|---|---|---|
Cultivara | 0.0001****b | 0.5451 | 0.1338 | 0.0206* | 0.0402** |
Nematicidec | 0.0001**** | 0.1340 | 0.3412 | 0.1491 | 0.001*** |
Cultivar x Nematicide | 0.3891 | 0.9234 | 0.9204 | 0.9481 | 0.3753 |
PHY 360 W3FE (R) | 44.58d b | 13.91 a | 0.49 a | 4.57 b | 1621 a |
PHY 340 W3FE (S) | 71.58 a | 13.69 a | 0.52 a | 5.06 a | 1529 b |
No nematicide | 63.25 a | 14.13 a | 0.50 a | 4.74 a | 1527 ab |
Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 60.65 a | 14.79 a | 0.52 a | 5.17 a | 1489 ab |
Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 45.65 b | 13.43 a | 0.49 a | 4.22 a | 1363 b |
Reklemel (1.13 L/ha) + Vydate C-LV (5.0 L/ha) | 48.00 b | 13.20 a | 0.54 a | 4.77 a | 1458 ab |
BIOST Nematicide 100e (0.026 mg ai/seed) | 61.35 a | 12.74 a | 0.47 a | 4.41 a | 1657 a |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 63.45 a | 14.15 a | 0.51 a | 5.33 a | 1716 a |
BIOST Nematicide 100(0.026 mg ai/seed) + Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 62.70 a | 13.74 a | 0.50 a | 4.81 a | 1720 a |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (1.13 L/ha) + Vydate C-LV (5.0 L/ha) | 59.55 a | 14.25 a | 0.53 a | 5.08 a | 1671 a |
aAll seeds were treated with Metalaxyl 4.0 ST, Fludioxonil 4L ST, Myclobutanil 240 ST, Resonate 600.
b
cReklemel and Vydate C-LV were applied at planting as an in-furrow spray and BIOST Nematicide 100 was a seed treatment previously added to the seeds.
dValues present are LS-means separated using the Tukey-Kramer method at
Nematicide combinations of Reklemel + Vydate C-LV at the rates (0.56 + 2.5 L/ha) and (1.13 + 5.0 L/ ha), respectively, had a significantly lower plant stand compared to all other nematicide combinations. The nematicide combinations did not significantly affect PH, RFW, or biomass. The BIOST Nematicide 100 seed treatment alone or combined with all rates of Reklemel (0.28, or 0.56, or 1.13 L/ha) + Vydate C-LV (1.24, or 2.5, or 5.0 L/ha) supported the highest lint yields compared to the Reklemel + Vydate C-LV (0.56 + 2.5 L/ha) alone. Lint yield was increased by an average of 164 kg/ha or 9% with the addition of the BIOST plus Reklemel and Vydate C-LV nematicide across all rates compared to the no-nematicide control.
The two-way factorial ANOVA analysis indicated gall ratings were significant for cotton variety response only. Gall ratings conducted 40 DAP showed significantly less galling (
Figure 2
Field trial

Field trial LS means for PHY 360 W3FE [
Source of variation (F-value) | Plant stand (13 m row) | Plant height (cm) | Root fresh weight (g) | Biomass (g) | Lint yield (cotton kg/ha) |
---|---|---|---|---|---|
Cultivara | 0.0334*b | 0.6081 | 0.7150 | 0.0430** | 0.230**** |
Nematicidec | 0.2073 | 0.0001**** | 0.0001**** | 0.0001*** | 0.2907*** |
Cultivar x Nematicide | 0.9026 | 0.7749 | 0.5254 | 0.7427 | 0.6664 |
PHY 360 W3FE (R) | 81.33d a | 16.88 a | 3.26 a | 42.44 a | 1411 a |
PHY 340 W3FE (S) | 83.69 a | 16.73 a | 3.22 a | 39.31 b | 887 b |
No nematicide | 82.25 a | 15.09 c | 2.34 d | 30.82 d | 964 B |
Reklemel (0.21 L/ha) + Vydate C-LV (0.88 L/ha) | 82.35 a | 16.53 bc | 2.96 bcd | 37.03 cd | 1221 Ab |
Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 84.00 a | 16.41 bc | 3.18 bcd | 40.07 bcd | 1002 Ab |
Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 81.50 a | 17.36 ab | 3.41abc | 43.25 abc | 1171 Ab |
BIOST Nematicide 100e (0.026 mg ai/seed) | 84.85 a | 14.94 c | 2.75 cd | 33.15 d | 1060 Ab |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (0.21 L/ha) + Vydate CLV (0.88 L/ha) | 82.30 a | 17.84 ab | 3.71 ab | 47.79 ab | 1143 Ab |
BIOST Nematicide 100(0.026 mg ai/seed) + Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 83.90 a | 17.55 ab | 3.41 abc | 43.78 abc | 1316 A |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 78.90 a | 18.70 a | 4.09 a | 51.11 a | 1315 A |
a All seeds were treated with Metalaxyl 4.0 ST, Fludioxonil 4L ST, Myclobutanil 240 ST, Resonate 600.
