Planting miscanthus instead of row crops may increase the productivity and economic performance of farmed potholes

Abstract Climate change projections indicate that precipitation events in the central United States are expected to become more intense, more frequent in the spring, and less frequent in the summer. Such a precipitation shift could adversely impact crop yields, especially in subfield areas known as...

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Main Authors: Patrick Edmonds, Kristie J. Franz, Emily A. Heaton, Amy L. Kaleita, Michelle L. Soupir, Andy VanLoocke
Format: Article
Language:English
Published: Wiley 2021-09-01
Series:GCB Bioenergy
Subjects:
Online Access:https://doi.org/10.1111/gcbb.12870
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spelling doaj-8d3cbb6b7fac423bbe67722ea61403ac2021-08-12T09:01:17ZengWileyGCB Bioenergy1757-16931757-17072021-09-011391481149710.1111/gcbb.12870Planting miscanthus instead of row crops may increase the productivity and economic performance of farmed potholesPatrick Edmonds0Kristie J. Franz1Emily A. Heaton2Amy L. Kaleita3Michelle L. Soupir4Andy VanLoocke5Department of Geological and Atmospheric Sciences Iowa State University Ames IA USADepartment of Geological and Atmospheric Sciences Iowa State University Ames IA USADepartment of Agronomy Iowa State University Ames IA USADepartment of Agricultural and Biosystems Engineering Iowa State University Ames IA USADepartment of Agricultural and Biosystems Engineering Iowa State University Ames IA USADepartment of Agronomy Iowa State University Ames IA USAAbstract Climate change projections indicate that precipitation events in the central United States are expected to become more intense, more frequent in the spring, and less frequent in the summer. Such a precipitation shift could adversely impact crop yields, especially in subfield areas known as farmed potholes, which are highly susceptible to flooding and ponding, and crop death is more likely to occur, particularly early in the growing season. This suggests that planting alternative crops, such as more flood tolerant perennials, in these areas may be a more profitable option. Using observations of crop growth and yield along with ponding depth of a specific field and farmed pothole in the central United States, we developed a spatially explicit version of the agroecosystem model Agro‐IBIS to estimate water depth and crop yield. After evaluating the model, we conducted a case study for a specific farmed pothole with a range of future precipitation scenarios with Agro‐IBIS to simulate the effects of contemporary (2002–2016) and future precipitation on a conventional corn/soybean (Zea mays L. and Glycine max Merr.) rotation and an alternative perennial miscanthus (Miscanthus × giganteus Greef et Deu.) cropping system. The depth and frequency of ponding increased under most future precipitation scenarios. The corn/soybean rotation had greater total loss (i.e., no yield) on average (>30%) for all scenarios in comparison to miscanthus (<10%). Under one future precipitation scenario with increased spring precipitation, both the corn/soybean rotation and miscanthus simulations showed an increase in yield. A simple budget analysis indicated that it is more profitable to plant miscanthus instead of corn or soybeans where yields in farmed potholes are consistently poor. Our findings show that potholes can be individually modeled, and their influence on yield can be quantified for use in future management decisions dictated by change in climate.https://doi.org/10.1111/gcbb.12870Agro‐IBISCorn Beltcrop modelingmiscanthuspotholesPrairie Pothole Region
collection DOAJ
language English
format Article
sources DOAJ
author Patrick Edmonds
Kristie J. Franz
Emily A. Heaton
Amy L. Kaleita
Michelle L. Soupir
Andy VanLoocke
spellingShingle Patrick Edmonds
Kristie J. Franz
Emily A. Heaton
Amy L. Kaleita
Michelle L. Soupir
Andy VanLoocke
Planting miscanthus instead of row crops may increase the productivity and economic performance of farmed potholes
GCB Bioenergy
Agro‐IBIS
Corn Belt
crop modeling
miscanthus
potholes
Prairie Pothole Region
author_facet Patrick Edmonds
Kristie J. Franz
Emily A. Heaton
Amy L. Kaleita
Michelle L. Soupir
Andy VanLoocke
author_sort Patrick Edmonds
title Planting miscanthus instead of row crops may increase the productivity and economic performance of farmed potholes
title_short Planting miscanthus instead of row crops may increase the productivity and economic performance of farmed potholes
title_full Planting miscanthus instead of row crops may increase the productivity and economic performance of farmed potholes
title_fullStr Planting miscanthus instead of row crops may increase the productivity and economic performance of farmed potholes
title_full_unstemmed Planting miscanthus instead of row crops may increase the productivity and economic performance of farmed potholes
title_sort planting miscanthus instead of row crops may increase the productivity and economic performance of farmed potholes
publisher Wiley
series GCB Bioenergy
issn 1757-1693
1757-1707
publishDate 2021-09-01
description Abstract Climate change projections indicate that precipitation events in the central United States are expected to become more intense, more frequent in the spring, and less frequent in the summer. Such a precipitation shift could adversely impact crop yields, especially in subfield areas known as farmed potholes, which are highly susceptible to flooding and ponding, and crop death is more likely to occur, particularly early in the growing season. This suggests that planting alternative crops, such as more flood tolerant perennials, in these areas may be a more profitable option. Using observations of crop growth and yield along with ponding depth of a specific field and farmed pothole in the central United States, we developed a spatially explicit version of the agroecosystem model Agro‐IBIS to estimate water depth and crop yield. After evaluating the model, we conducted a case study for a specific farmed pothole with a range of future precipitation scenarios with Agro‐IBIS to simulate the effects of contemporary (2002–2016) and future precipitation on a conventional corn/soybean (Zea mays L. and Glycine max Merr.) rotation and an alternative perennial miscanthus (Miscanthus × giganteus Greef et Deu.) cropping system. The depth and frequency of ponding increased under most future precipitation scenarios. The corn/soybean rotation had greater total loss (i.e., no yield) on average (>30%) for all scenarios in comparison to miscanthus (<10%). Under one future precipitation scenario with increased spring precipitation, both the corn/soybean rotation and miscanthus simulations showed an increase in yield. A simple budget analysis indicated that it is more profitable to plant miscanthus instead of corn or soybeans where yields in farmed potholes are consistently poor. Our findings show that potholes can be individually modeled, and their influence on yield can be quantified for use in future management decisions dictated by change in climate.
topic Agro‐IBIS
Corn Belt
crop modeling
miscanthus
potholes
Prairie Pothole Region
url https://doi.org/10.1111/gcbb.12870
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