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September 28, 2025New Phytologist3 citationsOpen Access

Unlocking grass leaf development: foundations for tunable cereal design

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TMTrisha McAllisterHNHilde NelissenJSJosh Strable

Key Points

  • Understanding leaf development is crucial for enhancing cereal productivity amidst growing food security challenges.
  • Leaf development in cereals is environmentally regulated and occurs over various temporal and spatial scales.
  • The study emphasizes the need for precision engineering to tailor cereal crops to specific environmental conditions.
  • Identifying key developmental biology questions can enable advancements in creating programmable plants for future agriculture.

Abstract

Summary The grass leaf plays a critical role in global food security, generating the carbon stores in cereal grains, which provide > 50% of global calories. As the global population grows, there is an urgent need to increase food production using fewer resources and to develop more resilient agricultural systems to withstand variable climate conditions and rising socio‐economic and environmental costs. Precision engineering of cereal crops, tailored to diverse environmental conditions and agronomic practices, is a vital strategy for achieving food security. Given the fundamental importance of the leaf in driving cereal productivity, it is an ideal engineering target. Leaf development occurs over large temporal and spatial scales and is environmentally regulated, posing significant challenges for predictive engineering approaches and limiting the feasibility of a one‐size‐fits‐all approach. In this review, we synthesise current understanding of cereal leaf development and identify critical developmental biology questions that must be resolved to facilitate the truly programmable plants of the future.

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Cite This Study

McAllister et al. (2025) studied this question.

synapsesocial.com/papers/68d90a0641e1c178a14f62e2https://doi.org/10.1111/nph.70477
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