b
c Reklemel and Vydate C-LV were applied at planting as an in-furrow spray and BIOST Nematicide 100 was a seed treatment previously added to the seeds.
d Values present are LS-means separated using the Tukey-Kramer method at
Plant stand was similar between the nematicide combinations. The nematicide combinations did significantly affect PH, RFW, biomass, and lint yields. The nematicide combination BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel + Vydate C-LV (0.56 + 2.5 L/ha) had significantly taller plants and heavier root fresh weights over the no-nematicide control and the two lowest rates of Reklemel (0.21 and 0.28 L/ ha) + Vydate C-LV (0.88 and 1.24 L/ha) without BIOST Nematicide 100 and the BIOST Nematicide 100 seed treatment nematicide alone. Plant biomass was also greater in the BIOST Nematicide 100, plus all three rates of Reklemel (0.21, 0.28, and 0.56 L/ha) + Vydate C-LV (0.88, 1.24 and 2.5 L/ha) combinations, compared to BIOST Nematicide 100 alone and the no-nematicide control. The nematicide combinations of BIOST Nematicide 100 + Reklemel (0.28 and 0.56 L/ha) + Vydate C-LV (1.24 and 2.5 L/ha) supported the largest lint yields, averaging 352 kg/ha or 27% more lint yield compared to the no-nematicide control.
The two-way factorial ANOVA analysis indicated nematode gall ratings at 40 DAP were significant for cotton variety but not nematicide. Gall ratings at 40 DAP indicated significantly less galling (
A significant interaction was observed between cotton cultivar x nematicides for the nematode parameters
Figure 3
Field trial

Figure 4
Auburn University’s Tennessee Valley Research Extension Center showing the nematode susceptible PHY 340 W3FE on the left and the

Source of variation (F-value) | Plant stand (13 m row) | Plant height (cm) | Root fresh weight (g) | Biomass (g) | Lint cotton yield (kg/ha) |
---|---|---|---|---|---|
Cultivara | 0.0001****b | 0.0139*** | 0.0004**** | 0.0001**** | 0.0001**** |
Nematicidec | 0.0732* | 0.0001*** | 0.0001**** | 0.0001*** | 0.0001**** |
Cultivar x Nematicide | 0.0966 | 0.3482 | 0.9314 | 0.9473 | 0.1298 |
PHY 332 W3FE (R) | 51.20d a | 13.42 a | 2.52 a | 21.82 A | 1998 b |
PHY 340 W3FE (S) | 41.34 b | 12.42 b | 1.97 b | 16.62 B | 1284 a |
No nematicide | 51.20 a | 11.73 c | 1.72 c | 14.32 B | 1289 c |
Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 46.85 a | 13.33 abc | 2.14 abc | 19.29 ab | 1545 ab |
Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 50.35 a | 14.10 a | 2.64 a | 23.70 A | 1732 ab |
Reklemel (1.13 L/ha) + Vydate C-LV (5.0 L/ha) | 46.70 a | 12.63 abc | 1.98 bc | 18.13 ab | 1668 ab |
BIOST Nematicide 100e (0.026 mg ai/seed) | 46.80 a | 12.36 bc | 2.1 abc | 18.08 ab | 1504 bc |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 40.20 a | 12.59 abc | 2.12 abc | 17.67 ab | 1687 ab |
BIOST Nematicide 100(0.026 mg ai/seed) + Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 45.10 a | 13.45 ab | 2.71 a | 21.95 A | 1777 a |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (1.13 L/ha) + Vydate C-LV (5.0 L/ha) | 42.95 a | 13.16 abc | 2.57 ab | 20.60 A | 1731 ab |
aAll seeds were treated with Metalaxyl 4.0 ST, Fludioxonil 4L ST, Myclobutanil 240 ST, Resonate 600.
