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Toward an Emerging Public Health Paradigm: Agriculture and Food Production for Health

  • Rod Wallace
  • , Katherine Frels
  • , Maria Itria Ibba
  • , Conrad Lyford
  • , Devin Rose
  • , David Baltensperger
  • , Jan A. Delcour
  • , Steven Greenspan
  • , Alison Lovegrove
  • , Barbara Schneeman
  • , Peter Shewry
  • , Edward Souza
  • , William W. Wilson
  • , Gary W. Yohe
  • , Jim Anderson
  • , George Annor
  • , Jayne Bock
  • , Claudia Carter
  • , Brett Carver
  • , Jianli Chen
  • Edward C. Deehan, Noah DeWitt, Lisa Diewald, Jason Donovan, Corrine K. Hanson, David Holding, Amir Ibrahim, Mariah Jackson, Sarah W. Kariuki, Elisa Karkle, Margaret Krause, Silvenus O. Konyole, Shuyu Liu, Jayson Lusk, Mohsen Mohammadi, Therese Narzikul, William Nganje, Gulnihal Ozbay, Ali Parsaeimehr, Andrew Ross, Jackie Rudd, Rachel Schendel, Rebecca Shenkman, Yong Cheng Shi, Senay Simsek, Mark Sorrells, Payam Vahmani, Devin Wallace, Jochum Wiersma, Keona Wynne, Guorong Zhang, Xiaofei Zhang, P. Stephen Baenziger

Research output: Contribution to journalArticlepeer-review

Abstract

An emerging paradigm in public health focuses on enhancing nutrition in existing food staples to reduce chronic disease at the population scale, rather than relying on individuals to change their behavior. This paradigm leverages plant and animal breeding, production practices, and processing to enhance nutrition, whereby foods consumed by millions can be improved at low incremental cost. This article supports and operationalizes this paradigm, illustrating the potential to improve diets through a case study that increases the arabinoxylan fiber content of commodity wheat through classical plant breeding (a non-GMO technology). The approach described in this article proposes to link agricultural and food science with health system implementation to deliver equitable access, improved healthcare outcomes and cost savings, and improved community health. Based on published dose–response relationships, comparative risk modeling indicates that modest fiber increases achieved by the commodity wheat breeding led to reduced population-level risks of 1–3% for cardiovascular disease, 3–4.5% for type 2 diabetes, and 1–3.5% for colorectal cancer, translating into substantial healthcare cost savings when implemented at a national scale. This article outlines possible low-risk pathways for implementing these nutrition increases at the population scale through commodity supply chains and community-level nutrition improvement efforts and evaluates the ranges of potential population-level impacts.

Original languageEnglish
Article number527
JournalFoods
Volume15
Issue number3
DOIs
StatePublished - Feb 2026

Bibliographical note

Publisher Copyright:
© 2026 by the authors.

Funding

Rod Wallace and coordination for this paper were provided with funds by the Foundation for Innovation in Healthy Food (FIHF, 800 N. King St. Suite 304 #1874·Wilmington, DE 19801). The Nebraska Wheat Board (45 Fallbrook Blvd Suite 202. Lincoln, NE 68521). provided partial funding for FIHF’s coordination of the research effort. Rothamsted Research receives strategic funding from the Biotechnology and Biological Sciences Research Council, and this work forms part of the Delivering Sustainable Wheat Institute Strategic Programme (BB/X11003/1).

FundersFunder number
Foundation for Innovation in Healthy Food
FIHFDE 19801
Nebraska Wheat BoardNE 68521
Biotechnology and Biological Sciences Research CouncilBB/X11003/1

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 2 - Zero Hunger
      SDG 2 Zero Hunger
    2. SDG 3 - Good Health and Well-being
      SDG 3 Good Health and Well-being

    Keywords

    • chronic disease prevention
    • dietary fiber
    • economics
    • fiber enriched wheat
    • food systems
    • health-promoting agriculture
    • nutrition policy

    ASJC Scopus subject areas

    • Food Science
    • Microbiology
    • Health(social science)
    • Health Professions (miscellaneous)
    • Plant Science

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