Perceived risks associated with food production are a major concern among European consumers and strongly influence debates on sustainable agricultural practices. In particular, the adoption of precision-bred (gene-edited) crops and the use of alternative pesticide strategies raise questions about consumer acceptance and regulatory alignment. This study examines consumer perceptions of precision-bred watermelon and different pesticide strategies, including conventional pesticides, organic-certified pesticides, and zero-residue pesticides, with the aim of assessing perceived risks and implications for sustainable agriculture in Europe. A discrete choice experiment was conducted with 1,218 consumers from Spain, Germany, and the United Kingdom. The results show that between 22 and 27% of consumers across these countries reject precision-bred watermelon. Concerns related to gene editing and conventional pesticide use frequently overlap among consumers, indicating a broader sensitivity to production-related risks. However, conventional pesticides are generally perceived as riskier than precision breeding technologies. In addition, consumers show a stronger preference for zero-residue pesticides compared to organic-certified alternatives, suggesting that residue-related concerns play a key role in shaping preferences. Overall, acceptance levels of precision-bred crops are relatively similar across countries, despite differences in regulatory frameworks. The findings indicate relatively stronger consumer rejection of conventional pesticide use compared with alternative technological options, suggesting potential opportunities to expand the adoption of precision breeding technologies while addressing consumer risk perceptions and sustainability objectives. From a policy perspective, promoting zero-residue pesticide strategies and reconsidering regulatory approaches to gene editing, particularly within the European Union, may help align legislation with consumer preferences and sustainability goals. This study contributes novel empirical evidence to ongoing discussions on agricultural biotechnology, pesticide reduction, and sustainable food production in Europe.
It is argued that formation of a tumour-intrinsic niche is a prerequisite for BRAF-mutant CRC seeding to distant organs and that interference with niche formation may help avoid metastatic relapse.
J. Bugter, L. El Bouazzaoui, E. Küçükköse et al.· bioRxiv· 2 citations
It is concluded that bridging the gap between foundational CRISPR research and its real-world applications is imperative and future efforts should focus on democratizing tools via open-source platforms, advancing delivery systems, and fostering sustainable innovation through synthetic biology integration to fully realize the transformative potential of genome editing in organisms beyond model organisms.
S. Sarsaiya, Archana Jain, Jishuang Chen et al.· Biotechnology Advances· 2 citations
A virus-like particle (VLP)-based toolkit that delivers diverse CRISPR editing modalities to human monocytes, macrophages and dendritic cells with high efficiency while preserving viability and innate immune responsiveness is presented.
Hyuncheol Jung, Pascal Devant, Carter Ching et al.· Nature Biotechnology· 0 citations
Findings provide direct functional evidence that szl regulates median caudal patterning in goldfish and suggest that szl-dependent modulation of the Chordin/BMP network can generate twin-tail-like caudal morphology.
Huijuan Li, Xiaoying Zhang, Xiaowen Wang et al.· International Journal of Mol...· 0 citations
This review summarizes the trajectory of iPSC reprogramming technologies and identifies the core “translational triltrilas”, namely, the inherent tradeoffs between security, homogeneity, and scalability, and proposes a comprehensive strategy to overcome these bottlenecks.
Mengmeng Chen, Ning Zuo, Qi Wang et al.· Frontiers in Cell and Develo...· 0 citations
A new method for surgically removing training examples from a model reveals that as datasets grow, the link between what a model learns and what it produces dissolves.
MIT News · Artificial Intelligence· news.mit.eduAug 17, 2026