b
cReklemel and Vydate C-LV were applied at planting as an in-furrow spray and BIOST Nematicide 100 was a seed treatment previously added to the seeds.
dValues present are LS-means separated using the Tukey-Kramer method at
The addition of the nematicides did not have a significant effect on plant stand in the
A significant interaction was observed between cotton cultivar x nematicides for the nematode parameters for
Figure 5
Field trial

Field trial LS means for PHY 332 W3FE [
Source of variation (F-value) | Plant stand (13 m row) | Plant height (cm) | Root fresh weight (g) | Biomass (g) | Lint cotton yield (kg/ha) |
---|---|---|---|---|---|
Cultivara | 0.0001****b | 0.8351 | 0.1794 | 0.0207** | 0.0001**** |
Nematicidec | 0.0209** | 0.0001*** | 0.0001**** | 0.0001**** | 0.0001**** |
Cultivar x Nematicide | 0.1123 | 0.9458 | 0.7584 | 0.7887 | 0.8616 |
PHY 332 W3FE (R) | 40.85d a | 11.22 a | 1.20 a | 12.46 A | 1692 a |
PHY 340 W3FE (S) | 24.81 b | 12.42 a | 1.10 a | 11.07 B | 989 b |
No nematicide | 30.07 ab | 9.68 c | 0.74 c | 8.07 C | 1008 c |
Reklemel (0.21 L/ha) + Vydate C-LV (0.88 L/ha) | 39.62 a | 10.61 abc | 1.10 abc | abc 10.90 | 1253 bc |
Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 34.26 ab | 11.64 ab | 1.30 a | 12.96 ab | 1456 ab |
Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 35.60 ab | 11.48 abc | 1.32 a | 12.49 ab | 1445 ab |
BIOST Nematicide 100e (0.026 mg ai/seed) | 32.43 ab | 10.28 bc | 0.87 bc | 9.30 bc | 1099 c |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (0.21 L/ha) + Vydate C-LV (0.88 L/ha) | 32.37 ab | 12.15 a | 1.33 a | 13.55 A | 1334 abc |
BIOST Nematicide 100(0.026 mg ai/seed) + Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 30.19 ab | 12.00 ab | 1.35 a | 14.23 A | 1538 ab |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 28.10 b | 11.63 ab | 1.20 ab | 12.62 ab | 1591 a |
aAll seeds were treated with Metalaxyl 4.0 ST, Fludioxonil 4L ST, Myclobutanil 240 ST, Resonate 600.
b
cReklemel and Vydate C-LV were applied at planting as an in-furrow spray and BIOST Nematicide 100 was a seed treatment previously added to the seeds.
