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Quinn, D
Boomsma, C.R
Becker, A.W
Kassel, P
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Authors
Quinn, D
Steinke, K
Kassel, P
Sawyer, J.E
Haden, D
Barker, D
Boomsma, C.R
Vyn, T.J
Below, F.E
Uribelarrea, M
Ruffo, M
Moose, S.P
Becker, A.W
Quinn, D
Steinke, K
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Oral
Year
2016
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1. Soil pH and Corn-Soybean Rotation Yield Responses to Limestone Applications and Tillage

Farmers growing corn and soybean in northwest Iowa must carefully consider liming needs and economics. This is because of high liniestone material cost and the fact that soils in northwest Iowa have high pH subsoil, which can moderate negative effects of acid surface soils. Another factor that must be considered is the variable effect from limestone mixing depth associated with different tillage systems. An experiment designed to evaluate six rates of aglime (0 to 6,000 Iblacre of effective calcium...

2. Plant Population Influences on Maize Physiological Responses to Nitrogen Application

Past genetic improvements in maize ( Zea mays L.) have led to the creation of modern hybrids that are increasingly tolerant to a variety of stresses and, in particular, to high plant populations. However, high plant densities can adversely a ffect overall grain yield due to greater intra- specific (within species) competition for lim iting resources. This competition increases barrenness and plant-to-plant variability for grain yield (GY CV) and other morpho-physiological traits. In this study, we...

3. Triple-Stacks, Genetics, and Biotechnology in Improving Nitrogen Use of Corn

Genetic improvement in N use efficiency (NUE) is a clear strategy fo r enhancing yield and fertilizer N management of corn ( Zea mays L.), and has been the subj ect of our ongoing research. Calculation of the N requirement (N fertilizer usage/grain yield) based on statewide average grain yields and fertilizer sales shows a stead y decrease since the mid 1980's, suggestive of a genetic improvement in N use. Direct comparis on of the response to N for a 1980�۪s hybrid with its modern counterpart...

4. Targeting Input Responses and Returns on Intensively-Managed Soft Red Winter Wheat

Consecutive years of record wheat (Triticum aestivum L.) yield (81 and 89 in 2015 and 2016, respectively), climate variability, and continued demand from Michigan’s milling and cereal industry have increased interest in intensively-managed (i.e. multiple-input) soft red winter wheat production systems. The objective of this study was to investigate the grain yield and economic profitability of several agronomic inputs across intensive (i.e., multiple- input) and traditional... D. Quinn, K. Steinke

5. Winter Wheat Growth and Grain Yield Response to Individual Agronomic Inputs

Producers’ interested in optimizing wheat (Triticum aestivum L.) growth and yields have adopted intensive (i.e. high-input) wheat management systems in Michigan. Additional research is required to evaluate growth, grain yield, and profitability of multiple and individual agronomic inputs. An omission field trial was initiated in Lansing, MI during 2015 to evaluate the response of soft red winter wheat to six agronomic inputs in enhanced (high-input) and traditional (low-input) management... D. Quinn, K. Steinke