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Ruiz Diaz, D
Pate, S
Gray, J
Vasey, E.H
Hirniak, J
Becker, A.W
Good, L.W
Beuerlein, J.E
Quinn, D
Warncke, D
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Authors
Edwards, C
Ruiz Diaz, D
Gonzalez, H
Ruiz Diaz, D
Filho, C
Trivelin, P
Hansel, F
Ruiz Diaz, D
Rosso, L
Quinn, D
Steinke, K
Pate, S
Sawyer, J
Lundvall, J
Hall, J
Ritchey, E
Gray, J
Vasey, E.H
Kenna, D
Walter, G
Rongen, C
Harms, C.L
Beuerlein, J.E
Oplinger, E.S
Edwardson, S.E
Vasey, E.H
McDonald, C.E
Good, L.W
Bundy, L.G
Below, F.E
Uribelarrea, M
Ruffo, M
Moose, S.P
Becker, A.W
Bast, L
Steinke, K
Warncke, D
Everman, W
Ritchey, E
Cook, K
Gray, J
Hirniak, J
Mallarino, A
Quinn, D
Steinke, K
Coelho, M
Ruiz Diaz, D
Hettiarachchi, G
Hansel, F
Ritchey, E
Gray, J
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Filter results17 paper(s) found.

1. The Growth of MEY in Spring Wheat Country

Any ag orientated news source looked at in recent weeks in North Dakota or western Minnesota has had some kind of a MEY related story. The MEY usually has been identified as 19naximum economic yield," but recently some use of I1most efficient yield" has been seen. Yes, spring wheat country has a new buzz acronym - MEY. How did such a buzz term for tbis amount of press/news coverage develop in the spring wheat region? The kickoff for MEY club deve1-t ocaured on November 25, 1986. Before that was possible,...

2. Intensive Wheat Managent in the Corn Belt

Intensive wheat management (ICX) is based on European cropping systems including narrow row spacing, precise seeding rates, multiple nitrogen (N) fertilizer application, fungicide application for disease control, and plant growth regulator (PGR) application for lodging control. Components of this cropping system were compared to current recommended management (CRM) practices with 12 varieties during 1986-87. The purpose for the experiment was to determine the responsiveness of soft winter wheat varieties...

3. Use of Near infrared-NIR- Reflecctance for Improving Nitrogen Management in Spring Wheat

Advancements in agricultural technology are providing both producers and researchers with improved tools for farm management d ec is ion making . Reduced profit margins are requiring farm managers to use these advanced tools to optimize input management in order to improve prof it levels. Fertilizer nitrogen (N) is a major input foi spring wheat in the Great Plains. Each year, many farmers fertilize spring wheat with nitrogen to improve seedling vigor and plant developmenl. Nitrogen is a major nutrient...

4. Validating the Wisconsin P Index with Measured Runoff P Losses From Agricultural Fields

Phosphorus (P) indices have been developed by most states in the USA for use as planning tools to assess the risk of P loss and identify appropriate management alternatives to control these losses where needed. Little information is available on the relationshp between P index values and actual P runoff losses in the field. We compared annual P losses in runoff measured at 2 1 field or sub-watershed locations with Wisconsin P index values calculated for the same areas. The research sites included...

5. 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...

6. The Use of Organic Soil Amendments for Winter Wheat Production in Kentucky

Most animal manures are land-applied in the fall and spring after crops have been harvested or prior to planting. Surface application of manures in the fall have more potential for nitrogen (N) loss when applied to fallow land compared to land cropped to winter wheat. This study was conducted to determine the N availability of fall applied organic fertilizers and resulting wheat grain yields compared to urea-N fertilizer. The effects of three organic fertilizer sources and rate on wheat yield and...

7. Roto and Shoot Biomass and Nutrient Composition in a Winter Rye Cover Crop

Nitrogen loss from applied fertilizer can be a significant environmental quality issue if NO 3 moves to surface or ground water. The Iowa nutrient reduction strategy science assessment identified winter cereal rye (Secale cereal L.) cover crop as a practice that can significantly reduce N and P loss (41% NO 3-N and 21% P reduction) from corn (Zea mays L.) and soybean [Glycine max. (L.) Merr.] fields. Cereal rye, when used as a cover crop, through its fibrous root system is able to explore the soil...