dValues present are LS-means separated using the Tukey-Kramer method at
The lowest rate nematicide combination of Reklemel + Vydate C-LV (0.21 L/ha + 0.88 L/ha) supported a plant stand of 5.2 plants per meter of row as compared to BIOST Nematicide 100 + Reklemel + Vydate C-LV (0.56 + 2.5 L/ha), which supported 3.7 plants per meter of row. Plant height was significantly increased with the nematicide combination BIOST Nematicide 100 + Reklemel (0.21 L/ha) + Vydate C-LV (0.88 L/ha) as compared to the BIOST Nematicide 100 alone and the no-nematicide control. Root fresh weight was increased in the nematicide combinations of Reklemel (0.21 or 0.28 L/ha) + Vydate C-LV (0.88 or 1.24 L/ha) with or without BIOST Nematicide 100 seed treatment as compared to the no-nematicide control. Similarly, plant biomass was also significantly larger in the Reklemel (0.21 or 0.28 L/ha) + Vydate C-LV (0.88 or 1.24 L/ha) but only when combined with BIOST Nematicide 100 seed treatment as compared to the no-nematicide control. Lint cotton yields were greater in the nematicide combination of Reklemel + Vydate C-LV (0.56 + 2.5 L/ha) in combination with BIOST Nematicide 100 than the BIOST Nematicide 100 alone and the no-nematicide control. Lint yield was increased (
A significant interaction was observed between the cultivar and nematicides in the presence of
Figure 6
Field trial

The primary goal of this study was to determine if the cultivars PHY 360 (R) and PHY 332 (R) would support lower nematode population density and produce a higher cotton yield compared to the nematode-susceptible cultivar PHY 340 (S) in fields with a history of high nematode pressure. In the greenhouse setting with
Results of our field experiments confirm previous reports that PHY 340 (S) is susceptible and serves as a good host to
The secondary goal was to evaluate the potential of the addition of BIOST Nematicide 100 seed treatment nematicide with the addition of Reklemel and Vydate C-LV in-furrow spray nematicides to the resistant cotton cultivars PHY 360 and PHY 332 to further manage
The nematicide combination that supported the largest lint yield was the BIOST Nematicide 100 + Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha). A similar study done by Koenning et al. (2004) indicated that increasing nematicide rate led to increased lint yields. We observed that the combination of nematicides applied as a seed treatment with an additional in-furrow treatment at planting increased lint yield an average of 26% when compared to no nematicide, while adding Reklemel + Vydate alone increased lint yield 17% compared to no nematicide. An application of BIOST Nematicide 100 increased yield by 8% alone. A trial conducted by Dyer et al. (2016) supports this conclusion and found that nematicide seed treatment BIOST Nematicide 100 increased lint yield ranging from 1% to 12%, depending on the rate of the seed treatment.
Overall,
Figure 1

Figure 2

Figure 3

Figure 4

Figure 5

Figure 6

Field trial LS means for PHY 360 W3FE [M. incognita resistant (R)] and PHY 340 W3FE [M. incognita susceptible (S)] cotton variety and nematicide combination effects on plant stand, plant height, root fresh weight, plant biomass, and lint cotton yield at the Plant Breeding Unit, Shorter, AL in 2021.
Source of variation (F-value) | Plant stand (13 m row) | Plant height (cm) | Root fresh weight (g) | Biomass (g) | Lint yield (cotton kg/ha) |
---|---|---|---|---|---|
Cultivara | 0.0334*b | 0.6081 | 0.7150 | 0.0430** | 0.230**** |
Nematicidec | 0.2073 | 0.0001**** | 0.0001**** | 0.0001*** | 0.2907*** |
Cultivar x Nematicide | 0.9026 | 0.7749 | 0.5254 | 0.7427 | 0.6664 |
PHY 360 W3FE (R) | 81.33d a | 16.88 a | 3.26 a | 42.44 a | 1411 a |
PHY 340 W3FE (S) | 83.69 a | 16.73 a | 3.22 a | 39.31 b | 887 b |
No nematicide | 82.25 a | 15.09 c | 2.34 d | 30.82 d | 964 B |
Reklemel (0.21 L/ha) + Vydate C-LV (0.88 L/ha) | 82.35 a | 16.53 bc | 2.96 bcd | 37.03 cd | 1221 Ab |
Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 84.00 a | 16.41 bc | 3.18 bcd | 40.07 bcd | 1002 Ab |
Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 81.50 a | 17.36 ab | 3.41abc | 43.25 abc | 1171 Ab |
BIOST Nematicide 100e (0.026 mg ai/seed) | 84.85 a | 14.94 c | 2.75 cd | 33.15 d | 1060 Ab |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (0.21 L/ha) + Vydate CLV (0.88 L/ha) | 82.30 a | 17.84 ab | 3.71 ab | 47.79 ab | 1143 Ab |
BIOST Nematicide 100(0.026 mg ai/seed) + Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 83.90 a | 17.55 ab | 3.41 abc | 43.78 abc | 1316 A |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 78.90 a | 18.70 a | 4.09 a | 51.11 a | 1315 A |
Field trial LS means for PHY 360 W3FE [M. incognita resistant (R)] and PHY 340 W3FE [M. incognita susceptible (S)] cotton variety and nematicide combination effects on plant stand, plant height, root fresh weight, plant biomass, and lint cotton yield at the Plant Breeding Unit, Shorter, AL in 2020.
