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Authors
Ahlersmeyer, A
Anderson, S.H
Below, F.E
Below, F.E
Bly, A
Bu, H
Camberato, J
Clark, J
Fernandez, F
Franzen, D
Goettl, B
Guilherme Cesario Pereira Pinto, J
Iqbal, J
Kaiser, D
Kitchen, N.R
Kovacs, P
Lee, C
Leverich-Nigon, L
Luck, J
Maharjan, B
Margenot, A
Menegaz, S
Mieno, T
Nielsen, R
Norquest, S
Poffenbarger, H
Puntel, L
Quinn, D
Ransom, C.J
Roa, G
Ruiz Diaz, D
Rutter, B
Salguero, D
Sible, C.N
Steinke, K
Svedin, J.D
Terwillegar, C
Thompson, L
Uwineza, C
Veum, K.S
Wick, A
Winans, E.T
Topics
State Poster
Graduate Award Student Poster/State Poster
Split N Applications
Biostimulants
Type
Poster
Year
2022
2021
2020
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Filter results13 paper(s) found.

1. Corn Yield Response to Sub-Surface Banded Starter Fertilizer in the U.S.

Sub-surface fertilizer application at planting (i.e., starter fertilization) is a common practice in U.S. corn (Zea Mays L.) production to improve early-season nutrient uptake, nutrient use efficiency, and plant growth, especially under cool and moist spring soil conditions. However, yield increases from starter applications can vary across production systems and environments. Here, we use a meta-analysis approach to quantify and generalize corn yield responses to sub-surface starter... D. Quinn, C. Lee, H. Poffenbarger

2. Adjusting Soybean Seeding Rate and Nutrient Strategies to Promote Nutrient Uptake in Irrigated and Non-Irrigated Systems

Increases in total dry matter accumulation (TDM) can impact soybean (Glycine max L. Merr.) grain yield. However, the relationship between nutrient uptake and dry matter (DM) across seeding rates and influences on grain yield under irrigated and non-irrigated conditions remains uncertain. Two multi-year trials were established near Lansing, MI to investigate soybean dry matter accumulation, partitioning and remobilization; nutrient accumulation, partitioning, and remobilization; grain... K. Steinke , C. Terwillegar

3. Nitrogen source and application timing for corn to mitigate leaching and gaseous N losses

Nitrogen (N) is an important nutrient for corn, but N fertilizers are associated with contamination of surface waters through leaching and gas emissions through denitrification and volatilization. A comprehensive N loss study was conducted at the University of Minnesota Southwest Research and Outreach Center (SWROC) in Lamberton, MN from 2014 to 2020. The objectives were to  quantify the effects of traditional (pre-plant urea) and advanced N management practices (split-N applications and...

4. Use of Biostimulants for Increased Nutrient Uptake in Maize Production

Biostimulants are becoming popular in the agricultural market as products to increase growth, health, and/or yield of crop plants. These products differentiate themselves from traditional plant growth regulators as they impact crop growth and development indirectly through mitigation of crop stress and/or greater nutrient availability and uptake. The challenge in working with these products is that there are many types of biostimulants, each with unique mechanisms of action. The objective of ... C.N. Sible, F.E. Below

5. Banding Nitrogen Increases Nutrient Uptake and Yield of Corn

Inadequate nitrogen (N) availability during the start of the corn (Zea mays L.) growing season can reduce the yield potential of the crop. However, the greatest amount of N is required during the period of rapid growth (from 10-leaf stage to tasseling [VT]). Banding N at or near the time of panting increases availability of N to the corn plant and could allow for the reduction in early-season N rates without reducing yield potential. Across the state of Illinois in 2019, urea ammonium nitrate... E.T. Winans, F.E. Below

6. Managing Nitrogen to Optimize Yield and Quality of North Dakota Two-row Malting Barley

As the demand of two-row malting barley (Hordeum vulgare L.) increases, having sound N recommendations is increasingly necessary. Not only does N play a role in grain yield, but it may also significantly impact grain malting characteristics including protein, plump, and test weight. To determine the impacts N rate and N availability have on two-row malting barley, two experimental sites were established in both Spring 2020 and 2021. The experiment was organized in a randomized comple... B. Goettl, H. Bu, A. Wick, D. Franzen

