Delayed planting coupled with wet early season growing conditions across much of Wisconsin has dampened grower enthusiasm to
enter the 2013 WI Soybean Yield Contest. Excellent growing conditions over the last several weeks has renewed grower interest.
To facilitate this interest we are extending the entry due date to September 1st to enter the contest. Below please find links for entry
forms and rules. Good Luck!!!
Monday, July 29, 2013
Thursday, July 11, 2013
High Value Straw and Weedy Wheat…What Do I Do?
Wet fields
made spring weed control difficult to impossible in many winter wheat fields,
and prolonged wet conditions have encouraged prolific weed growth from large
competitive broadleaf weeds like giant ragweed and lambsquarters. As we approach harvest in southern WI (week
of August 21st) growers simply have limited herbicide options for preharvest
weed management:
Some benefits to applying
preharvest glyphosate may include desiccation of green weedy plants to enable
an easier combine harvest and quicken the ability to bale straw following the
grain harvest. However, drawbacks
include a narrow window of application timing ahead of harvest, wheel tracks
(if ground applied) will reduce grain yields, and moreover many of the weeds
like giant ragweed and lambsquarters will be large and difficult to control. Thus, consider a preharvest glyphosate application
as a last resort because partial control of large weeds will greatly increase
selection pressure for glyphosate resistance.
We already have glyphosate-resistant giant ragweed in southern WI ,
and other broadleaf weeds continue to be a concern.
Shawn Conley and Vince Davis
Monday, July 1, 2013
Bloomin Beans, Glyphosate, and Wheel Track Damage
The WI soybean crop ranges anywhere from just planted (JP) to beginning flower (R1). As we enter the soybean reproductive growth phase there are a few
things to keep in mind. The first is that soybean will produce flowers
for ~3 to five weeks, depending upon planting date and environment.
During that time soybean will abort anywhere from 20 to 80% of the flowers that they
produce. Generally it is the first and last flush of flowers produced
that are most likely to be aborted.
Next, the timing
window for glyphosate applications in our early planted soybean is quickly closing. Glyphosate labels indicate that applications can be made through R2 or full flower. The R3
growth stage begins when one of the four top nodes with a fully
developed leaf has a 3/16 inch long pod. Applications made after the R3 stage begins are off-label
applications. On average it takes ~ 4 days to move from
R1 (beginning flower) to R2 (full flower) and ~10 days from R2 to the
start of R3 (beginning pod).
Last but not least, wheel track damage made from ground applications may start to reduce yield. Sprayer wheel traffic from first flower (R1) through harvest can damage soybean plants and reduce yield (Hanna et al. 2008). Our research suggests that an adequate soybean stand (more than 100,000 plants per acre) planted in late April though mid-May can compensate for wheel tracks made when a field is sprayed at R1. Yield loss can occur, however, when wheel tracks are made at R1 or later in thin soybean stands (less than 100,000 plants per acre) or late planted soybeans. Regardless of stand, plants could not compensate for wheel tracks made at R3 (early pod development) or R5 (early seed development). The average yield loss per acre is based on sprayer boom width (distance between wheel track passes). In our trials yield losses averaged 2.5, 1.9, and 1.3% when sprayer boom widths measured 60, 90, and 120 foot, respectively. Multiple trips along the same wheel tracks did not increase yield loss over the first trip.
Hanna, S., Conley,
S. P., Shaner, G., and Santini, J.
2008. Fungicide application timing
and row spacing effect on soybean canopy penetration and grain yield. Agronomy Journal: 100:1488-1492.