Source of variation (F-value) | Plant stand (13 m row) | Plant height (cm) | Root fresh weight (g) | Biomass (g) | Lint cotton yield (kg/ha) |
---|---|---|---|---|---|
Cultivara | 0.0001****b | 0.5451 | 0.1338 | 0.0206* | 0.0402** |
Nematicidec | 0.0001**** | 0.1340 | 0.3412 | 0.1491 | 0.001*** |
Cultivar x Nematicide | 0.3891 | 0.9234 | 0.9204 | 0.9481 | 0.3753 |
PHY 360 W3FE (R) | 44.58d b | 13.91 a | 0.49 a | 4.57 b | 1621 a |
PHY 340 W3FE (S) | 71.58 a | 13.69 a | 0.52 a | 5.06 a | 1529 b |
No nematicide | 63.25 a | 14.13 a | 0.50 a | 4.74 a | 1527 ab |
Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 60.65 a | 14.79 a | 0.52 a | 5.17 a | 1489 ab |
Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 45.65 b | 13.43 a | 0.49 a | 4.22 a | 1363 b |
Reklemel (1.13 L/ha) + Vydate C-LV (5.0 L/ha) | 48.00 b | 13.20 a | 0.54 a | 4.77 a | 1458 ab |
BIOST Nematicide 100e (0.026 mg ai/seed) | 61.35 a | 12.74 a | 0.47 a | 4.41 a | 1657 a |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 63.45 a | 14.15 a | 0.51 a | 5.33 a | 1716 a |
BIOST Nematicide 100(0.026 mg ai/seed) + Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 62.70 a | 13.74 a | 0.50 a | 4.81 a | 1720 a |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (1.13 L/ha) + Vydate C-LV (5.0 L/ha) | 59.55 a | 14.25 a | 0.53 a | 5.08 a | 1671 a |
Field trial LS means for PHY 332 W3FE [R. reniformis-resistant (R)] and PHY 340 W3FE [R. reniformis-susceptible (S)] cotton variety and nematicide combination effects on plant stand, plant height, root fresh weight, plant biomass, and lint cotton yield at the Tennessee Valley Research and Extension Center, Belle Mina, AL in 2021.
Source of variation (F-value) | Plant stand (13 m row) | Plant height (cm) | Root fresh weight (g) | Biomass (g) | Lint cotton yield (kg/ha) |
---|---|---|---|---|---|
Cultivara | 0.0001****b | 0.8351 | 0.1794 | 0.0207** | 0.0001**** |
Nematicidec | 0.0209** | 0.0001*** | 0.0001**** | 0.0001**** | 0.0001**** |
Cultivar x Nematicide | 0.1123 | 0.9458 | 0.7584 | 0.7887 | 0.8616 |
PHY 332 W3FE (R) | 40.85d a | 11.22 a | 1.20 a | 12.46 A | 1692 a |
PHY 340 W3FE (S) | 24.81 b | 12.42 a | 1.10 a | 11.07 B | 989 b |
No nematicide | 30.07 ab | 9.68 c | 0.74 c | 8.07 C | 1008 c |
Reklemel (0.21 L/ha) + Vydate C-LV (0.88 L/ha) | 39.62 a | 10.61 abc | 1.10 abc | abc 10.90 | 1253 bc |
Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 34.26 ab | 11.64 ab | 1.30 a | 12.96 ab | 1456 ab |
Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 35.60 ab | 11.48 abc | 1.32 a | 12.49 ab | 1445 ab |
BIOST Nematicide 100e (0.026 mg ai/seed) | 32.43 ab | 10.28 bc | 0.87 bc | 9.30 bc | 1099 c |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (0.21 L/ha) + Vydate C-LV (0.88 L/ha) | 32.37 ab | 12.15 a | 1.33 a | 13.55 A | 1334 abc |
BIOST Nematicide 100(0.026 mg ai/seed) + Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 30.19 ab | 12.00 ab | 1.35 a | 14.23 A | 1538 ab |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 28.10 b | 11.63 ab | 1.20 ab | 12.62 ab | 1591 a |
Cotton (Gossypium hirsutum) cultivars grouped into M. incognita (Mi) or R. reniformis (Rr) resistance categories by company.
