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Dive into the research topics where Tomie D. Galusha is active.

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Featured researches published by Tomie D. Galusha.


Renewable Agriculture and Food Systems | 2012

Soil fertility and crop yields in long-term organic and conventional cropping systems in Eastern Nebraska

Sam E. Wortman; Tomie D. Galusha; Stephen C. Mason; Charles Francis

Organic agriculture aims to build soil quality and provide long-term benefits to people and the environment; however, organic practices may reduce crop yields. This long-term study near Mead, NE was conducted to determine differences in soil fertility and crop yields among conventional and organic cropping systems between 1996 and 2007. The conventional system (CR) consisted of corn (Zea mays L.) or sorghum (Sorghum bicolor (L.) Moench)‐soybean (Glycine max (L.) Merr.)‐sorghum or corn‐soybean, whereas the diversified conventional system (DIR) consisted of corn or sorghum‐ sorghum or corn‐soybean‐winter wheat (wheat, Triticum aestivum L.). The animal manure-based organic system (OAM) consisted of soybean‐corn or sorghum‐soybean‐wheat, while the forage-based organic system (OFG) consisted of alfalfa (Medicago sativa L.)‐alfalfa‐corn or sorghum‐wheat. Averaged across sampling years, soil organic matter content (OMC), P, pH, Ca, K, Mg and Zn in the top 15 cm of soil were greatest in the OAM system. However, by 2008 OMC was not different between the two organic systems despite almost two times greater carbon inputs in the OAM system. Corn, sorghum and soybean average annual yields were greatest in either of the two conventional systems (7.65, 6.36 and 2.60 Mg ha - 1 , respectively), whereas wheat yields were greatest in the OAM system (3.07 Mg ha - 1 ). Relative to the mean of the conventional systems, corn yields were reduced by 13 and 33% in the OAM and OFG systems, respectively. Similarly, sorghum yields in the OAM and OFG systems were reduced by 16 and 27%, respectively. Soybean yields were 20% greater in the conventional systems compared with the OAM system. However, wheat yields were 10% greater in the OAM system compared with the conventional DIR system and 23% greater than yield in the OFG system. Alfalfa in the OFG system yielded an average of 7.41 Mg ha - 1 annually. Competitive yields of organic wheat and alfalfa along with the soil fertility benefits associated with animal manure and perennial forage suggest that aspects of the two organic systems be combined to maximize the productivity and sustainability of organic cropping systems.


Agroecology and Sustainable Food Systems | 2013

Evaluating Cultivars for Organic Farming: Maize, Soybean, and Wheat Genotype by System Interactions in Eastern Nebraska

Sam E. Wortman; Charles Francis; Tomie D. Galusha; Chris Hoagland; Justin van Wart; P. Stephen Baenziger; Thomas Hoegemeyer; Maury Johnson

A common hypothesis among farmers is that there are unique crop traits necessary to achieve high yields in organic systems not currently expressed in conventionally developed cultivars. To test this hypothesis, high-yielding cultivars of three annual crops developed in conventional systems were grown in parallel organic and conventional cropping systems over multiple years. Yield results revealed no consistent genotype by system interactions. We conclude that with conventionally developed cultivars it is logical to choose the highest yielding genotypes based on nonbiased yield comparison trials in conventional systems unless results are available from organic evaluations.


Agronomy Journal | 2013

Twin Rows Minimally Impact Irrigated Maize Yield, Morphology, and Lodging

M. J. Novacek; Stephen C. Mason; Tomie D. Galusha; Muhammad Yaseen


Crop Science | 2008

Yield Increase Has Been More Rapid for Maize than for Grain Sorghum

Stephen C. Mason; Delon Kathol; Kent M. Eskridge; Tomie D. Galusha


Crop Science | 2010

Environment and Hybrid Influences on Food-Grade Sorghum Grain Yield and Hardness

Joni K. Griess; Stephen C. Mason; David S. Jackson; Tomie D. Galusha; Muhammad Yaseen; Jeffrey F. Pedersen


Geoderma | 2017

Does organic farming accumulate carbon in deeper soil profiles in the long term

Humberto Blanco-Canqui; Charles Francis; Tomie D. Galusha


Agronomy Journal | 2007

Nodulating and Non-Nodulating Soybean Rotation Influence on Soil Nitrate-Nitrogen and Water, and Sorghum Yield

Nanga Mady Kaye; Stephen C. Mason; Tomie D. Galusha; Martha Mamo


Crop Science | 2011

Environment and Hybrid Influences on Rapid-Visco-Analysis Flour Properties of Food-Grade Grain Sorghum

Joni K. Griess; Stephen C. Mason; David S. Jackson; Tomie D. Galusha; Jeffrey F. Pedersen; Muhammad Yaseen


Crops and Soils | 2016

Soybean Yield and Nodulation Response to Crop History and Inoculation

Stephen C. Mason; Tomie D. Galusha; Zaher Kmail


Maydica | 2014

Bt transgenes minimally influence maize grain yield and lodging across plant populations

Mitchell J Novacek; Stephen C. Mason; Tomie D. Galusha; Muhammad Yaseen

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Stephen C. Mason

University of Nebraska–Lincoln

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Charles Francis

University of Nebraska–Lincoln

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Muhammad Yaseen

University of Agriculture

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Zaher Kmail

University of Nebraska–Lincoln

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David S. Jackson

University of Nebraska–Lincoln

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Humberto Blanco-Canqui

University of Nebraska–Lincoln

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Jeffrey F. Pedersen

University of Nebraska–Lincoln

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Joni K. Griess

University of Nebraska–Lincoln

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Cory Walters

University of Nebraska–Lincoln

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