Mike Bertram a WSA board member reminded me to add the category almost planted (AP). That's the treated seed that's in the drill that will hopefully gets planted if the field dries out this week. It might end up as forage.
| R1 soybean growth stage |
Last but not least, wheel track damage made from ground applications may start to reduce yield. Sprayer wheel traffic from first flower (R1) through harvest can damage soybean plants and reduce yield (Hanna et al. 2008). Our research suggests that an adequate soybean stand (more than 100,000 plants per acre) planted in late April though mid-May can compensate for wheel tracks made when a field is sprayed at R1. Yield loss can occur, however, when wheel tracks are made at R1 or later in thin soybean stands (less than 100,000 plants per acre) or late planted soybeans. Regardless of stand, plants could not compensate for wheel tracks made at R3 (early pod development) or R5 (early seed development). The average yield loss per acre is based on sprayer boom width (distance between wheel track passes). In our trials yield losses averaged 2.5, 1.9, and 1.3% when sprayer boom widths measured 60, 90, and 120 foot, respectively. Multiple trips along the same wheel tracks did not increase yield loss over the first trip.
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| Spraying soybean at the R1 crop growth stage |
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| Wheel track damage to drilled soybean at R1 |
Deadline Approaching (8/1/13) for Entering the 2013 Wisconsin Soybean Association Yield Contest
Late planting and overall wet conditions across many areas in WI have dampened (unfortunate but true pun) the
excitement of last year’s yield contest where the 1st place winner in Division 4, Bahr Farms of Belmont grew Trelay
24RR19 and harvested 82.6 bu/a. In Division 3, RnK DeVoe Farms of Monroe won 1stplace with Pioneer 93Y43 at 75.2 bu/a while Division 2 winner, Jerry Koser of Almena achieved
73.7 bu/a from Pioneer 91M10. Last but not least Kloos Acres from Stratford took Division 1 at 61.2 bu/a planting Pioneer 91Y30. If we do get into a normal rainfall pattern
there is still significant yield to be gained so as a friendly reminder:
- The deadline to enter the 2013 WI Soybean Yield Contest is 8/1/13.
- The objective of this contest is to encourage the development of new and innovative management practices and to show the importance of using sound cultural practices in WI soybean production.
- Districts are based on long term county soybean yield averages (Image 1 below).
Thursday, June 27, 2013
Flooded soybean fields starting to show symptoms
Scouting our field trials today we noticed an area presenting phytophthora symptoms. Further scouting showed plants were actually dying due to excessive flood injury and soil saturation. These fields have been subjected to nearly 5 inches of rain this week. This specific pocket has been anaerobic for 48 to 76 hours. Couple that with the heat, humidity, and larger crop growth stage (R1) plants are going downhill quickly. For more information on flood damage to soybean please visit www.coolbean.info.
Monday, June 10, 2013
Chilton Wheat and FHB (Scab) Prediction Map
Just a quick update on what is happening in the WI wheat world today. The Soybean and Small Grain Research Crew was at Chilton today after digging soybean roots at Arlington this morning. Yes soybean does comes first.... At Chilton, powdery mildew was evident in the lower crop canopy, but had yet to move up the stem.
Most varieties have wheat heads emerging from the sheath. A couple early wheat varieties had a few heads starting to flower. However the majority of flowering at our Chilton site should take place late this week into the weekend.
The southern 1/3 of the state has or is experiencing wheat flowering now (Damon Smith applied the FHB fungicides today at Arlington). Below please see a risk map regarding today's risk for FHB. West central WI is located in the medium to high risk zone so please scout accordingly. Remember risk is associated with weather conditions and crop growth stage. Fungicide options for FHB are found at Management of Small Grain Diseases Fungicide Efficacy for Control of Wheat Diseases.
For more information on FHB please visit http://fyi.uwex.edu/fieldcroppathology
Most varieties have wheat heads emerging from the sheath. A couple early wheat varieties had a few heads starting to flower. However the majority of flowering at our Chilton site should take place late this week into the weekend.
The southern 1/3 of the state has or is experiencing wheat flowering now (Damon Smith applied the FHB fungicides today at Arlington). Below please see a risk map regarding today's risk for FHB. West central WI is located in the medium to high risk zone so please scout accordingly. Remember risk is associated with weather conditions and crop growth stage. Fungicide options for FHB are found at Management of Small Grain Diseases Fungicide Efficacy for Control of Wheat Diseases.