Cultivar | Company | ||
---|---|---|---|
Fibermax 1621 GL | PRa | BASF; Ludwigshafen, Germany | |
Fibermax 1911 GLT | PR | BASF; Ludwigshafen, Germany | |
Fibermax 2011 GT | PR | BASF; Ludwigshafen, Germany | |
Fibermax 1730 GLTP | PR | BASF; Ludwigshafen, Germany | |
Stoneville 4946 GLB2 | PR | BASF; Ludwigshafen, Germany | |
Stoneville 5600 B2XF | PR | BASF; Ludwigshafen, Germany | |
Deltapine 2141 NR B3XF | PR | PR | Bayer; Leverkusen, Germany |
Deltapine 2143 NR B3XF | PR | PR | Bayer; Leverkusen, Germany |
Deltapine 1454NR B2RF | NRb | Bayer; Leverkusen, Germany | |
Deltapine 1558NR B2RF | NR | Bayer; Leverkusen, Germany | |
Deltapine 1747NR B2RF | NR | Bayer; Leverkusen, Germany | |
Deltapine 1823NR B2XF | NR | Bayer; Leverkusen, Germany | |
PhytoGen 250 W3FE | PR | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 332 W3FE | Rc | R | Corteva AgriScience; Indianapolis, IN |
PhytoGen 350 W3FE | PR | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 390 W3FE | R | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 400 W3FE | PR | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 430 W3FE | PR | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 440 W3FE | PR | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 443 W3FE | R | R | Corteva AgriScience; Indianapolis, IN |
PhytoGen 545 W3FE | R | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 320 W3FE | PR | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 360 W3FE | R | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 417 WRF | HRd | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 427 W3FE | R | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 480 W3FE | HR | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 530 W3FE | R | Corteva AgriScience; Indianapolis, IN | |
PhytoGen 580 W3FE | HR | Corteva AgriScience; Indianapolis, IN |
Field trial LS means for PHY 332 W3FE [R. reniformis-resistant (R)] and PHY 340 W3FE [R. reniformis-susceptible (S)] cotton variety and nematicide combination effects on plant stand, plant height, root fresh weight, plant biomass, and lint cotton yield at the Tennessee Valley Research and Extension Center, Belle Mina, AL in 2020.
Source of variation (F-value) | Plant stand (13 m row) | Plant height (cm) | Root fresh weight (g) | Biomass (g) | Lint cotton yield (kg/ha) |
---|---|---|---|---|---|
Cultivara | 0.0001****b | 0.0139*** | 0.0004**** | 0.0001**** | 0.0001**** |
Nematicidec | 0.0732* | 0.0001*** | 0.0001**** | 0.0001*** | 0.0001**** |
Cultivar x Nematicide | 0.0966 | 0.3482 | 0.9314 | 0.9473 | 0.1298 |
PHY 332 W3FE (R) | 51.20d a | 13.42 a | 2.52 a | 21.82 A | 1998 b |
PHY 340 W3FE (S) | 41.34 b | 12.42 b | 1.97 b | 16.62 B | 1284 a |
No nematicide | 51.20 a | 11.73 c | 1.72 c | 14.32 B | 1289 c |
Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 46.85 a | 13.33 abc | 2.14 abc | 19.29 ab | 1545 ab |
Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 50.35 a | 14.10 a | 2.64 a | 23.70 A | 1732 ab |
Reklemel (1.13 L/ha) + Vydate C-LV (5.0 L/ha) | 46.70 a | 12.63 abc | 1.98 bc | 18.13 ab | 1668 ab |
BIOST Nematicide 100e (0.026 mg ai/seed) | 46.80 a | 12.36 bc | 2.1 abc | 18.08 ab | 1504 bc |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (0.28 L/ha) + Vydate C-LV (1.24 L/ha) | 40.20 a | 12.59 abc | 2.12 abc | 17.67 ab | 1687 ab |
BIOST Nematicide 100(0.026 mg ai/seed) + Reklemel (0.56 L/ha) + Vydate C-LV (2.5 L/ha) | 45.10 a | 13.45 ab | 2.71 a | 21.95 A | 1777 a |
BIOST Nematicide 100 (0.026 mg ai/seed) + Reklemel (1.13 L/ha) + Vydate C-LV (5.0 L/ha) | 42.95 a | 13.16 abc | 2.57 ab | 20.60 A | 1731 ab |
Cotton cultivar PHY 340 W3FE [susceptible(S)], PHY 360 W3FE [M. incognita resistant(R)] and PHY 332 W3FE [R. reniformis resistant (R)] and nematicide rates and combinations used in field experiments conducted at the Plant Breeding Unit (PBU), Shorter, AL and Tennessee Valley Research and Extension Center (TVREC), Belle Mina, AL in 2020 and 2021.
