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How Changing What We Eat Could Restore Biodiversity and Fix Food Systems

September 12, 2026
in Earth Science
Margaret Porter
By Margaret Porter Scienmag Editorial Profile - Biodiversity Science
Reading Time: 5 mins read
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How Changing What We Eat Could Restore Biodiversity and Fix Food Systems

How Changing What We Eat Could Restore Biodiversity and Fix Food Systems

How Changing What We Eat Could Restore Biodiversity and Fix Food Systems

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Food systems sit at the center of some of the most pressing crises of the twenty-first century, and yet the most powerful lever for change may be the one policymakers have consistently overlooked: what people put on their plates. A new perspective article published in the journal Discover Sustainability argues that shifting diets at the demand side represents an underused, high-leverage instrument capable of simultaneously advancing climate goals, biodiversity restoration, economic resilience and public health. The paper, authored by a team of European researchers including Konstadinos Mattas and Stefanos Nastis of Aristotle University of Thessaloniki, Amine Zouaghi of the University of Parma, Yuna Chiffoleau of INRAE, Marta Vasconcelos of the Universidade Católica Portuguesa, Kevin Dewitte and Geert Haesaert of Ghent University, and Marija Knez of the University of Belgrade, makes a provocative case that the systematic deprioritization of dietary change in sustainability policy reflects governance gaps rather than any shortage of scientific evidence.

The scale of the problem the authors describe is staggering. Food systems are responsible for roughly a third of global greenhouse gas emissions, a figure that places agriculture and related land-use change among the largest drivers of climate change. Beyond carbon, food production accounts for about half of global habitat loss, making it the single most important force behind the erosion of the planet’s biological diversity. At the same time, diets dominated by ultra-processed foods and nutritional imbalances have become a leading contributor to the global burden of non-communicable diseases, from cardiovascular conditions to type 2 diabetes. The authors frame these three crises—climate, biodiversity and health—as interconnected outputs of the same dysfunctional system, one that continues to prioritize volume and efficiency over diversity, nutrition and ecological integrity.

What makes the argument distinctive is its diagnosis of why so little has been done. Sustainability agendas, the authors contend, have persistently favored supply-side interventions: technological fixes for agriculture, efficiency gains in production, precision farming, improved crop varieties and emissions reductions at the farm level. These approaches matter, and the paper is explicit that demand-side change does not substitute for transformation on the supply side. Rather, dietary shifts are the complement that has received far less policy attention. The imbalance, the researchers argue, is not a rational assessment of where the greatest leverage lies but a structural artifact of how food policy is organized, with agricultural ministries, trade regimes and research funding streams all oriented toward production while the demand side falls between institutional cracks.

The perspective draws on findings from four European Union Horizon research projects focused on agrifood systems—BIOVALUE, DIVINFOOD, RADIANT and CROPDIVA—which the authors coordinated or participated in, alongside the wider scientific literature. These projects share a common thread: an emphasis on agricultural biodiversity and the crops that industrial food systems have left behind. Neglected and underutilized species, abbreviated NUS in the research literature, occupy a central place in the argument. These are crops that once anchored regional diets and farming systems but have been marginalized by the homogenization of global food supply, which concentrates production on a handful of staple commodities. Reviving demand for such species, the authors suggest, could create market incentives for farmers to diversify, with cascading benefits for soil health, pollinators, genetic resources and landscape-level biodiversity.

The reframing at the heart of the paper treats diet not as a matter of individual virtue or consumer preference alone but as a cross-sectoral policy lever. When consumers shift their purchasing and eating patterns, they transmit signals through the entire food chain, from retail and processing back through farming and land use. Demand for diverse, plant-rich, locally adapted foods can pull production systems toward greater agroecological diversity, while demand for resource-intensive animal products pushes in the opposite direction. In this view, the dish—the concrete, culturally embedded meal that people actually eat—becomes the unit of analysis through which the entire food system can be steered. It is a deceptively simple idea with profound implications for how governments design climate, agricultural and health policy.

Crucially, the authors do not present dietary change as a matter of exhortation or consumer education alone. They outline the coordinated fiscal, regulatory, procurement and industrial mechanisms required to operationalize demand-side transformation. Fiscal tools could include adjusting taxes and subsidies so that prices reflect the true environmental and health costs of foods, making sustainable options more affordable and unsustainable ones less attractive. Regulatory instruments could reshape marketing, labeling and food environments, particularly in institutional settings. Public procurement—school meals, hospital catering, military and government canteens—represents a powerful and often underexploited channel through which public institutions can model and normalize sustainable diets at scale. Industrial policy, meanwhile, could support the development of supply chains, processing capacity and product innovation around diversified and underutilized crops, ensuring that shifts in demand are met by viable supply.

