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September 10, 2025Nature13 citationsOpen Access

Engineered yeast provides rare but essential pollen sterols for honeybees

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EMElynor MooreRSRaquel T. de SousaSFStella Felsinger

Key Points

  • Brood production increased significantly in colonies fed a diet with engineered yeast-derived sterols, enhancing survival.
  • Colony diets enriched with sterols led to longer brood rearing times compared to those without sterols, addressing nutritional gaps.
  • Genetically modified Yarrowia lipolytica yeast was utilized to create essential sterol supplements for honeybee nutrition.
  • This innovation may help reduce reliance on natural pollen sources, aiding in global food security efforts.

Abstract

Abstract Honeybees are important crop pollinators, but they increasingly face pollen starvation as a result of agricultural intensification and climate change 1 . Frequent flowering dearth periods and high-density rearing conditions weaken colonies, which often leads to their demise 2 . Beekeepers provide colonies with pollen substitutes, but these feeds do not sustain brood production because they lack essential sterols found in pollen 3,4 . Here we describe a technological advance in honeybee nutrition with wide-reaching impacts on global food security. We first measured the quantity and proportion of sterols present in honeybee tissues. Using this information, we genetically engineered a strain of the oleaginous yeast Yarrowia lipolytica to produce a mixture of essential sterols for bees and incorporated this yeast strain into an otherwise nutritionally complete diet. Colonies exclusively fed with this diet reared brood for significantly longer than those fed diets without suitable sterols. The use of this method to incorporate sterol supplements into pollen substitutes will enable honeybee colonies to produce brood in the absence of floral pollen. Optimized diets created using this yeast strain could also reduce competition between bee species for access to natural floral resources and stem the decline in wild bee populations.

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Cite This Study

Moore et al. (2025) studied this question.

synapsesocial.com/papers/68c19f9154b1d3bfb60db045https://doi.org/10.1038/s41586-025-09431-y
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