Number | Cotton cultivar | Nematicides | 2020 rates | 2021 rates | Application |
---|---|---|---|---|---|
1 | PHY 340 W3FE (S) | No nematicide | |||
2 | PHY 340 W3FE (S) | Reklemela + Vydate C-LVb | 0.28 + 1.24 L/ha | 0.21 + 0.88 L/ ha | In-furrow spray |
3 | PHY 340 W3FE (S) | Reklemel + Vydate C-LV | 0.56 + 2.5 L/ha | 0.28 + 1.24 L/ ha | In-furrow spray |
4 | PHY 340 W3FE (S) | Reklemel + Vydate C-LV | 1.13 + 5.0 L/ha | 0.56 + 2.50 L/ ha | In-furrow spray |
5 | PHY 340 W3FE (S) | BIOST Nematicide 100c | 0.026 mg ai/seed | 0.026 mg ai/ seed | Seed treatment |
6 | PHY 340 W3FE (S) | BIOST Nematicide 100 + Reklemel + Vydate C-LV | 0.026 mg ai/seed + 0.28 + 1.24 L/ ha | 0.026 mg ai/ seed + 0.21 + 0.884 L/ha | Seed treatment + In-furrow spray |
7 | PHY 340 W3FE (S) | BIOST Nematicide 100 + Reklemel + Vydate C-LV | 0.026 mg ai/seed + 0.56 + 2.50 L/ ha | 0.026 mg ai/ seed + 0.28 + 1.24 L/ha | Seed treatment + In-furrow spray |
8 | PHY 340 W3FE (S) | BIOST Nematicide 100 + Reklemel + Vydate C-LV | 0.026 mg ai/seed + 1.13 + 5.0 L/ha | 0.026 mg ai/ seed + 1.13 + 5.0 L/ha | Seed treatment + In-furrow spray |
9 | PHY 360 W3FE (R) or PHY 332 W3FE (R)c | No nematicide | |||
10 | PHY 360 W3FE (R) or PHY 332 W3FE (R) | Reklemel + Vydate C-LV | 0.28 + 1.24 L/ha | 0.21 + 0.88 L/ ha | In-furrow spray |
11 | PHY 360 W3FE (R) or PHY 332 W3FE (R) | Reklemel + Vydate C-LV | 0.56 + 2.5 L/ha | 0.28 + 1.24 L/ ha | In-furrow spray |
12 | PHY 360 W3FE (R) or PHY 332 W3FE (R) | Reklemel + Vydate C-LV | 1.13 + 5.0 L/ha | 0.56 + 2.50 L/ ha | In-furrow spray |
13 | PHY 360 W3FE (R) or PHY 332 W3FE (R) | BIOST Nematicide 100e | 0.026 mg ai/seed | 0.026 mg ai/ seed | Seed treatment |
14 | PHY 360 W3FE (R) or PHY 332 W3FE (R) | BIOST Nematicide 100 + Reklemel + Vydate C-LV | 0.026 mg ai/seed + 0.28 + 1.24 L/ ha | 0.026 mg ai/ seed + 0.21 + 0.88 L/ha | Seed treatment + In-furrow spray |
15 | PHY 360 W3FE (R) or PHY 332 W3FE (R) | BIOST Nematicide 100 + Reklemel + Vydate C-LV | 0.026 mg ai/seed + 0.56 + 2.50 L/ ha | 0.026 mg ai/ seed + 0.28 + 1.24 L/ha | Seed treatment + In-furrow spray |
16 | PHY 360 W3FE (R) or PHY 332 W3FE (R) | BIOST Nematicide 100 + Reklemel + Vydate C-LV | 0.026 mg ai/seed + 1.13 + 5.0 L/ha | 0.026 mg ai/ seed + 0.56 + 5.0 L/ha | Seed treatment + In-furrow spray |
Greenhouse trial LS means for PHY 360 W3FE, M. incognita resistant (R), PHY 332 W3FE, R. reniformis resistant (R), each paired with PHY 340 W3FE, susceptible (S) cotton variety effects on plant height, shoot fresh weight, root fresh weight, biomass, total nematode eggs, and nematodes eggs per gram of root at 30 DAP at the Plant Science Research Center, Auburn, AL in 2020 and 2021.