7. Can Soil Health Metrics Improve Standard Soil Fertility Recommendations?

It is commonly speculated that integrating soil health (SH) testing with soil fertility (SF) testing would improve fertilizer recommendation decisions. However, quantified impacts of SH properties, specifically soil biological properties, on fertilizer demand have not been well established. The objective of this research was to explore corn (Zea mays L.) yield response to phosphorus (P) and potassium (K) fertilization as influenced by established SF analysis and common SH me... C.J. Ransom, J. Svedin, N.R. Kitchen, K. Veum, S.H. Anderson

8. Promoting Adoption of Precision Nitrogen Management Technologies Through On-farm Research

The Nebraska On-Farm Research Network helps farmers evaluate products and practices that impact the productivity, profitability, and sustainability of their operations. There are many technologies that have potential to increase nitrogen use efficiency (NUE) on corn and winter wheat but typically these technologies have low adoption. At the same time, farmers have technologies such as GPS, yield monitors, and variable-rate application equipment on their farmers that enables them to easily con... L. Thompson, L. Puntel, T. Mieno, J. Iqbal, B. Maharjan, J. Luck, S. Norquest, J. Guilherme cesario pereira pinto, C. Uwineza

9. Evaluation of Soil Test Potassium Guidelines in Minnesota

Changes in corn and soybean potassium guidelines in states in the Upper Midwest have resulted in questions from consultants and farmers as to how best to manage the nutrient. In Iowa, soil samples analyzed on a field moist basis have been suggested as a method to predict the amount of potassium required for corn and soybean production while in North Dakota the ratio of illite to smecite in soil samples is utilized to determine the appropriate critical level to determine where potassium fertil... D. Kaiser, L. Leverich-nigon

10. What Soil Measurements Relate Best to Corn Economic Optimal N Rate?

The use of nitrogen (N) fertilizer is critical for optimizing corn (Zea mays L.) yield. However, improper applications can reduce fertilizer efficiency, create environmental issues, and reduce grower profits. The N cycle is largely affected by biological processes. Therefore, the inclusion of biological soil tests alone or in combination with other soil chemical and physical properties may enable us to improve the accuracy of corn N fertilizer needs to optimize yield. From 2018-2021,... J. Clark, P. Kovacs, A. Bly, A. Ahlersmeyer

11. Updating Phosphorus Recommendations for Illinois

Illinois soil phosphorus (P) recommendations are outdated and make use of concepts such as soil P supply power are outdated. This 2022 Illinois State Report provides a summary and outlook on key considerations for P recommendations that may be instructive to other North Central states. ... A. Margenot

12. Corn Responses to Sulfur Fertilizer in Indiana

Corn yield increases in response to sulfur (S) applied as ammonium thiosulfate in liquid N (in sidedress and/or starter fertilizer applications) occurred in ~40% of 40 trials conducted between 2017 and 2021 and ranged from 4 to 24 bushels per acre on responsive sites. Increased grain yield with S fertilization occurred on soils ranging in texture from sandy loam to silty clay loam and soil organic matter concentrations from ~1 to 3%. Yield increases with S fertilization were not predicted by ... J. Camberato, D. Salguero, R. Nielsen

13. Evaluation of Plant Tissue Analysis to Assess Phosphorus Nutritional Status in Corn and Soybean

Plant phosphorus (P) tissue analysis can be used to identify the nutritional status and potential response to P fertilization. This study aimed to determine critical P tissue concentration at different growing stages for corn and soybean. The experiment was conducted across multiple corn and soybean locations in Kansas. Tissue samples were collected as whole plant V6 stage and ear leaf R1 stage in corn, whole plant V4 stage, and trifoliate R3 for soybean. Plant tissue samples were dried, grou... G. Roa, D. Ruiz diaz, B. Rutter