Soybean yield response to gypsum soil amendment, cover crop, and rotation

Abstract Growing demand for soybean [Glycine max (L.) Merr.] creates pressure to expand soybean production onto marginal lands and grow soybean continuously. Experiments comparing continuous soybean with soybean–corn (Zea mays L.) rotation, cereal rye [Secale cereale (L.)] cover crop with no cover c...

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Main Authors: Yogendra Y. Raut, Vinayak S. Shedekar, Khandakar R. Islam, Javier M. Gonzalez, Dexter B. Watts, Warren A. Dick, Dennis C. Flanagan, Norman R. Fausey, Marvin T. Batte, Randall C. Reeder, Tara T. VanToai
Format: Article
Language:English
Published: Wiley 2020-01-01
Series:Agricultural & Environmental Letters
Online Access:https://doi.org/10.1002/ael2.20020
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spelling doaj-7f9cd948464a4ff78a3f8d242e7829272021-02-05T06:02:45ZengWileyAgricultural & Environmental Letters2471-96252020-01-0151n/an/a10.1002/ael2.20020Soybean yield response to gypsum soil amendment, cover crop, and rotationYogendra Y. Raut0Vinayak S. Shedekar1Khandakar R. Islam2Javier M. Gonzalez3Dexter B. Watts4Warren A. Dick5Dennis C. Flanagan6Norman R. Fausey7Marvin T. Batte8Randall C. Reeder9Tara T. VanToai10South Centers; Soil, Water & Bioenergy Program, Ohio State Univ. Piketon, OH USAFood, Agricultural and Biological Engineering, Ohio State Univ. Columbus OH USASouth Centers; Soil, Water & Bioenergy Program, Ohio State Univ. Piketon, OH USAUSDA‐ARS National Soil Erosion Research Laboratory West Lafayette IN USAUSDA‐ARS National Soil Dynamics Laboratory Auburn AL USASchool of Environment and Natural Resources, Ohio State Univ. Wooster OH USAUSDA‐ARS National Soil Erosion Research Laboratory West Lafayette IN USAUSDA‐ARS Soil Drainage Research Unit 590 Woody Hayes Dr. Columbus OH 43210 USADep. of Agricultural, Environmental and Development Economics, Ohio State Univ. Columbus OH USAFood, Agricultural and Biological Engineering, Ohio State Univ. Columbus OH USAUSDA‐ARS Soil Drainage Research Unit 590 Woody Hayes Dr. Columbus OH 43210 USAAbstract Growing demand for soybean [Glycine max (L.) Merr.] creates pressure to expand soybean production onto marginal lands and grow soybean continuously. Experiments comparing continuous soybean with soybean–corn (Zea mays L.) rotation, cereal rye [Secale cereale (L.)] cover crop with no cover crop, and flue‐gas desulfurization (FGD) gypsum surface‐applied at 0, 1.1, and 2.2 Mg ha−1 were conducted at Shorter, AL, Farmland, IN, Hoytville, OH, and Piketon, OH, for 5 yr. The objective was to evaluate soybean yield response to these practices across a range of soil types and climatic conditions. Response to continuous soybean and cover crop varied by site (soil drainage class) with no interaction effects. Continuous soybean reduced yield only on well‐ and moderately well‐drained soil types. Cover crop reduced yield on the very poorly drained soil type and increased yield on the well‐drained soil type. Crop production practices that promote soil health and sustainability may not provide yield improvement.https://doi.org/10.1002/ael2.20020
collection DOAJ
language English
format Article
sources DOAJ
author Yogendra Y. Raut
Vinayak S. Shedekar
Khandakar R. Islam
Javier M. Gonzalez
Dexter B. Watts
Warren A. Dick
Dennis C. Flanagan
Norman R. Fausey
Marvin T. Batte
Randall C. Reeder
Tara T. VanToai
spellingShingle Yogendra Y. Raut
Vinayak S. Shedekar
Khandakar R. Islam
Javier M. Gonzalez
Dexter B. Watts
Warren A. Dick
Dennis C. Flanagan
Norman R. Fausey
Marvin T. Batte
Randall C. Reeder
Tara T. VanToai
Soybean yield response to gypsum soil amendment, cover crop, and rotation
Agricultural & Environmental Letters
author_facet Yogendra Y. Raut
Vinayak S. Shedekar
Khandakar R. Islam
Javier M. Gonzalez
Dexter B. Watts
Warren A. Dick
Dennis C. Flanagan
Norman R. Fausey
Marvin T. Batte
Randall C. Reeder
Tara T. VanToai
author_sort Yogendra Y. Raut
title Soybean yield response to gypsum soil amendment, cover crop, and rotation
title_short Soybean yield response to gypsum soil amendment, cover crop, and rotation
title_full Soybean yield response to gypsum soil amendment, cover crop, and rotation
title_fullStr Soybean yield response to gypsum soil amendment, cover crop, and rotation
title_full_unstemmed Soybean yield response to gypsum soil amendment, cover crop, and rotation
title_sort soybean yield response to gypsum soil amendment, cover crop, and rotation
publisher Wiley
series Agricultural & Environmental Letters
issn 2471-9625
publishDate 2020-01-01
description Abstract Growing demand for soybean [Glycine max (L.) Merr.] creates pressure to expand soybean production onto marginal lands and grow soybean continuously. Experiments comparing continuous soybean with soybean–corn (Zea mays L.) rotation, cereal rye [Secale cereale (L.)] cover crop with no cover crop, and flue‐gas desulfurization (FGD) gypsum surface‐applied at 0, 1.1, and 2.2 Mg ha−1 were conducted at Shorter, AL, Farmland, IN, Hoytville, OH, and Piketon, OH, for 5 yr. The objective was to evaluate soybean yield response to these practices across a range of soil types and climatic conditions. Response to continuous soybean and cover crop varied by site (soil drainage class) with no interaction effects. Continuous soybean reduced yield only on well‐ and moderately well‐drained soil types. Cover crop reduced yield on the very poorly drained soil type and increased yield on the well‐drained soil type. Crop production practices that promote soil health and sustainability may not provide yield improvement.
url https://doi.org/10.1002/ael2.20020
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