8. Nitrogen Contribution from Different Manure Sources

Nitrogen fertilizer equivalencies (NFE) from manure are influenced by manure type, application method, crop selection, and environmental conditions. Much of the research to determine NFE of manure was conducted in tilled systems but many producers use no-tillage (NT) to reduce soil erosion and labor requirements. The objective of this study was to determine NFE for different manure types used in corn (Zea mays L.) cropping systems. Manures consisted of composted swine manure (CSM), poultry litter...

9. Relationship between Nitrogen Rate and Weed Removal Timing on Corn Yield

Weeds actively compete for nitrogen in corn grain production systems. Field studies were conducted in 2009 and 2010 at the Michigan State University Crop and Soil s Research Farm in East Lansing , MI to evaluate the effect of N application rate and weed removal timing on grain yield . Treatments included four preplant incorporated rates of urea (0, 67, 134, and 202 kg N ha - 1 ) and four weed removal timings (5, 10, 15, and 20 cm) based on average weed canopy height. An additional season- long weed-free...

10. Soil Phosphorus Fractions and Legacy after Long-term Fertilizer Placement in a Corn-Soybean Rotation

Phosphorus (P) fertilizer placement can affect plant P uptake during the growing season, however, the long-term interaction of placement and plant root P uptake can also affect soil P pools. The objective of this study was to evaluate the influence of long-term P fertilizer placement on soil P pools (labile, moderately labile and non-labile) and legacy soil P accumulation under a corn (Zea mays) -soybean (Glycine max (L.) Merr.) rotation. A field study was conducted for ten years from 2006-... M. Coelho, D. Ruiz diaz, G. Hettiarachchi, F. Hansel

11. Sulfur Fertility for Kentucky Agriculture: An Update

Sulfur (S) is an essential secondary nutrient for plant growth and is involved with the synthesis of chlorophyll, hormones, and a structural component of proteins. The need for supplemental S fertilizer in Kentucky has been questioned for many years due to lower atmospheric S deposition, fewer fertilizer impurities, soil test laboratory recommendations, and greater crop yields, but field research has not supported this concern. Recent tissue surveys in wheat and alfalfa across Kentucky... E. Ritchey, J. Gray

12. Nitrogen and Potassium Interactions in Corn

Extensive research in the North Central region has investigated separately nitrogen (N) and potassium (K) fertilizer management for corn. However, there is scarce information available about how N and K interactions affect corn grain yield and nutrient uptake. The objective of this study was to evaluate the effects of various combinations of N and K rates on corn yield, N and K tissue concentrations, and N and K removed with grain harvest. Two trials with continuous corn were conducted from 2013... J. Hirniak, A. Mallarino

13. 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

14. Phosphorus Distribution After Long-Term P Fertilizer Placement Under Strip-Tillage

Long-term phosphorus fertilizer placement under strip-tillage tillage can affect the vertical and horizontal distribution of soil test P (STP). The objective of this study was to evaluate the effect of P fertilizer placement on STP distribution under strip-till. A study was established in Scandia, Kansas in 2006 under a corn- soybean rotation. Treatments included a (1) control (No P); and P applied at 80 lb P2O5 ac-1 as (2) broadcast, (3) deep band, (4) broadcast with starter 2x2, and... C. Edwards, D. Ruiz diaz

15. N-Fertilizer Recovery Efficiency by Corn Using Controlled Release Urea

Limited research has been conducted on the use of 15N-labeled controlled release urea fertilizers under field conditions for corn production. The objectives of this study were to: 1) evaluate the fate of N derived from a blend of two enhanced efficiency N fertilizers in corn plants throughout the growing season; and 2) to determine the N recovery efficiency of the two N sources from a blended application. A field study was conducted during the 2015-2016 growing season at Iracemápolis,... H. Gonzalez, D. Ruiz diaz, C. Filho, P. Trivelin

16. Soybean Yield Response to P Fertilizer Placement as Affected by Soil Parameters: A Review

In the last decades, several studies were conducted to evaluate more efficient P fertilizer management with emphasis on placement. Many of these studies report contrasting results, suggesting that a general recommendation may not be appropriate and specific factors of soils, crops, and weather should be considered. A literature search was completed using Google Scholar, and published papers that met our selection criteria included 62 experiments, with 95 site-years. Approximately 9.8% of the studies... F. Hansel, D. Ruiz diaz, L. Rosso

17. 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