Cotton cultivar | Plant height (cm) | Shoot fresh weight (g) | Root fresh weight (g) | Biomass (g) | Total |
|
---|---|---|---|---|---|---|
PHY 360 W3FE | 12.63 A | 6.55 a | 4.31 b | 10.85 a | 194 b | 42 B |
PHY 340 W3FEb | 11.95 ac | 6.21 a | 6.68 a | 12.89 a | 1922 a | 353 A |
0.4848 | 0.6348 | 0.0024 | 0.0749 | 0.0001 | 0.0009 | |
PHY 332 W3FE | 11.02 A | 5.5 a | 4.57 a | 10.06 a | 447 b | 146 A |
PHY 340 W3FE | 11.97 A | 6.24 a | 6.55 a | 12.79 a | 1935 a | 358 A |
0.3803 | 0.3223 | 0.0797 | 0.0871 | 0.0003 | 0.0810 |
Distribution of Plant-Parasitic Nematodes in Michigan Corn Fields Meloidogyne paramali n. sp. (Nematoda: Meloidogyninae) and First Report ofM. marylandi in maple and yacca tree from JapanEffect of Vicia sativa L. on Motility, Mortality and Expression Levels of hsp Genes in J2 Stage of Meloidogyne hapla 18S-NemaBase: Curated 18S rRNA Database of Nematode Sequences Morphological and Molecular Characterization of Diplogasteroides sp., a Cryptic Population of theHaslacheri Group (Diplogastridae), andParasitorhabditis terebranus (Rhabditidae) from KoreaA Seinhorst Model Determined the Host-Parasite Relationships of Meloidogyne javanica Infecting Fenugreek cv. UM202Morphological and Molecular Characterization of Filenchus multistriatus n. sp. (Tylenchomorpha: Tylenchidae) and Data on a Known Species of the Genus from Bushehr Province, Southern IranCharacterization of Hoplolaimus seinhorsti andHoplolaimus pararobustus (Tylenchina: Hoplolaimidae) from banana, with phylogeny and species delineation in the genusHoplolaimus Plant-Parasitic Nematodes and their Effects on Ornamental Plants: A Review Deladenus bonabensis n. sp. (Tylenchomorpha: Neotylenchidae) from East Azarbaijan province, northwestern Iran: A morphological and molecular phylogenetic studyFirst Report of the Gastropod-Killing Nematode, Phasmarhabditis californica, in Washington State, U.S.A Evaluation of Meloidogyne incognita andRotylenchulus reniformis nematode-resistant cotton cultivars with supplemental Corteva Agriscience nematicidesEffects of Planting Date, Cultivar and Vernalization Using Gibberellic Acid on the Severity of Root-Knot Nematode Damage to Globe Artichoke in Subtropical Sandy Soil A New Biological Product Shows Promising Control of the Northern Root-Knot Nematode, Meloidogyne hapla , in Greenhouse TomatoesExternal and internal microbiomes of Antarctic nematodes are distinct, but more similar to each other than the surrounding environment Molecular and morphological characterization of Tylenchus zeae n. sp. (Nematoda: Tylenchida) from Corn (Zea mays ) in South CarolinaReaction of Winter Cover Crops to Meloidogyne enterolobii and Glasshouse Bioassay for Evaluating Utility in ManagingM. enterolobii in SoybeansMorphological and Molecular Characterization of Ottolenchus isfahanicus n. sp. (Tylenchomorpha: Tylenchoidea) from Rhizosphere of Gramineous Plants in Isfahan Province, IranUltrastructural study of anther parasitism of Ficus laevigata byFicophagus laevigatus (Aphelenchoididae)