For more information on FHB please visit http://fyi.uwex.edu/fieldcroppathology
Tuesday, May 28, 2013
Delayed Planting: Top Three Considerations for Switching Corn Acres to Soybean
Instead of complaining right off the bat let me be a glass half full kinda guy....well it looks like the drought of 2012 appears to be over! Ok...with that being said lets talk facts. We have already discussed maturity switch dates for corn grain, corn silage and soybean cultivars. What about switching corn ground to soybean.
1. Check your herbicide label. Several burn-down or early pre-plant programs have labels for both crops. However tankmix partners or rates may differ between the two. Maker sure you verify rates, timings, and plant back restrictions before you make the switch. Even with the intense rainfall we have experienced don't bank on these products being gone.
3. Should I use an inoculant with these late planted soybeans. The simple answer is yes and here is why.
1. Check your herbicide label. Several burn-down or early pre-plant programs have labels for both crops. However tankmix partners or rates may differ between the two. Maker sure you verify rates, timings, and plant back restrictions before you make the switch. Even with the intense rainfall we have experienced don't bank on these products being gone.
In excess situations soybean will generally utilize the background nitrogen prior to initiating maximum N fixation. This may lead to luxurious early season growth, which in fields with a history of white mold, may cause problems if weather conditions are conducive. High soil N reserves may also lead to increased lodging. In either case, manage your soybean crop accordingly to minimize risk of white mold or lodging. This can be accomplished through variety selection (e.g. white mold tolerance, short statured soybean cultivars or good lodging tolerance), decreasing seeding rates, and proper scouting to time fungicide applications if needed.
3. Should I use an inoculant with these late planted soybeans. The simple answer is yes and here is why.
- Background populations are likley diminished: Drought impact on rhizobia populations
- Excess N limits N fixation (Lit review excerpt quoted with permission from Eric Wilson; M.S. Thesis; Shaun Casteel Adviser; Purdue University)
Nitrate uptake of soybean plants did not appear to directly damage the BNF capacity (Streeter, 1985; Arrese-Igor et. al, 1997). Streeter (1985) concluded that carbohydrate deprivation and nitrate toxicity did not inhibit BNF. It is hypothesized that additional nitrate increased the oxygen diffusion barrier of the nodule, which limited oxygen supply and restricted nitrogenase activity and nodule respiration (Vessey and Waterer, 1992). This hypothesis was supported by Arrese-Igor et al., 1997. However, additional oxygen supplied to the nodules did not markedly increase BNF (Heckmann et al., 1989; Serraj et al., 1992).
- Frankly speaking the cost:risk/benefit ratio for 2013 suggests the usage.
Arrese-Igor, C., F.R. Minchin,
A.J. Gordon, and A.K. Nath. 1997. Possible causes of the physiological decline
in soybean nitrogen fixation in the presence of nitrate. Journal of
Experimental Botany 48:905-913.
Heckmann, M.O., J.J. Drevon, P.
Saglio, and L. Salsac. 1989. Effect of oxygen and malate on NO3-
inhibition of nitrogenase in soybean nodules. Plant Physiology 90:224-229.
Serraj, R., J.J. Drevon, M.
Obaton, and A.Vidal. 1992. Variation in nitrate tolerance of nitrogen-fixation
in soybean glycine-max. - Bradyrhizobium symbiosis. Journal of
Plant Physiology 140:366-371.
Streeter, J.G. 1985. Nitrate
inhibition of legume nodule growth and activity .2. short-term studies with
high nitrate supply. Plant Physiology 77:325-328.
Vessey, J.K., C.D. Raper, and
L.T. Henry. 1990. Cyclic variations in nitrogen uptake rate in soybean plants -
uptake during reproductive growth. Journal of Experimental Botany 41:1579-1584.
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