Harnessing precursor-directed biosynthesis with glucose derivatives to access cotton fibers with enhanced physical properties.

利用葡萄糖衍生物进行前体定向生物合成,以获得具有增强物理性能的棉纤维

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作者:Kuperman Ofir Aharon, de Andrade Peterson, Sui XiaoMeng, Maria Raquel, Kaplan-Ashiri Ifat, Jiang Qixiang, Terlier Tanguy, Kirkensgaard Jacob Judas Kain, Field Robert A, Natalio Filipe
Cotton ovule in vitro cultures are a promising platform for exploring biofabrication of fibers with tailored properties. When the ovules' growth medium is supplemented with chemically synthesized cellulose precursors, it results in their integration into the developing fibers, thereby tailoring their end properties. Here, we report the feeding of synthetic glucosyl phosphate derivative, 6-deoxy-6-fluoro-glucose-1-phosphate (6F-Glc-1P) to cotton ovules growing in vitro, demonstrating the metabolic incorporation of 6F-Glc into the fibers with enhanced mechanical properties and moisture-retention capacity while emphasizing the role of molecular hierarchical architecture in defining functional characteristics and mechanical properties. This incorporation strategy bypasses the early steps of conventional metabolic pathways while broadening the range of functionalities that can be employed to customize fiber end properties. Our approach combines materials science, chemistry, and plant sciences to illustrate the innovation required to find alternative solutions for sustainable production of functional cotton fibers with enhanced and emergent properties.

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