The identification of barriers is equally central to the argument. A credible sustainability agenda, the authors write, must now confront the principal obstacles that have kept dietary policy on the margins. These include the political economy of entrenched agricultural and food industry interests, the institutional fragmentation that separates health, environment and agriculture portfolios, cultural attachments to existing dietary patterns, and the affordability constraints that shape what low-income households can realistically eat. The paper’s framing implies that overcoming these barriers requires governance innovation: coordinated action across sectors and levels of government, backed by research infrastructures that connect crop diversity, nutrition science, consumer behavior and economic analysis. The four Horizon projects cited in the work exemplify the kind of transdisciplinary collaboration the authors see as necessary, spanning agricultural economics, plant science, food technology, sociology and nutrition across institutions in Greece, Italy, France, Portugal, Belgium and Serbia.

The public health dimension of the argument gives the biodiversity and climate case additional force. Diet-related non-communicable diseases now constitute the bulk of the global chronic disease burden, and the same dietary patterns that drive illness—high in processed foods, low in diverse plant foods—tend to be those with the heaviest environmental footprints. Aligning dietary guidance with sustainability objectives therefore offers a rare policy double dividend: interventions that improve population health while reducing emissions and pressure on ecosystems. The authors’ emphasis on neglected and underutilized species also carries nutritional significance, since many such crops are rich in micronutrients and adapted to local growing conditions, offering resilience advantages in a changing climate as well as dietary diversity benefits.

Economic resilience rounds out the case. Diversified farming systems built around a wider portfolio of crops can buffer farmers against market volatility, pest outbreaks and climate shocks in ways that monocultures cannot. Creating demand for a broader range of foods, the argument runs, is a precondition for such diversification to be economically viable. Without markets, farmers have little incentive to grow anything beyond the dominant commodities; with demand, biodiversity restoration becomes not a cost imposed on agriculture but a business opportunity within it. This demand-driven logic inverts the usual policy sequence, in which production is subsidized first and markets are expected to absorb whatever is grown.

The article, published open access in Discover Sustainability on 12 September 2026 after acceptance on 1 September, arrives at a moment when governments worldwide are under mounting pressure to deliver on climate commitments and biodiversity targets, including the global goal of halting and reversing nature loss. Its central message is that the evidence for demand-side dietary change is sufficient, and that what has been missing is the political and institutional machinery to act on it. By reframing the meal as a policy instrument—backed by fiscal reform, regulation, procurement power and industrial strategy—the authors offer a roadmap for turning the power of the dish into a genuine engine of food system transformation. Whether policymakers seize that lever, the paper suggests, will determine whether the coming decades bring biodiversity restoration and healthier populations, or a continued deepening of the crises that current, supply-focused approaches have failed to resolve.

Subject of Research: Demand-driven dietary shifts as a policy lever for biodiversity restoration and sustainable food systems

Article Title: The power of the dish for demand-driven dietary shifts towards biodiversity restoration and sustainable food systems

Article References: Mattas, K., Zouaghi, A., Nastis, S., Chiffoleau, Y., Vasconcelos, M., Dewitte, K., Haesaert, G., & Knez, M. (2026). The power of the dish for demand-driven dietary shifts towards biodiversity restoration and sustainable food systems. Discover Sustainability. https://doi.org/10.1007/s43621-026-04613-8

Image Credits: AI Generated

DOI: 10.1007/s43621-026-04613-8

Keywords: sustainable diets, dietary shifts, biodiversity restoration, food systems, neglected and underutilized species, climate change, public health, food policy, economic resilience, greenhouse gas emissions, EU Horizon projects, non-communicable diseases

Cite Scienmag News

Margaret Porter. (September 12, 2026). How Changing What We Eat Could Restore Biodiversity and Fix Food Systems. Scienmag. https://scienmag.com/how-changing-what-we-eat-could-restore-biodiversity-and-fix-food-systems/

Margaret Porter. "How Changing What We Eat Could Restore Biodiversity and Fix Food Systems." Scienmag, 12 September 2026, https://scienmag.com/how-changing-what-we-eat-could-restore-biodiversity-and-fix-food-systems/. Accessed 12 September 2026.

Margaret Porter. "How Changing What We Eat Could Restore Biodiversity and Fix Food Systems." Scienmag. September 12, 2026. https://scienmag.com/how-changing-what-we-eat-could-restore-biodiversity-and-fix-food-systems/

Tags: biodiversity loss and food system reformbiodiversity restorationclimate changeclimate change mitigation through dietdietary change for biodiversity restorationdietary shiftseconomic resilienceEU Horizon projectsfood policyfood systemsgovernance gaps in food sustainability policiesgreenhouse gas emissionshigh-leverage strategies for food system transformationimpact of food choices on greenhouse gas emissionslink between food systems and climate resilienceneglected and underutilized speciesnon-communicable diseasespolicies promoting sustainable dietsPublic healthpublic health and sustainable eating habitsreducing environmental impact of agriculturerole of consumer behavior in climate and biodiversity goalssustainable dietssustainable food systems
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